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CHARACTERIZATION OF LATTICE STRUCTURES FOR ADDITIVE MANUFACTURING OF LIGHTWEIGHT MECHANICAL COMPONENTS

机译:轻型机械组件的增材制造的晶格结构表征

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Tensile and compression test specimens comprising lattice structures with simple cubic, crossing-rod and body-centered cubic (BCC) unit cells are produced via SLM additive manufacturing (AM) of AISI 316L stainless steel and CoCr powder. Equivalent stress-elongation curves are obtained, with equivalent strength, specific strength, stiffness modulus and specific stiffness calculated based on specimen density and sample cross-section. The obtained results highlight the fact that analogous structures can behave very differently depending on the chosen material. While large differences are obtained in strength and stiffness between the different unit cell types, specific strength and specific stiffness vary to a lesser extent. Two case studies are presented, including a porous structure suitable for bone implants in the field of biomedical engineering and an AISI316L food packaging machine component. The results obtained in this study provide useful guidelines and equivalent properties for designers wishing to exploit the advantages of internal lattice structures in AM.
机译:拉伸和压缩试样由AISI 316L不锈钢和CoCr粉末的SLM增材制造(AM)制成,包括具有简单立方,横杆和体心立方(BCC)晶格的晶格结构。获得等效应力-伸长率曲线,并根据试样密度和样品横截面计算出等效强度,比强度,刚度模量和比刚度。获得的结果凸显了这样一个事实,即类似的结构可能会根据所选的材料而表现出很大的差异。虽然在不同的晶胞类型之间在强度和刚度上获得了很大的差异,但是比强度和比刚度的变化程度较小。提出了两个案例研究,包括适用于生物医学工程领域中的骨植入物的多孔结构和AISI316L食品包装机组件。这项研究中获得的结果为希望利用AM内部晶格结构优势的设计人员提供了有用的指导和等效属性。

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