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Finite elastic non-symmetrical inflation and eversion of circular cylindrical rubber tubes

机译:圆柱橡胶管的有限弹性非对称膨胀与外翻

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摘要

For large elastic deformations of perfectly elastic rubber-like materials, the non-symmetrical inflation and eversion of circular cylindrical rubber tubes is examined for a family of strain-energy functions, which includes the neo-Hookean and Varga materials as special cases. It is shown that the formal mathematical difficulties of deducing exact analytical solutions are less severe for the eversion problem than for the inflation problem. New solutions are 'determined' for both inflation and eversion, and that for inflation is applied to the problem of the lateral compression of a hollow rubber tube. This is an important practical problem for which there are at present no theoretical formulae based on the proper theory of finite elasticity. The load-deflection relations obtained are found to have the same overall qualitative features as the limited experimental curves and that arising from the 'shape factor' model, which is the standard engineering approximation.
机译:对于完全弹性的橡胶状材料的大的弹性变形,检查了圆柱形橡胶管的非对称膨胀和外翻的一系列应变能函数,其中包括Neo-Hookean和Varga材料。结果表明,对于外翻问题而言,得出精确的解析解的形式数学难度不如对通货膨胀问题那么严重。为充气和外翻都“确定”了新的解决方案,并且将充气的解决方案应用于中空橡胶管的侧向压缩问题。这是一个重要的实际问题,目前没有基于适当的有限弹性理论的理论公式。发现所获得的载荷-挠度关系具有与有限的实验曲线相同的总体定性特征,并且是由“形状因数”模型(这是标准工程近似值)引起的。

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