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首页> 外文期刊>Materials and Corrosion >Design and characterization of selective laser-melted Ti6Al4V-5Cu alloy for dental implants
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Design and characterization of selective laser-melted Ti6Al4V-5Cu alloy for dental implants

机译:牙科植入物选择性激光熔化Ti6Al4V-5Cu合金的设计与鉴定

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Ti6Al4V-5Cu alloys have potential biomedical applications due to their adequate antibacterial properties. However, the wear and corrosion properties of these alloys are also crucial for dental implants. In the present study, Ti6Al4V-5Cu alloys were fabricated by selective laser melting (SLM). The microstructure and composition of Ti6Al4V-5Cu alloys by SLM were evaluated. The wear properties of the alloys in the simulated saliva environment and the atmospheric environment, as well as the electrochemical properties in the simulated saliva environment, were systematically investigated. The results showed that the crystal structure of Ti6Al4V-5Cu alloys was mainly composed of alpha-Ti and Ti2Cu. In the SLM process, no preferred texture was observed due to the complex direction of the heat flux. The formation of Ti2Cu can improve the strength of the material and make the titanium copper alloy have higher microhardness. Ti6Al4V-5Cu alloy showed a satisfactory wear resistance in both wear media. The addition of Cu reduced the second-phase content of the alloy. Meanwhile, the number of microcells was reduced, which was a positive factor to improve the corrosion resistance of the alloys.
机译:由于其适当的抗菌性能,Ti6Al4V-5Cu合金具有潜在的生物医学应用。然而,这些合金的耐磨性和腐蚀性也对牙科植入物至关重要。在本研究中,通过选择性激光熔化(SLM)制造Ti6Al4V-5Cu合金。评估了SLM的Ti6Al4V-5Cu合金的微观结构和组成。系统地研究了模拟唾液环境中合金的磨损性能,以及模拟唾液环境中的电化学性能。结果表明,Ti6Al4V-5Cu合金的晶体结构主要由α-Ti和Ti2Cu组成。在SLM过程中,由于热通量的复杂方向,不会观察到优选的纹理。 Ti2Cu的形成可以提高材料的强度,使钛铜合金具有更高的微硬度。 Ti6Al4V-5Cu合金在磨损介质中显示出令人满意的耐磨性。加入Cu降低了合金的第二相含量。同时,减少了微胶体的数量,这是改善合金耐腐蚀性的正因素。

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