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Failure analysis of a slot-welded impeller of recycle hydrogen centrifugal compressor

机译:循环氢离心压缩机缝焊叶轮的失效分析

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摘要

A recently failed slot-welded impeller of recycle hydrogen centrifugal compressor has been investigated by material tests, theoretical calculation and numerical simulation, which focus on the environmental susceptibility of material, the corrosivity of environment and the characteristic components of the stress state. It is found that the matrix of FV520B precipitated hardening stainless steel used in the failed impeller did not match the optimal combination of strength, toughness and corrosion resistance, and large volumes of 5 ferrite with banded appearance further increased the environmental susceptibility of material; the electrochemical corrosion environment came into being due to the presence of hydrogen sulfide and condensed water vapor in the recycle medium; the high hoop stress in the failed impeller was mainly caused by the shrink fit during manufacturing and the centrifugal force during operation. Based on these results, the failure of this slot-welded impeller can be mainly attributed to sulfide stress cracking (SSC), and hydrogen induced cracking (HIC) is found to accelerate SSC by breaking the continuity of material and hence increasing local stress. Additionally, the prevention and mitigation measures against failure have been discussed, which can provide some insight into improving the reliability of centrifugal compressor impeller.
机译:通过材料试验,理论计算和数值模拟,研究了一种最近失效的循环氢离心压缩机的缝焊叶轮,其重点是材料的环境敏感性,环境的腐蚀性和应力状态的特征分量。结果发现,故障叶轮中使用的FV520B沉淀硬化不锈钢基体与强度,韧性和耐蚀性的最佳组合不匹配,大量的带状外观的5铁氧体进一步提高了材料的环境敏感性。循环介质中存在硫化氢和冷凝水蒸气,从而形成电化学腐蚀环境。叶轮故障时的高环向应力主要是由制造过程中的收缩配合和操作过程中的离心力引起的。根据这些结果,这种缝焊叶轮的故障主要归因于硫化物应力开裂(SSC),并且发现氢致开裂(HIC)通过破坏材料的连续性并因此增加局部应力来加速SSC。此外,还讨论了针对故障的预防和缓解措施,这可以为提高离心式压缩机叶轮的可靠性提供一些见识。

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