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Second-order crystal plasticity: internal stress effects and cyclic loading

机译:二阶晶体可塑性:内应力效应和循环载荷

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This paper studies dislocation induced internal stresses as introduced in a strain gradient crystal plasticity approach. The need for a second-order crystal plasticity approach is motivated in the context of the analysis of free-standing metal films used in radio-frequency micro-electro-mechanical systems (RF-MEMS). The presented second-order framework incorporates the influence of inter- and intragranular deformation inhomogeneities in the constitutive description, generally assumed to be the basic origin of scale dependent behaviour and associated size effects. Focusing on the dynamic loading of thin RF-MEMS films, attention is given to dislocation induced kinematical hardening effects. The corresponding internal stresses are discussed with respect to their contribution to the solution of the underlying elasto-plastic framework which implicitly accounts for elastic incompatibilities. Within the loading regime of interest, the response in loading-unloading-reloading and cyclic loading is assessed.
机译:本文研究了由应变梯度晶体可塑性方法引入的位错引起的内应力。在分析射频微机电系统(RF-MEMS)中使用的独立式金属膜时,激发了对二阶晶体可塑性方法的需求。提出的二阶框架在本构描述中纳入了颗粒间和颗粒内变形不均匀性的影响,通常将其视为与尺度有关的行为和相关尺寸效应的基本来源。着眼于动态加载RF-MEMS薄膜,关注位错引起的运动硬化效应。讨论了相应的内部应力,它们对基础的弹塑性框架的解决方案的贡献,这些框架隐含地解释了弹性不兼容问题。在感兴趣的加载范围内,评估加载-卸载-重新加载和循环加载中的响应。

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