Cu-1 at的屈服点行为。-%单晶

R. H. Cook, A. Entwisle
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引用次数: 0

摘要

摘要Cu-1 at的变形特性。-% In单晶在77 ~ 473 K的温度范围内具有不同的取向。宏观滑移始于屈服点,随后是吕德斯应变。吕德斯应变过程中的剪切具有明显的方向依赖性,且随温度的降低而增大。在吕德应变之后,几乎所有情况下都出现加工硬化阶段I和II。阶段II之后是共轭滑移阶段,通常以非均匀传播开始。在这种扩展之后,或者在这种扩展不存在的情况下,共轭体系的硬化以线性方式进行,速率在3到7 kgf/mm2(29到69 MN/m2)之间,取决于取向。详细讨论了第一阶段Luders应变与硬化速率的相互关系。基于位错倍增效应的屈服点模型很好地解释了观察到的293 K下Luders应变的取向依赖性,但需要进行修改以解释这一现象。
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Yield-Point Behaviour in Cu–1 at.-% In Single Crystals
AbstractDeformation characteristics of Cu–1 at.-% In single crystals are presented for a range of orientations at temperatures from 77 to 473 K. Macroscopic slip commences with a yield point followed by a Luders strain. The shear during the Luders strain is markedly orientation-dependent and increases with decreasing temperature. Subsequent to the Luders strain, work-hardening Stages I and II are seen in nearly all cases. Stage II is followed by a stage of conjugate slip which often begins with an inhomogeneous propagation. Subsequent to this propagation, or in its absence, hardening on the conjugate system proceeds in a linear fashion at a rate of between 3 and 7 kgf/mm2 (29 and 69 MN/m2), dependent on orientation. The inter-relationship of Luders strain and hardening rate during Stage I is discussed in detail. Models of the yield point, based on dislocation multiplication effects, account fairly well for the observed orientation-dependence of Luders strain at 293 K, but modifications are necessary to ex...
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