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Shot peening pre-treatment for nano-nitriding layer formation to enhance wear and corrosion resistance in medical titanium alloys

机译:喷丸强化预处理,用于形成纳米氮化层,以增强医用钛合金的耐磨性和耐腐蚀性

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? 2024 Elsevier B.V.Due to its exceptional biocompatibility, Ti6Al4V finds extensive application in the medical field, particularly in joint replacement and orthopedic surgery. To augment the wear and corrosion resistance of the titanium alloy in physiological environments, SP and PN treatments were applied. This study systematically explores the synergistic impact of SP on PN of titanium alloy through microhardness testing, micromorphology observation, microstructure characterization, as well as wear and electrochemical experiments. The findings reveal that SP refines surface grains, facilitating PN and leading to the formation of a thicker nitride layer on titanium alloy surfaces. Compared to the initial titanium alloy, surface microhardness increases by 51.4 , and the wear rate experiences a two-order-of-magnitude reduction. Moreover, the SP-PN treatment enhances the electrochemical corrosion resistance of titanium alloys, underscoring its effectiveness in improving the wear and corrosion properties of medical titanium alloys.
机译:?2024 Elsevier BV由于其卓越的生物相容性,Ti6Al4V 在医疗领域得到了广泛的应用,特别是在关节置换和骨科手术中。为了提高钛合金在生理环境中的耐磨性和耐腐蚀性,采用了 SP 和 PN 处理。本研究通过显微硬度测试、微观形貌观察、微观组织表征以及磨损和电化学实验,系统地探讨了 SP 对钛合金 PN 的协同影响。研究结果表明,SP 细化了表面晶粒,促进了 PN 并导致在钛合金表面形成更厚的氮化物层。与初始钛合金相比,表面显微硬度提高了 51.4 %,磨损率降低了两个数量级。此外,SP-PN 处理增强了钛合金的耐电化学腐蚀性能,强调了其在改善医用钛合金的磨损和腐蚀性能方面的有效性。

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