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A new method for determining mode II R-curve by the End-Notched Flexure test

机译:通过缺口缺口弯曲试验确定II型R曲线的新方法

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摘要

A new method for obtaining the mode II R-curve in a End-Notched Flexure test is proposed in the present work. New compliance and energy release rate equations have been derived incorporating shear, local deformation and bending rotation effects. Mode II R-curve, which represents energy release rate as a function of crack extension, is obtained without optical determination of crack tip position. Crack length and energy release rate are determined at each point of the test based on experimental compliance until unstable advance occurs. In order to confirm the theoretical models, unidirectional carbon/epoxy specimens have been tested. Experimental data are evaluated by means of two reduction schemes: an existing data method named Corrected Beam Theory with effective crack length and the new method named Beam Theory including Bending Rota-tion effects. Shear and local deformation effects are included in both reduction schemes. Results concerning the determination of crack length without crack advance and during stable crack propagation are presented. The agreement between experimental values and theoretical results obtained by the new approach is excellent. Based on the accurate crack length determination at each point of the test, energy release rate is determined point to point and therefore R-curve is obtained.
机译:在当前工作中,提出了一种新的方法来获得带缺口的弯曲试验中的II型R曲线。推导出了新的柔量和能量释放速率方程,其中包括剪切,局部变形和弯曲旋转效应。在不光学确定裂纹尖端位置的情况下,获得了表示能量释放速率与裂纹扩展的函数关系的II型R曲线。裂纹长度和能量释放速率是在试验的每个点根据实验柔度确定的,直到出现不稳定的进展。为了确认理论模型,已经对单向碳/环氧树脂样品进行了测试。实验数据通过两种简化方案进行评估:一种是具有有效裂纹长度的数据方法,即校正梁理论;另一种是包括弯曲旋转效应的方法,即梁理论。剪切和局部变形效应都包含在两种折减方案中。给出了有关确定无裂纹扩展和稳定裂纹扩展过程中裂纹长度的结果。新方法获得的实验值与理论结果之间的一致性非常好。基于在测试的每个点处精确确定的裂纹长度,可以逐点确定能量释放率,从而获得R曲线。

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