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DESIGN METHOD FOR LATTICE-SKIN STRUCTURE FABRICATED BY ADDITIVE MANUFACTURING

机译:添加剂制造制造的晶格皮结构的设计方法

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Parts with complex geometry structure can be produced by AM without significant increase of fabrication time and cost. One application of AM technology is to fabricate customized lattice-skin structure which can enhance performance of products with less material and less weight. However, most of traditional design methods only focus on design at macro-level with solid structure. Thus, a design method which can generate customized lattice-skin structure for performance improvement and functionality integration is urgently needed. In this paper, a novel design method for lattice-skin structure is proposed. In this design method, FSs and FVs are firstly generated according to FRs. Then, initial design space is created by filling FVs and FSs with selected lattice topology and skin, respectively. In parallel to the second step, initial parameters of lattice-skin structure are calculated based on FRs. Finally, TO method is used to optimize parameter distribution of lattice structure with the help of mapping function between TO's result and lattice parameters. The design method proposed in this paper is proven to be efficient with case study and provides an important foundation for wide adoption of AM technologies in industry.
机译:具有复杂几何结构的零件可以通过am生产,而不会显着增加制造时间和成本。 AM技术的一种应用是制造定制的晶格 - 皮肤结构,可以增强具有较少材料和更重量的产品的性能。然而,大多数传统设计方法只关注宏观级别的设计,具有坚实的结构。因此,迫切需要一种可以产生定制的晶格皮肤结构的设计方法,是迫切需要改进和功能集成。本文提出了一种新颖的晶格皮结构设计方法。在这种设计方法中,首先根据FRS生成FSS和FV。然后,通过分别使用所选晶格拓扑和皮肤填充FV和FSS来创建初始设计空间。与第二步并行,基于FRS计算格子皮结构的初始参数。最后,通过映射函数与晶格参数之间的映射函数来优化晶格结构参数分布的方法。本文提出的设计方法被证明是有效的,案例研究,为广泛采用AM工业技术提供了重要的基础。

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