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A damage analysis for brittle materials using stochastic micro-structural information

机译:利用随机微结构信息对脆性材料进行损伤分析

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In this work, a micro-crack informed stochastic damage analysis is performed to consider the failures of material with stochastic microstructure. The derivation of the damage evolution law is based on the Helmholtz free energy equivalence between cracked microstructure and homogenized continuum. The damage model is constructed under the stochastic representative volume element (SRVE) framework. The characteristics of SRVE used in the construction of the stochastic damage model have been investigated based on the principle of the minimum potential energy. The mesh dependency issue has been addressed by introducing a scaling law into the damage evolution equation. The proposed methods are then validated through the comparison between numerical simulations and experimental observations of a high strength concrete. It is observed that the standard deviation of porosity in the microstructures has stronger effect on the damage states and the peak stresses than its effect on the Young's and shear moduli in the macro-scale responses.
机译:在这项工作中,进行了微裂纹通知的随机损伤分析,以考虑具有随机微观结构的材料的失效。破坏演化规律的推导是基于破裂的微观结构与均匀化的连续体之间的亥姆霍兹自由能等价。损伤模型是在随机代表体积元素(SRVE)框架下构建的。基于最小势能原理,研究了随机损伤模型构建中SRVE的特性。网格相关性问题已通过在损伤演化方程中引入比例定律得到解决。然后通过数值模拟与高强度混凝土的实验观察之间的比较来验证所提出的方法。可以看出,在宏观响应中,微观结构中孔隙度的标准偏差对损伤状态和峰值应力的影响大于对杨氏模量和剪切模量的影响。

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