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An enhanced non local failure criterion for laminated glass under low velocity impact

机译:低速冲击下夹层玻璃的增强非局部破坏准则

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An enhanced non-local failure criterion for laminated safety glass under low velocity impact for explicit finite element simulations with element erosion is presented. Hereby, the fracture strength of the glass depends on the stress rate and is approximated by a power law for the crack velocity resulting from the sub-critical crack growth. In dependence of the size of the finite elements, the singularity of the stress field in the vicinity of the crack tip is underestimated by the element erosion technique. In contrast to classical linear elastic fracture mechanics, the model uses a non-local approach for a decrease of strength in the direction of a crack perpendicular to the maximum in plane stresses, instead of an increase of the stress field in the vicinity of the crack tip. The failure criterion is implemented in the explicit solver LS-DYNA as an user defined material model. In order to investigate the accuracy of the model, the results are compared to head impact tests on windscreens used in the context of crash simulations. (C) 2017 Elsevier Ltd. All rights reserved.
机译:提出了一种改进的夹层安全玻璃在低速冲击下的非局部破坏准则,用于带有单元腐蚀的显式有限元模拟。因此,玻璃的断裂强度取决于应力率,并且对于因次临界裂纹增长而产生的裂纹速度,通过幂律近似。根据有限元的大小,裂纹尖端附近应力场的奇异性被元件腐蚀技术低估了。与经典的线性弹性断裂力学相反,该模型使用非局部方法来降低垂直于平面应力最大值的裂纹方向的强度,而不是增加裂纹附近的应力场小费。失效准则在显式求解器LS-DYNA中作为用户定义的材料模型实现。为了调查模型的准确性,将结果与碰撞模拟环境中使用的挡风玻璃上的头部碰撞测试进行了比较。 (C)2017 Elsevier Ltd.保留所有权利。

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