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首页> 外文期刊>Mathematics and mechanics of solids: MMS >A full-network rubber elasticity model based on analytical integration
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A full-network rubber elasticity model based on analytical integration

机译:基于解析积分的全网橡胶弹性模型

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摘要

Full-network rubber elasticity models generally require numerical integration over the unit sphere. In the present paper, a procedure for analytical integration of power series in terms of stretch square is proposed instead. This procedure is applied both to the inverse Langevin function and its rounded Padé approximation. The integrated power series demonstrates fast convergence to the analytical solution so far as it is available or to the numerical one based on a high resolution integration scheme. Good agreement with experimental data on silicone rubber is obtained as well. The integration procedure is also implemented to average the stretch on the basis of a q-root operator. This operator is usually applied in order to introduce a non-affine relation between micro and macro stretches into a network model.
机译:全网络橡胶弹性模型通常需要在单位球面上进行数值积分。本文提出了一种基于幂平方的幂级数分析积分的程序。此过程同时应用于逆Langevin函数及其四舍五入的Padé逼近。集成的幂级数表明,只要有可用的解决方案,就可以迅速收敛到基于高分辨率积分方案的数字解决方案。还获得了与硅橡胶实验数据的良好一致性。积分过程也被实现为基于q根运算符平均拉伸。通常使用此运算符是为了将微观和宏观延伸之间的非仿射关系引入网络模型。

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