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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >X-Ray Diffraction Study on the Strain Anisotropy and Dislocation Structure of Deformed Lath Martensite
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X-Ray Diffraction Study on the Strain Anisotropy and Dislocation Structure of Deformed Lath Martensite

机译:变形板条马氏体应变各向异性和位错结构的X射线衍射研究

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18Ni (300) maraging steel possessing lath martensite structure was deformed by four passes of equal-channel angular pressing (ECAP) at ambient temperature. Line profile analysis (LPA) of X-ray diffraction (XRD) patterns identified strong strain anisotropy and remarkable increases in the relative fraction of screw dislocations after ECAP. The strain anisotropy was reasonably accounted for by the anisotropy of elastic constants. Domination of screw dislocations in the deformed structure was attributed to the preferred annihilation of edge dislocations in the early stages of deformation along with the difficulties for annihilation of screw dislocations by cross slipping. Cobalt addition was mainly assumed to make cross slipping difficult by reducing stacking-fault energy and favoring short-range ordering.
机译:具有板条马氏体结构的18Ni(300)马氏体时效钢在环境温度下通过四道等通道角挤压(ECAP)变形。 X射线衍射(XRD)图谱的线轮廓分析(LPA)确定了强应变各向异性,并且在ECAP后,螺钉位错的相对分数显着增加。应变各向异性是由弹性常数的各向异性合理地解释的。变形结构中螺钉位错的支配归因于变形早期阶段的边缘位错的优选an没,以及由于交叉滑动而使螺钉位错ni灭的困难。主要假设添加钴可通过减少堆垛层错能量并有利于短程排序而使交叉打滑变得困难。

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