首页> 外文期刊>Metallurgical and Materials Transactions A >Microstructure and Mechanical Properties of Long Ti-6Al-4V Rods Additively Manufactured by Selective Electron Beam Melting Out of a Deep Powder Bed and the Effect of Subsequent Hot Isostatic Pressing
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Microstructure and Mechanical Properties of Long Ti-6Al-4V Rods Additively Manufactured by Selective Electron Beam Melting Out of a Deep Powder Bed and the Effect of Subsequent Hot Isostatic Pressing

机译:通过选择性电子束熔化从深粉床中增材制造的长Ti-6Al-4V棒的组织和力学性能以及随后的热等静压工艺的影响

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摘要

An array of eight long Ti-6Al-4V rods (diameter: 12 mm; height: 300 mm) have been additively manufactured, vertically and perpendicular to the powder bed, by selective electron beam melting (SEBM). The purpose was to identify and understand the challenges of fabricating Ti-6Al-4V samples or parts from a deep powder bed (more than 200-mm deep) by SEBM and the necessity of applying post heat treatment. The resulting microstructure and mechanical properties of these Ti-6Al-4V rods were characterized along their building (i.e., axial) direction by dividing each rod into three segments (top, middle, and bottom), both before (i.e., as-built) and after hot isostatic pressing (HIP). The as-built microstructure of each rod was inhomogeneous; it was coarsest in the top segment, which showed a near equilibrium α-β lamellar structure, and finest in the bottom segment, which featured a non-equilibrium mixed structure. The tensile properties varied along the rod axis, especially the ductility, but all tensile properties met the requirements specified by ASTM F3001-14. HIP increased the relative density from 99.03 pct of the theoretical density (TD) to 99.90 pct TD and homogenized the microstructure thereby leading to highly consistent tensile properties along the rod axis. The temperature of the stainless steel substrate used in the powder bed was monitored. The as-built inhomogeneous microstructure is attributed to the temperature gradient in the deep powder bed. Post heat treatment is thus necessary for Ti-6Al-4V samples or parts manufactured from a deep powder bed by SEBM. This differs from the additive manufacturing of small samples or parts from a shallow powder bed (less than 100-mm deep) by SEBM.
机译:通过选择性电子束熔化(SEBM)以垂直和垂直于粉末床的方式相加制造了八根长Ti-6Al-4V棒(直径:12 mm;高度:300 mm)阵列。目的是确定并了解通过SEBM从深粉床(深200毫米以上)制造Ti-6Al-4V样品或零件的挑战以及进行后热处理的必要性。通过将每根Ti-6Al-4V棒的构造(即轴向)分成三个部分(顶部,中间和底部),沿其构造(即轴向)方向对所得的微观结构和力学性能进行了表征。热等静压(HIP)之后。每个杆的建成微观结构是不均匀的。它在顶部段最粗糙,显示出接近平衡的α-β层状结构,而在底部段最细,表现出非平衡的混合结构。拉伸性能沿杆轴变化,尤其是延性,但所有拉伸性能均符合ASTM F3001-14的要求。 HIP将相对密度从理论密度(TD)的99.03 pct增加到TD的99.90 pct,并使组织均匀化,从而导致沿棒轴的拉伸特性高度一致。监测粉末床中使用的不锈钢基材的温度。生成的不均匀的微观结构归因于深粉床中的温度梯度。因此,对于SE-6从深粉床制造的Ti-6Al-4V样品或零件,必须进行后热处理。这与SEBM通过浅粉床(深度小于100毫米)对小样品或零件进行增材制造不同。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2015年第9期|3824-3834|共11页
  • 作者单位

    School of Materials and Metallurgy Northeastern University">(1);

    State Key Laboratory of Porous Metal Materials Northwest Institute for Nonferrous Metal Research">(2);

    Centre for Advanced Materials Processing and Manufacturing School of Mechanical and Mining Engineering The University of Queensland">(3);

    State Key Laboratory of Porous Metal Materials Northwest Institute for Nonferrous Metal Research">(2);

    State Key Laboratory of Porous Metal Materials Northwest Institute for Nonferrous Metal Research">(2);

    State Key Laboratory of Porous Metal Materials Northwest Institute for Nonferrous Metal Research">(2);

    Centre for Advanced Materials Processing and Manufacturing School of Mechanical and Mining Engineering The University of Queensland">(3);

    Centre for Additive Manufacturing School of Aerospace Mechanical and Manufacturing Engineering RMIT University">(4);

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