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Optimal topology for additive manufacture: A method for enabling additive manufacture of support-free optimal structures

机译:增材制造的最佳拓扑:一种能够无支撑的最优结构进行增材制造的方法

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摘要

Topology optimisation enables profound insight into the optimal material distribution for a given structural objective, applied loading and boundary conditions. The topologically optimal geometry is often geometrically complex and incompatible with traditional manufacturing methods. Additive manufacture can accommodate significantly more complex geometries than traditional manufacture; however, it is necessary that specific design rules be satisfied to ensure manufacturability. Based on identified design for additive manufacture rules, a novel method is proposed that modifies the theoretically optimal topology as required to ensure manufacturability without requiring additional support material. By assessing the manufacturing time and component mass associated with feasible orientations of the proposed geometry, an optimal orientation can be identified. A case study is presented to demonstrate the usefulness of the proposed method.
机译:拓扑优化可以深入了解给定结构目标,施加的载荷和边界条件下的最佳材料分布。拓扑上最佳的几何形状通常在几何形状上复杂且与传统制造方法不兼容。与传统制造相比,增材制造可以容纳更复杂的几何形状;但是,必须满足特定的设计规则以确保可制造性。基于用于增材制造规则的确定设计,提出了一种新颖的方法,该方法可根据需要修改理论上最佳的拓扑结构,以确保可制造性而无需其他支撑材料。通过评估与提出的几何形状的可行方向相关的制造时间和组件质量,可以确定最佳方向。案例研究表明了该方法的有效性。

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  • 来源
    《Materials & design》 |2014年第11期|678-690|共13页
  • 作者单位

    RMIT Centre for Additive Manufacturing, School of Aerospace, Mechanical and Manufacturing Engineering, RMIT University, Melbourne, Australia;

    Department of Mechanical Engineering, Politecnico di Milano, Milan, Italy;

    Department of Mechanical Engineering, Politecnico di Milano, Milan, Italy;

    RMIT Centre for Additive Manufacturing, School of Aerospace, Mechanical and Manufacturing Engineering, RMIT University, Melbourne, Australia;

    RMIT Centre for Additive Manufacturing, School of Aerospace, Mechanical and Manufacturing Engineering, RMIT University, Melbourne, Australia;

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