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Design of graded lattice structure with optimized mesostructures for additive manufacturing

机译:用于增材制造的具有优化介观结构的渐变晶格结构设计

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Additive manufacturing (AM) enables fabrication of multiscale cellular structures as a whole part, whose features can span several dimensional scales. Both the configurations and layout pattern of the cellular lattices have great impact on the overall performance of the lattice structure. In this paper, we propose a novel design method to optimize cellular lattice structures to be fabricated by AM. The method enables an optimized load-bearing solution through optimization of geometries of global structures and downscale mesostructures, as well as global distributions of spatially-varying graded mesostructures. A shape metamorphosis technology is incorporated to construct the graded mesostructures with essential interconnections. Experimental testing is undertaken to verify the superior stiffness properties of the optimized graded lattice structure compared to the baseline design with uniform mesostructures. (c) 2018 Elsevier Ltd. All rights reserved.
机译:增材制造(AM)可以将多尺度的蜂窝结构作为一个整体进行制造,其特征可以跨越多个尺度。蜂窝状晶格的配置和布局图案都对晶格结构的整体性能有很大影响。在本文中,我们提出了一种新颖的设计方法来优化AM制造的蜂窝晶格结构。该方法通过优化整体结构和小尺度介观结构的几何形状以及空间变化渐变介观结构的全局分布,实现了优化的承载解决方案。整合了形状变形技术,以构造具有必要互连的渐变介观结构。进行了实验测试,以验证与具有均匀介观结构的基线设计相比,优化的渐变晶格结构具有优异的刚度特性。 (c)2018 Elsevier Ltd.保留所有权利。

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