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Kinking nonlinear elasticity, damping and microyielding of hexagonal close-packed metals

机译:扭结非线性弹性、六方紧密堆积金属的阻尼和微屈服

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摘要

The hexagonal close-packed metals, Ti, Mg, Co, Zr and Zn are of immense technological importance and have been studied extensively for the past 70 years. Despite this large amount of work, the nature of damping and microyielding in these metals has remained unclear. Herein we show that both can be explained by invoking the formation of incipient kink bands (IKBs). IKBs are fully reversible dislocation-based loops that are nucleated on the easy slip planes of plastically anisotropic solids. The results obtained agree exceptionally well with our analytic model that not only successfully explains damping and microyielding, but also allows for the estimation of the critical resolved shear stresses of easy system glide dislocations and the dislocation densities. Based on this and our previous work, it is now apparent that IKBs represent the last piece in the deformation-of-solids puzzle, without which it is impossible to understand their earlv deformation.
机译:六方密堆积金属Ti、Mg、Co、Zr和Zn具有巨大的技术重要性,在过去的70年里得到了广泛的研究。尽管做了大量的工作,但这些金属的阻尼和微屈服的性质仍然不清楚。在这里,我们表明两者都可以通过调用早期扭结带 (ICB) 的形成来解释。IKB是基于位错的完全可逆环,在塑性各向异性固体的易滑移平面上成核。所获得的结果与我们的解析模型非常吻合,该模型不仅成功地解释了阻尼和微屈服,而且还可以估计易系统滑动位错的临界分位剪应力和位错密度。基于这一点和我们之前的工作,现在很明显,IKB代表了固体变形难题的最后一块,没有它,就不可能理解它们的早期变形。

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