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Investigation of slow crack growth initiation in polyethylene pipe grades with accelerated cyclic tests

机译:用加速循环试验研究聚乙烯管材中缓慢的裂纹扩展引发

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摘要

A model for crack initiation in CRB specimens for a high density polyethylene (PE-HD) pipe grade was developed for possible implementation in a lifetime assessment procedure. Additional, an analysis of the crack tip process zone was performed in order to get a better understanding for the mechanisms of the initiation of slow crack growth. Using concepts of linear elastic fracture mechanics (LEFMs), cyclic tests on Cracked Round Bar (CRB) speci mens at a temperature of 23 °C were carried out at different R-ratios. The tests, which were performed at two different Stress Intensity Factors (K_(I.max)), were stopped after different cycle numbers prior crack initiation. Using a hot melt adhesive, the crack tips of the CRB specimens were frozen in a loaded condition, in order to prevent a collapse of craze fibrils in the process zone. After a suitable specimen preparation with microtome, optical micros copy and scanning electron microscopy (SEM) were used to observe the geometry of the process zone at the crack tip and to measure the dimensions of the process zone deforma tion. Depending on the cycle numbers the results showed an increase of the length of the process zone. The measured process zone geometries were extrapolated to an R-ratio of 1 which represents static loading conditions and compared to the Dugdale-Model, which predicts the process zone size at a crack tip.
机译:开发了用于高密度聚乙烯(PE-HD)管材的CRB试样中裂纹萌生的模型,以便在寿命评估程序中实施。另外,对裂纹尖端加工区进行了分析,以更好地理解缓慢裂纹扩展的引发机理。使用线性弹性断裂力学(LEFM)的概念,在23°C的温度下,在不同的R比下对裂纹圆棒(CRB)试样进行了循环测试。在两个不同的应力强度因子(K_(I.max))下进行的测试在裂纹萌生之前经过了不同的循环次数后停止。使用热熔粘合剂,将CRB试样的裂纹尖端在负载状态下冷冻,以防止加工区域的裂纹原纤维塌陷。在用切片机进行适当的样品制备后,使用光学显微镜和扫描电子显微镜(SEM)观察裂纹尖端处的加工区的几何形状,并测量加工区变形的尺寸。取决于循环次数,结果表明工艺区域的长度增加。将测得的加工区几何形状外推至R比率1(代表静态载荷条件),并将其与Dugdale模型进行比较,后者预测了裂纹尖端处的加工区大小。

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