Effect of crack size on fracture of high yield stress materials

E. Smith
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Abstract

AbstractThe paper considers the behaviour of (brittle) high strength materials for which the onset of crack extension and fracture instability are coincident in a fracture mechanics type test where the crack is sufficiently long that the plastic deformation, which is associated with the onset of crack extension, is highly localized to the vicinity of the crack tip. A theoretical analysis shows that both the J integral at the onset of crack extension and the effective fracture toughness decrease below their long crack values as the pre-existing crack size decreases. However, the predicted decreases are only small (≲515%) as the pre-existing crack size decreases to a level at which the applied stress approaches the tensile yield stress of the material. The theoretical predictions are consistent with the experimental results obtained by Wilshire and Knott.
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裂纹尺寸对高屈服应力材料断裂的影响
摘要本文在断裂力学类型试验中考虑了裂纹扩展开始与断裂失稳同时发生的(脆性)高强度材料的行为,其中裂纹足够长,与裂纹扩展开始有关的塑性变形高度局限于裂纹尖端附近。理论分析表明,裂纹扩展开始时的J积分和有效断裂韧性随着原有裂纹尺寸的减小而降低到其长裂纹值以下。然而,当预先存在的裂纹尺寸减小到施加应力接近材料的拉屈服应力的水平时,预测的减小幅度很小(≤515%)。理论预测与Wilshire和Knott的实验结果一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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