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Sulphide stress cracking of a valve stem of duplex stainless steel

机译:双相不锈钢阀杆的硫化物应力开裂

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摘要

The present paper describes a failure investigation of a double disc valve stem made of duplex stainless steel 329 (UNS S32900). The valve stem which operated in moist H2S environment at 128 degrees C in a heavy water plant had undergone cracking during operation. The microstructure of the stem material showed precipitates of sigma-phase at ferrite/austenite boundaries and elongated oxide inclusions. The formation of sigma-phase had occurred during the manufacturing stage of the stem. The crack propagation was more favourable in the ferrite phase and along the ferrite/austenite boundaries where precipitates of sigma-phase were formed. It was concluded that the valve stem failed by sulphide stress cracking due to hydrogen embrittlement of ferrite phase. Recommendations to avoid such failures are also suggested.
机译:本文介绍了由双相不锈钢329(未S32900)制成的双圆盘阀杆的故障研究。 在重型水厂128摄氏度下在潮湿的H2S环境中操作的阀杆在操作期间经历了破裂。 茎材料的微观结构显示在铁氧体/奥氏体边界和细长的氧化物夹杂物中的Sigma相的沉淀物。 在茎的制造阶段发生了Sigma阶段的形成。 在铁氧体相和沿铁氧体/奥氏体界限更有利的裂缝繁殖在形成Sigma相的沉淀物中。 得出结论是,由于铁氧体相的氢脆,阀杆由于硫化物胁迫开裂而失效。 还提出了避免这种失败的建议。

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