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DESIGN OF VARIABLE-DENSITY STRUCTURES FOR ADDITIVE MANUFACTURING USING GYROID LATTICES

机译:利用陀螺格构设计增密度制造的变密度结构

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Additive manufacturing (AM) processes enable the creation of lattice structures having complex geometry which offer great potential for designing light weight parts. The combination of AM and cellular lattice structures provide promising design solutions in terms of material usage, cost and part weight. However, the geometric complexity of the structures calls for a robust methodology to incorporate the lattices in parts designs and create optimum light weight designs. This paper proposes a novel method for designing light weight variable-density lattice structures using gyroids. The parametric 3D implicit function of gyroids has been used to control the shape and volume fraction of the lattice. The proposed method is then combined with the density distribution information from topology optimization algorithm. A density mapping and interpolation approach is proposed to map the output of topology optimization into the parametric gyroids structures which results in an optimum lightweight lattice structure with uniformly varying densities across the design space. The proposed methodology has been validated with two test cases.
机译:增材制造(AM)工艺能够创建具有复杂几何形状的晶格结构,这为设计轻质零件提供了巨大的潜力。 AM和蜂窝晶格结构的组合在材料使用,成本和零件重量方面提供了有前途的设计解决方案。但是,结构的几何复杂性要求采用可靠的方法,将晶格合并到零件设计中并创建最佳的轻量化设计。本文提出了一种利用陀螺仪设计轻质变密度晶格结构的新方法。陀螺的参数化3D隐式函数已用于控制晶格的形状和体积分数。然后将所提出的方法与拓扑优化算法中的密度分布信息相结合。提出了一种密度映射和插值方法,以将拓扑优化的输出映射到参数化回旋结构中,从而得到在整个设计空间内密度均匀变化的最佳轻量级晶格结构。所提出的方法已通过两个测试案例进行了验证。

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