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Fatigue life prediction of vulcanized natural rubber under proportional and non-proportional loading

机译:比例和非比例载荷下硫化天然橡胶的疲劳寿命预测

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To investigate the multiaxial fatigue properties of vulcanized natural rubber (NR), a series of tests including both proportional and non-proportional loading paths on small specimens were performed. The existing fatigue life prediction approaches are evaluated with life data obtained in the tests. It is shown that the equivalent strain approach presents a good prediction of the fatigue life although it has a certain shortcoming. Compared with the strain energy density (SED) model, the cracking energy density (CED) model represents the portion of SED that is available to be released by virtue of crack growth on a given material plane, so it gives better results in the life prediction. Some of the approaches based on critical plane which are widely used for metal fatigue are also tested in this paper, and the results show that the Chen-Xu-Huang (CXH) model gives a better prediction, compared with the Smith-Watson-Topper (SWT) and Wang-Brown (WB) model. A modified Fatemi-Socie's model has also been introduced, and the results show that the modified model can be used to predict the fatigue life of rubber material well.
机译:为了研究硫化天然橡胶(NR)的多轴疲劳性能,进行了一系列测试,包括在小样本上进行比例和非比例加载路径。现有的疲劳寿命预测方法将通过测试中获得的寿命数据进行评估。结果表明,等效应变方法虽然有一定的缺陷,但对疲劳寿命有很好的预测。与应变能密度(SED)模型相比,裂化能量密度(CED)模型代表了由于在给定材料平面上的裂纹扩展而可释放的SED部分,因此在寿命预测中给出了更好的结果。本文还测试了一些基于临界平面的方法,这些方法广泛用于金属疲劳,结果表明,与Smith-Watson-Topper相比,Chen-Xu-Huang(CXH)模型给出了更好的预测(SWT)和Wang-Brown(WB)模型。还引入了改进的Fatemi-Socie模型,结果表明,该模型可以较好地预测橡胶材料的疲劳寿命。

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