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Introduction to the German GSR D4323 series gas valves

$381.08

The German GSR gas valve is a new type of safety accessory for gas pipeline projects. It is used to cut off, connect, and regulate gas in pipelines, featuring excellent control characteristics and sealing performance. It is suitable for pipelines carrying various gas media, including city gas, liquefied petroleum gas, natural gas, and oxygen.


Brand

GSR/Germany

Application Areas

Chemical, Petroleum, Mining, Road/Rail/Marine, Comprehensive

Applications of GSR Gas Valves (Germany)

GSR Electric Valves, GSR Solenoid Valves, GSR Pneumatic Control Valves, GSR Regulating Valves, GSR Pneumatic Regulating Valves, GSR Three-Way Electric Regulating Valves, GSR Self-Operated Regulating Valves, GSR Pneumatic Valves, GSR Electric Valves, GSR Controllers

Gas valves have a wide range of applications and are diverse in type, with various classification methods. They can be broadly divided into two categories:

Category 1: Automatic Valves: Valves that operate automatically based on the gas's own power.

Oxygen Quick-Shut-Off Valves

Oxygen Quick-Shut-Off Valves

Such as check valves, regulating valves, pressure reducing valves, etc.

Category 2: Actuated Valves: Valves operated manually, electrically, or pneumatically. Such as gate valves, globe valves, throttle valves, butterfly valves, ball valves, plug valves, etc.

In addition, valves can be classified in the following ways:

Based on structural characteristics, according to the direction of movement of the closing element relative to the valve seat:

1. Gate valve: The closing element moves along the center of the valve seat.

2. Gate valve: The closing element moves perpendicular to the center of the valve seat.

3. Plug and ball valves: The closing element is a plunger or ball that rotates around its own centerline.

4. Swing valve: The closing element rotates around an axis outside the valve seat.

5. Disc valve: The closing element is a disc that rotates around an axis inside the valve seat.

6. Slide valve: The closing element slides perpendicular to the flow path.

Based on structural types, the main types include:

Plug valves, gate valves, globe valves, and ball valves—used to open or close the flow of gas in pipelines. Check valves (including foot valves)—used to automatically prevent backflow of gas in pipelines.

Throttle valves—used to regulate the flow rate of gas in pipelines.

Pressure reducing valves—used to automatically reduce the gas pressure in pipelines and equipment. This system reduces pressure by creating resistance as gas passes through the gap in the valve disc, resulting in pressure loss.

According to their application, valves can be categorized as follows:

1. On/off valves: Used to connect or disconnect gas in pipelines, such as gate valves, ball valves, and butterfly valves.

2. Check valves: Used to prevent backflow of gas, such as check valves.

3. Regulating valves: Used to regulate the pressure and flow rate of gas, such as regulating valves and pressure reducing valves.

4. Distributing valves: Used to change the direction of gas flow and distribute gas, such as three-way stopcocks, distribution valves, and spool valves.

According to the drive method, based on different 022.001013 D2206/0500/7013-DT 0-20bar D valve

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D2201/0501/7005 valve

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D4323 0802 702 DC24V 1/2" Solenoid Valve

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German GSR Gas Valve

German GSR 27 Series Gas Emergency Shut-off Valve

Size Range: Flange DN15~DN300

Pressure Range: 0-16bar

Fluid Properties: Various high, medium, and low pressure gases

Fluid Temperature: -10~+80℃

Ambient Temperature: Maximum +35℃

Valve Body Material: Cast iron, cast steel, stainless steel

Sealing Material: NBR, FKM, EPDM (optional)

Standard Voltage: AC: 24/42/110/230V 50/60HZ

DC: 24/110/205V Drive methods can be divided into:

1. Manual: Driven by human power using handwheels, handles, levers, or sprockets. When transmitting larger torques, a worm gear or gear reduction device is installed.

2. Electric: Driven by a motor or other electrical device.

3. Pneumatic: Driven by compressed air.

According to the method of connection with the pipeline, valves can be classified as follows:

1. Flanged valves: Valves with flanges on the valve body are connected to the pipeline by flanges.

2. Threaded valves: Valves with internal or external threads on the valve body are connected to the pipeline by threads.

3. Welded valves: Valves with welded joints on the valve body are connected to the pipeline by welding.

4. Clamped valves: Valves with clamps on the valve body are connected to the pipeline by clamps.

5. Compression fitting valves: Valves connected to the pipeline using compression fittings.

The German GSR gas valve is a new type of safety accessory for gas pipeline engineering. It is used to cut off, connect, and regulate gas in the pipeline, and has good control characteristics and sealing performance. It is suitable for pipelines carrying various gas media such as city gas, liquefied petroleum gas, natural gas, and oxygen.

German GSR Gas Valve Applications (Edited) Gas valves are widely used in urban gas supply networks for various gas media such as coal gas, liquefied petroleum gas, natural gas, and oxygen. Drive mechanisms include manual, worm gear, electric, pneumatic, hydraulic, and electro-hydraulic actuators, enabling remote control and automated operation.

The company primarily deals in European and American brands and can source brands from any European country. Key German brands include: BURKERT, DEMAG, HAWE, REXROTH, HYDAC, PILZ relays, FESTO, IFM sensors, E+H, HEIDENHAIN, P+F sensors, SICK, TURCK, HIRSCHMANN industrial switches, Henschler, MURR, SCHMERSAL, SAMSON, and EPRO (a subsidiary of Emerson). MOOG (USA), ASCO (USA), MAC (USA), NUMATICS (USA), PARKER (USA), VICKERS (USA), ROSS (USA)

Norgren (UK)

OMAL (Italy), ATOS (Italy), CAMOZZI (Italy), UNIVER (Italy), Camozzi (Italy)

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