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  调压表

这部分提供由香港特气提供的各种规格的特气调压表。大多数气体公司对于同一制造商产品,限制您选择唯一的一种样式的调压表。香港专业气体为您提供灵活性的选择系列, 从欧洲和传统美国样式系列,满足您的具体要求。

这里被选择的调压器产品全部按高的标准设计和制造,安全可靠质量好。每一种设备都经过严密审查,以达到保险效果。我们的高纯度和腐蚀抗性调压器是一台检测氦气泄漏的谱仪。可以根据特定的方法证明氦气的泄漏率。

如何选择调压表

Do you need a line or cylinder regulator?
If a cylinder regulator is your choice, do you need a single-stage or two-stage? Remember, a two-stage regulator is recommended for use with high pressure cylinders where constant delivery pressure is needed.

Do you require high or low delivery pressures?
We have regulators specifically designed for 2500, 3500, or 6000 PSIG outlet pressures. We also have a regulator specially designed for low delivery pressure of 0.5 PSIG. Inlet pressure and delivery range must be specified.

Does the gas you use require a special regulator?
Corrosive gases need regulators with corrosion-resistant internal parts. High purity gases need regulators that are diffusion-resistant.

We make regulators that are specially designed for use with Acetylene, Nitrous Oxide and Carbon Dioxide, Hydrogen Chloride, Electronic Gases, Medical Gases, and Blood Gas Mixtures. These regulators are built to limit delivery pressure, to minimize leakage, or to handle low temperatures.

Mechanisum of Pressure Regulators
Single-stage Regulators


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Figure 1 Figure 2

Gas enters the inlet (hight pressure) chamber and its pressure is indicated on the inlet pressure gauge. When the pressure adjusting knob is turned counterclockwise and completely backed out to the stop (Figure 1), a valve and seat assembly located between the inlet chamber and the delivery (low pressure) chamber prevents gas from moving any further. A wire screen filter, located at the inlet to the valve and seat assembly, removes particulate matter from the gas stream to help protect the seat area.

Turning the pressure adjusting knob clockwise (Figure 2) causes the adjusting screw to push against a spring button which compresses the pressure adjusting spring. The force of the compressed spring, in turn, causes the diaphragm to flex and push against the poppet. This opens the regulator allowing gas to flow from the inlet chamber to the delivery chamber of the regulator.

Gas entering the delivery pressure chamber begins to build pressure and creates a counter-force (counter to the pressure adjusting spring) on the diaphragm. This pressure is indicated on the delivery pressure gauge attached to the delivery chamber. When pressure builds sufficiently to counteract the spring tension, it pushes the diaphragm away from the poppet allowing the regulator to close.

In this manner, pressure in the delivery chamber is controlled or regulated by the amount of spring tension placed on the diaphragm, and is selectable by turning the pressure adjusting knob until desired pressure is indicated on the delivery pressure gauge.

When gas from the delivery pressure chamber is sent to the end process, the resulting decrease in gas volumen in the delivery chamber causes a pressure reduction in the chamber. When this occurs, the spring tension again causes the diaphragm to push the poppet open, allowing additional gas to enter the delivery chamber.

Two-stage Regulators

These regulators incorporated all components of a single-stage regulator. In addition, however, they also contain a second pressure adjusting spring; diaphragm; and valve and sead assembly. The first stage is not user adjustable with the pressure adjusting spring "precompressed" at the factory. This allows the first stage to feed pressure at approximately 250 to 300 psig to the second (adjustable) stage. The second stage then performs in a manner similar to that of a single-stage regulator, except that the inlet pressure to the second stage is relatively constant.

Because of the two-step pressure reduction, final delivery pressure of a two-stage regulator shows little effect from changes in cylinder pressure.

 

e-Catalog

 


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HSG-SL226 HSG-DL236 HSG-SL250
Labline single stage high purity regulator - Noncorrosive service Labline dual stage high purity regulaor - Noncorrosive service Labline high purity high outlet delivery pressure regulator


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HSG-DL230/0,1 HSG-SL20 HSG-TDL202
Labline high purity low outlet delivery pressure regulator Labline high purity line regulator - Noncorrosive service Labline semi-automatic switch over manifold - Noncorrosive services


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HSG-HPS280 HSG-HPT270 HSG-SGS500
Chrome-plated single stage high purity regulator - Noncorrosive service Chrome-plated dual stage high purity regulator - Noncorrosive service Stainless steel single stage high purity regulator - Corrosive service


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HSG-SGS510 HSG-SGT500 HSG-HPS4
Stainless steel single stage high purity regulator - Corrosive service Stainless steel dual stage high purity regulator - Corrosive service High inlet, high delivery pressure piston regulator - Noncorrosive service


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HSG-LB150 HSG-LB165 HSG-PR150
Chrome-plated high purity lecture bottle regulator - Noncorrosive services Stainless steel high purity lecture bottle regulator - Corrosive services Calibration gas regulator for non-refillable cylinder - Noncorrosive services


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HSG-PR160    
Calibration gas regulator for non-refillable cylinder - Noncorrosive services