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High-temperature, high-pressure desuperheating and pressure-reducing device
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  • High-temperature, high-pressure desuperheating and pressure-reducing device

High-temperature, high-pressure desuperheating and pressure-reducing device

In the desuperheating and pressure-reducing device, the high-temperature and high-pressure pressure-reducing valve uses an integral casting or forging, with a single-seat structure; it has a large adjustment range, no vibration, low noise, and the sealing surface is hard-faced with cemented carbide to resist erosion. The adjustment characteristics are equal percentage and linear. The leakage rate is Class III.


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Product Description

High-temperature, high-pressure desuperheating and pressure-reducing device

Structural characteristics

The high-temperature, high-pressure pressure-reducing valve in the desuperheating and pressure-reducing device uses an integral casting or forging, single-seat structure; it has a large adjustment range, no vibration, low noise, and the sealing surface is hard-faced with cemented carbide to resist erosion. The adjustment characteristics are equal percentage and linear. The leakage level is Class Ⅲ.

The desuperheating water regulating valve adopts a Z-type structure regulating valve, and the valve body is made of forgings. Multi-stage throttling, high adjustment accuracy, strong versatility, can be used for various pressure differences, various flow capacity desuperheating water flow regulation selection; each throttling part of the valve seat and valve disc is made into a reasonable linear shape to prevent cavitation and noise; the sealing gasket between the valve seats uses flexible graphite, which has good compressibility and sealing performance, and the leakage level meets the ANSI16.106 standard, and the leakage level is Class IV.

A protective pipe is installed inside the main pipeline of the desuperheating and pressure-reducing device, mainly considering the atomization effect of the desuperheating water when the steam load changes, while protecting the outer pipe and preventing thermal shock, extending the service life of the equipment.

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