Additively Manufactured Ti-6Al4V before and after Hot Isostatic Pressing

B. Baker, K. Wisdom
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引用次数: 1

Abstract

The crystalline structure and mechanical properties of titanium 6Al 4V produced via selective laser sintering were compared to literature examples and to wrought samples. In total, three sets of samples were analyzed: wrought, as printed selective laser sintering samples with no post processing, and selective laser sintering samples that were further processed via hot isostatic pressing for final consolidation. Samples were sectioned to fit on graphitic resin pucks and cut from the build plane in two orthogonal planes. Images were taken using a TESCAN MIRA3 scanning electron microscope with electron backscatter diffraction analysis and samples were etched for optical analysis. Hardness of the samples was measured using a Vickers hardness indenter. The overall chemical composition of the samples, both AM and wrought, were similar as confirmed using energy dispersive spectroscopy. Beta grains were observed in a columnar orientation along the build direction, however, the grain orientation did not appear to affect the hardness of the sample. A small amount of grain growth was observed in the post processed samples as compared to the as printed samples.
热等静压前后增材制造Ti-6Al4V
对选择性激光烧结制备的6Al - 4V钛的晶体结构和力学性能进行了比较。总共分析了三组样品:锻造的,作为印刷的选择性激光烧结样品,没有后处理;选择性激光烧结样品,通过热等静压进一步处理,最终固结。样品被切片以适应石墨树脂袋,并从两个正交的平面上切割。使用TESCAN MIRA3扫描电子显微镜进行电子背散射衍射分析,并对样品进行蚀刻以进行光学分析。用维氏硬度压头测量样品的硬度。样品的整体化学成分,无论是AM和锻造,都与使用能量色散光谱证实的相似。β晶粒沿构建方向呈柱状取向,但晶粒取向不影响样品的硬度。与印刷样品相比,在处理后的样品中观察到少量的晶粒生长。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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