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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >The effects of bidirectional evolutionary structural optimization parameters on an industrial designed component for additive manufacture
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The effects of bidirectional evolutionary structural optimization parameters on an industrial designed component for additive manufacture

机译:双向演化结构优化参数对增材制造工业设计组件的影响

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An assessment of the effect of topology optimization design parameters on the performance of an additively manufactured part has been performed. The dependence of the output from a topology optimization involving an aerospace component on the topology optimization control parameters, evolution rate and filter radius was determined. The converged strain energy was found to depend quadratically on the filter radius while the number of iterations required to achieve a solution was broadly related to the evolution rate. These findings demonstrate the potential for significant design efficiencies when manufacturing using additive manufacturing approaches but also the need to be aware of the sensitivity of the bidirectional evolutionary structural optimization optimized design on the selected optimization parameters. This sensitivity can potentially be used advantageously to steer the solution to an optima with features suitable to a particular manufacturing method such as additive manufacturing.
机译:已经对拓扑优化设计参数对增材制造零件的性能的影响进行了评估。确定了涉及航空航天部件的拓扑优化的输出对拓扑优化控制参数,演化速率和滤波器半径的依赖性。发现会聚的应变能与滤波器半径呈二次方关系,而实现一个解所需的迭代次数与演化速率广泛相关。这些发现证明了使用增材制造方法进行制造时具有显着的设计效率的潜力,而且还需要了解双向演化结构优化优化设计对所选优化参数的敏感性。该灵敏度可以潜在地有利地用于以具有适合于诸如增材制造之类的特定制造方法的特征的最佳方式来引导解决方案。

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