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A new expression for crack opening stress determined based on maximum crack opening displacement under tension-compression cyclic loading

机译:基于拉压循环荷载作用下最大开裂位移确定开裂应力的新表达式

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摘要

The maximum crack opening displacement is introduced to investigate the effect of compressive loads on crack opening stress in tension-compression loading cycles. Based on elastic-plastic finite element analysis of centre cracked finite plate and accounting for the effects of crack geometry size, Young's modulus, yield stress and strain hardening, the explicit expression of crack opening stress versus maximum crack opening displacement is presented. This model considers the effect of compressive loads on crack opening stress and avoids adopting fracture parameters around crack tip. Besides, it could be applied in a wide range of materials and load conditions. Further studies show that experimental results of da/dN — AK curves with negative stress ratios could be condensed to a single curve using this crack opening stress model.
机译:引入最大裂纹张开位移以研究在拉压加载循环中压缩载荷对裂纹张开应力的影响。基于中心裂纹有限板的弹塑性有限元分析,并考虑裂纹几何尺寸,杨氏模量,屈服应力和应变硬化的影响,给出了开裂应力与最大开裂位移的明确表达。该模型考虑了压缩载荷对裂纹张应力的影响,并避免采用裂纹尖端附近的断裂参数。此外,它还可以应用于各种材料和负载条件。进一步的研究表明,使用这种开裂应力模型,具有负应力比的da / dN-AK曲线的实验结果可以浓缩为一条曲线。

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