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Properties of Ti-6Al-4V non-stochastic lattice structures fabricated via electron beam melting

机译:电子束熔化制备的Ti-6Al-4V非随机晶格结构的性质

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This paper addresses foams which are known as non-stochastic foams, lattice structures, or repeating open cell structure foams. The paper reports on preliminary research involving the design and fabrication of non-stochastic Ti-6Al-4V alloy structures using the electron beam melting (EBM) process. Non-stochastic structures of different cell sizes and densities were investigated. The structures were tested in compression and bending, and the results were compared to results from finite element analysis simulations. It was shown that the build angle and the build orientation affect the properties of the lattice structures. The average compressive strength of the lattice structures with a 10% relative density was 10 MPa, the flexural modulus was 200 MPa and the strength to density ration was 17. All the specimens were fabricated on the EBM A2 machine using a melt speed of 180 mm/s and a beam current of 2 mA. Future applications and FEA modeling were discussed in the paper.
机译:本文讨论了被称为非随机泡沫,晶格结构或重复开孔结构泡沫的泡沫。该论文报道了涉及使用电子束熔化(EBM)工艺设计和制造非随机Ti-6Al-4V合金结构的初步研究。研究了不同细胞大小和密度的非随机结构。对结构进行了压缩和弯曲测试,并将结果与​​有限元分析模拟的结果进行了比较。结果表明,构造角和构造取向会影响晶格结构的性能。相对密度为10%的晶格结构的平均抗压强度为10 MPa,弯曲模量为200 MPa,强度与密度之比为17。所有样品均在EBM A2机器上以180 mm的熔体速度制造/ s,电子束电流为2 mA。本文讨论了未来的应用和FEA建模。

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