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Antibacterial Ti-Mn-Cu alloys for biomedical applications

机译:生物医学应用的抗菌Ti-Mn-Cu合金

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摘要

Titanium alloys are common biomedical materials due to their biocompatibility and mechanical performance. However, titanium alloys are expensive and, unless surface treated, generally cannot prevent surgical infections related to bacteria which can damage the integrity of the implant. In this study, new titanium alloys were developed via powder metallurgy and the addition of manganese and copper, respectively, aiming to limit the manufacturing costs and induce new functionality on the materials including antibacterial response. The addition of manganese and copper to titanium significantly changes the behaviour of the Ti-Mn-Cu alloys leading to the successful stabilization of the beta titanium phase, great refinement of the typical lamellar structure, and achievement of materials with low level of porosity. Consequently, it is found that the mechanical performance and the antibacterial efficacy are enhanced by the addition of a higher amount of alloying elements. The manufactured Ti-Mn-Cu alloys fulfil the requirements for structural biomedical implants and have antibacterial response making them potential candidates for permanent medical implants.
机译:由于其生物相容性和机械性能,钛合金是普通的生物医学材料。然而,钛合金是昂贵的,除非表面处理,通常不能防止与细菌有关的手术感染,这可能会损害植入物的完整性。在这项研究中,新的钛合金分别通过粉末冶金和加入锰和铜,旨在限制制造成本并诱导包括抗菌反应的材料的新功能。向钛的加入锰和铜显着改变了Ti-Mn-Cu合金的行为,导致β钛相的成功稳定,典型的层状结构的巨大细化,以及具有低孔隙率水平的材料。因此,发现通过加入较高量的合金元素来增强机械性能和抗菌效果。制造的Ti-Mn-Cu合金合金满足结构生物医学植入物的要求,并具有抗菌反应,使其成为永久性医疗植入物的潜在候选者。

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