INVESTIGATION OF THE LOAD-BEARING CAPACITY OF Co-Cr LATTICE STRUCTURES FABRICATED BY SELECTIVE LASER MELTING

N. Babacan, Hübannur Şeremet
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引用次数: 2

Abstract

Additively manufactured Co-Cr lattice structures are promising choices especially in medical applications. This study involves the designing and fabrication of a novel lattice structures with FCCZZ (face-centered cubic with exterior and interior vertical struts) unit cell topology. The manufacturability by selective laser melting (SLM) and the load-bearing capacity of this structure were examined by utilizing scanning electron microscope (SEM) observations and uniaxial compression tests. The samples with FCCZ (face-centered cubic with vertical struts) structures were also produced and analyzed for comparison. The designed lattice structures were successfully manufactured by SLM even though an approximately 1.5-2% increase in the theoretical relative density values was observed. The novel FCCZZ samples exhibited superior performance in terms of the load-bearing capacity compared to FCCZ samples by possessing 17% higher specific strength value.
选择性激光熔化法制备钴铬晶格结构的承载性能研究
增材制造的钴铬晶格结构是很有前途的选择,特别是在医疗应用中。本研究涉及设计和制造一种具有FCCZZ(面心立方体,内外垂直支柱)单元胞拓扑结构的新型晶格结构。利用扫描电子显微镜(SEM)观察和单轴压缩试验对该结构的选择性激光熔化(SLM)工艺性和承载能力进行了研究。制作了面心立体垂直支撑结构的样品,并进行了对比分析。设计的晶格结构成功地由SLM制造,尽管观察到理论相对密度值增加了大约1.5-2%。新型FCCZZ试样的比强度值比FCCZ试样高17%,在承载性能上优于FCCZ试样。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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