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首页> 外文期刊>Composite structures >Topology optimized design and validation of sandwich structures with pure-lattice/solid-lattice infill by additive manufacturing
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Topology optimized design and validation of sandwich structures with pure-lattice/solid-lattice infill by additive manufacturing

机译:通过增材制造对具有纯晶格/固体晶格填充的夹层结构进行拓扑优化设计和验证

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摘要

Compared to standard structures with pure solid members, sandwich structures behave mechanical advantages in terms of strength-to-weight, stiffness-to-weight, energy absorption capabilities, yet lightweight potentials. Sandwich structures can be driven by both exterior layout and infill configuration design to improve structural performance while reduce the weight. In this paper, sandwich structures with pure-lattice / solid-lattice infill by additive manufacturing is systematically investigated in combination with topology optimized design and vali-dation. The equivalent material properties of infill BCC and F2BCC lattices are determined though finite element simulation. The newly developed sandwich structural topology optimization algorithm based on two-step density filtering is employed to obtain the conceptual designs with pure or hybrid infill. The topology optimized structures are fabricated by additive manufacturing, which are validated through three-point bending experi-ments and numerical simulations.
机译:与具有纯实心构件的标准结构相比,夹层结构在强度重量比、刚度重量比、能量吸收能力和轻量化潜力方面具有机械优势。夹层结构可以通过外部布局和填充配置设计来驱动,以提高结构性能,同时减轻重量。本文结合拓扑优化设计和评估,系统地研究了增材制造的纯晶格/固晶格填充夹层结构。通过有限元模拟确定了填充BCC和F2BCC晶格的等效材料属性。采用新开发的基于两步密度滤波的夹层结构拓扑优化算法,得到纯填充或混合填充的概念设计。拓扑优化结构通过增材制造制造,并通过三点弯曲实验和数值模拟进行验证。

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