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A Novel Optimization Design Method of Additive Manufacturing Oriented Porous Structures

机译:一种新型优化设计方法的添加制造定向多孔结构

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The advanced development of additive manufacturing (AM) has greatly promoted the research and application of variable density porous structures. Meanwhile, AM constraints highlight the significance of design for AM (DFAM). The structural performance of existing topology optimization (TO) based design methods is limited and AM constraints are little considered. In this paper, we propose a novel optimization design method of AM oriented porous structures which allows the existence of void. A novel density filter is designed to achieve multi-interval TO for better structural performance and satisfy the minimum feature size constraint. Meanwhile, another customized density filter is designed to obtained support-free porous structure for the buildability constraint of AM. FEA results demonstrate that optimized porous structure designed by proposed method has better stiffness performance and adaptability to AM constraints, compared with existing methods.
机译:添加剂制造(AM)的先进发展促进了可变密度多孔结构的研究和应用。同时,AM约束突出了设计对AM(DFAM)的重要性。基于基于拓扑优化(至)的设计方法的结构性能有限,AM限制很少考虑。在本文中,我们提出了一种新颖的am定向多孔结构的优化设计方法,其允许空隙的存在。新颖的密度滤波器旨在实现多间隔,以实现更好的结构性能,并满足最小特征尺寸约束。同时,设计了另一种定制密度滤波器,以获得可靠的多孔结构,以实现AM的易于限制。与现有方法相比,FEA结果表明,由所提出的方法设计的优化多孔结构具有更好的刚度性能和对AM约束的适应性。

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