Monday, October 31, 2011

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Sunday, October 30, 2011

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Saturday, October 29, 2011

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Friday, October 28, 2011

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Thursday, October 27, 2011

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Wednesday, October 26, 2011

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Monday, October 24, 2011

The British Aerospace Bae - 146

I

Aircraft manufacturers had, for some four decades, attempted to originate the elusive Dc-3 change with separate powerplant types, along with the piston-engined Convair 240/340/440 and Martin 2-0-2/4-0-4 series and the turboprop Vickers Viscount, Fokker F.27 Friendship, and Hawker Siddeley Hs.748. The most recent attempt had been made by the British aircraft industry when both de Havilland and Hawker Siddeley had conducted shop investigate and formulated designs for a small-capacity, short-range airliner powered by pure-jet engines during 1959 and 1960.

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Of the two, de Havilland, with its previous Rapide, Dove, and Heron pistonliners, had had valuable regional aircraft palpate and had designed the world's first pure-jet airliner in the form of the quad-engined Dh.106 Comet. An initial study for such a Dc-3 replacement, designated the Dh.123, had featured a 60.6-foot total length, an 81.3-foot wingspan, two 1,150 shp Gnone turboprops attached to a high wing, and a 22,100-pound maximum take off weight. So configured, it would have accommodated in the middle of 32 and 40 passengers, or slightly more than the Dc-3's appropriate 21 to 28.

De Havilland, subsequently taken over by Hawker Siddeley and redesignated the "de Havilland Division," had forcibly discontinued originate work on the Dh.123 because it would have competed too intimately with Hawker Siddeley's own Rolls Royce Dart-powered Avro 748 which had seated 44. Nevertheless, existing turboprop competition, coupled with de Havilland's reliance that pure-jet technology would attract valuable passenger appeal, resulted in the mid-1960 Dh.126 originate proposal, which featured the later-standard configuration of most low-capacity, short-range twin-jets, such as the Se.210 Caravelle, the Bac-111, and the Dc-9, with a swept wing, aft-mounted engines, and a t-tail. Powered by two 3,860 thrust-pound de Havilland Ps92 jet engines, it had featured a 60.3-foot distance for accommodation of 30 passengers and a 62-foot wingspan.

Several iterations had introduced progressive, although moderate wingspan, thrust, and gross weight increases by 1964, but further improvement had been hampered by four basic obstacles:

1. Favorable pure-jet motor availability.
2. Discontinuation of promising motor improvement because of several mid-1960s British motor manufacturer mergers.
3. Higher seat-mile costs over Dc-3-like sectors for which the new originate had been intended.
4. The inability to exploit a pure-jet airliner's speed over relatively short sectors.

Hawker Siddeley, believing that the turboprop motor had only been interim-step technology, had equally embarked on a pure-jet airliner originate schedule of its own long before the de Havilland merger, although its low-wing, aft-engined, t-tailed configurations had strongly resembled its previous competitor's.

Attempting to minimize improvement costs by utilizing the cockpit, send fuselage, systems, and passenger cabin of its own Avro 748, it had proposed the Hs.131 in 1964, which had featured similar 62.8-foot total lengths and 67-foot wingspans as de Havilland's comparable Dh.126, but its projected 5,000 thrust-pound Rolls Royce Rb.172 engines had enabled it to offer a higher, 30,000-pound gross weight and a 32-passenger capacity.

Faced, like de Havilland, with motor unsuitability and unavailability, Hawker Siddeley devised iterations round projected powerplants. A radical configuration change, introduced by the Hs.136 of 1967, for instance, had resulted in a low-wing aircraft powered by two 9,730 thrust-pound Rolls Royce Trent engines with a accepted tail accommodating 57 passengers in a five-abreast cabin and contribution a 54,000-pound maximum take off weight. Although the arrangement would have eliminated the aft-mounted, t-tail's propensity toward deep-stall and flame-out conditions, and its close ground proximity would have facilitated passenger, aircraft servicing, and maintenance access, the possible for foreign object debris (Fod) motor ingestion had yielded to the proposed Hs.144 two years later, which had once again reverted to the now appropriate aft-engine configuration.

Progressive originate evolutions and dimensional and thrust increases had intermittently resulted in an airplane whose passenger capacity had been duplicate that of the Dc-3's, and with the Rolls Royce bankruptcy-sparked discontinuation of Trent improvement in 1970, the Dc-3 replacement, now powerless, had come to be ever more elusive.

This low-capacity, short-range jetliner had, like never before, hinged upon a powerplant for its existence, and the only possible lay with a small turbofan being developed by Avco Lycoming in the Us. Based upon the 7,000 thrust-pound F102 which had powered the Northrop A-9A, the engine, a derated civil derivative designated Alf-502, had been launched in 1969 for the Canadair Cl-601 Challenger company jet and had first run two years later. In order to offer market application, it had been of modular construction.

Because the type's 6,500 thrust-pound rating had been inadequate for the most recent aircraft design, the Hs.146 of 1971, and because no other Favorable powerplant had been in the improvement stage, the extreme Dc-3 change had been forcibly designed round four, not two, engines and it featured neither the standard, aft engine-mounted, t-tailed nor alternative wing-mounted configuration. Instead, it would sport two high, modestly swept wings to which the four turbofans would be pylon-mounted. Accommodating 88 passengers, or three times as many as the Dc-3, the airliner, with an 86.2-foot distance and 84.10-foot wingspan, had a 70,000-pound gross weight and 700-nautical mile range.

Nevertheless, the Hs.146 offered several advantages over the earlier, standard-arrangement de Havilland and Hawker Siddeley originate studies. Short-field performance, fully the equivalent of the turboprops it had intended to replace, had been attained by its thrust-to-weight ratio and wing, which, with 78-percent coverage of its trailing edge with Fowler flaps, had obviated the need for important edge devices, and simplification and weight allowance had been further achieved with the elimination of thrust reversers. The t-tail, remaining from the earlier designs, had been retained in order to avoid motor and wing turbulence interference.

The four motor pods, which had been interchangeable with each other, housed modular building cores built up of the basic fan, the accessory gearbox, the gas producer/compressor, and the combustion turbine sections.

An 11.8-foot fuselage diameter had permitted an internal, six-abreast coach seating arrangement, which had been duplicate that of the Dc-3's.

In order to cater to separate route demands, Hawker Siddeley offered an initial, 88-passenger Hs-146-100 and a stretched, 102-passenger Hs.146-200 version, both at maximum, six-abreast densities, although capacity could be reduced with varying class, seat pitch, and abreast arrangements.

Fully intended as a pure-jet counterpart to the turboprop Viscount, Hs.748, and F.27, the Hs.146 had been optimized for multiple daily, high frequency, short-range sectors from short and unprepared, gravel runways, yet accomplish 15-percent lower direct-operating-costs than these aircraft. Slow, controlled approach speeds, of just over 100 knots, had been attainable by its aft fuselage, petal airbrakes and 40 degrees of trailing edge flap, permitting doing from 5,000-foot runways.

Hawker Siddeley had estimated a shop of 1,500 aircraft of its type by 1982.

Hs.146 schedule launch, based upon a 40 million British pound government backing and the manufacturer's own investment, had occurred on August 29, 1973, and the first flight, of the short-fuselage Hs.146-100, had been targeted for December of that year with certification following in February of 1977, while the stretched Hs.146-200, coinciding with the seventh airframe, had been targeted for certification in August of 1978. A full-scale wooden mock-up had been intermittently built at Hatfield.

