首页> 外文期刊>International Journal of Pressure Vessels and Piping >Influence of tempering treatments on mechanical properties and hydrogen embrittlement of 13 wt% Cr martensitic stainless steel
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Influence of tempering treatments on mechanical properties and hydrogen embrittlement of 13 wt% Cr martensitic stainless steel

机译:回火处理对13wt%Cr马氏体不锈钢力学性能和氢脆的影响

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摘要

The influence of tempering treatments on mechanical properties and hydrogen embrittlement (HE) of 13 wt% Cr martensitic stainless steel (MSS) have been investigated by Charpy impact tests and slow strain rate tensile (SSRT) tests followed by fracture surface examination. The austenitized and quenched specimens were tempered at 300, 550 and 700 degrees C for 2.5 h. The MSS tempered at 550 degrees C showed brittle intergranular (IG) fracture after impact tests indicating its susceptibility to temper embrittlement. The experimental results showed that the 13 wt% Cr MSS is sensitive to HE. The as-quenched condition showed cracking during hydrogen pre-charging itself. Hydrogen pre-charging duration increased the susceptibility to HE of tempered MSS. The maximum HE susceptibility was observed for specimen tempered at 550 degrees C with a drastic reduction in strength and strain to failure. Tempering at 300 and 550 degrees C showed brittle IG fracture with hydrogen pre-charging in SSRT tests whereas increased IG region with ductile dimples was observed for specimen tempered at 700 degrees C with increase of pre-charging duration. The reason for maximum susceptibility to HE of specimen tempered at 550 degrees C is due to synergistic interaction of hydrogen and impurities segregated at prior austenitic grain boundaries.
机译:通过夏比冲击试验和慢菌速率拉伸(SSRT)试验,研究了回火处理对13wt%CR马氏体不锈钢(MSS)的机械性能和氢气脆性(HE)的影响。将奥氏体化和淬火标本温度为300,550和700℃,持续2.5小时。在冲击试验后,在550℃下回火的MSS在550℃下显示脆性晶间(IG)骨折,表明其对易脆化的敏感性。实验结果表明,13wt%Cr MSS对他敏感。氢气预充电本身期间,淬火条件显示出裂缝。氢气预充电持续时间增加了对钢化MS的易感性。观察到在550℃下的标本温度的标本温度降低强度和菌株失效。在300和550℃下回火显示SSRT试验中的氢气预充电脆性IG骨折,而在700摄氏度以预充电持续时间增加,将试样温度的标本温度的增加的Ig区域。在550℃下回火的标本温度最大敏感性的原因是在先前奥氏体晶状体边界处隔离的氢和杂质的协同相互作用。

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