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应变速率对奥氏体不锈钢AISI 321中应变诱发马氏体转变及巴克豪森噪声发射的影响

Influence of Strain Rate on the Strain-Induced Martensite Transformation in Austenitic Steel AISI 321 and Barkhausen Noise Emission.

作者信息

Čilliková Mária, Ganev Nikolaj, Moravec Ján, Mičietová Anna, Neslušan Miroslav, Minárik Peter

机构信息

Faculty of Mechanical Engineering, University of Žilina, Univerzitná 1, 010 26 Žilina, Slovakia.

Faculty of Nuclear Sciences and Physical Engineering, Czech Technical University in Prague, Trojanova 13, 12 000 Prague, Czech Republic.

出版信息

Materials (Basel). 2025 Aug 7;18(15):3714. doi: 10.3390/ma18153714.

Abstract

This study investigates the evolution of strain-induced martensite (SIM) and its effect on magnetic Barkhausen noise (MBN) in AISI 321 austenitic stainless steel subjected to uniaxial tensile testing. Using X-ray diffraction and the Barkhausen noise technique, the formation and distribution of SIM were analysed as functions of plastic strain and strain rate. The results show that MBN is primarily governed by plastic deformation and strain rate rather than residual stress. The martensite fraction increases from 10% at low strains to 42.5% at high strains; however, accelerated strain rates significantly reduce martensite formation to approximately 25%. The increase in martensite density enhances the magnetic exchange interactions among neighbouring islands, resulting in stronger and more numerous MBN pulses. The anisotropy of MBN is also influenced by the initial crystallographic texture of the austenite. These findings highlight the strong correlation between MBN and SIM evolution, establishing MBN as a sensitive, non-destructive tool for assessing martensitic transformation and optimising deformation parameters in austenitic steels.

摘要

本研究调查了在进行单轴拉伸试验的AISI 321奥氏体不锈钢中,应变诱发马氏体(SIM)的演变及其对磁巴克豪森噪声(MBN)的影响。利用X射线衍射和巴克豪森噪声技术,分析了SIM的形成和分布与塑性应变及应变速率的关系。结果表明,MBN主要受塑性变形和应变速率的控制,而非残余应力。马氏体分数从低应变时的10%增加到高应变时的42.5%;然而,加速的应变速率会显著减少马氏体的形成,降至约25%。马氏体密度的增加增强了相邻岛状组织之间的磁交换相互作用,导致MBN脉冲更强且数量更多。MBN的各向异性也受奥氏体初始晶体织构的影响。这些发现突出了MBN与SIM演变之间的强相关性,确立了MBN作为评估奥氏体钢中马氏体转变及优化变形参数的一种灵敏的无损工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7375/12348319/64e64708007d/materials-18-03714-g001.jpg

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