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New energy partitioning approach to the measurement of plane-strain fracture toughness of high-density polyethylene based on the concept of essential work of fracture

机译:基于断裂必不可少的概念的高能聚乙烯平面应变断裂韧性测量的新能量分配方法

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This study explores three approaches to determining plane-strain fracture toughness of high-density polyethylene (HDPE), based on the concept of essential work of fracture (EWF). The first approach adopted the traditional method that uses total energy consumed in the testing to determine the plane-strain fracture toughness. The second and the third approaches used energy-partitioning principles to exclude the energy consumption in a later stage of the testing from the calculation of the EWF value. The 2nd approach used a new energy partitioning scheme that excluded the energy consumed at the last stage of plastic deformation; and the 3rd approach was based on an existing energy partitioning scheme proposed by another group, to exclude the energy consumption after the maximum load was reached. The results show that only the 2nd approach generates the EWF value that is independent of the specimen thickness. The paper recommends that the 2nd approach be the most suitable method for determining the plane-strain fracture toughness for ductile polymers like HDPE.
机译:本研究基于断裂基本功(EWF)的概念,探索了三种确定高密度聚乙烯(HDPE)平面应变断裂韧性的方法。第一种方法采用传统方法,该方法使用测试中消耗的总能量来确定平面应变断裂韧性。第二种方法和第三种方法使用能量分配原理,以从EWF值的计算中排除测试后期的能耗。第二种方法使用了一种新的能量分配方案,该方案排除了塑性变形最后阶段消耗的能量。第三种方法是基于另一个小组提出的现有能源分配方案,以排除达到最大负荷后的能耗。结果表明,只有第二种方法产生的EWF值与样品厚度无关。本文建议第二种方法是确定诸如HDPE之类的可延展聚合物的平面应变断裂韧性的最合适方法。

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