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首页> 外文期刊>Proceedings of the Royal Society. Mathematical, physical and engineering sciences >The mechanics of deformation-induced subgrain-dislocation structures in metallic crystals at large strains
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The mechanics of deformation-induced subgrain-dislocation structures in metallic crystals at large strains

机译:大应变下金属晶体中形变引起的亚晶位错结构的力学

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We present a streamlined limiting case of the theory of Ortiz & Repetto for crystals with microstructure in which the crystals are assumed to exhibit infinitely strong latent hardening. We take this property to signify that the crystal must necessarily deform in single slip at all material points. This requirement introduces a non-convex constraint that renders the incremental problem non-convex. We have assessed the ability of the theory to predict salient aspects of the body of experimental data compiled by Hansen et al. regarding lamellar dislocation structures in crystals deformed to large strains. Although the comparisons with experiment are somewhat indirect, the theory appears to correctly predict salient aspects of the statistics of misorientation angles and lamellar-boundary spacings, and the scaling of the average misorientation and spacing with increasing macroscopic strain. [References: 46]
机译:我们针对具有微结构的晶体提出了Ortiz和Repetto理论的简化极限情况,其中假定晶体表现出无限强的潜在硬化。我们采用此属性表示晶体必须在所有材料点处以单滑移形式变形。此要求引入了非凸约束,使增量问题变得非凸。我们已经评估了该理论预测汉森等人汇编的实验数据的重要方面的能力。关于变形为大应变的晶体中的层状位错结构。尽管与实验的比较有些间接,但该理论似乎正确预测了取向差角和层状边界间距统计的显着方面,以及随着宏观应变的增加平均取向差和间距的缩放比例。 [参考:46]

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