Reconditioning of ti6al4v powder through an inductively coupled plasma for direct metal laser sintering

N. Nkhasi, W. du Preez, H. Bissett
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Abstract

Ti6Al4V is commonly used in the aerospace, medical and automotive industries due to its high strength-to-weight ratio and excellent corrosion resistance properties. Interstitial impurities in Ti6Al4V powder, particularly oxygen, nitrogen, hydrogen and iron, have an impact on mechanical properties. After Ti6Al4V powder has been re-used several times in direct metal laser sintering build processes, it will eventually reach its end of life due to its physical and chemical properties deteriorating out of specification. Such powder can be reconditioned using an inductively coupled plasma system. In this study, the reconditioning of the contaminated powder was done using an inductively coupled plasma system and characterisation of the Ti6Al4V powder was done before and after reconditioning. Conclusions are drawn on the feasibility of utilising an inductively coupled plasma system for reconditioning of contaminated Ti6Al4V powder.
用电感耦合等离子体对ti6al4v粉末进行直接金属激光烧结预处理
由于其高强度重量比和优异的耐腐蚀性,Ti6Al4V通常用于航空航天,医疗和汽车工业。Ti6Al4V粉末中的间隙杂质,特别是氧、氮、氢和铁,对粉末的力学性能有影响。Ti6Al4V粉末在直接金属激光烧结构建过程中多次重复使用后,由于其物理和化学性能的恶化超出规格,最终将达到其使用寿命。这种粉末可以使用电感耦合等离子体系统进行修复。在本研究中,使用电感耦合等离子体系统对污染粉末进行了修复,并对修复前后的Ti6Al4V粉末进行了表征。结论是利用电感耦合等离子体系统修复污染Ti6Al4V粉末的可行性。
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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