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Fracture in random quasibrittle media: I. Discrete mesoscale simulations of load capacity and fracture process zone

机译:随机Quasibrite介质中的骨折:I。负载能力和骨折过程区域的离散Messcale模拟

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摘要

Numerical simulations of concrete fracture performed with a probabilistic mesoscale discrete model are presented. The model represents a substantial part of material randomness by assigning random locations to the largest aggregates. The remaining part of randomness is introduced by causing material parameters to fluctuate randomly via a homogeneous random field. An extensive numerical study performed with the model considers prisms loaded in uniaxial tension with both fixed and rotating platens, and also beams with and without a notch loaded in three point bending. The results show the nontrivial effect of (i) autocorrelation length and (ii) variance of the random field on the fracture behavior of the model. Statistics of the peak load are presented as well as the size and shape of the fracture process zone at the moment when the maximum load is attained. Local averaging within the fracture process zone and weakest-link are identified as underlying mechanisms explaining the reported results.
机译:提出了用概率介质离散模型进行的混凝土断裂的数值模拟。该模型通过将随机位置分配给最大的聚合来表示材料随机性的大部分。通过使材料参数通过均匀的随机场随机地波动来引入随机性的剩余部分。用模型进行的广泛数值研究考虑了具有固定和旋转压板的单轴张力中装载的棱镜,以及具有在三点弯曲中加载的凹口的梁和没有凹口的梁。结果表明(I)自相关长度和(ii)随机场的差异对模型的裂缝行为的差异的非牵引效果。呈现峰值负荷的统计,以及在最大载荷的瞬间裂缝处理区的尺寸和形状。骨折过程区域内的局部平均和最弱的链路被识别为解释报告结果的基础机制。

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