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Linear stability analysis for a thermoviscoplastic material under cyclic axial loading

机译:循环轴向载荷下热粘塑性材料的线性稳定性分析

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Some mechanical properties exhibit a very strong dependence upon temperature; these evolutions can be properly analyzed by the steady state response in cyclic loading. To relate experimental conditions to thermomechanical characteristics, the existence and the stability of steady state solutions are studied for cylinders submitted to cyclic compression. The material, considered as rigid viscoplastic, is modeled by a non-Newtonian temperature dependent viscous law. Closed form solutions are obtained in the framework of a large deformation theory by neglecting thermal expansion and inertia effects. Steady state regime is analyzed. The stress versus strain rate response and the temperature distribution are established as functions of the geometry of the cylinder, the loading characteristics and the material parameters. The stability of steady state solutions is analyzed with use of a linear perturbation scheme.
机译:某些机械性能表现出非常强的温度依赖性。这些变化可以通过循环载荷下的稳态响应进行适当分析。为了将实验条件与热机械特性联系起来,研究了经受周期性压缩的气缸的稳态解的存在性和稳定性。被认为是刚性粘塑性的材料是通过非牛顿温度相关的粘性定律建模的。通过忽略热膨胀和惯性效应,可以在大变形理论的框架内获得闭合形式的解。分析稳态状态。应力-应变率响应和温度分布是根据圆柱体的几何形状,负载特性和材料参数确定的。使用线性摄动方案分析稳态解的稳定性。

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