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切片对采用多射流熔融技术制造的晶格结构力学性能的影响。

Effect of Fillets on Mechanical Properties of Lattice Structures Fabricated Using Multi-Jet Fusion Technology.

作者信息

Nazir Aamer, Arshad Ahmad-Bin, Hsu Chi-Pin, Jeng Jeng-Ywan

机构信息

Department of Mechanical Engineering, National Taiwan University of Science and Technology, 43 Keelung Road, Section 4, Taipei 10607, Taiwan.

High Speed 3D Printing Research Center, National Taiwan University of Science and Technology, No. 43, Section 4, Keelung Road, Taipei 10607, Taiwan.

出版信息

Materials (Basel). 2021 Apr 24;14(9):2194. doi: 10.3390/ma14092194.

Abstract

Cellular structures with tailored topologies can be fabricated using additive manufacturing (AM) processes to obtain the desired global and local mechanical properties, such as stiffness and energy absorption. Lattice structures usually fail from the sharp edges owing to the high stress concentration and residual stress. Therefore, it is crucial to analyze the failure mechanism of lattice structures to improve the mechanical properties. In this study, several lattice topologies with fillets were designed, and the effects of the fillets on the stiffness, energy absorption, energy return, and energy loss of an open-cell lattice structure were investigated at a constant relative density. A recently developed high-speed AM multi-jet fusion technology was employed to fabricate lattice samples with two different unit cell sizes. Nonlinear simulations using ANSYS software were performed to investigate the mechanical properties of the samples. Experimental compression and loading-unloading tests were conducted to validate the simulation results. The results showed that the stiffness and energy absorption of the lattice structures can be improved significantly by the addition of fillets and/or vertical struts, which also influence other properties such as the failure mechanism and compliance. By adding the fillets, the failure location can be shifted from the sharp edges or joints to other regions of the lattice structure, as observed by comparing the failure mechanisms of type B and C structures with that of the type A structure (without fillets). The results of this study suggest that AM software designers should consider filleted corners when developing algorithms for generating various types of lattice structures automatically. Additionally, it was found that the accumulation of unsintered powder in the sharp corners of lattice geometries can also be minimized by the addition of fillets to convert the sharp corners to curved edges.

摘要

利用增材制造(AM)工艺可以制造具有定制拓扑结构的细胞结构,以获得所需的整体和局部机械性能,如刚度和能量吸收。由于高应力集中和残余应力,晶格结构通常会从尖锐边缘处失效。因此,分析晶格结构的失效机制对于改善机械性能至关重要。在本研究中,设计了几种带有圆角的晶格拓扑结构,并在恒定相对密度下研究了圆角对开孔晶格结构的刚度、能量吸收、能量返回和能量损失的影响。采用最近开发的高速AM多喷射融合技术制造具有两种不同单胞尺寸的晶格样品。使用ANSYS软件进行非线性模拟,以研究样品的机械性能。进行了实验压缩和加载-卸载试验以验证模拟结果。结果表明,通过添加圆角和/或垂直支柱可以显著提高晶格结构的刚度和能量吸收,这也会影响其他性能,如失效机制和柔度。通过添加圆角,如通过比较B型和C型结构与A型结构(无圆角)的失效机制所观察到的,失效位置可以从尖锐边缘或接头转移到晶格结构的其他区域。本研究结果表明,AM软件设计师在开发自动生成各种类型晶格结构的算法时应考虑带圆角的角。此外,还发现通过添加圆角将尖锐角转换为弯曲边缘,也可以使晶格几何形状尖锐角处未烧结粉末的堆积最小化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ccd/8123134/a613c33cd2f5/materials-14-02194-g001.jpg

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