Like so many British market projects, its momentum had been right away arrested a minuscule more than a year after it had been initiated. Escalating fuel prices resulting from the Arab-Israeli Yom Kippur War, changing economic conditions, and a normal recession, coupled with the pending nationalization of the Uk aircraft industry, had rendered the Hs.146 schedule economically unfeasible by October of 1974. As a result, it had been halted, although small-scale engineering had prolonged and the aircraft's drawings, tools, and jigs had been retained.

Three years later, on March 15, 1977, British Aerospace had been formed with the merger of Hawker Siddeley and the British Aircraft Corporation, and the design, redesignated Bae-146, had been relaunched. It had been the first to have been undertaken by the new conglomerate the following year, on July 10, 1978.

Rolled out for the first time three years later on May 20, 1981 at Hatfield, the aircraft, registered G-Sssh, became the first new British originate since the Bac-111 had flown 18 years earlier.

The aircraft, in its traditional Bae-146-100 form, featured a pressurized, semi-monocoque, aluminum alloy/copper fuselage whose inner fuselage frames bore the aircraft's bending loads and whose outer, notched rings carried the sheer loads, a building technique which eliminated some 5,000 stringer/frame cleats. Its 11.8-foot diameter, permitting five- or six-abreast coach seating, had ensured that passengers would enjoy the same comfort on the type's typical feeder routes as that offered by wide body aircraft operating long-range sectors to which they often transferred.

Single-class capacity assorted from 71 in a five-abreast, 33-inch configuration to 82 at a six-abreast, 33-inch arrangement and an extreme 93 at a six-abreast, 29-inch density. Total capacity decreased with a forward, 12-seat, first class cabin in a four-abreast configuration.

The aircraft had an 85-foot, 11½-inch total length.

The wings, with an 86-foot span and 832-square-foot area, had featured a 15-degree sweepback and three degrees of anhedral at their important edges. Due to the aircraft's short, 150-nautical mile sectors, cruise speeds higher than its optimized Mach 0.7 had not been valuable and had therefore obviated the need for greater sweepback. Low-speed, short-field doing had been attained by means of its single-section, tabbed, trailing edge Fowler flaps which, with a 210-square-foot area, had covered 78 percent of the span and had been hydraulically operated by Dowty Rotol actuators. Roll operate had been in case,granted by manually-operated, trim- and servo tab-equipped ailerons, which operated in conjunction with each outer wing's hydraulically-actuated roll spoilers. Three further inboard spoilers served as lift dumpers after touch down.

Power had been in case,granted by four Textron Lycoming Alf-502R-5 turbofans, each rated at 6,970 pounds of thrust, and these had supplanted the lower-thrust, 6,700-pound Alf-502Hs originally intended for the design. Avco Lycoming had since come to be "Textron Lycoming."

A total of 3,098 Us gallons of fuel could be carried in two wing integral and one center section tank, the latter located above the passenger cabin and adequate with a vented and drained sealing diaphragm. The single-point pressure fueling had been located on the right wing, outboard of the estimate four engine.

The fixed horizontal tailplane, mounted atop the vertical fin, had not required the appropriate variable-incidence geometry because the absence of wing important edge devices had eliminated the balance-out requirements ordinarily connected with the latter's pitch changes. Its location, avoiding wing downwash and motor thrust interference, in case,granted the greatest moment-arm, thus reducing required area and weight. Its elevators had been manually operated, while the vertical fin's rudder had been hydraulically actuated.

Key to the Bae-146 originate had been the 40-square-foot, hydraulically-actuated petal air brakes forming an integral, aerodynamic part of the tailcone at the extreme end of the fuselage and deployable to a maximum 60-degree position. Augmenting slow, controlled, increased descent rates, they had enabled the aircraft to descend at 7,000 fpm above 10,000 feet and 4,000 fpm below it, facilitating short-runway doing and eliminating the need for thrust reversers.

The aircraft's hydraulically-operated, tricycle undercarriage had been comprised of a steerable, telescope strut-attached, forward-retracting nose wheel and two outboard-displaced main units which retracted inwards into blister-type fairings on the fuselage's sides. All featured Dunlop wheels, while the main gear's multi-disc carbon brakes had only been previously employed by Concorde.

Two 3,000-psi hydraulic systems powered the trailing edge flaps, the petal air brakes, the undercarriage, and the wheel brakes. A Garrett AiResearch Gtcp 36-100M auxiliary power unit had in case,granted cabin conditioning and motor starting power and had been operable up to 20,000 feet.

With an 84,000-pound maximum take off weight, the Bae-146-100 had an 880-nautical mile range with its maximum payload and a 1,620-nautical mile range with its maximum fuel.

First flying on September 3, 1981, on a one-hour, 35-minute fight at a 64,000-pound take off weight, the Bae-146-100 had been pronounced as "remarkably stable, very responsive, and delightfully quiet" by its test pilot and had been awarded its Civil Aviation Authority (Caa) type certificate on February 4, 1983. Faa certification followed three months later, on May 20.

Dan-Air Services, Ltd., the type's activate customer, had located two firm and two optioned orders the previous September, and inaugurated it into scheduled aid on March 1, 1983, with an intermittently-provided aircraft from British Aerospace, on the London/Gatwick-Berne, Switzerland route, before it deployed its own aircraft on the route as of May 27. The Bae-146 had been the only pure-jet airliner which had been capable of operating from Berne's short runway.

The larger, Bae-146-200, with a five-frame stretch, featured a new, 93.10-foot total distance and could accommodate 100 passengers in a six-abreast configuration at a 33-inch seat pitch or a maximum of 112 at a 29-inch pitch, but otherwise retained the Bae-146-100's wingspan. The aircraft, with a 93,000-pound maximum take off weight, had a 1,130-nautical mile range with a full payload or a 1,570-nautical mile range with full fuel.

First flying on August 1, 1982 and registered G-Wisc, the type had been inaugurated into aid the following year, on June 27, by Air Wisconsin, which had located an order for four firm and four optioned aircraft, configured for 100, on May 20, 1981, the same day that the shorter-fuselage variant had first rolled out. Joining a fleet of Fairchild Swearingen Metro Iis and de Havilland of Canada Dhc-7 turboprops, the Bae-146-200 had been deployed on average, 127-mile route sectors, rarely climbing higher than 17,000 feet, and by the spring of 1984, it had served 16 mid-western cities, operating 14 daily sectors per day. It finally supplanted the turboprops.

The largest particular order, for 20 firm and 25 options, had been located by an additional one Us regional carrier, Pacific Southwest Airlines (Psa), while other Us operators had included Air-Pac of the Aleutian Islands in Alaska, Aspen Airways, Air-Cal, American Airlines, Discovery Airways of Hawaii, Presidential Airways, Royal West, Usair, and WestAir Commuter.

The Bae-146 had been the first pure-jet to have been certified to operate from London City Stolport, located in the docklands region, because of its steep approach capability, short-runway performance, and low noise emission.

In order to further advance its goods line, offer increased passenger capacity, and more adequately compete with Fokker's own advanced, stretched F.100, British Aerospace offered a second stretch over its traditional Bae-146-100, which had entailed 8.1-foot send and 7.8-foot aft fuselage plugs in comparison to the Bae-146-200. The resultant version, the Bae-146-300, featured a strengthened center section fuselage and a new 100-foot, 8 ¼-inch total length, but otherwise employed the same wingspan and Alf-502R-5 turbofans. Single-class, five-abreast capacity, at a 31-inch seat pitch, had been 103, although 128 high-density passengers, at a 29-inch seat pitch, could be accommodated with the addition of type Iii crisis exits installed in the center fuselage. The 97,500-pound variant, with a 1,040-nautical mile range with a full payload and a 1,520-nautical mile range with full fuel, had first flown on May 1, 1987, after the Bae-146-100 prototype (G-Sssh) had been converted to this appropriate and reregistered G-Luxe.

