材料科学
压缩(物理)
网络拓扑
刚度
钛合金
弯曲
结构工程
拓扑(电路)
格子(音乐)
压缩性
复合材料
合金
机械
数学
计算机科学
工程类
物理
组合数学
操作系统
声学
作者
Sunil Raghavendra,A. Molinari,Anni Cao,Chao Gao,Filippo Berto,Gianluca Zappini,M. Benedetti
摘要
Abstract The main aim of the current study is to evaluate the compressive quasi‐static and fatigue properties of titanium alloy (Ti6Al4V) cellular materials, with different topologies, manufactured via laser powder bed fusion (LPBF) process. The topologies herein considered are lattice‐based regular and irregular configurations of cubic, star, and cross‐shaped unit cell along with trabecular‐based topology. The results have indicated that the effective stiffness of all configurations are in the range of 0.3–20 GPa, which is desirable for implant applications. The morphological irregularities in the structures induce bending‐dominated behavior affecting more the topologies with vertical struts. The S–N curves normalized with respect to the yield stress indicate that the behavior of star regular structures is between purely stretching‐dominated cubic and purely bending‐dominated cross‐based structures. Trabecular structures have shown desirable quasi‐static and fatigue properties despite the random distribution of struts.
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