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THE EFFECT OF CRACK LENGTH ON THE J{sub}(IC) VALUE AMD Q FACTOR OF ALUMINUM ALLOY SPECIMEN

机译:裂缝长度对铝合金标本j {亚谱)值和Q系数的影响

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The constraint effect on fracture toughness is studied. Fracture toughness tests are conducted using CT and three-point-bend specimen. Their initial crack lengths are changed from a/W=0.1 to 0.6 in five cases, which means that the constraint at the crack tip changes. It is shown that a larger fracture toughness value is obtained by a short crack specimen than by the long crack one. Two-dimensional finite-element analyses are carried out. The crack tip stress fields are compared with HRR solutions, and it is shown that the crack-tip field deviates from the HRR solution as the crack length decreases. The Q factor is evaluated for these specimens, and the relation between J{sub}(IC) and Q is obtained. The conventional J-integral is compared with that obtained by the contour integral, and the experimental results are corrected. The results show the effect of crack tip constraint on the fracture toughness value clearly. The same problems are also analyzed using Gurson's constitutive equation taking into consideration the void behaviors. The effect of the constraint on void nucleation and growth is studied.
机译:研究了对裂缝韧性的约束效果。使用CT和三点弯曲标本进行断裂韧性试验。它们的初始裂缝长度在五种情况下从A / W = 0.1变为0.6,这意味着裂缝尖端的约束变化。结果表明,通过短裂纹样品获得较大的断裂韧性值,而不是长裂缝。执行二维有限元分析。将裂缝尖端应力场与HRR溶液进行比较,并且示出了随着裂缝长度减小而偏离HRR溶液的裂缝尖端。对这些样本评估Q因子,获得J {Sub}(IC)和Q之间的关系。将传统的J-Integral与通过轮廓整体获得的常规J-积分,并校正实验结果。结果表明裂纹尖端约束对断裂韧性值的影响清楚。考虑到空隙行为,使用Gurson的组成方程也分析了同样的问题。研究了约束对无效核切割和生长的影响。

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