Air Wisconsin, again activate buyer for the version, had taken delivery of its first longer-fuselage Bae-146-300 on December 10, 1988, one of five which had comprised its previous order for -200s.

A freighter version, the Bae-146-Qt Quiet Trader, had been available in all three passenger versions. Incorporating an upward-opening, hydraulically-operated, 10.11-by-6.4 foot door on its aft, left side; a strengthened floor; and a loading system; the aircraft, devoid of passenger windows and facilities, could accommodate nine Ld-3 containers or six 108-by-88 inch pallets of up to 6,000 pounds each and a particular 53-by-88 inch half pallet. The prototype, a Bae-146-200 converted by Hayes International Corporation, had first flown on March 20, 1986 and had been inaugurated into aid by Tnt International Aviation Services the following year on May 5. The operator had subsequently acquired a valuable estimate of them.

Ii

A representative Bae-146-200 flight, operated by Air Zimbabwe from Hwange to Kariba, had been taken in September of 1994.

Founded in 1967 as Air Rhodesia to operate the Rhodesian routes of Central African Airways, the carrier, continually changing as a ensue of increased black majority rule, had been redesignated Air Rhodesia-Zimbabwe in 1979 and, simply, Air Zimbabwe the following year after the country had attained independence. The transition period, fraught with political instability, had sparked constant route structure realignment, which had only encompassed South Africa.

When the internal situation had finally been restabilized, the route law had been moderately reestablished, once again contribution connections in the middle of Zimbabwe and many regional African nations, as well as those in Europe. In 1982, Air Zimbabwe had operated eight Viscounts, three 720Bs, and three 707-320Bs, although further 707s had later supplanted the 720s.

Due to deregulation-spawned competition, the small carrier had increased its efforts to remain competing with improved passenger aid and a more modern, three-type fleet which had included one Bae-146-200, three 737-200s, and two 767-200Ers, serving the five Zimbabwean domestic destinations of Bulawayo, Harare, Hwange, Kariba, and Victoria Falls; the 11 African international destinations of Dar-es-Salaam, Durban, Gabarone, Johannesburg, Lilongwe, Lusaka, Manzini, Maputo, Mauritius, Nairobi, and Windhoek; and the three European intercontinental destinations of Frankfurt, Larnaca, and London.

In June of 1983, it had embarked on a "Customer Care Program" to heighten aid and introduce a new administrative company Class on its two widebody aircraft in order to more effectively compete with the larger, international carriers which had operated in the middle of Europe and Africa.

It had toted three slogans: "A Tradition of Caring," in 1989; "Above All, We Care," in 1992; and "Experience our Commitment to Excellence," in 1994.

Its self-stated goal had been "to be the airline that best meets the needs of the customer, to operate profitably, and to contribute to the improvement of Zimbabwe using the skills and talents of a committed workforce."

The Bae-146-200 operating the day's flight, registered Z-Wpd and named "Jungwe," had been configured with 91 single-class, six-abreast seats and had been fitted with a passenger audio system. Routed from Victoria Falls to Hwange, Kariba, and Harare under flight estimate "Um 229," it operated three sectors spanning 30 minutes, one hour, and 45 minutes in duration.

After boarding from the particular terminal by means of its forward, left airstair, the high-wing, quad-engined British regional jet, sporting its colorful black, red, yellow, and green striped livery, executed a lengthy taxi roll on the concrete runway flanked on whether side by Hwange National Park's dry, brown grass and scrub expanses, periodically interspersed by feeding herds of impalas.

Completing its "Before Take Off" checklist, and extending its trailing edge Fowler flaps to their 24-degree position, the aircraft throttled into its acceleration roll, its four Alf-502R-5 turbofans propelling its 35,500-kilo mass with their 6,970 pounds of thrust into life-generating speed. Leveraging itself into rotation at 112 knots with its horizontal tail-hinged elevator, the Bae-146 surrendered itself to the hot African atmosphere at a 118-knot V2 velocity, retracting its tricycle undercarriage and accelerating straight through a 171-knot Vfto speed toward the gray, blurring ceiling.

Leaning into a right bank over the brown and tan African expanse at 4,200 feet, the Bae-146 retracted its flaps from the 24- to the 0-degree position, completing its "After Take Off" checklist. Ascending straight through 7,600 feet, at which time a 291-knot ground speed had been registered, it maintained a 1,800-fpm climb rate. Its Nav indicated a 135.4-mile distance to Kariba.

Plunging straight through the dirty opaque obscurity at 15,780 feet, Fight 229 triumphed over white, mountainous-appearing cumulous, now unrestrictedly bulleting straight through the illustriously-blue mid-afternoon Syn. Clearness at 18,640 feet.

Inching the throttle back a moment later, the British regional liner located into its 21,000-foot level off plateau at a 354-knot ground speed with 97.7 miles remaining to its destination.

Cabin aid on the one-hour domestic sector had included a choice of sodas, mineral water, orange juice, and lemonade and a snack try of potato chips and peanuts.

The ground speed had pinnacled at 411 knots.

Descent, initiated with 54 miles remaining on its flight plan, had been attained by dialing in 5,500 feet in the cockpit's "Alt Sel" autopilot, resulting in a 2,000-fpm descent rate.

Surrendering once again to the dense, reference-losing obscurity of the cloud deck, the aircraft plunged straight through 10,000 feet at a 260-knot speed with 21 miles remaining to Kariba, extending its petal air brakes at 7,000 feet, which produced a very controlled, but drag-induced profile. An altitude of 4,500 feet had been intermittently dialed into the "Alt Sel" window.

Emerging from the ceiling mist over the baby blue of Lake Kariba, which had been outlined by its dry, tan and brown scrub shoreline, the captain consulted his landing flap chart corresponding to a 34,500-kilo weight.

Extending its Fowler flaps to the 18-degree position at 3,600 feet, at which time 6.4 miles had remained on its flight plan, the airliner unleashed its undercarriage at a 162-knot ground speed and actuated its high-lift devices into the 24-degree position while arcing into a left bank over the parched expanse of desert. Black mountain silhouettes rolled into view ahead of the cockpit windows.

Descending straight through 2,600 feet at a 161-knot ground speed, the Bae-146-200, now sporting 33 degrees of trailing edge flap, maintained a 270-degree heading, the runway, seemingly plowed in the middle of brown straw, visible straight through the windshield.

Extending its petal air brakes to the 60-degree position, the aircraft, at a negligible descent rate, passed over Runway 27's threshold at 120 knots, retarding its throttle and flaring into main undercarriage palpate with the sizzilingly hot concrete. Decelerating with valuable brake applications, and with its spoiler cope already deployed to the "Lift Splr" position, the thrust reverser-devoid quad-jet consumed the centerline with its nose wheel until it had reached its other threshold and could execute a 180-degree turn.

Taxiing toward the particular terminal's ramp amid the sweltering, 94-degree heat, the high-wing, t-tailed airliner, although ordinarily minuscule next to an intercontinental wide body, dwarfed the United Air Pa-23 Aztec and collection of secret pistons now parked nearby it.

The Bae-146 had, as evidenced by this sector, served as Zimbabwe's link in the middle of its often road-unconnected cities and communities.

Iii

Although the British Aerospace Bae-146 had only sold 219 examples of all of its versions to 45 world airlines, it had nevertheless formed the basis of its later, more advanced, Textron Lycoming Lf507-powered Avro Rj70, Rj85, and Rj100 derivatives.

