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首页> 外文期刊>Theoretical and Applied Fracture Mechanics >Finite element implementation of the coupled criterion for numerical simulations of crack initiation and propagation in brittle materials
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Finite element implementation of the coupled criterion for numerical simulations of crack initiation and propagation in brittle materials

机译:有限元的耦合标准的数值模拟脆性原料中的裂缝启动和传播的耦合标准

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Highlights?A new numerical fracture model for brittle materials was established on the basis of the coupled criterion;?Both crack initiation and crack growth in complex 2D structures can accurately be predicted;?Multiple cracking processes can be simulated.?The fracture predictions are weakly mesh-sensitive.AbstractThe proposed numerical model for simulating two-dimensional cracking process in brittle materials is based on the coupled criterion (CC) which enters in the general framework of Finite Fracture Mechanics. It states that both the energy and stress conditions should be fulfilled to predict the crack creation in brittle solids. Special numerical approaches were developed in drawing correctly the potential crack paths and to minimize the potential energy with respect to all predicted crack paths. The originality of this work lies in the ability to describe both the initiation and the growth of one or more c
机译:<![cdata [ 亮点 基于耦合标准建立了一种新的数值裂缝模型的脆性材料; 都可以准确地预测复杂2D结构中的裂纹启动和裂纹增长; 可以模拟多裂解过程。 label> 裂缝预测是弱网眼敏感。 抽象 所提出的用于模拟脆性材料的二维开裂过程的建议数值模型基于耦合标准(CC),其进入有限裂缝的一般框架力学。它指出,应履行能量和应力条件,以预测脆性固体中的裂缝产生。在正确的潜在裂缝路径上绘制特殊数值方法,并最小化关于所有预测的裂缝路径的潜在能量。这项工作的原创性在于能够描述一个或多个C的启动和增长

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