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Effect of Phase Transformation on Damage-induced Magnetization of 304 Austenitic Stainless Steel

机译:相变对304奥氏体不锈钢抗磁化强度的影响

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Effect of phase transformation on damage-induced magnetization of 304 austenitic stainless steel is experimentally studied in this paper. Firstly, relationship between plastic deformation and the deformation-induced phase transformation of 304 austenitic steel is investigated. Then, compositions and distributions of phases in the 304 austenitic steel specimens are observed by an X-ray diffractometer and a magnetic force microscopy, respectively. Finally, relationship between the damage-induced magnetization and the deformation-induced ferromagnetic phase for the 304 austenitic steel is summarized. It is found that 1) the ferromagnetic α'-martensite phase increases systematically with the plastic deformation and distributes mainly at the in-grain slip lines. 2) the intensity of damage-induced magnetization depends linearly on the amount of ferromagnetic phase for 304 austenitic steel. It is also clarified that the reason why the damage-induced magnetization increases with plastic strain in the 304 steel is due to the increasing amount of ferromagnetic phase caused by plastic deformation.
机译:本文实验研究了相变对304奥氏体不锈钢损伤磁化的影响。首先,研究了塑性变形与304奥氏体钢的变形诱导的相变之间的关系。然后,通过X射线衍射仪和磁力显微镜观察304奥氏体钢样品中的组合物和分布。最后,总结了损伤引起的磁化和304奥氏体钢的变形诱导的铁磁相之间的关系。结果发现,1)铁磁性α'-马氏体相随着塑性变形而系统地增加,主要分布在晶粒上滑动线上。 2)损伤诱导的磁化强度在线性地取决于304奥氏体钢的铁磁相的量。还阐明了为什么304钢中塑性应变的损伤磁化量增加的原因是由于塑性变形引起的铁磁相增加。

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