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Hydrogen Susceptibility of Pre-strained Type 316L Austenitic Stainless Steels in Aqueous Solutions

机译:在水溶液中预紧张316L奥氏体不锈钢的氢气易感性

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This paper presents the observations made as a result of hydrogen effects in austenitic stainless steels which led to reduction of its original mechanical properties. This paper therefore seeks to understand the mechanisms and effects induced by hydrogen leading to embrittlement. The samples of Type 316L austenitic stainless steel with 20% pre-strain were charged with hydrogen through galvanostastic cathodic loading for 12, 24, 36, and 48 hours respectively, with sample as Cathode and the platinum wire as Anode. Afterwards, they were fractured under tensile test at a slow strain rates. The loss of ductility was evident as observed by the brittle nature of fracture. Small pieces were cut-off near the fracture region and examined through XRD and SEM analysis. The peak widening and slight shifting of the peak positions was observed. The surface cracking was also observed, an indication of surface-induced stresses. The severity of the effects increased with the hydrogen loading time, which is predictive of a real service conditions for austenite steels in aqueous environments.
机译:本文介绍了由于奥氏体不锈钢中的氢气效应而制备的观察结果导致其原始机械性能的降低。因此,本文旨在了解氢气引起的机制和效应导致脆化。 316L奥氏体不锈钢的样品用20%预菌株加入氢气通过氢膨胀的阴极加载12,24,36和48小时,用样品为阴极和铂金属焊丝作为阳极。之后,它们在慢率速率下在拉伸试验下断裂。如裂缝的脆性性质所观察到的延展性的丧失是显而易见的。在骨折区域附近切断小块,并通过XRD和SEM分析检查。观察到峰位置的峰值和略微移位。还观察到表面裂化,表明表面诱导的应力。作用的严重程度随氢气加载时间而增加,这是预测水环境中奥氏体钢的真实服务条件。

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