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Non-local micromechanical anisotropic damage modeling for quasi-brittle materials: formulation and implementation

机译:准脆性材料的非局部微机械各向异性损伤模型:配方和实施

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A nonlocal anisotropic damage model is proposed for quasi-brittle materials, such as concrete and rock. The local anisotropic damage model is formulated by combining a free energy derived from micromechanics with phenomenological yield criteria and damage potentials. The trace of the total strain is used to distinguish tensile and compressive loading paths, and to account for the influence of the confining pressure on the propagation of compression cracks. Yield criteria in tension and compression are expressed in terms of equivalent strains, which depend on the difference between principal strain components. A non-local measure of strain is used to avoid localization. Constitutive parameters are calibrated against published experimental data for concrete and shale. Simulations of three-point bending tests show that non-local enhancement is necessary and efficient to avoid mesh dependency upon strain softening. Simulations of borehole excavation damage zone show that the damage model is not mesh dependent upon stress hardening. Numerical predictions are in agreement with experimental observations and the model can capture unilateral effects, tensile softening, compressive hardening and confinement dependent compressive behavior.
机译:为准脆性材料提出了非局部各向异性损伤模型,如混凝土和岩石。通过将源自微机械源的自由能与现象学屈服标准和损伤潜力组合来配制局部各向异性损伤模型。总菌株的痕迹用于区分拉伸和压缩负载路径,并考虑限制压力对压缩裂缝传播的影响。张力和压缩的屈服标准以等效菌株表达,这取决于主应变组分之间的差异。使用非本地应变度量来避免本地化。根据用于混凝土和页岩的已发表的实验数据校准本构参数。三点弯曲试验的模拟表明,不局部增强是必要的,以避免在菌株软化时依赖网格依赖性。钻孔挖掘损伤区的仿真表明,损伤模型依赖于应力硬化的损伤模型。数值预测与实验观察结果一致,模型可以捕获单侧效应,拉伸软化,压缩硬化和限制依赖性压缩行为。

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