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首页> 外文期刊>Journal of Materials Engineering and Performance >Cracking of a Cobalt-Based Hardfacing of a Gate Valve Disk in a Desalination Power Plant
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Cracking of a Cobalt-Based Hardfacing of a Gate Valve Disk in a Desalination Power Plant

机译:海水淡化厂闸阀盘钴基表面堆焊层的开裂

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摘要

Cobalt-based alloys of the Stellite family are used as hardfacing for sealing surfaces of valves operating in desalination and power plants because of their excellent low friction and anti-galling properties in high-load sliding contact under the prevailing conditions. However, insufficient control of pressure and temperature during operation can degrade the integrity of the hardfaced material thus leading to its premature failure. This article presents a failure investigation carried out on the disk of a main stop gate valve that was used in a desalination plant. The disk was manufactured from X20 as a substrate material and a cobalt-based alloy for hardfacing. The cobalt-based hardfacing suffered from many surface and subsurface cracks that degraded its integrity. It was concluded that high-pressure steam flowing against the disk had tilted it and, thus, disturbed the alignment between the surfaces of the disk and the seat, leading to wear and large frictional heat that resulted in the degradation of the microstructure of the hardfacing layer and formation of the observed cracks.
机译:司太立(Stellite)系列钴基合金由于在当前条件下的高负荷滑动接触中具有出色的低摩擦和抗磨损性能,因此被用作海水淡化和发电厂中阀门密封表面的表面硬化处理。但是,在操作过程中对压力和温度的控制不足会降低表面硬化材料的完整性,从而导致其过早失效。本文介绍了对海水淡化厂使用的主截止阀的阀瓣进行的故障调查。该盘由X20作为基材和钴基合金制成,用于表面硬化。钴基堆焊层遭受许多表面和亚表面裂纹,从而降低了其完整性。结论是,高压蒸汽流向磁盘,使磁盘倾斜,从而干扰了磁盘表面和阀座表面之间的对准,从而导致磨损和大的摩擦热,从而导致堆焊层的微观结构退化层和观察到的裂纹的形成。

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