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Modeling of axisymmetric slow crack growth of high-density polyethylene with circular notched bar specimen using crack layer theory

机译:基于裂纹层理论的圆形缺口棒试样对高密度聚乙烯轴对称慢速裂纹扩展的建模

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摘要

Because of the characteristic of high triaxial stress of a circular notched bar (CNB) specimen under tensile loads, it is a promising candidate for accelerated durability testing of high-density polyethylene (HDPE). To understand the slow crack growth (SCG) behavior of HDPE using a CNB specimen, it is practically important to base the evaluation of the SCG model using a CNB specimen on the concept of fracture mechanics. In this study, the SCG kinetics of HDPE with a CNB specimen is modeled on the basis of the concept of an axisymmetric crack layer (CL) system. CL theory is applied to the modeling of the axisymmetric SCG considering the geometry of the CNB specimen. Green's functions of the stress intensity factor and crack opening displacement of the CNB specimen are calculated in order to simulate the CL kinetics. The obtained Green's functions are also utilized to compute the thermodynamic forces for both the crack growth and the CL growth, and a generalized CL growth algorithm is developed. A parametric study of several key input parameters is conducted for validation of the developed CL model. In addition, actual SCG generated experimentally is simulated using the developed model, and it is found that the actual test results can be successfully simulated using the developed CL model. (C) 2016 Elsevier Ltd. All rights reserved.
机译:由于圆缺口(CNB)试样在拉伸载荷下具有高三轴应力的特性,因此,它是高密度聚乙烯(HDPE)加速耐久性测试的有希望的候选者。为了了解使用CNB试样的HDPE的慢速裂纹扩展(SCG)行为,将使用CNB试样的SCG模型的评估基于断裂力学的概念非常重要。在这项研究中,HDPE与CNB试样的SCG动力学是基于轴对称裂纹层(CL)系统概念建模的。考虑到CNB试样的几何形状,将CL理论应用于轴对称SCG的建模。计算了CNB试样的应力强度因子和裂纹开口位移的格林函数,以模拟CL动力学。获得的格林函数还用于计算裂纹扩展和CL增长的热力学力,并开发了一种通用的CL增长算法。对几个关键输入参数进行了参数研究,以验证开发的CL模型。另外,使用开发的模型对实验生成的实际SCG进行了仿真,发现使用开发的CL模型可以成功地模拟实际测试结果。 (C)2016 Elsevier Ltd.保留所有权利。

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