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Ti-15Mo-7Cu 具有低弹性模量和高抗菌性能的可行性研究。

Feasibility study on Ti-15Mo-7Cu with low elastic modulus and high antibacterial property.

机构信息

Key Laboratory for Anisotropy and Texture of Materials, Education Ministry of China, School of Materials Science and Engineering, Northeastern University, Shenyang, 110819, China.

Northern Theater General Hospital, Shenyang, 110016, China.

出版信息

Biometals. 2022 Dec;35(6):1225-1241. doi: 10.1007/s10534-022-00438-w. Epub 2022 Aug 22.

Abstract

Titanium and titanium alloy with low density, high specific strength, good biological, excellent mechanical compatibility and easy to process have been widely used in the medical materials, but their application in orthopedics and dentistry often face bacterial infection, corrosion failure and stress shielding. In this paper, Ti-15Mo-7Cu (TM-7Cu) alloy was prepared by high vacuum non-consumable electric arc melting furnace and then treated by solution and aging treatment. The microstructure, mechanical properties, antibacterial properties and cytocompatibility were studied by X-ray diffraction, microhardness tester, electrochemical working station, antibacterial test and Live/Dead staining technology. The results have shown that the heat treatment significantly influenced the phase transformation, the precipitation of TiCu phase, the elastic modulus and the antibacterial ability. With the extension of the aging time, the elastic modulus slightly increased and the antibacterial rate obviously increased. TM-7Cu alloy with a low elastic modulus of 83GPa and a high antibacterial rate of > 93% was obtained. TM-7Cu alloy showed no cytotoxicity to MC3T3. It was suggested that TM-7Cu might be a highly competitive medical material.

摘要

钛及钛合金具有低密度、高强度比、良好的生物相容性、优异的机械兼容性和易加工性,已广泛应用于医用材料,但它们在骨科和牙科中的应用常面临细菌感染、腐蚀失效和应力遮挡等问题。本文采用高真空非自耗电弧熔炼炉制备 Ti-15Mo-7Cu(TM-7Cu)合金,并进行固溶时效处理。采用 X 射线衍射仪、显微硬度计、电化学工作站、抗菌试验和 Live/Dead 染色技术研究了其微观组织、力学性能、抗菌性能和细胞相容性。结果表明,热处理显著影响了相转变、TiCu 相的析出、弹性模量和抗菌能力。随着时效时间的延长,弹性模量略有增加,抗菌率明显提高。获得了弹性模量为 83GPa、抗菌率>93%的 TM-7Cu 合金。TM-7Cu 合金对 MC3T3 无细胞毒性。表明 TM-7Cu 可能是一种极具竞争力的医用材料。

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