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Global collapse and J integral analysis for inner-diameter defected curved plates in tension

机译:内径缺陷弯曲板的整体坍塌和J积分分析

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摘要

Reference stress equations are widely used to predict both the limit load and the J integral response of defected structures. Their validity is key to performing a safe assessment of structural integrity (plastic collapse and fracture). An analytical reference stress equation based upon global collapse has recently been developed for curved plates with a part-through defect located at the inner diameter surface. This equation predicts decreasing reference stress values as plate curvature increases. To qualify the predictions, the authors have performed a series of finite element analyses covering a wide range of possible geometries. This paper compares the numerically obtained limit loads and J integral responses with the analytical predictions of the reference stress equation. The finite element results generally confirm the decrease of reference stress with increasing plate curvature. Highly pronounced differences may occur between flat plates and slightly curved plates. Overall, the analytically predicted decrease in reference stress is overestimated for small defects but is representative for larger defects.
机译:参考应力方程被广泛用于预测缺陷结构的极限载荷和J积分响应。它们的有效性是对结构完整性(塑性塌陷和断裂)进行安全评估的关键。最近,针对内径表面具有部分贯通缺陷的弯曲板,开发了一种基于整体塌陷的分析参考应力方程。该公式预测,随着板曲率的增加,参考应力值将减小。为了使预测合格,作者进行了一系列有限元分析,涵盖了多种可能的几何形状。本文将数值获得的极限载荷和J积分响应与参考应力方程的解析预测进行了比较。有限元结果通常证实参考应力随板曲率的增加而减小。在平板和轻微弯曲的平板之间可能会出现明显的差异。总体而言,对于小缺陷,高估了参考应力的分析预测下降,但对于大缺陷却具有代表性。

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