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Tensile Deformation Behaviors of Metastable Austenitic Stainless Steels studied by Neutron Diffraction

机译:中子衍射研究亚稳态奥氏体不锈钢的拉伸变形行为

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Tensile deformation behaviors of three austenitic stainless steels, JIS-SUS310S, 304 and 301L, were studied by static tensile tests and in situ neutron diffraction. In the mechanical properties obtained by the static tensile tests, the 304 and 301L steels showed better balance of tensile strength and uniform elongation than the 31 OS one because of TRIP effect. The angular dispersion neutron diffractions with a wavelength of 0.16 or 0.182 nm were performed during stepwise tensile testing by using a neutron diffractometer for residual stress analysis (RESA) at the Japan Atomic Energy Agency. The lattice plane strain, stress-induced martensite volume fraction, dislocation density and so on were estimated by the profile analysis as a function of applied stress. The change in lattice plane spacing for austenite indicated four deformation stages. In the comparison of lattice plane strain among the tested steels, a phase stress caused by the stress-induced martensite seems to overlap the intergranular stress of austenite phase. Judging from the results of profile analysis, the strain partitioning of austenite phase in metastable austenitic steels became larger with increasing of the volume fraction of stress-induced martensite during tensile deformation.
机译:通过静态拉伸试验和原位中子衍射研究了三种奥氏体不锈钢JIS-SUS310S,304和301L的拉伸变形行为。在静态拉伸试验中获得的力学性能中,由于TRIP效应,304和301L钢比31 OS钢表现出更好的拉伸强度和均匀伸长率平衡。在分步拉伸试验中,使用日本原子能机构的残余应力分析用中子衍射仪(RESA),进行了波长为0.16或0.182 nm的角色散中子衍射。通过轮廓分析估计晶格平面应变,应力诱发的马氏体体积分数,位错密度等,作为施加应力的函数。奥氏体晶格平面间距的变化指示出四个变形阶段。在比较测试钢之间的晶格平面应变时,由应力诱导的马氏体引起的相应力似乎与奥氏体相的晶间应力重叠。从轮廓分析的结果来看,亚稳态奥氏体钢中奥氏体相的应变分配随着拉伸变形过程中应力诱发马氏体体积分数的增加而变大。

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