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Simulation of crack propagation in rubber

机译:橡胶中裂纹扩展的模拟

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Software for simulating crack propagation ("Zencrack") has been developed which handles adaptation of the finite element mesh in the region of the crack tip as the crack propagates, and calls up a finite element solver as a subroutine to calculate the strain energy release rate at each increment in crack length. The objective of this paper is to demonstrate its applicability to rubber components. First, the reliability of Zencrack, with ABAQUS as the solver, for calculations of strain energy release rate for an edge crack in a strip of rubber in simple extension is investigated. The results are in reasonable agreement with previous analyses and experimental work from the literature. 3D analyses show that the crack front would be expected to develop curvature during propagation. The application of Zencrack to failure of "O" rings by internal cracking is also presented to show how the approach could be applied to a rubber component.
机译:已经开发了用于模拟裂纹扩展的软件(“ Zencrack”),该软件可以处理随着裂纹扩展而在裂纹尖端区域内的有限元网格的适应问题,并调用有限元求解器作为子例程来计算应变能释放率在裂纹长度的每个增量处。本文的目的是证明其在橡胶部件中的适用性。首先,研究了使用ABAQUS作为求解器的Zencrack的可靠性,该可靠性用于简单扩展中的橡胶条边缘裂纹的应变能释放率的计算。结果与文献中先前的分析和实验工作相吻合。 3D分析表明,裂纹扩展在扩展过程中会产生弯曲。还介绍了Zencrack在“ O”形圈因内部破裂而失效中的应用,以显示该方法如何应用于橡胶组件。

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