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The fatigue behaviour of metastable (AISI-304) austenitic stainless steel wires

机译:亚稳态(AISI-304)奥氏体不锈钢丝的疲劳行为

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摘要

The fatigue behaviour of AISI 304 stainless steel has been investigated as a function of drawing strain. Both smooth and notched wire samples were subjected to three-point fatigue testing carried out under load control at room temperature.rnThis study has established that approximately 20% of prior deformation-induced martensite is a critical amount which determines the subsequent fatigue response of this steel. In steel with less than 20% of deformation-induced martensite, any martensite formed during the fatigue process will act beneficially by retarding fatigue cracking, raising the fatigue limit and resulting in a ductile fatigue fracture. However, in the presence of more than 20% of deformation-induced martensite, any martensite induced by cyclic strain will encourage more rapid crack initiation which leads to more brittle fracture surface characteristics. A scenario for predicting the fatigue behaviour of cold drawn AISI 304 stainless steel wire has been proposed in this study.
机译:研究了AISI 304不锈钢的疲劳行为与拉伸应变的关系。在室温下,在负载控制下,对光滑的和有缺口的线材样品都进行了三点疲劳测试。rn这项研究已经确定,先前变形引起的马氏体的大约20%是决定该钢随后疲劳响应的临界量。 。在变形诱发马氏体少于20%的钢中,在疲劳过程中形成的任何马氏体都将通过延迟疲劳裂纹,提高疲劳极限并导致延性疲劳断裂而有益地发挥作用。但是,在变形诱发的马氏体含量超过20%的情况下,任何由循环应变诱发的马氏体都会促使裂纹更快地引发,从而导致更脆的断裂表面特性。在这项研究中,提出了一种预测冷拔AISI 304不锈钢丝疲劳行为的方案。

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