The British Aerospace Bae - 146

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Sunday, October 23, 2011

Psp Errors - The Game Could Not Be Started

Psp might be the most beloved game console nowadays for many reasons. Even so, it encounters so many problems and errors. Psp owners who do not know how to fix it might get very frustrated.
Are you finding the error that says, "The game could not be started"? I am sure most of Psp owners have this problem. I know it is very depressing. Did you see the error codes of either 80010002 or 80020148? If yes then I think I found uncomplicated methods that may work well for you.

You can fix your Psp problems by following these steps

3000 Psi

1. Go to rescue Menu, turn off then hold R button and turn on again.

2. Go to Configuration to disable the selection Use No-Umd.

3. Go all the way back to main menu.

4. Go to advanced / advanced Configuration.

5. Disable all of them.

I am aware that there are many more errors that you could maybe experience.
The best selection is bring your movable Play-station to the sell store where you bought it and ask them to fix it (only recommended when you still have the warranty).
Second is to sense Sony and ask them how to fix your Psp errors.
The third inherent clarification is to get help from your friends, searching straight through internet, or ask pro helps.

Some of your Psp errors might happen because you have the wrong version of the firmware. Sometimes you would need to downgrade or upgrade your Psp.

I have listed all the error codes and the problems on my website, please visit Psp Errors - The Game could not be started for more information.

Psp Errors - The Game Could Not Be Started

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Saturday, October 22, 2011

Let Hydrostatic Pressure Testing Find Out - Can it Take the Pressure?

Hydrostatic Pressure Testing is a nondestructive testing (Ndt) formula of finding leaks or verifying performance and endurance in pressure vessels such as pipe, tubing, and coils. Although this is thought about nondestructive testing and failures are rare, they can occur when the test piece does not meet performance or endurance specifications and may render the piece unusable.

Hydrostatic Pressure Testing normally entails filling the pipe, tubing, or coil with liquid, bleeding out air, pressurizing the piece, and then examining it for leaks or permanent changes in shape. A nearly incompressible (compressible only by weight, not air pressure) liquid, normally water or oil, is used to fill the test piece because it will only develop by a very small number if the piece fails, and therefore, minimizes the opening of injury or supplementary damage. Hydrostatic pressure testing also can be performed with pressurized air, but is commonly completed with the vessel under water for protection reasons. Although a testing laboratory may be adequate to perform hydrostatic pressure testing with water, oil, or air under water, water is the most commonly used test medium because it is less costly than oil and easier to set up than air under water.

3000 Psi

This nondestructive testing formula is used to test tubing, pipe and coils to pressures measured in Psi (e.g. To 10,000 Psi). The number of pressure used in hydrostatic pressure testing is all the time considerably more than the operating pressure, or the pressure the vessel will be subjected to in the policy of operation, to give the buyer a margin for safety. Typically the test is performed at 150 percent of the manufacture or working pressure. For example, if a pipe was rated to a working pressure of 2000 Psi, it would be tested at 3000 Psi.

Let Hydrostatic Pressure Testing Find Out - Can it Take the Pressure?

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Friday, October 21, 2011

Check Out Maxus MX5333 3,000 PSI 3.0 GPM Honda GX270 Gas Powered Pressure Washer With 50-Foot Hose for $1,077.99

Maxus MX5333 3,000 PSI 3.0 GPM Honda GX270 Gas Powered Pressure Washer With 50-Foot Hose Review


Click To Buy Best Price from Amazon

Product Feature

  • Honda GX270 Engine
  • Long life 3SPX CAT pump
  • 5 quick connect spray tips
  • Compact cart with on board storage for gun and hose management
  • 50 foot high pressure hose

Product Overview

Includes Maxus 3200 PSI Gas Pressure Washer - MX5333, (5) Quick Connect Tips, Spray Gun, 50-ft Hose, Heavy Duty Cart, Chemical Injection Tube

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Thursday, October 20, 2011

Check Out 3000PSI 2000W High Pressure Washer

3000PSI 2000W High Pressure Washer Review


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Product Overview

Type Mid - Heavy DutyDimension of main unit 31" x13"x13"Power Type ElectricBest Uses Patio Furniture, Fencing, Boat, Driveway....Adjustable Wand YesWeight 42 lbs.Voltage 120VCleaning Power 1900 - Max3000 (PSI x GPM)Temperature ColdChemical Injection Detergent BottleMotor BRUSH MOTORHose Material Thermal PlasticHigh Pressure Hose 20ftWheel Type PlasticFlow Rate 1.6 GPM1 Year Warranty

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Wednesday, October 19, 2011

Check Out Factory-Reconditioned TaskMaster TM3000R 3,000 PSI Gas Pressure Washer for Too low to display

Factory-Reconditioned TaskMaster TM3000R 3,000 PSI Gas Pressure Washer Review


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Product Feature

  • Honda GCV190 engine with "Power On Demand"
  • FNA brass axial cam pump with POWERBOOST
  • Detergent tank mounted on read for user convenience
  • 5/16-in x 25-ft 3,200 PSI poly-braided high pressure hose
  • Profi 300 spray gun

Product Overview

This is a factory reconditioned product. Reconditioned generally means that the product has been returned to the manufacturer, who brings the product back to like new condition. Some products may contain cosmetic blemishes. Includes 3,000 PSI Gas Pressure Washer - TM3000R, 5/16-in x 25-ft x 3,200 PSI Poly-Braided High Pressure Hose, (4) Quick Connect Nozzles

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Tuesday, October 18, 2011

Great Price Prince B300120ABAAA07B Hydraulic Cylinder, Tie-Rod, 3" Bore, 12" Stroke, 3000 psi Maximum Pressure, 22-1/4" Retract, 1-3/8" Rod Diameter, Clevis Mounting, Black, #8 SAE

Prince B300120ABAAA07B Hydraulic Cylinder, Tie-Rod, 3" Bore, 12" Stroke, 3000 psi Maximum Pressure, 22-1/4" Retract, 1-3/8" Rod Diameter, Clevis Mounting, Black, #8 SAE Review


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Product Feature

  • Honed tubing; Heavy duty, high strength tie-rods
  • Induction hardened piston rods plated with RoyalPlate Plus (piston rods on 2" bore not hardened)
  • Ductile iron piston, butt, gland & clevis; Crown seal on piston
  • Urethane u-cup & metal encased wiper 2 1/2" bore & larger models
  • 3000 PSI continuous operating pressure

Product Overview

Prince Tie-Rod Hydraulic Cylinder; Bore: 3", Stroke: 12", Maximum pressure: 3000 psi, Column load: 21210 lbs, Retract: 22-1/4", Rod diameter: 1-3/8", Mounting type: Clevis, Color: Gloss Black, Port size: #8 SAE

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Sunday, October 16, 2011

Great Price Mi-T-M (MTMCW-3004-4MDY) CW Series Yanmar 9.0 HP Diesel Pressure Washer 3000PSI @ 3.5 GPM

Mi-T-M (MTMCW-3004-4MDY) CW Series Yanmar 9.0 HP Diesel Pressure Washer 3000PSI @ 3.5 GPM Review


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Product Feature

  • Belt Drive Yanmar Diesel Engine - durable performance of the diesel engine
  • Two (2) year limited warranty on parts and labor - quality built MiTM products
  • General triplex ceramic plunger pump - 7 year limited warranty on pump
  • ETL Listed, Certified to UL-1776
  • 3000 PSI @ 3.5 GPM

Product Overview

  • Belt Drive Yanmar Diesel Engine - durable performance of the diesel engine
  • Two (2) year limited warranty on parts and labor - quality built MiTM products
  • General triplex ceramic plunger pump - 7 year limited warranty on pump
  • ETL Listed, Certified to UL-1776
  • 3000 PSI @ 3.5 GPM
The CW Series Diesel pressure washer is perfect when durability is important, in areas like airports, offshore applications and shipyards. Professional Yanmar 9.0HP diesel engine. 3000 PSI @ 3.5 GPM, belt drive triplex ceramic General plunger pump. Thermal relief valve. Stainless-steel and brass unloader with fixed pressure. Forged brass manifold. Totally enclosed powder-coated steel belt guard for quick access to belts. Dual cogged belt drive system with cast iron pulleys to prevent slippage. Water filter with clear sleeve for screen inspection. Pneumatic tires with tubes for longer life. Convenient nozzle holder for quick connect nozzles. 3/8" x 50'  non-marking hose with quick connects, swivel and bend restrictors. Professional-grade insulated trigger gun with safety lock-off. 36"  lance with rubber grip. Two (2) year limited parts and labor warranty. Seven (7) year limited warranty on pump. ETL Listed Certified to UL-1776.

