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An efficient gradient smoothing meshfree formulation for the fourth-order phase field modeling of brittle fracture

机译:脆性骨折的第四阶期场建模有效梯度平滑网上普通配方

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摘要

A reproducing kernel gradient smoothing meshfree formulation is proposed for the fourth-order phase field modeling of brittle fracture. In order to circumvent the complexity and lower efficiency of meshfree gradient computation, a reproducing kernel gradient smoothing formulation is presented with particular reference to quadratic basis functions. Both first- and second-order meshfree smoothed gradients are discussed, in which the first-order smoothed gradients are expressed as a reproducing kernel form and meet the quadratic consistency conditions of Galerkin weak form, and the second-order smoothed gradients are then computed through performing a direct differentiation on the first-order smoothed gradients. It turns out that the resulting second-order smoothed gradients satisfy the standard gradient reproducing conditions of meshfree approximations. Subsequently, the smoothed gradients of meshfree shape functions are employed to discretize the Galerkin weak forms of equilibrium and crack phase field equations, where the numerical integration and smoothed gradient construction are specially emphasized. The tensile-compressive strain decomposition is adopted to prevent compressive crack evolution. Numerical results demonstrate the effectiveness of the proposed gradient smoothing meshfree formulation for the fourth-order phase field modeling of brittle fracture.
机译:提出了一种再生核梯度平滑网眼配方,用于脆性骨折的四阶相场模型。为了规避网格梯度计算的复杂性和较低效率,特别参考二次基础函数来呈现再生核梯度平滑制剂。讨论了第一和二阶网格平滑平滑梯度,其中一阶平滑梯度表示为再现内核形式并满足Galerkin弱形式的二次一致性条件,然后通过第二阶平滑梯度计算在一阶平滑梯度上执行直接差异化。事实证明,由此产生的二阶平滑梯度满足网格紫外近似的标准梯度再现条件。随后,采用网格形状函数的平滑梯度来分散Galerkin弱形式的平衡和裂纹相位场方程,其中特殊地强调了数值积分和平滑的梯度结构。采用拉伸压缩应变分解来防止压缩裂纹进化。数值结果证明了所提出的梯度平滑网格普通配方对脆性断裂的第四阶相域模拟的有效性。

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