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Assessment of Plane Stress Tearing in Terms of Various Crack Driving Parameters

机译:根据各种裂纹驱动参数评估平面应力撕裂

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摘要

The important role of mechanical parameters characterizing the global fracture behavior of a thin rectangular plate is demonstrated through comparison of various approaches to the investigation of ductile tearing at large amounts of stable crack extension. Tensile tests have been performed on middle-cracked specimens at different in-plane constraint states and on cruciform specimens. The latter geometry is treated as a physical counterpart of the basic structural element usually considered in model descriptions of tension- and/or compression-dominant crack geometries. Attention is focused on the simplest practical problem, namely, assessing the critical states of a center through crack under remote uniaxial tension. The case in point is a comprehensive assessment of the structural behavior of a thin-wall component where failure loads, displacements, and subcritical crack extensions must all be predicted from the crack growth data for a laboratory-size specimen of standard geometry.
机译:通过比较各种研究大量稳定裂纹扩展下的韧性断裂的方法,证明了表征薄矩形板整体断裂行为的机械参数的重要作用。已经对处于不同面内约束状态的中裂试样和十字形试样进行了拉伸试验。后者的几何形状被视为基本结构元素的物理对应物,通常在以拉伸和/或压缩为主的裂纹几何形状的模型描述中考虑。注意力集中在最简单的实际问题上,即通过远距离单轴张力通过裂纹评估中心的临界状态。一个典型的例子是对薄壁部件的结构行为的全面评估,其中必须根据标准几何尺寸的实验室尺寸试样的裂纹扩展数据来预测失效载荷,位移和亚临界裂纹扩展。

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