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首页> 外文期刊>Advanced Experimental Mechanics >Changes of Dislocation Density and Dislocation Arrangement during Tensile Deformation in Lath Martensitic Steels
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Changes of Dislocation Density and Dislocation Arrangement during Tensile Deformation in Lath Martensitic Steels

机译:板条马氏体钢拉伸变形过程中位错密度和位错排列的变化

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摘要

To understand high work hardening behavior in lath martensitic steels, in situ neutron diffraction studies during tensile deformation for 22SiMn2TiB steel (contained 0.22 mass% of carbon) and carbon–free Fe–18Ni alloy were performed using a high–resolution and high–intensity time–of–flight neutron diffraction. Profile analyses were conducted using the Convolutional Multiple Whole Profile (CMWP) procedure and the Williamson–Hall (W–H) method. As results, the dislocation densities as high as 10~(15) m~(–2) in the undeformed states of both steels were observed hardly to change or slightly increase by the CMWP procedure. The reliability of the dislocation density obtained by the W–H method was low, because the whole profile was not considered for the analysis. In the former method, the values of parameter M related to dislocation arrangement were found to decrease rapidly in both steels at the beginning of plastic deformation, regardless of the solution of carbon atom. Hence, the high work hardening in the lath martensitic steel was considered by taking into account not only the increase of the dislocation density but also the change in dislocation arrangement.
机译:为了了解板条马氏体钢的高加工硬化行为,我们使用高分辨率和高倍率对22SiMn2TiB钢(含0.22质量%的碳)和无碳的Fe-18Ni合金进行拉伸变形过程中的原位中子衍射研究。 -强度飞行时间-中子衍射。使用卷积多重整体轮廓(CMWP)程序和Williamson-Hall(W-H)方法进行轮廓分析。结果,在两种钢的未变形状态下,位错密度高达10〜(15)m〜(–2),通过CMWP程序几乎观察不到变化或略有增加。 W-H方法获得的位错密度的可靠性很低,因为没有考虑整个剖面。在前一种方法中,发现与位错排列有关的参数 M的值在塑性变形开始时在两种钢中均迅速降低,而与碳原子的溶液无关。因此,不仅考虑了位错密度的增加,还考虑了位错排列的变化,从而考虑了板条马氏体钢的高加工硬化。

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