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Effect of Shear Strain Rate on Microstructure and Properties of Austenitic Steel Processed by Cyclic Forward/Reverse Torsion

机译:剪切应变速率对循环正/反向扭转奥氏体钢组织和性能的影响

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摘要

In this work, commercial AISI 304 stainless steel rods were subjected to cyclic forward/reverse torsion (CFRT) treatments at low-speed and high-speed torsion at room temperature. Microstructures in the core and surface layers of the CFRT-treated samples were systematically characterized. Results show that the CFRT treatment can introduce martensite phase on the surface of the rods via strain-induced martensitic transformation. High-speed twisting is more effective in inducing martensite in the surface layer compared to low-speed twisting. During the stretching process, the overall strain-hardening behavior of the gradient material is related to the content of its gradient defects. Higher gradient martensite content results in a higher surface hardness of the material, but less overall tensile properties. The effect of twisting speed on torsion behavior and the strain-hardening mechanisms in tensile of the gradient structured steels was also addressed.
机译:在这项工作中,对商用AISI 304不锈钢棒在室温下进行了低速和高速扭转的循环正向/反向扭转(CFRT)处理。系统地表征了CFRT处理过的样品的核心和表层的微观结构。结果表明,CFRT处理可以通过应变诱发的马氏体相变将马氏体相引入棒材表面。与低速扭曲相比,高速扭曲在表面层中诱发马氏体更有效。在拉伸过程中,梯度材料的整体应变硬化行为与其梯度缺陷的含量有关。较高的梯度马氏体含量导致材料的表面硬度较高,但总体拉伸性能较低。还讨论了扭曲速度对梯度行为的扭转行为和应变硬化机制的影响。

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