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Modeling the interfacial effect on the yield strength and flow stress of thin metal films on substrates

机译:模拟界面对基底上金属薄膜的屈服强度和流动应力的影响

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It is shown in this paper that interfacial effects have a profound impact on the scale-dependent yield strength and strain hardening rates (flow stress) of metallic thin films on. elastic substrates. This is achieved by developing a higher-order strain gradient plasticity theory based on the principle of virtual power and the laws of thermodynamics. This theory enforces microscopic boundary conditions at interfaces which relate a microtraction stress to the interfacial energy at the interface. It is shown that the film bulk length scale controls the size effect if a rigid interface is assumed whereas the interfacial length scale dominates if a compliant interface is assumed. (c) 2007 Elsevier Ltd. All rights reserved.
机译:本文表明界面效应对金属薄膜的尺度相关屈服强度和应变硬化速率(流动应力)产生了深远的影响。弹性基材。这是通过基于虚拟功率原理和热力学定律开发高阶应变梯度可塑性理论来实现的。该理论在界面处施加微观边界条件,该条件将微观牵引应力与界面处的界面能相关联。结果表明,如果假定为刚性界面,则薄膜体积长度刻度将控制尺寸效果,而如果假定为顺应性界面,则界面长度刻度将占主导地位。 (c)2007 Elsevier Ltd.保留所有权利。

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