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Fatigue Crack Propagation under Mixed Mode I and III in Polyoxymethelene Homopolymer

机译:混合模式I和III下的疲劳裂纹繁殖在聚甲醛均聚物中

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While mixed-mode loading conditions became hot topic recently, it is still quite unexplored area, even in case of metals. In case of polymers, this is even more complex problem, thanks to their higher sensitivity on higher temperatures connected with friction. Since polymer materials are very popular, this topic is of high interest. One of the best experimental specimens for achieving mixed mode loading conditions is the CRB specimen, as it provides clear mixed-mode I + III conditions under tension + torsion. Furthermore, for lifetime predictions it is necessary to calculate some material constants based on measured crack growth rates. However, these crack growth rates are not as easily and accurately measured on CRB specimens, as on CT specimens. Therefore, the main focus of this study is to observe difference between lifetime predictions based on CT and CRB data and possible application of CT data for CRB specimens.
机译:虽然混合模式的装载条件最近变得热门话题,但即使是金属,它仍然是一个尚不开发的地区。在聚合物的情况下,由于与摩擦连接的较高温度的更高灵敏度,这是更复杂的问题。由于聚合物材料非常受欢迎,这一主题具有很高的兴趣。用于实现混合模式负载条件的最佳实验标本之一是CRB样本,因为它在张力+扭转下提供了清晰的混合模式I + III条件。此外,对于寿命预测,必须基于测量的裂纹生长速率计算一些材料常数。然而,这些裂纹的生长速率在CT标本上的CT样本上不容易和准确地测量。因此,本研究的主要重点是根据CT和CRB数据观察寿命预测的差异,以及可能适用CT数据的CT数据。

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