Li Yuhua, Zhang Qian, He Yuxin, Zhao Rong, Chu Jinghui, Niu Libin, Qu Juxin
College of Mechanical Engineering, Xi'an University of Science and Technology, Xi'an 710054, China.
National Engineering Research Center of Near-Net-Shape Forming for Metallic Materials, South China University of Technology, Guangzhou 510640, China.
Materials (Basel). 2024 Feb 6;17(4):787. doi: 10.3390/ma17040787.
This work investigated the wear behavior of ultrafine-grained TiNbZrTaFe (at.%, TNZTF) and TiNbZrTaSi (at.%, TNZTS) alloys fabricated by high-energy ball milling and spark plasma sintering. Wear tests were conducted in a simulated physiological solution under both reciprocating sliding and fretting wear conditions with different loads, frequencies, and stroke lengths. The microstructures, mechanical properties, and anti-wear properties of the investigated alloys were characterized. The results showed that the TNZTF and TNZTS alloys had much less wear volume than the commonly used Ti-6Al-4V (TC4) alloy and commercially pure titanium (CP-Ti). The TNZTF and TNZTS alloys exhibited much more smooth wear surfaces and shallower wear scars compared with TC4 and CP-Ti. The investigated alloys exhibited different wear mechanisms under the reciprocating sliding wear conditions, while they were similar under the fretting wear conditions. Compared with TC4 and CP-Ti, the fabricated TNZTF and TNZTS alloys showed a substantially higher wear resistance, owing to their ultrafine-grained microstructure and superior hardness. Additionally, the addition of Nb and Zr further enhanced the wear resistance by forming a protective NbO and ZrO oxide film. This work provides guidance for designing new biomedical titanium alloys with excellent wear resistance.
本研究调查了通过高能球磨和放电等离子烧结制备的超细晶粒TiNbZrTaFe(原子百分比,TNZTF)和TiNbZrTaSi(原子百分比,TNZTS)合金的磨损行为。在模拟生理溶液中,在不同载荷、频率和行程长度的往复滑动和微动磨损条件下进行了磨损试验。对所研究合金的微观结构、力学性能和抗磨损性能进行了表征。结果表明,TNZTF和TNZTS合金的磨损体积比常用的Ti-6Al-4V(TC4)合金和工业纯钛(CP-Ti)小得多。与TC4和CP-Ti相比,TNZTF和TNZTS合金的磨损表面更光滑,磨损痕迹更浅。所研究的合金在往复滑动磨损条件下表现出不同的磨损机制,而在微动磨损条件下则相似。与TC4和CP-Ti相比,制备的TNZTF和TNZTS合金由于其超细晶粒微观结构和优异的硬度而表现出显著更高的耐磨性。此外,Nb和Zr的添加通过形成保护性的NbO和ZrO氧化膜进一步提高了耐磨性。这项工作为设计具有优异耐磨性的新型生物医用钛合金提供了指导。