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Size effect in Paris law for quasibrittle materials analyzed by the microplane constitutive model M7

机译:用微平面本构模型M7分析准脆性材料的巴黎法中的尺寸效应

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Quasibrittle materials exhibit a structure size effect on the fatigue crack growth rate, and especially in the Paris law coefficient. In previous studies, this effect was demonstrated experimentally for concrete and rock, which led to a size-adjusted Paris law for quasibrittle materials. A new length scale, viz, the transitional size for fatigue fracture, D-0(c), was introduced and was shown to be related to the size of the cyclic fracture process zone (FPZ). Here, the size effect is analyzed numerically by using the most recent version of the microplane constitutive damage model for quasibrittle fatigue fracture. Simulations reveal that, in contrast to earlier deductions, the cyclic FPZ size is smaller than the monotonic one. Also revealed is a discrepancy between the D-0(c) obtained from the existing size effect hypothesis and the physical cyclic FPZ size measured from the simulations. To explain this discrepancy, a new size-adjusted Paris law is proposed and verified by updated dimensional analysis. It involves two length scales, one for the monotonic size effect, and the other for fatigue. The modified framework is seen to yield fatigue transitional size values more consistent with the cyclic FPZ size. (C) 2015 Elsevier Ltd. All rights reserved.
机译:准脆性材料对疲劳裂纹的生长速率,特别是在巴黎定律系数中,显示出结构尺寸的影响。在以前的研究中,这种效果已在混凝土和岩石上得到了实验证明,从而导致了准脆性材料的巴黎调整尺寸法。引入了新的长度标度,即疲劳断裂的过渡尺寸D-0(c),并显示出与周期性断裂过程区(FPZ)的尺寸有关。在这里,通过使用最新版本的准脆性疲劳断裂的微平面本构损伤模型,对尺寸效应进行了数值分析。仿真显示,与早期的推论相反,循环FPZ的大小小于单调的。还揭示了从现有尺寸效应假设获得的D-0(c)与从模拟测量的物理循环FPZ尺寸之间的差异。为了解释这种差异,提出了一种新的尺寸调整后的巴黎法,并通过更新的尺寸分析进行了验证。它涉及两个长度标尺,一个用于单调尺寸效应,另一个用于疲劳。可以看到,修改后的框架产生的疲劳过渡尺寸值与循环FPZ尺寸更一致。 (C)2015 Elsevier Ltd.保留所有权利。

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