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MESOSCALE MATERIAL STRENGTH CHARACTERIZATION FOR USE IN FRACTURE MODELING

机译:用于断裂建模的中尺度材料强度表征

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To accurately simulate fracture, it is necessary to account for small-scale randomness in the properties of a material. Apparent properties of Statistical Volume Elements (SVE), can be characterized below the scale of a Representative Volume Element (RVE). Apparent properties cannot be defined uniquely for an SVE, in the manner that unique effective properties can be defined for an RVE. Both constitutive behavior and material strength properties in SVE must be statistically characterized. The geometrical partitioning method can be critically important in affecting the probability distributions of mesoscale material property parameters. Here, a Voronoi tessellation based partitioning scheme is applied to generate SVE. Resulting material property distributions are compared with those from SVE generated by square partitioning. The proportional limit stress of the SVE is used to approximate SVE strength. Superposition of elastic results is used to obtain failure strength distributions from boundary conditions at variable angles of loading.
机译:为了精确模拟断裂,必须考虑材料特性的小范围随机性。统计体积元素(SVE)的表观属性可以在代表性体积元素(RVE)的尺度以下进行表征。不能为SVE唯一定义表观属性,而不能为RVE定义唯一有效属性。 SVE中的本构行为和材料强度特性都必须进行统计表征。几何划分方法对于影响中尺度材料特性参数的概率分布至关重要。在此,基于Voronoi细分的分区方案被应用于生成SVE。将所得的材料属性分布与通过平方划分生成的SVE中的材料属性分布进行比较。 SVE的比例极限应力用于近似SVE强度。弹性结果的叠加用于从边界条件在可变载荷角度下获得破坏强度分布。

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