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Evaluation of Titanium Alloys Fabricated Using Rapid Prototyping Technologies—Electron Beam Melting and Laser Beam Melting

机译:使用快速原型技术制造的钛合金的评估-电子束熔化和激光束熔化

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摘要

This study characterized properties of Ti-6Al-4V ELI (extra low interstitial, ASTM grade 23) specimens fabricated by a laser beam melting (LBM) and an electron beam melting (EBM) system for dental applications. Titanium alloy specimens were made into required size and shape for each standard test using fabrication methods. The LBM specimens were made by an LBM machine utilizing 20 µm of Ti-6Al-4V ELI powder. Ti-6Al-4V ELI specimens were also fabricated by an EBM using 40 µm of Ti-6Al-4V ELI powder (average diameter, 40 µm: Arcam AB®) in a vacuum. As a control, cast Ti-6Al-4V ELI specimens (Cast) were made using a centrifugal casting machine in an MgO-based mold. Also, a wrought form of Ti-6Al-4V ELI (Wrought) was used as a control. The mechanical properties, corrosion properties and grindability (wear properties) were evaluated and data was analyzed using ANOVA and a non-parametric method (α = 0.05). The strength of the LBM and wrought specimens were similar, whereas the EBM specimens were slightly lower than those two specimens. The hardness of both the LBM and EBM specimens was similar and slightly higher than that of the cast and wrought alloys. For the higher grindability speed at 1,250 m/min, the volume loss of Ti64 LBM and EBM showed no significant differences among all the fabrication methods. LBM and EBM exhibited favorable results in fabricating dental appliances with excellent properties as found for specimens made by other fabricating methods.
机译:这项研究表征了通过牙科激光束熔化(LBM)和电子束熔化(EBM)系统制造的Ti-6Al-4V ELI(超低间隙,ASTM 23级)样品的性能。使用制造方法,将钛合金样品制成每个标准测试所需的尺寸和形状。 LBM样品是通过LBM机器使用20 µm Ti-6Al-4V ELI粉末制成的。 Ti-6Al-4V ELI样品还通过EBM在真空中使用40 µm Ti-6Al-4V ELI粉末(平均直径为40 µm:Arcam AB ®)制成。作为对照,使用离心铸造机在基于MgO的模具中制备铸造的Ti-6Al-4V ELI标本(铸造)。另外,将变形形式的Ti-6Al-4V ELI(变形)用作对照。评估了机械性能,腐蚀性能和可磨性(磨损性能),并使用方差分析和非参数方法(α= 0.05)对数据进行了分析。 LBM和变形试样的强度相似,而EBM试样的强度略低于这两个试样。 LBM和EBM试样的硬度相似,略高于铸造合金和锻造合金。对于在1,250 m / min时更高的可磨性速度,Ti64 LBM和EBM的体积损失在所有制造方法之间均没有显着差异。 LBM和EBM在制造具有优异性能的牙科矫治器中显示出令人满意的结果,这是通过其他制造方法制造的标本所发现的。

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