Drop Ship Only

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Saturday, October 15, 2011

Check Out Powerhorse Dual Split Log Splitter - 20-Ton, 208cc, 3000 PSI

Powerhorse Dual Split Log Splitter - 20-Ton, 208cc, 3000 PSI Review


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Product Feature

  • Powerhorse OHV engine with cast iron sleeve
  • Low oil shutdown, dual ball bearings, forged crankshaft
  • 2-stage pump produces 11 GPM
  • Splits logs up to 25in. long and 16in. dia.
  • Splits with both the extend and retract stroke

Product Overview

The Powerhorse log splitter is compact, powerful and innovatively designed, giving homeowners one of the most productive log splitters on the market! This unique unit splits logs in both directions, saving time and increasing productivity. Your Powerhorse log splitter combines quality and value in a high-production machine - supported by rigorous testing and use in the field - elevating technology to a new level of performance. High speed tires for towing to the log pile. Some assembly required.

Not for sale in California. U.S.A. Ram Force (Tons): 20, Operation: Horizontal, Engine: OHV, Engine Displacement (cc): 208, Gross Torque: 9.00 ft.-lbs., Low Oil Shutdown: Yes, Max. Log Size L x W (in.): 25 x 16, Wedge: Steel, Cycle Time (sec.): 7, Automatic Cylinder Return: No, Cylinder: 4in. dia. x 24in.L, Pump: Barnes 11 GPM, 2 stage, Max. PSI: 3,000, Oil Reservoir (gal.): 1.6, Fuel Capacity (gal.): 0.91, Log Cradle: Yes, Log Lift: No, Jack Stand: Yes, Ball Coupler (in.): 2, Tire Size: 4.80-8, Fenders: No, Pre-assembled: No, Dimensions L x W x H (in.): 61 x 39 x 36

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Thursday, October 13, 2011

High Pressure Cleaner is significant For market Cleaning

A pressure washer uses high pressure yield to discharge dirt and other impurities from hard surfaces. For heavy de-greasing and cleaning work, it is recommended to use high pressure cleaner.

According to made up of machine, the yield from cleaner can vary from 500 Psi to 8000 Psi and climatic characteristic can vary. Higher flow rates translate to greater cleaning; lower flow rates are obligatory in areas with restricted drainage facilities or water accessibility.

3000 Psi

One can find industrial, commercial, and auto detailing pressure washing machines on the market. An market pressure washer is used for heavyweight market cleaning purpose. Auto detailing machines are used for cleaning automobiles and boast a maximum pressure level. And, market pressure cleaner is used for cleaning market buildings. Without the right cleaning equipment market cleaning is sure to be an irresistible and lingering task. If you are planning to call in the professionals, remember you can avoid this repeat cost by washers.

Guidelines While choosing High Pressure Cleaner

While buying pressure cleaners for heavy-duty usage, it is important to select the best featured that will meet your purposes. Pressure cleaners must be ruggedly built and influential adequate to work without fail in the most difficult conditions. Therefore, all the time make sure that you buy first rated pressure cleaning machines from important suppliers in New South Wales, Australia. Top grade components include heavy duty agenda or stainless steel heating coils, rugged construction, durable quick disconnecting trigger wands, and more.

The next characteristic you must think about is the pressure level. High pressure levels indicate more power. To take off rust dirt's, it is best to go for high pressure washer with high pressure levels of nearby 3000 Psi. Gpm - gallons per minute, the flow rate should up to required standards.

Temperature levels can vary depending on the model selected. The right climatic characteristic setting depends on the purpose. The presence of new technologies, like the automated shut off function in top electric systems, indicates first-class power cleaners. This integrated technology prevents the wear and tear of mechanism due to overheating.

Cleaning a disorganized and slick market area is not easy if your cleaning tools, equipments or supplies consist of mops, brushes, and a organery hose. On the other hand, if you use a trustworthy and consistent steam or hot water pressure cleaner, you can unblemished the cleaning work with lowest whole of endeavor in a short whole of time.

The high pressure cleaner industry globally is not cooperatively organized compared to the motor car industry, leaving very microscopic statistical data in relative to shop share or joint manufacturing study and development. The larger companies are concerned about sharing technologies and sales figures; therefore have no instant want for an all encircling body.

The other tentative block with obtaining information from companies is that not of them rely on the same markets. Some focus exclusively on the small local markets with electric cleaners, others on the market markets with large petrol machines while the major companies produce machines for all types of markets.

High Pressure Cleaner is significant For market Cleaning

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Wednesday, October 12, 2011

The Advantages Of An Mtd Log Splitter

Every winter, there comes a time where you need large amounts of wood for your wood furnace and the fireplace. However, using an axe is an oppressive task and can cause back and spinal problems. Can you even fantasize splitting cords of woods using just an axe? I can't. And that's why I own and Mtd log splitter.

How splitters work

3000 Psi

Log splitters can whether be man-powered or driven by hydraulic power. Both machines need a wedge or solid piece of steel that is inserted into the end of an already cut piece of wood. With a man powered log splitter, depending on the type of wood, it may take a few strikes to do the job.

With a fuel-powered splitter the task can be done in a matter of seconds on any type of wood. Mechanical splitters use gasoline to turn a hydraulic pump. The hydraulic pump shifts the oil to originate high-pressure oil that shifts a metal cylinder attached to the wedge. A mechanical lever moves the wedge by conducting the fluid from both ends of the long metal cylinder. Some splitters are able to deliver 3000 lbs/sq. Inch of force (Psi) to the wedge's tip, which is used by the wedge to split dissimilar kinds of woods.

An Mtd log splitter can be use by both men and women because ordinarily it is smaller than most other splitters on the market. To break the log apart, you must use an inclined plane or a ramp so you can roll the log up and down on the ramp instead of lifting them. The inclined plane also provides a great entry point for the wedge to enter the wooden face of the log. With a qualified splitter, even a wooden wedge can split the log effectively.

You can place the log in whether a vertical or horizontal position. Once you've place it into the ramp, lock it using the locking rod. Block the wheels and then start the motor of the splitter. You can set the motor throttle to a desired speed though it's recommended to set it on the maximum speed. To split the wood, move the deal with send or downward. To stop the wood splitting, loosen your hold on the control handle.

You can also split the log first using a chainsaw and then split it on smaller parts using the log splitter.

Maintaining your mechanical log splitter

The log splitter's motor oil must be changed at the first five hours of use and every 50 hours subsequently. An Mtd log splitter uses at least 4 gallons of hydraulic or an self-operating transmission fluid. Much like maintaining your car, you need to change the fluid of your splitter every 100 hours. The hydraulic filter is available at lawn equipment shop and must be supplanted every 50 hours of use. The beam must be lubricated on both sides before every use.

