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An investigation of the mechanical properties of metallic lattice structures fabricated using selective laser melting

机译:利用选择性激光熔化制备金属晶格结构的力学性能的研究

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摘要

Metallic lattice structures manufactured using selective laser melting are widely used in fields such as aerospace and automobile industries in order to save material and reduce energy consumption. An essential element of metallic lattice structures design is determining their mechanical behaviors under loading conditions. Theoretical method based on beam theory has been proposed for evaluating the behaviors of the commonly used body-centered cubic lattice structures. However, it is difficult to predict theoretically the properties of the uniaxially reinforced lattice structures based on the body-centered cubic structures. Since the reinforced structures have superior strength to weight ratio and are deemed promising in lightweight-design applications, this article proposed a force-method-based theoretical method to calculate the mechanical properties of the body-centered cubic structure and its two types of uniaxially reinforced structures fabricated via selective laser melting. The finite element analysis and compression experiment study of selective laser melting samples made using Ti6Al4V powders demonstrated the validity of the proposed analytical method.
机译:背景技术使用选择性激光熔化制造的金属晶格结构广泛用于诸如航空航天和汽车工业的领域,以节省材料并降低能耗。金属晶格结构设计的基本要素是确定其在负载条件下的机械性能。提出了一种基于梁理论的理论方法来评估常用的以人体为中心的立方晶格结构的行为。然而,难以基于体心立方结构从理论上预测单轴增强晶格结构的性能。由于增强的结构具有优异的强度重量比,并且在轻型设计应用中被认为很有希望,因此本文提出了一种基于力法的理论方法来计算体心立方结构及其两种类型的单轴增强结构的力学性能。通过选择性激光熔化制造的结构。用Ti6Al4V粉末制备的选择性激光熔化样品的有限元分析和压缩实验研究证明了该分析方法的有效性。

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