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首页> 外文期刊>International Journal for Numerical Methods in Engineering >A novel topology optimization formulation for enhancing fracture resistance with a single quasi-brittle material
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A novel topology optimization formulation for enhancing fracture resistance with a single quasi-brittle material

机译:一种新型拓扑优化配方,用于提高单脆性材料的裂缝抗性

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摘要

Optimal design of structures for fracture resistance is a challenging subject. This appears to be largely due to the strongly nonlinear governing equations associated with explicitly modeling fracture propagation. We propose a topology optimization formulation, in which low weight structures are obtained with significantly increased resistance to brittle fracture, in which crack propagation is explicitly modeled with the phase field approach. By contrast to our previous work, several important features are included which greatly assist the optimizer in dealing with the strongly discontinuous brittle fracture process, including a new objective function, which provides additional path information to the optimizer. Increased local control of the topology is introduced via a smoothed threshold function in the phase field fracture formulation and a constraint relaxation continuation scheme is proposed to alleviate some difficulty during the initial optimization iterations. The derivation of the analytical, path-dependent sensitivities for the relevant functions is provided and the results from two benchmark numerical examples are presented which demonstrate the effectiveness of the proposed method.
机译:裂缝抗性结构的最佳设计是一个具有挑战性的主题。这似乎是由于与明确建模裂缝扩展相关的强烈非线性控制方程。我们提出了一种拓扑优化制剂,其中获得低重量结构,以显着增加对脆性骨折的抗性,其中裂纹传播用相位场方法明确建模。与我们以前的工作相比,包括一些重要的功能,这极大地帮助优化器在处理强烈不连续的脆性断裂过程中,包括新的客观函数,为优化器提供额外的路径信息。通过平滑的阈值函数在相位场裂缝制剂中引入增加拓扑的增加,并且提出了一个约束弛豫延续方案,以减轻初始优化迭代期间的一些困难。提供了用于相关功能的分析,路径依赖性敏感性的衍生,并提出了来自两个基准数值例子的结果,其证明了所提出的方法的有效性。

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