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Effect of strain rate on stress-strain behavior of alloy 309 and 304L austenitic stainless steel

机译:应变速率对309和304L奥氏体不锈钢合金应力应变行为的影响

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摘要

The effect of strain rate on stress-strain behavior of austenitic stainless steel 309 and 304L was investigated. Tensile tests were conducted at room temperature at strain rates ranging from 1.25×10−4s−1 to 400 s−1. The evolution of volume fraction martensite that formed during plastic deformation was measured with X-ray diffraction and characterized with light microscopy. Alloy 304L was found to transform readily with strain, with martensite nucleating on slip bands and at slip band intersections. Alloy 309 did not exhibit strain-induced transformation. Variations in ductility and strength with strain rate are explained in terms of the competition between hardening, from the martensitic transformation and a positive strain rate sensitivity, and softening due to deformational heating. Existing models used to predict the increase in volume fraction martensite with strain were examined and modified to fit the experimental data of this study as well as recent data for alloys 304 and 301LN obtained from the literature.
机译:研究了应变速率对奥氏体不锈钢309和304L应力-应变行为的影响。在室温下以1.25×10-4 s-1 至400s-1 的应变速率进行拉伸试验。用X射线衍射测量塑性变形过程中形成的体积分数马氏体的演变,并用光学显微镜表征。发现304L合金容易随应变转变,马氏体在滑带和滑带相交处成核。合金309没有表现出应变诱导的转变。延展性和强度随应变率的变化是根据马氏体相变引起的硬化和正应变率敏感性与由于变形加热而软化之间的竞争来解释的。检查并修改了用于预测马氏体体积分数随应变增加的现有模型,以适应本研究的实验数据以及从文献中获得的304和301LN合金的最新数据。

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