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Manufacturing and Characterization of Ti6Al4V Lattice Components Manufactured by Selective Laser Melting

机译:选择性激光熔融制备Ti6Al4V晶格组件的制造与表征

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The paper investigates the fabrication of Selective Laser Melting (SLM) titanium alloy Ti6Al4V micro-lattice structures for the production of lightweight components. Specifically, the pillar textile unit cell is used as base lattice structure and alternative lattice topologies including reinforcing vertical bars are also considered. Detailed characterizations of dimensional accuracy, surface roughness, and micro-hardness are performed. In addition, compression tests are carried out in order to evaluate the mechanical strength and the energy absorbed per unit mass of the lattice truss specimens made by SLM. The built structures have a relative density ranging between 0.2234 and 0.5822. An optimization procedure is implemented via the method of Taguchi to identify the optimal geometric configuration which maximizes peak strength and energy absorbed per unit mass.
机译:本文研究了选择性激光熔化(SLM)钛合金Ti6Al4V微晶格结构的制造,以生产轻质部件。具体而言,将柱纺织单元用作基础晶格结构,并且还考虑了包括增强垂直条的替代晶格拓扑。进行尺寸精度,表面粗糙度和显微硬度的详细表征。另外,进行压缩测试以评估由SLM制造的晶格桁架样品的机械强度和单位质量吸收的能量。建造的结构的相对密度在0.2234和0.5822之间。通过Taguchi的方法实施了优化程序,以确定最佳的几何构型,该构型可以使峰强度和单位质量吸收的能量最大化。

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