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首页> 外文期刊>Progress in Additive Manufacturing >Electron beam powder bed fusion manufacturing of a Ti-5Al-5Mo-5V-3Cr alloy: a microstructure and mechanical properties' correlation study
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Electron beam powder bed fusion manufacturing of a Ti-5Al-5Mo-5V-3Cr alloy: a microstructure and mechanical properties' correlation study

机译:Ti-5Al-5Mo-5V-3Cr合金的电子束粉末床熔融制造:组织与力学性能的相关性研究

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摘要

Electron beam powder bed fusion (EB-PBF) is a powder-bed fusion additive manufacturing process, which is suitable for fabricating high-performance parts for a wide range of industrial applications, such as medical and aerospace. Due to its deep curing capabilities, the metastable beta-alloy Ti-5Al-5Mo-5V-3Cr (Ti-5553) is currently mostly used in the landing gear of airplanes. However, its great mechanical properties make it also attractive for small, complex, and load-bearing components. In this study, nine melting parameter sets, combining different scanning speeds and beam currents, were used in the EB-PBF ARCAM A2X system. Furthermore, the correlation between the microstructure and the mechanical properties was investigated and analyzed by applying mu-focus computer tomography and microscopic methods (optical, SEM/EDS). A significant influence of the different melting parameters on the microstructure as well as on the mechanical performance was found. In a subsequent step, three melting parameters were selected and the specimens were heat-treated (BASCA, STA) for further investigation. The experimental results of this work indicate that Ti-5553 parts can be manufactured successfully with high quality (rho > 99.60%), and post-processing heat-treatments can be used to modify the microstructure in such a way that the parts are suitable for a large variety of possible applications.
机译:电子束粉床(EB-PBF)是一个融合料层融合加法制造过程,适用于制作广泛的高性能部件工业应用,如医疗和航空航天。的亚稳beta-alloy Ti-5Al-5Mo-5V-3Cr(ti - 5553)目前主要用于着陆齿轮的飞机。属性使它也吸引力小,复杂,承载组件。研究中,九融化的参数设置,结合不同扫描速度和束电流用于EB-PBF ARCAM A2X系统。和微观结构之间的关系调查和机械性能分析了应用mu-focus计算机断层扫描和微观方法(光学、SEM / EDS)。重大影响的不同熔化参数对微观结构以及机械性能被发现。后续步骤,三个参数融化选择和标本是热处理(STA BASCA)进行进一步的调查。实验结果表明,工作ti - 5553部分可以制造成功高质量(ρ> 99.60%)可以使用后处理热处理修改这样的微观结构适用于各种各样的部分可能的应用程序。

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