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Peridynamic simulation of fracture in quasi brittle solids using irregular finite element mesh

机译:不规则有限元滤网逆骨折骨折骨折模拟

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摘要

When subjected to increasing external loads, quasi brittle solids usually experience crack nucleation and propagation, leading to final failure of material. Numerical modeling and simulation of cracking process is an essentially important issue in mechanics and engineering science. This paper aims at applying the peridynamic method to simulate crack propagation using irregularly distributed material grids generated from finite element mesh. For post-treatment of physical fields such as strain and stress, a relevant visualization technique is developed. Various numerical tests are conducted for validation and application. Firstly, a square plate with a centrally located circular hole is considered for uniaxial tension tests performed with different non-uniform distributions of material grids. Peridynamic predictions are compared to finite element results and the influence of grid density, distribution and orientation on fracturing process is evaluated and the nonlocality of numerical results is demonstrated. Secondly, a pre-cracked plate with an off-centre circular hole is simulated under tension condition to assess the performance of locally refined grid. Finally, a square plate containing two parallel pre-existing cracks under biaxial tension is tested under different combinations of geometric parameters. The present work is in favour of developing a combined peridynamics/finite element numerical technique for efficient modelling and simulation of complex cracking problems. (C) 2017 Elsevier Ltd. All rights reserved.
机译:当受到外部载荷的增加时,准脆性固体通常经历裂缝成核和繁殖,导致材料的最终失效。裂解过程的数值建模与仿真是力学与工程科学的基本重要问题。本文旨在使用从有限元网格产生的不规则分布的材料网格来应用逆动脉法模拟裂缝传播。对于诸如应变和应力的物理领域的后处理,开发了相关的可视化技术。进行各种数值测试以进行验证和应用。首先,考虑具有居中圆孔的方形板,用于用不同的材料网格的不同不均匀的分布进行单轴张力试验。将王动脉预测与有限元结果进行比较,评价栅格密度,分布和取向对压裂过程的影响,并证明了数值结果的非界面。其次,在张力条件下模拟具有偏心圆孔的预裂纹板,以评估局部精制栅格的性能。最后,在几何参数的不同组合下测试含有两个平行预先存在裂缝的方形板。本作本作有利于开发联合性斜度/有限元数值技术,以实现复杂开裂问题的有效建模和模拟。 (c)2017 Elsevier Ltd.保留所有权利。

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