When you are not using your splitter clean it with an oiled rag and clean the engine. This will preclude the splitter, wedge, and beam from rusting. If you are using oxygenated gas, run the motor until all the fuel runs out.

If you like the exercise, a by hand log splitter is great. But if you want to split a lot of wood in the shortest estimate of time possible, an Mtd log splitter is clearly a great option. Take good care of it and you'll be able to use it for years to come.

The Advantages Of An Mtd Log Splitter

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Tuesday, October 11, 2011

Clarifying the Wastewater medicine Choices

Originally Published 1994 - (Costs Are Outdated)

Companies should think such factors as space and capital requirement, desired filtrate quality, and level of automation when selecting water and wastewater filters.

3000 Psi

Filtration is the easiest way to remove solids from water and wastewater streams. In wastewater systems, filtration is used to decrease suspended solids entering the publicly owned treatment works or water-reuse systems or to growth solids in sludge dewatering applications.

Filter option begins after a firm determines the required level of filtration or filtered water quality; decides whether filtrate will be disposed or reused; identifies how much space is available; calculates the estimate of capital ready to purchase, operate, and say the system; decides whether the system should be self-operating or manual; and considers any pertinent water conservation requirements.

The level of solids discharge or filtered-water capability desired defines the type and size of filter necessary; most are ready with varying automation levels and price ranges.

Proper filter size is carefully by flow rate and the amount, size, and type of solids to be removed. Particle sizes and filtration levels can be carefully by filtering water and solids through varying sizes of filter paper and measuring the total solids content of filtered water.

Solids remaining in filtered water will be the same size or smaller than the last filter paper used and will indicate which filter media opening size to use. (A filter constructor or laboratory can be hired to achieve this procedure.) The quantity of solids in water or wastewater can be carefully by a laboratory determination of total solids; flow can be carefully from plant records or an in-line flow meter.

The following equation is used to presuppose solids loadings (how speedily a filter will load with solids): solids (lb/h) = flow (gal/min) x total solids (ppm) x (8.34/60/1,000,000).

After solids loading, filter area, and filter media opening size have been determined, the estimate of time required before cleaning, or back-washing, should be calculated, and the fate of filtrate waste must he determined.

In other words, after a filter is backwashed, where will wastewater go? Backwashing often requires up to 10% of the total filtered volume, a 10:1 ratio. For example, 379 m3 (100,000 gal) of filtered water would generate 38 m3 (10,000 gal) of backwash that contains concentrated solid and may wish added treatment.

Some wastewater must be pretreated before filtration. Oily wastewater, for example, tends to agglomerate speedily between or over filter media and requires conditioning before filtration. Fine-grade filtration systems are susceptible to fouling from biological growth, yeast, and other microorganisms; performing bench tests or consulting with filter manufacturers about exact applications is recommended.

Y-Strainers

Y-strainers are the simplest, least expensive ( to 0) filters, but they have a small filter area and wish frequent maintenance. They typically are used on small pipes to protect such equipment as seals, pumps, and nozzles from solids buildup.

Bag Filters

Bag filters basically are larger Y-strainers. These filters are bags of excellent pore sizes that are enclosed in a pressure housing with a removable cover for cleaning. They are easy to use, come in changeable filtering sizes, and are relatively low in cost, especially for final filtration or applications with low solids loadings. Bag filters do not exceed 203 mm (8 in.) in diameter; for larger diameters, an inline bank with multiple filters in one housing is used.

The price of carbon or stainless steel bag filter housings varies according to size, from 0 for a 51-mm (2-in.) housing to 00 for a 1219 mm (48-in.) housing. Filter bags range in price from to for pore sizes of 25 to 800 microns. Bags are ready straight or pleated. Pleated bags provide added covering area but cost more than twice as much as flat ones. The disadvantages of bag filters contain high maintenance requirements for systems that are underdesigned or have high solids loads and the cost of bag replacement.

Vacuum Filters

Vacuum filters use a slowly rotating vacuum (negative pressure) drum that pulls dirty liquid from the covering of the drum and media to the inside of the drum. The vacuum filter ordinarily is packaged with a pre-batch treatment system to coagulate the wastestream before filtration. The benefit of this filter is its capability to filter a variety of wastewaters. The disadvantages contain slow system throughput and high costs connected with the filter media, which must be applied continuously to the batch pretreatment tank immediately before vacuum filtration. In addition, the filtering media growth total sludge volume as much as 60%. Because vacuum filter cost ordinarily includes the pretreatment system, a unit that processes 19 m3/d (5000 gal/d) can cost ,000.

Cyclone Separators

Cyclone separators are relatively new. Because they have higher rotating speeds than vacuum filters, they generate a necessary estimate of centrifugal power to filter wastewater through varied media sizes. The rotating filter uses a fixed-micronsize medium, such as diatomaceous earth, to filter the wastestream. The benefits of cyclone separators contain their capability to handle changeable throughputs, filter varying particle sizes, and yield drier sludge cake than vacuum filters for about the same cost (around ,00). Heir drawbacks are similar to those of vacuum filters, namely high filter media costs and sludge volume.

Plate-and-frame Presses

Plate-and-frame presses are batch processes in which fixed plates held together in a hydraulic press are pre-coated with diatomaceous earth filtering media. The press size depends on the total solids volume per load. Liquid is loaded into the presses with an air-driven diaphragm pump in increments of 172, 345, 517, and 690 kPa (25, 50, 75, and 100 psi). The press is pressurized at 690 kPa (100 psi) causing water to be squeezed out. After water is removed, the filter is "blown down" with air and opened so sludge can be removed from the plates. The cake ordinarily is at least 35% solids. The limitations of plate-and-frame presses contain a processing time of at least 4 hours, a large footprint, an capability to dewater only the volume of the plates, and the operating time required to clean the plates. Therefore, if wastewater contains high solids levels, the press must be large. Filter presses range in size from 0.014 to more than 2.8 m3 (0.5 to more than 100 ft3). An.028-m3 (1-ft3) press costs ,500, and a 2.3-m3 (80-ft) press costs 0,000. Large presses also wish self-operating loading controls, plate shifters, sludge carts, and other equipment that can cost an added 0,000. The benefit of filter presses is their capability to yield steady, dry cake, which often is required for landfill disposal.

Multiplate Spring-loaded Filters

Multiplate spring-loaded filters use specially fitted disks with machined gradations that provide the required micron-size opening. The disks, which are held together with a preloaded spring, allow water to flow through while holding back filtered particles as small as 2 microns. These filters are backwashed with water based on a preset pressure differential and come with an option for all- water or airassisted backwashing, which saves water and greatly increases filter-plate scouring. These continuous on-line filters ordinarily are configured in pairs (one for filtration, one for backwashing). The estimate of water used for backwashing is about 10% of the total filtered flow. Air-assisted filter backwash saves an added 3% to 5% of water but requires compressed air. The programmable logic control-based filters enable adjustments in the time between backwashes and backwash duration. The filters cost ,500 per pair, and the controller costs an added ,000 but can operate a bank of up to 12 filters.

Multimedia Sand Filters

Multimedia sand filters traditionally are used to treat water but also can be used to treat wastewater that has non-uniform solids loadings. These threedimensional systems provide much greater filtering volume than other filters because they use both the bed covering and depth to remove particles as small as 0.45 microns.

An on-line suspended solids analyzer measures the estimate of particles advent through the filter. As solids levels growth past, or break through, the filter, a preset suspended solids level initiates backwash. Backwash can be air assisted to save water, but care must be taken not to blow the media out with the filtrate material. These filters ordinarily come in pairs to provide continuous on-line service. They work well as final filters for water with uniform solids. Water savings is terminated when the right operate project and air-assisted backwashing system are used, A 0.19-nil/min (50-gal/rnin) pair of multimedia sand filters with a controller and backwashing header assembly costs approximately ,000.

