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Optimal design and modeling of variable-density triangular honeycomb structures

机译:变密度三角形蜂窝结构的优化设计与建模

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摘要

As one kind with the best comprehensive performance of various honeycombs, triangular honeycomb is an important structure to achieve lightweight. Focusing on the deficiency of the non-optimized macro-material distribution in uniform triangular honeycomb, a design and modeling method of variable-density triangular honeycomb structures was proposed. With a three-point bending beam as the design object, type and sizes of honeycomb cells were specified beforehand. The beam was topology-optimized and the density results were mapped to the relative density matrix of cells. The rapid and automatic modeling of variable-density triangular honeycomb was realized with the cyclic definitions of the User-Defined Features (UDF). The simulation results show that the mechanical performance of variable-density triangular honeycomb is better than uniform honeycomb and the efficiency of the proposed method is validated.
机译:作为各种蜂窝的综合性能最好的一种,三角形蜂窝是实现轻量化的重要结构。针对均匀三角蜂窝中非最佳宏观材料分布的不足,提出了变密度三角蜂窝结构的设计与建模方法。以三点弯曲梁为设计对象,预先确定蜂窝单元的类型和尺寸。光束经过拓扑优化,密度结果映射到细胞的相对密度矩阵。利用用户定义特征(UDF)的循环定义,实现了可变密度三角形蜂窝的快速,自动建模。仿真结果表明,变密度三角蜂窝的力学性能优于均匀蜂窝,并且验证了所提方法的有效性。

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