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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Microstructure and tensile properties of Ti-Mo alloys manufactured via using laser powder bed fusion
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Microstructure and tensile properties of Ti-Mo alloys manufactured via using laser powder bed fusion

机译:使用激光粉床融合制造的Ti-Mo合金的微观结构和拉伸性能

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In this work, the dense Ti-7.5Mo sample (over 99.5%) was prepared by using laser powder bed fusion (L-PBF) from powder mixture of pure Ti and pure Mo. Through the use of mechanical mixture process, Mo particles present an uniform distribution. As the laser scanning speed decreases from 1700 mm/s to 1000 mm/s, the sample's relative density increases from 85.5% to 99.5%. The microstructural analysis indicates that Mo particle was mostly fully melted during laser melting. But, some large sized Mo particles were partial melted, which possesses gradient interface structure. Then, the tensile properties of as-fabricated samples under several laser scanning speed were determined. The results shows that the as-fabricated dense sample presents Young's modulus, ultimate tensile strength and strain at failure about of 70 GPa, 740 MPa and 9.2% respectively. Given to this low Young's modulus, which is approximate to bone of 30 GPa, the L-PBF processed Ti-7.5Mo shows great application potential in implant component. (C) 2018 Elsevier B.V. All rights reserved.
机译:在这项工作中,通过使用纯Ti和纯MO的粉末混合物使用激光粉床融合(L-PBF)来制备致密的Ti-7.5Mo样品(超过99.5%)。通过使用机械混合物方法,存在Mo颗粒一个统一的分布。随着激光扫描速度从1700mm / s降低至1000mm / s,样品的相对密度从85.5%增加至99.5%。微观结构分析表明在激光熔化期间Mo颗粒大致完全熔化。但是,一些大尺寸的Mo颗粒是部分熔化的,其具有梯度界面结构。然后,确定了在几种激光扫描速度下制造的样品的拉伸性质。结果表明,制造的致密样品分别呈现杨氏模量,最终的拉伸强度和菌株分别为70gPa,740MPa和9.2%。给予这种低杨氏模量,这近似与30GPa的骨骼,L-PBF加工的Ti-7.5Mo在植入物组分中显示出很大的应用潜力。 (c)2018年elestvier b.v.保留所有权利。

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