With the vast array of ready filters and operate scenarios, clubs willing to achieve some improve investigate on their wastestreams should have no mystery looking a system to meet their needs.

Clarifying the Wastewater medicine Choices

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Monday, October 10, 2011

Psp Console Sale - Where to Find the Best Bargains!

In the current gloomy economic climate, if you happen to find yourself finding for a Psp console for sale, either it be as a gift for somebody else or for yourself, you really should be request yourself where you could find a genuine Psp console sale, with lots of cheap Psp systems available. But is there such a thing as a cheap Psp?

The short answer is yes, you should be able to find a really cheap Psp naturally by thinking covering the box a bit and avoiding the major sell stores, especially in the run up to Christmas.

3000 Psi

With millions of Psp consoles having been sold over the past few years, there is no doubt that the stock is tried and tested and highly thriving and popular. However, the shrinking economy as well as competition from other gaming systems for market share should play right into the hands of those who have not yet acquired a Psp console, but are now in the market for one.

So if you want to buy a cheap Psp console, your timing is just about spot on - for the following reasons: Firstly, those who rush out and buy whatever new on the gaming front bought their Psp a long time ago, as have those who sat back and waited to see what all the fuss was about. Having satisfied themselves that the Psp was a good buy, they have already bought one at whatever price the merchant was asking.

So now we have a badly mauled economy and a tried and tested stock that is having to compete in a tight market place. That is a formula for deal prices.However, as we all know, it's not often that one can deal with the owner of your local sell store over prices, especially if the store is part of a national or international chain.

So how does one find great Psp console deals? The safe bet thing to do then when finding for bargain, is to find a Psp for sale online, and especially on a big auction site like eBay where prices are more flexible and you have a huge range of Psp consoles listed for sale by keen sellers.

Psp Console Sale - Where to Find the Best Bargains!

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Sunday, October 9, 2011

Check Out Power Boss 020309 3,000 psi 2.5 Gallon-Per-Minute Honda GC190 Gas-Powered Pressure Washer for $399.95

Power Boss 020309 3,000 psi 2.5 Gallon-Per-Minute Honda GC190 Gas-Powered Pressure Washer Review


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Product Feature

  • Honda GC190 OHC engine for easy starting and reliable performance
  • Maintenance-free axial cam pump with Easy Start pump technology designed for smooth starting
  • Flow rating of 2.5 max gpm
  • Includes 0-, 15-, 40-degree and low-pressure pro-style quick connect spray tips
  • 26.4-by-22.3-by-20 at 70-pounds; backed by 1-year product warranty

Product Overview

Powered by a Honda OHC engine, this pressure washer is great for cleaning siding, driveways, and second stories. The maintenance-free axial cam pump with Easy Startâ"¢ technology produces 3000 psi @ 2.5 gpm providing enough cleaning power for any project.

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Saturday, October 8, 2011

Pressure Washers

Pressure washers are very useful for an sufficient cleaning even in the areas and corners where cleaning regularly is difficult. There are assorted types of pressure washers. It military water at a higher rate, in the area where cleaning is to be done, thus effectively cleaning the given place. It is not significant to go for the most recent and the most high-priced pressure washer in the market. It is required to have a good capability washer device, than seeing at the cost of the washer.

Basically washers are of 2 types, one that is operated by gas and the other which is electric operated. The one that is operated by electricity is designed for small time cleaning, as they do not yield a high pressure in the water jutting out. So they are useful for small area cleaning and also in places which are cleaned on a regular basis. On the other hand, gas washers are the high-duty type. They are used to clean places in a pro manner, as they yield a very high pressure of water that comes out. This helps in cleaning the covering more effectively and neatly.

3000 Psi

Pressure washers also have options of hot and cold water usage. Not all have both hot and cold water facility. Hot water cleaning can be used for more sufficient and perfect cleaning in places where dirt and grease are noted and quite stubborn. However, hot water washers are high-priced to the normal washers and so can be bought in case the feature is useful. The quantum of the pressure in which the water shoots from such a washer is called a Psi or the Pounds per square Inch. The higher the Psi, the greater the pressure of the water being shot from the machine. 3000-4000 Psi is quite a good measure, for such washers.

Pressure washers can come in three types, in terms of their weight and portability, namely the movable type, Skid mounted type and the Trailer Rig. The movable washer is a light weighted and easy to carry washer, as the name suggests. They are also more affordable and are used to clean a considerably lesser area than the other types. The Skid mounted or truck mounted type of washers are wholly business-oriented. One of the negative aspects of this type is that the truck could break down quite frequently, resulting in being repaired for about a week. Trailer Rig is impressive to look at and also is aimed to serve for market purpose. Also pulling a trailer is easier and better. A trailer rig also has facilities to store tools, wands, hoses, chemicals etc, if designed properly.

Pressure washers are very useful to one and all and its use in the market and enterprise fronts are without fail worth being listed, as they make life much simpler and cleaner!

Pressure Washers

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Friday, October 7, 2011

Check Out TURBO NOZZLE 3000 PSI 4.5

TURBO NOZZLE 3000 PSI 4.5 Review


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Product Overview

3,600 PSI x 4.5 Turbo Nozzle increases the cleaning efficiency by more the 200 percent over a 25 degree spray nozzle by using a 0 degree rotating tearing action. This nozzle is ideal for hard surface cleaning such as removing graffiti and caked on mud on equipment.

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Thursday, October 6, 2011

Cultured Diamonds - Can A Natural Process Be Duplicated?

Due to the unaffordable prices that real diamonds command, scientists have tirelessly formulated ways on how to double the diamond formation process. The results are known as artificial, lab-created, or "cultured" diamonds. They are composed of the same 3D carbon crystal which occurs in natural diamonds and may essentially have the same properties.

In some cases, cultured diamonds can even have properties superior to real diamonds, such as being purer or harder.

3000 Psi

One of those who first studied the institute of cultured diamonds was Ferdinand Moissan. In the late 19th century, he experimented with subjecting charcoal to temperatures of up to 4000 °C to try to double the formation of a diamond.

Other scientists, such as Ruff, who has allegedly reproduced diamonds, and Sir William Crookes, who laid claims to a victorious fertilization in the early 20th century, published their works which were ultimately studied by Dr. Willard Hershey.

Dr. Hershey pored over their experiments and came up with a cultured diamond of his own, in 1926. This "diamond" is now on display at the McPherson Museum.

Using cultured diamonds for commercial processes

Howard Tracy Hall, during his stint as a Ge employee, embarked on a project that would make use of a reproducible and verifiable procedure in manufacture cultured diamonds. He was already able to heat carbon at up to 3000 °C, with a pressure of half a million psi, but the Second World War broke out and experiments had to be stopped.

After this attempt, many other scientists followed suit, although Ge was still the first to yield cultured diamond crystals with gem-like quality.
Technologies used in the institute of cultured diamonds

Basically, two major procedures are being utilized in the output of cultured diamonds - these are the application of high pressure combined with high heat, and a procedure known as chemical vapor deposition.

The previous is affordable and uses temperatures of up to 1,500 degrees Celsius. The latter process, on the other hand, involves applying gases and carbon to a substrate such as silicon and puts out ordinarily flat cultured diamonds.

Cultured diamonds [http://www.topdiamondsguide.com/category/diamonds-and-pearls-on-your-wedding-day] are especially foremost in the cutting industry. As diamonds are used for the tips of drilling bits because they are the most durable material for the job, it is thus very foremost to institute a technique which could institute cultured diamonds for this purpose.

