论文标题

微柱的力学限制薄膜可塑性

Mechanics of micropillar confined thin film plasticity

论文作者

Arora, Abhishek, Arora, Rajat, Acharya, Amit

论文摘要

在金属薄膜的密闭可塑性中探测尺寸效应的微柱压缩实验,包括“规范”简单剪切边界条件的间接施加,在压缩和薄膜的剪切中显示出截然不同的响应。中尺度场错位力学(MFDM)模型面临着这组实验观察,并且显示能够对这种行为进行建模,而无需对理论的基本结构(包括边界条件)或使用额外的拟合参数进行任何临时修改。这是应变梯度可塑性模型的当前最新技术中所需的理论进步。还表明,与实验结果总体一致时,不均匀的领域显着不同,可以显示出定性上相似的尺寸效应趋势。还展示了(塑料)快速和(弹性)有限变形效应。

Micropillar compression experiments probing size effects in confined plasticity of metal thin films, including the indirect imposition of 'canonical' simple shearing boundary conditions, show dramatically different responses in compression and shear of the film. The Mesoscale Field Dislocation Mechanics (MFDM) model is confronted with this set of experimental observations and shown to be capable of modeling such behavior, without any ad-hoc modification to the basic structure of the theory (including boundary conditions), or the use of extra fitting parameters. This is a required theoretical advance in the current state-of-the art of strain gradient plasticity models. It is also shown that significantly different inhomogeneous fields can display qualitatively similar size effect trends in overall agreement with the experimental results. The (plastic) Swift and (elastic) Poynting finite deformation effects are also demonstrated.

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