Monday, March 30, 2015

Solenoid Directional Control Valve is Made of Durable Materials



Solenoid directional control valve is used in the hydraulics industry. These types of valves use electromechanical solenoids for sliding of the spool. These valves are used extensively because they can be simply controlled by electric power. To generate large forces the valve needs large amounts of electrical power.  The valves heat up over a period of time and hence pose a threat to extended use. The duty cycles can be limited to prevent heat generation. Their direct acting can only be used for low actuating forces.

Low power solenoid valves operate small pilots that start the flow of liquid that drives a larger hydraulic valve that uses more power. The 3 ported 2 position valve is a pilot valve also called bi-stable pneumatic valve. It can retain its position during loss of power.

Directional control valves can be classified according to number of ports, number of positions, actuating methods and type of spool. The number of entries and exits through which fluid flows in and out of the valve establishes it as a two way or a three way or a four way valve.

Number of positions refers to the normal and working positions which a valve spool can take. You can have a two position, three position and proportional valves. There are four basic actuating methods for these valves: manual, mechanical, hydraulic and solenoid. Simple levers and paddles are used in manual valves. Springs are used to recover the valve position.  A lever or external pneumatic or hydraulic signal is used to return the spool. In mechanical valves, cams, wheels, rollers are used to apply force. These are not as durable and have a limited life. Hydraulic valves are used for higher pressures. They are made of durable materials.

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Monday, March 2, 2015

Solenoid Directional Control Valve for Single and Double Acting Cylinders


Solenoid directional control valve actuates single or double acting cylinders. The valves can be used with most hydraulic pumps.  The poppet-style pumps are designed for zero-leakage and maintain the desired pressure without generating heat.
The 3 and 4 way directional control valves can be mounted to international standard valve sub-plate D03, NG6, and ISO 03.  The D03 valves are available in four styles:
·         2 Position, 4 way 
·         3 Position, 4 way
·         2 Position, 3 way
·         2 Position, double 3-way
They are best for applications that require pressure up to 500 psi (340 bar). They integrate well with IDI air-driven liquid pumps. The valves feature O ring seals and backup rings made of polyurethane PTFE.  You can also ask for Viton or EPR instead of polyurethane. Hardened and ground steel has been used in making the poppets and seats. The body is made of aluminum which is non-ferrous metal, thus making it very durable.  The valve is resistant to cold and heat. It is ideal for temperatures ranging from -65° to 225°F.
The device can be ordered for use with four voltage, 12VDC, 24VDC, 115VAC and 230VAC. The light weight valve is an ideal choice for those who want the best quality at a low price. You can order the valve with or without solenoids, connectors and bolt kits. You can also get a pressure port check valve with the order. The construction of the directional poppet style control valves allow for mounting multiple valves on standard 2.0-inch (50.8 mm) centers.
For a reliable solenoid directional control valve click here: http://www.interfacedevices.com/ 

Wednesday, December 10, 2014

Gas Boosters Are Easy To Operate Under License



Gas boosters help airplanes give better performance.  The aircraft is able to fly at higher altitude and for a longer duration. If you own private jets, or run a company that rents charter planes for business travel, paying attention to regular maintenance prevents the need for repairs.

Keeping all gas levels updated lets you have the peace of mind. The boosters that carry the gas from the ground to the aircraft are transported on carts. These machines are easy to operate, but not without a license. Only authorized and licensed personnel are able to work with boosters.  The gas in the booster is highly compressed and when operated by an amateur can result in an explosion causing serious injury, loss of limbs and death. 

The boosters let you load nitrogen cylinders when the level becomes low. Or you can use it to fill oxygen, natural gas, methane, hydrogen and other industrial gases. The machines are lightweight and portable. The 22 lbs machine can be mounted both vertically and horizontally. The easy to maintain boosters are used in a variety of industries. The most notable application has been the NASA wind tunnel simulator.  Jet Pack International and Go Fast Sports pilots use it to fly at higher altitudes. Now you can also create most advanced personal flying machines. 

Putting gas in your aircraft has never been so easy. The booster takes very little time to refill onboard oxygen tanks in the airplane. This way you save on the cost of labor and have the plane ready for takeoff fast. Buying a booster is better than going around and asking a charter company to lend you theirs. There are companies that can rent you a gas booster, but it is always good to own one, so you do not have to rely on anyone for your safety. Gas boosters can be used for air, nitrogen and most inert industrial gasses.  Buy gas boosters here: http://www.interfacedevices.com/

Sunday, October 26, 2014

How Gas Boosters add value to a process



For many people, the only sources of motive power in engineering systems are either electricity or fossil fuel burning engines. In many cases, this is true because these two sources are able to generate a very high ratio of efficiency for a given input.

However, as many machine tool specialists know, these two sources of power are often not appropriate for delicate machine tool fabrication process. Similarly, a number of processes demand progressive increase or decrease in pressure. These two are not the only scenarios where alternate sources of power are essential to the high performance of the system.

In these scenarios, where electricity or foist fuel energy could not be used, air pressure is the only viable source left for the process. In addition, air pressure is also considered an appropriate source for delicate machine tools that could sustain damage when connected to other power sources.

Compressors that are designed to compress gases and decrease the area could generate air pressure. This increases the pressure of the gas at the output. However, in the case of air operated tools, the compressors are not a recommended source of motive power. The tools require pressure at various levels. A compressor has limited capability of providing variable pressure. This is the job for a gas pressure booster. The component could generate and deliver a specific volume of gas pressure by simply varying the intake air pressure.

A very different area where gas pressure is essential for engineering, fabrication and manufacturing processes is pneumatic power delivery. Many clamps and similar gripping apparatuses could not use hydraulic power because of various reasons such as danger of leaked fluids or contamination issues. In such cases, high pressure air is used to power the clamps and other pneumatically powered systems.

Welding is a very familiar part of many engineering processes. Infect, it is one of the most popular and wide spread technique of joining metal parts. Gas pressure is essential in several high value welding processes. In industrial processes utilizing large scale fabrication techniques, it is important to understand the role of welding in the overall process.

Welding is often the later stages of the fabrication. In many cases, this is the last stage of the process where parts fabricated in earlier stages are joined together to come up with the final product.  In order to accomplish this task, welding stations are located very far down the road. This means that the gasses required for welding must travel a long distance to reach their destination. In the absence of any gas pressure boosters, the gas pressure at welding stations would be inadequate for any practical purposes. This is why gas pressure boosters are an integral component of many industrial welding processes.

For all these purposes, has pressure boosters are ideal equipment. These devices are able to generate variable pressure that could be notched up or down depending upon the requirement of the process. This distinguishes these devices for air compressors that could only generate a limited range of pressure.