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Effect of Temperature on Stress-Strain Curve in SUS316L Metastable Austenitic Stainless Steel Studied by In Situ Neutron Diffraction Experiments

机译:用原位中子衍射实验研究了温度对应力 - 应变曲线的影响奥氏体不锈钢

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In situ neutron diffraction experiments during tensile deformation were conducted to investigate the effect of temperature on the tensile properties of JIS-SUS316L steel from the phase stresses of austenite (γ) and ferrite (α) phases and the kinetics of deformation-induced martensitic transformation (DIMT). The 0.2% proof stress and tensile strength increased with decreasing deformation temperature, and the maximum uniform elongation was reached at 223 K. The temperature of the maximum uniform elongation in metastable austenitic stainless steels is related to the mechanical stability of γ and showed good correlation with the Ni equivalent. The estimated phase stress of γ at a given true strain increased with decreasing temperature; however, the temperature dependence of the twinning-induced plasticity effect of the γ phase was small. The phase stress of α was almost independent of temperature between 138 K and 223 K. The effect of temperature on the mechanical properties of the SUS316L steel was largely affected by the transformation-induced plasticity effect, which was related to the kinetics of DIMT according to in situ neutron diffraction experiments.
机译:在原位中子衍射实验期间进行拉伸变形,研究了温度对来自奥氏体(γ)和铁氧体(α)阶段的相应力和变形诱导的马氏体转化的动力学的JIS-SUS316L钢的拉伸性能( DIMT)。随着变形温度的降低,0.2%的证据应力和拉伸强度增加,并且在223k下达到最大均匀伸长率。亚稳奥氏体不锈钢中的最大均匀伸长率的温度与γ的机械稳定性有关并显示出良好的相关性与ni等价物。在给定真菌γ的估计相应力随温度降低而增加;然而,γ相的孪晶诱导的可塑性效应的温度依赖性小。 α的相应力几乎与138 k和223k之间的温度无关。温度对SUS316L钢的力学性能的影响主要受转化诱导的可塑性效应的影响,这与根据DIMT的动力学有关在原位中子衍射实验。

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