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Near-net-shape production of hollow titanium alloy components via electrochemical reduction of metal oxide precursors in molten salts

机译:通过电化学还原熔融盐中的金属氧化物前体以接近最终形状生产空心钛合金零件

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摘要

Metal oxide precursors (ca. 90 wt pct Ti, 6 wt pct Al, and 4 wt pct V) were prepared with a hollow structure in various shapes such as a sphere, miniature golf club head, and cup using a one-step solid slip-casting process. The precursors were then electro-deoxidized in molten calcium chloride [3.2 V, 1173 K (900 C)] against a graphite anode. After 24 hours of electrolysis, the near-net-shape Ti-6Al-4V product maintained its original shape with controlled shrinkage. Oxygen contents in the Ti-6Al-4V components were typically below 2000 ppm. The maximum compressive stress and modulus of electrolytic products obtained in this work were approximately 243 MPa and 14 GPa, respectively, matching with the requirement for medical implants. Further research directions are discussed for mechanical improvement of the products via densification during or after electrolysis. This simple, fast, and energy-efficient near-net-shape manufacturing method could allow titanium alloy components with desired geometries to be prepared directly from a mixture of metal oxides, promising an innovative technology for the low-cost production of titanium alloy components.
机译:使用一步固体滑模制备具有各种形状的中空结构的金属氧化物前体(约90 wt%的Ti,6 wt%的Al和4 wt%的V),其形状为空心形状,例如球形,微型高尔夫球杆头和杯状。铸造过程。然后将前体在熔融氯化钙[3.2 V,1173 K(900 C)]中对石墨阳极进行电脱氧。电解24小时后,接近最终形状的Ti-6Al-4V产品在控制收缩的情况下保持了其原始形状。 Ti-6Al-4V组分中的氧含量通常低于2000 ppm。通过这项工作获得的电解产品的最大压缩应力和模量分别约为243 MPa和14 GPa,与医疗植入物的要求相匹配。讨论了在电解过程中或电解后通过致密化对产品进行机械改进的进一步研究方向。这种简单,快速且节能的近净形制造方法可以直接从金属氧化物的混合物中直接制备具有所需几何形状的钛合金部件,这为低成本生产钛合金部件提供了创新技术。

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