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首页> 外文期刊>International Journal for Numerical Methods in Engineering >A level set approach for topology optimization with local stress constraints
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A level set approach for topology optimization with local stress constraints

机译:具有局部应力约束的拓扑优化的水平集方法

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摘要

The purpose of this work is to present a level set-based approach for the structural topology optimization problem of mass minimization submitted to local stress constraints. The main contributions are threefold. First, the inclusion of local stress constraints by means of an augmented Lagrangian approach within the level set context. Second, the proposition of a constraint procedure that accounts for a continuous activation/deactivation of a finite number of local stress constraints during the optimization sequence. Finally, the proposition of a logarithmic scaling of the level set normal velocity as an additional regularization technique in order to improve the minimization sequence. A set of benchmark tests in two dimensions achieving successful numerical results assesses the good behavior of the proposed method. In these examples, it is verified that the algorithm is able to identify stress concentrations and drive the design to a feasible local minimum.
机译:这项工作的目的是提出一种基于水平集的方法,以解决受局部应力约束的质量最小化的结构拓扑优化问题。主要贡献是三方面的。首先,通过水平集上下文中的增强拉格朗日方法将局部应力约束包括在内。其次,提出了一个约束过程的提议,该约束过程说明了优化序列期间有限数量的局部应力约束的连续激活/去激活。最后,水平对数缩放的提议将法线速度设置为一种附加的正则化技术,以改善最小化顺序。一组在二维上获得成功数值结果的基准测试评估了所提出方法的良好性能。在这些示例中,证实了该算法能够识别应力集中并将驱动设计推向可行的局部最小值。

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