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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >The manufacturability and compression properties of the Schwarz Diamond type Ti6Al4V cellular lattice fabricated by selective laser melting
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The manufacturability and compression properties of the Schwarz Diamond type Ti6Al4V cellular lattice fabricated by selective laser melting

机译:通过选择性激光熔化制造施瓦茨金刚石型Ti6A14V细胞晶格的可制造性和压缩性能

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摘要

Selective laser melting technology makes it possible to produce 3D cellular lattice structures with controlled porosity. The paper reflects to machining and examination of structures with predefined distribution, shape and size of the pores. In the study, the porous structures of Ti6Al4V were investigated. The tests were carried out using structures of spatial architecture of Schwarz D TPMS geometry with a total porosity of 60% and 80% and various pore sizes. Dimensional accuracy of additively manufactured structures was measured in relation to the 3D model. Geometry of the final structure differed from the CAD model in the range +/- 0.3 mm. The surface morphology and porosity of the solid struts were also checked. The mechanical properties of the structures were determined in a static compression test.
机译:选择性激光熔化技术使得可以产生具有受控孔隙率的3D细胞晶格结构。 本文反映了用预定分布,孔的形状和尺寸的结构加工和检查结构。 在该研究中,研究了Ti6Al4V的多孔结构。 使用Schwarz D TPMS几何形状的空间架构的结构进行测试,总孔隙率为60%和80%和各种孔径。 相对于3D模型测量了含有瘾制造结构的尺寸精度。 最终结构的几何形状与CAD模型在+/- 0.3mm的范围内不同。 检查了固体支柱的表面形态和孔隙率。 在静态压缩试验中测定结构的机械性能。

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