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首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Nonlinear analysis of rubber-based polymeric materials with thermal relaxation models
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Nonlinear analysis of rubber-based polymeric materials with thermal relaxation models

机译:橡胶基聚合物材料的非线性热松弛模型分析

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Using mathematical modeling and computer simulation, nonlinear dynamics of rubberbased polymers has been studied with due regard for the effect of thermal relaxation. Main results have been obtained for the case of elongational oscillations of a ring- shaped body subjected to periodic ("internal") boundary conditions. Particular emphasis has been placed on high- frequency and short spatial variations of temperature and displacement, in which the role of nonlinearities in the dynamics of the material and their close connection with the effect of thermal relaxation time can be best appreciated. It is shown how the vanishing relaxation time can lead to an attenuation of nonlinear effects in the thermomechanical system.
机译:使用数学模型和计算机模拟,已经充分考虑了热弛豫的影响,对橡胶基聚合物的非线性动力学进行了研究。对于受到周期性(“内部”)边界条件的环形物体的伸长振动的情况,已经获得了主要结果。特别强调的是温度和位移的高频和短空间变化,其中非线性在材料动力学中的作用以及它们与热弛豫时间的影响之间的紧密联系可以得到最好的理解。显示了消失的松弛时间如何导致热机械系统中非线性效应的衰减。

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