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首页> 外文期刊>Corrosion Engineering, Science and Technology >Characterisation of microstructural damage due to corrosion fatigue in AISI type 316 LN stainless steels with different nitrogen contents
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Characterisation of microstructural damage due to corrosion fatigue in AISI type 316 LN stainless steels with different nitrogen contents

机译:不同氮含量的AISI 316 LN不锈钢由于腐蚀疲劳而引起的微结构损伤的表征

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摘要

Corrosion fatigue (CF) behaviour of AISI type 316 LN stainless steels (SS) with three different nitrogen contents was evaluated in a boiling aqueous solution of 5M NaCl+0.15M Na2SO4+2.5ml l(-1) HCl at a stress ratio of 0.5 and a frequency of 0.1Hz. After the CF tests, the specimens were observed under a field emission gun scanning electron microscope (FEG-SEM) as well as an atomic force microscope (AFM) to understand the deformation mechanism which led to the failure. Slip character could be explained based on the surface deformation features observed using FEG-SEM and AFM. A slip irreversibility relation has been proposed which when applied could explain the CF behaviour of these steels with varying nitrogen contents. Increase in the nitrogen content increased the slip reversibility up to 0.14wt-% nitrogen; however, further increase in nitrogen content had no beneficial effect on the slip reversibility.
机译:在5M NaCl + 0.15M Na2SO4 + 2.5ml l(-1)HCl的沸腾水溶液中以0.5的应力比评估了三种氮含量的AISI 316 LN不锈钢(SS)的腐蚀疲劳(CF)行为频率为0.1Hz。 CF测试后,在场发射枪扫描电子显微镜(FEG-SEM)和原子力显微镜(AFM)下观察样品,以了解导致失效的变形机理。可以根据使用FEG-SEM和AFM观察到的表面变形特征来解释滑移特性。提出了滑移不可逆关系,当应用滑移不可逆关系时,可以解释这些氮含量变化的钢的CF行为。氮含量的增加使滑移可逆性提高到高达0.14wt%的氮;然而,进一步增加氮含量对滑移可逆性没有有益的影响。

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