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首页> 外文期刊>Journal of Applied Crystallography >Quantitative estimation of incompatibility stresses and elastic energy stored in ferritic steel
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Quantitative estimation of incompatibility stresses and elastic energy stored in ferritic steel

机译:铁素体钢中不相容应力和弹性能的定量估算

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Plastic incompatibility second-order stresses were determined for different orientations of a polycrystalline grain, using X-ray diffraction data and results of the self-consistent elasto-plastic model. The stresses in cold rolled ferritic steel were determined both in as-received and under tensile loaded conditions. It has been shown that the Reuss model and the self-consistent model applied to near surface volume provide the best approaches to determine diffraction elastic constants. For the first time, the elastic energy in an anisotropic material (arising from plastic incompatibilities between grains having various lattice orientations) has been determined. The second-order incompatibility stresses and stored elastic energy are presented in Euler space. (c) 2008 International Union of Crystallography Printed in Singapore - all rights reserved.
机译:使用X射线衍射数据和自洽弹塑性模型的结果,确定了多晶晶粒不同取向的塑性不相容二阶应力。冷轧铁素体钢中的应力是在接收状态和拉伸载荷条件下确定的。已经表明,将Reuss模型和应用于表面近体积的自洽模型提供了确定衍射弹性常数的最佳方法。首次确定了各向异性材料中的弹性能(由具有不同晶格取向的晶粒之间的塑性不相容性引起)。欧拉空间中出现了二阶不相容应力和储存的弹性能。 (c)2008年国际晶体学联盟在新加坡印刷-保留所有权利。

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