Deformation Behaviors Investigation of CoCr Alloy Lattice Structures under Compression Test

Özgün Ceren Akbay, B. Özdemir, Erkan Bahçe, E. Emir
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Abstract

ith the development of the additive manufacturing method, the production of lattice structures with complex geometries attracts increasing attention. These lattice structures can be designed with the desired properties, and they are encountered in many areas such as automotive, aerospace and aviation, and manufacturing industries, as they offer the freedom to control their physical, mechanical and geometric properties. The high strength characteristic of lattice structures that can be designed at any scale makes these structures useful for producing different designs. Since the mechanical responses of the lattice structures depend on the lattice design parameters, such as the large number of independent struts forming the lattice, cell size and cell geometry, the mechanical behaviour of these structures should be examined. In this study, a porous lattice structure with four different cell models, namely Dode Medium, Diamond, Rhombic Dodecahedron, and Dode Thin, was produced by Selective Laser Melting (SLM) method. In order to reveal the mechanical properties and deformation responses of the porous lattice structures, they were analyzed under compression test and by the finite element method, and experimental and numerical procedures were compared. The effect of the compression test on the lattice properties and how the deformation is distributed throughout the lattice structure were investigated. The finite Element Analysis and Digital Image Processing (DIP) method was used to determine how the lattices deform. The results obtained will be useful for designing new metallic lattice structures with more excellent deformation resistance in future studies.
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CoCr合金点阵组织压缩变形行为研究
随着增材制造技术的发展,具有复杂几何形状的点阵结构的生产越来越受到人们的关注。这些晶格结构可以被设计成具有所需的性能,并且它们在许多领域都遇到过,例如汽车,航空航天和制造业,因为它们提供了控制其物理,机械和几何性能的自由。晶格结构的高强度特性可以在任何尺度上设计,这使得这些结构可以用于生产不同的设计。由于晶格结构的力学响应取决于晶格设计参数,例如形成晶格的大量独立支柱,单元大小和单元几何形状,因此应该检查这些结构的力学行为。本研究采用选择性激光熔化(SLM)法制备了四种不同单元模型的多孔晶格结构,即Dode Medium、Diamond、Rhombic Dodecahedron和Dode Thin。为了揭示多孔晶格结构的力学性能和变形响应,采用压缩试验和有限元方法对多孔晶格结构进行了分析,并对实验和数值计算方法进行了比较。研究了压缩试验对点阵性能的影响以及变形在点阵结构中的分布规律。采用有限元分析和数字图像处理(DIP)方法确定了网格的变形方式。所得结果对今后设计抗变形性能更好的新型金属晶格结构具有一定的指导意义。
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来源期刊
Academic Journal of Manufacturing Engineering
Academic Journal of Manufacturing Engineering Engineering-Industrial and Manufacturing Engineering
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0.40
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