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首页> 外文期刊>Engineering Fracture Mechanics >Crack length calculation for bend specimens under static and dynamic loading
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Crack length calculation for bend specimens under static and dynamic loading

机译:静态和动态载荷下弯曲试样的裂纹长度计算

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Crack length calculations in bend specimens have been derived by analyzing the sample's load-line compliance. This compliance equation is based upon calculating stiffness that incorporates the effects of shear deformation, rotary inertia and crack length in a dynamic test. Three-point bend tests for a high-strength steel and an aluminum alloy were conducted under static and dynamic loading to investigate the validity of the equation derived. The present static test results show good agreement with those predicted from ASTM E399. Dynamic crack lengths determined by the formula proposed in this work are also in good agreement with other models in the literature, and with the experimental results presented here. The applicability of the present approach to effective crack length determination under small-scale yielding conditions is discussed.
机译:通过分析样品的载荷线顺应性,得出了弯曲样品的裂纹长度计算值。该顺应性方程式是基于计算刚度的,该刚度在动态测试中结合了剪切变形,旋转惯性和裂纹长度的影响。在静态和动态载荷下对高强度钢和铝合金进行了三点弯曲试验,以研究所推导方程的有效性。目前的静态测试结果与ASTM E399预测的结果吻合良好。由本文提出的公式确定的动态裂纹长度也与文献中的其他模型以及此处给出的实验结果非常吻合。讨论了本方法在小规模屈服条件下有效确定裂纹长度的适用性。

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