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Outline of Lattice Structures: Morphology, Manufacturing,and Material Aspect

机译:晶格结构概述:形态,制造和材料方面

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Additive manufacturing technologies possess the capability to produce products according to customer demands, which make these technologies as the best option for lightweight technology. Another advantage is the design complex intricate shapes can be easily manufactured by rapid prototyping technologies to include lattice structures in automobile applications like the body panels of the car, the engine's intercooler, or gas tank with the aim of weight and strength optimizations. There are various techniques available for manufacturing lattices. This paper presents an outline of lattice structure with respect to different morphologies, various manufacturing methods for it, and different materials available to produce lattice structures. It discusses how the variation of characteristics can improve the lattices' performance significantly, from a mechanical and application point of view. The characterization of lattice structures and the recent developments in finite element analysis models are studied. Many authors compared conventional techniques with additive manufacturing; it was found that manufacturing defects induced in Micro-Lattice Structure manufactured via additive manufacturing were less. With the help of additive manufacturing, complex morphologies can be easily developed by using CAD software.The simple, rapid, and scalable fabrication of MLS are achieved using additive manufacturing. This paper gives an overall idea about how research progressed by different researchers regarding lattices in terms of materials FE analysis and suggests future research directions required to improve their use in lightweight applications.
机译:增材制造技术具有根据客户需求生产产品的能力,这使这些技术成为轻量化技术的最佳选择。另一个优势是,设计复杂的复杂形状可以通过快速原型技术轻松制造,以包括汽车应用中的格子结构,例如汽车的车身面板,发动机的中冷器或油箱,以优化重量和强度。有多种可用于制造晶格的技术。本文针对不同的形态,不同的制造方法以及可用于生产晶格结构的不同材料,概述了晶格结构的概况。它从机械和应用的角度讨论了特性的变化如何显着提高晶格的性能。研究了晶格结构的表征以及有限元分析模型的最新发展。许多作者将传统技术与增材制造进行了比较。发现通过增材制造制造的微晶格结构中引起的制造缺陷较少。借助增材制造,可以使用CAD软件轻松开发复杂的形态。使用增材制造可以轻松,快速且可扩展地制造MLS。本文从材料有限元分析的角度给出了有关不同研究人员如何进行晶格研究的总体思路,并提出了改进其在轻量化应用中的用途所需的未来研究方向。

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