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Effect of loading rate on dynamic fracture initiation toughness of brittle materials

机译:加载速率对脆性材料动态断裂起始韧性的影响

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Numerical simulation is carried out to investigate the effect of loading rate on dynamic fracture initiation toughness including the crack-tip constraint. Finite element analyses are performed for a single edge cracked plate whose crack surface is subjected to uniform pressure with various loading rate. The first three terms in the Williams’ asymptotic series solution is utilized to characterize the crack-tip stress field under dynamic loads. The coefficient of the third term in Williams’ solution, A 3, was utilized as a crack tip constraint parameter. Numerical results demonstrate that (a) the dynamic crack tip opening stress field is well represented by the three term solution at various loading rate, (b) the loading rate can be reflected by the constraint, and (c) the constraint A 3 decreases with increasing loading rate. To predict the dynamic fracture initiation toughness, a failure criterion based on the attainment of a critical opening stress at a critical distance ahead of the crack tip is assumed. Using this failure criterion with the constraint parameter, A 3, fracture initiation toughness is determined and in agreement with available experimental data for Homalite-100 material at various loading rate.
机译:进行了数值模拟,以研究加载速率对包括裂纹尖端约束在内的动态断裂初始韧性的影响。对于单边缘开裂板进行了有限元分析,其开裂面在各种加载速率下受到均匀的压力。威廉姆斯渐近级数解的前三个项用于表征动态载荷下的裂纹尖端应力场。 Williams解决方案中的第三项系数A 3 被用作裂纹尖端约束参数。数值结果表明:(a)在不同加载速率下,动态裂纹尖端张应力场可以很好地表示为三项解;(b)可以由约束条件反映出加载速率;(c)约束条件A 3 随着加载速率的增加而降低。为了预测动态断裂的起始韧性,假定了基于在裂纹尖端之前的关键距离处达到临界打开应力的破坏准则。使用具有破坏参数A 3 的破坏准则,确定了断裂起始韧性,并与Homalite-100材料在各种加载速率下的可用实验数据相一致。

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