Cultured Diamonds - Can A Natural Process Be Duplicated?

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Wednesday, October 5, 2011

Great Price Prince Tie-Rod Cylinder - 3000 PSI, 3 1/2in. Bore, 10in. Stroke, 1 3/8in. Shaft

Prince Tie-Rod Cylinder - 3000 PSI, 3 1/2in. Bore, 10in. Stroke, 1 3/8in. Shaft Review


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Product Feature

  • 1/2in. working ports and 1in. pins

Product Overview

Tie-rod construction, double-acting, heavy-duty, high-strength tie rods. With ground and polished chromed piston rod, cast iron piston with O-ring seals and back up washers, polyurethane rod wiper, cast malleable rod clevis, zinc plated pins and clips. The maximum working PSI is 3000 and bursting PSI is 5000. Seal kits are available also. U.S.A. Max. PSI: 3,000, Bore Diameter (in.): 3 1/2, Stroke Length (in.): 10, Closed Pin Center (in.): 20 1/4, Shaft Diameter (in.): 1 3/8

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Tuesday, October 4, 2011

starting A Concrete Cleaning Pressure Washer company

Concrete cleaning can be a lucrative company to start. Here are some tips which will help you do it right.

First and prominent there is one thing you need to understand when you are cleaning concrete and that is that concrete cannot all the time be restored to its virgin state after it has been stained. You can all the time get stains lighter or bleached but completely removing it is very difficult. So when talking to a buyer justify this to them otherwise they will be asking for a job that just can't be done unless the entire concrete slab is ripped up and re-poured. Now with that in mind let's talk about tool that is needed for this type of work. Remember safety is all the time prominent when working with a pressure washer. Some times there are chemicals complex in cleaning some stains. Thus, you should all the time use some type of eye protection. Also, when you are using chemicals you need to wear jeans to safe your legs.

3000 Psi

Chemicals made for concrete are very strong and should not be toyed with. Would a person rather work with dry feet or wet? It is recommended that you get rubber waders or some type of rubber boot. They will keep your feet from getting wet and keep them from getting burned by the 250 degree water. Orange cones are also prominent to have for this job. These help make population visually aware that you are there if you are in a high traffic area or where there are a lot of covenant workers at say a newly constructed house that needs the concrete cleaned. This makes every person around you safe and you are helping preclude accidents. Of procedure you are going to need a Hydro-Twister for this job. You can technically do the job with a wand but it will take a lot more time and water, not to mention you can cause streaking if you are not using even strokes across the slab of concrete. Most of the new car wash trucks come with them now but if you don't have one and or you need a second unit and go to buy one be sure to get the larger of the two. There my be only a 5 inch inequity in outside coverage but it is well worth it when you are trying to save time without cutting corners.

Remember this company is all about time relevant to money. You want to be making at least a a microscopic when doing concrete work at a minimum and aim for 0 to 0 per hour. If you are not achieving this income level then you work too moderately or you did not bid correctly on the accounts you are taking. You need to have a work order form. This form should have an area for time it took to do the job, how many population were on the job, gas to get to the site and mileage to get to the site. If you need a sheet like this the trainers (Jason & Rand) in Scottsdale will be more then happy to fax you one. Call them at 1-602-432-1308.

For your wand you need to use a green tip for steam and a yellow or 15-degree tip for breaking up dirt from an area or pushing the dirty water from an area. You need to have an extra one hundred feet of pressure hose with you on the truck. This extra hose needs to be ready when you are at a job site where there are many covenant workers and space is limited. More then two hundred feet of hose will be required to get to places like the back yards of houses. You will also need two hundred feet of orchad hose. More often than not you will have a job that requires more than 200 gallons of water or multiple jobs on a single day that will use more than 200 gallons of water. You have to remember that hard water is not honestly all that prominent when doing concrete. Soft water is good for doing vehicles to help preclude hard water spots but is not important for concrete. Plus, it is not worth the time to refill your water tank just do concrete. If you have a regular concrete cleaning buyer you may just want to tell them you will use their water and you will decrease their bill by about fifty dollars a month to help cover their water bill.

You need a push broom or hand brooms to help move lose dirt before starting the job. On larger jobs you may want to think a blower, the type that are used for lawns. This will help move more dirt faster. You need a floor squeegee for helping push water out if you are in a carport or other area where water should not stand very long. The half-moon shaped floor squeegee works best. Plus it helps recognize an area that you may need to go over again or chemically treat to get the stain out. A flat-ended shovel is prominent to have if you have concrete that has spilled on the flat slab already or small rocks that have accumulated on the concrete. If you spray the concrete when these microscopic rocks are still on there and you hit them just right; they may catch a around window and cause damage. You could break up the excess concrete with the pressure wand but once again this is wasting time and money that you could be making at your next job. A very prominent item to have is some type of cover plate. This plate will be placed in front of doorways or floorboards when you are using the wands to get around the edges of the concrete. A lot of the competition does not make this additional attempt when doing a job. This is what makes us the best because we care about the work that we do.

The truck should be set up so that you can use a orchad hose and external water furnish should we need one for concrete or other types of jobs. The trucks should come with quick releases in the middle of the tank and the intake tube to the pressure washer. There should also be a valve that is turned so the water is running from the black tank that now holds the external water that comes in. There needs to be a association for a water hose that is on top of the black small tank. The inside of the tank can be fitted with a floater in it so water will not run over when you are not depressing the trigger and letting out water. When cleaning concrete all the time use 3000+ Psi and 250+ degree water. These two elements are key to cleaning concrete effectively and correctly. Now let's talk about chemicals for a minute.

To clean rust there is a stock made by Simonize (that can be ordered from Howard at Aaa Pressure Washers)

http://www.aaapws.com

that is called Concrete Cleaner and Etch. This chemical is an acid and can be very dangerous. To apply this chemical you can spray it with a metal hand held spray canister. If you use a sprayer that has plastic parts to it, the sprayer won't last more then a one or two times before the parts melt and it is useless. The chemical should be mixed 50-50 with water. If you are using it on colored concrete try a test patch first because this stuff bleaches and lightens so it might make it lighter than the primary concrete. For removing oil or grease stains Simonize Sc-260 can be used. It is a granule type chemical that looks like kitty litter. To apply it you need to wet down the area to be treated first then spread a thin layer of it over the spot. Take a brush and agitate it to work it in. Let it set about fifteen to twenty minutes before removing it. Make sure you are very straight through in removing the granules. This next chemical should be used for emergencies if at all possible. This stuff is very thick and should be applied with a roller brush that is an adhesive type roller. Let it set for fifteen to twenty minutes and then remove it being very true not to get it on you or any of the other chemicals for that matter. To design the most productive use of time at a concrete job site one person should be sweeping up loose debris from the work area while the other is setting up the equipment. Be sure all the corners are swept well because this is the area where most lose dirt seems to end up. Remember that when you hydro twist an area that you are naturally lifting the dirt and stains.

You need to go back over the areas afterwards to move the dirt away from the concrete. After you have used the hydro twister on the area you then need to cover all siding up with your cover plate or what ever guard you find works best and go forward to hand wand any issue spots and the outer edges of the concrete. Finally, when working where a lot of contractors are working be sure to be gentle and try to work around them. You never know who they have contacts with. They may refer you to some one else. Concrete is a great "filler" list if it happens to be raining. You can all the time do concrete in any type of weather and it pays very well for what you to do for the job. So remember, concrete work is all the time good to have.

For ideas on marketing it might be a good idea to go to;

http://www.concretewashguys.com

starting A Concrete Cleaning Pressure Washer company

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