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首页> 外文期刊>Journal of Physics. Condensed Matter >Evolution of internal stresses in the plain ferritic steel studied by neutron diffraction in situ upon tensile straining
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Evolution of internal stresses in the plain ferritic steel studied by neutron diffraction in situ upon tensile straining

机译:普通铁素体钢内应力在拉伸应变下的原位中子衍射研究

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The present in situ neutron diffraction study aims to investigate the response of selected lattice planes in the polycrystalline material upon tensile loading. For this purpose, the 0.1C-0.4Mn construction steel was selected as a simple model material. The tensile deformation test was performed in the incremental mode in which each individual deformation step was followed by unloading. The neutron diffraction spectra were collected both upon loading and unloading and the behavior of the diffraction profiles in the elastic as well as in the plastic region of the deformation curve was examined in detail. Whereas the behavior of the lattice strains during straining and the evolution of the residual intergranular strains have already been described in other papers, the present work is focused mainly on profile broadening effects measured in the same deformation regime. The estimate of microstrain evolution was done by using the single-line profile analysis method. Comparison of microstrain values in the loaded/unloaded state and in the elastic and plastic regions offers an interesting possibility to estimate the contribution of the type II and type III microstrains.
机译:目前的原位中子衍射研究旨在研究多晶材料中选定晶格面在拉伸载荷下的响应。为此,选择了0.1C-0.4Mn建筑钢作为简单模型材料。拉伸变形试验以增量模式进行,其中每个单独的变形步骤之后进行卸载。在加载和卸载时均收集中子衍射光谱,并详细检查了变形曲线在弹性区域和塑性区域中的衍射分布。尽管在其他论文中已经描述了应变过程中晶格应变的行为以及残余晶间应变的演化,但目前的工作主要集中于在相同变形条件下测得的轮廓展宽效应。微应变演变的估计是通过使用单线轮廓分析方法完成的。比较加载/未加载状态以及弹性和塑性区域中的微应变值,提供了一种有趣的可能性,可以估算II型和III型微应变的贡献。

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