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Elastic instabilities in rubber

机译:橡胶的弹性不稳定性

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摘要

Materials that undergo large elastic deformations can exhibit novel instabilities. Several examples are considered here: development of an aneurysm on inflating a cylindrical rubber tube; non-uniform stretching on inflating a spherical balloon; expansion of small cavities in rubber blocks when they are subjected to a critical amount of triaxial tension or when they are supersaturated with a dissolved gas; wrinkling of the surface of a block at a critical amount of compression; and the sudden formation of "knots" on twisting stretched cylindrical rods. These various deformations are analyzed in terms of simple strain energy functions using Rivlin's theory of large elastic deformations. The theoretical results are then compared with experimental measurements of the onset of unstable states. Such comparisons provide new tests of Rivlin's theory and, at least in principle, critical tests of proposed strain energy functions for rubber. Moreover, the onset of highly non-uniform deformations has serious implications for the fatigue life and fracture resistance of rubber components.
机译:经受大的弹性变形的材料会表现出新的不稳定性。这里考虑几个例子:在充气圆柱形橡胶管上形成动脉瘤;充气球形气球时拉伸不均匀;当橡胶块受到一定程度的三轴拉力或被溶解的气体过饱和时,它们会膨胀。处于临界压缩量的块体表面起皱;并在扭曲的圆柱形圆柱棒上突然形成“结”。使用Rivlin的大弹性变形理论,根据简单的应变能函数对这些各种变形进行了分析。然后将理论结果与不稳定状态发生的实验测量结果进行比较。这种比较为里夫林的理论提供了新的检验,并且至少在原则上为提出的橡胶应变能函数提供了严格的检验。而且,高度不均匀变形的发生对橡胶部件的疲劳寿命和抗断裂性具有严重的影响。

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