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首页> 外文期刊>Journal of Materials Research and Technology >Experimentation and analysis of powder injection molded Ti10Nb10Zr alloy: a promising candidate for electrochemical and biomedical application
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Experimentation and analysis of powder injection molded Ti10Nb10Zr alloy: a promising candidate for electrochemical and biomedical application

机译:粉末注射成型Ti10NB10ZR合金的实验与分析:电化学和生物医学应用的有希望的候选者

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This paper describes the microstructural, mechanical and corrosion properties of injection molded Ti10Nb10Zr alloys. Ti10Nb10Zr powder was injection molded with wax-based binder. The critical powder loading for injection molding was 55?vol% for feedstock. Binder debinding was performed in solvent and thermal method. After debinding the samples were sintered at different temperatures and times in vacuum atmosphere (10?5mbar) to obtain fully dense parts. Metallographic studies were conducted to determine the extent of densification and the corresponding microstructural changes. The electrochemical property and biocompatibility of the sintered samples were performed electrochemically, by self-body-fluid immersion tests and cell culture experiments. The results show that Ti10Nb10Zr alloys could be sintered to a maximum 99% of theoretical density. Maximum ultimate tensile strength, elongation and hardness obtained were 748?MPa, 14.3 and 114 HRB respectively at 1500?°C for 3?h. Additionally, the sintered Ti10Nb10Zr alloys exhibited high mechanical and corrosion properties in a physiological environment.
机译:本文介绍了注塑成型Ti10NB10ZR合金的微观结构,机械和腐蚀性能。将Ti10NB10ZR粉末用蜡基粘合剂注塑成型。用于注射成型的临界粉末负荷为原料的55℃%。在溶剂和热法中进行粘合剂脱脂。在脱果脱落后,将样品在不同温度下烧结,在真空气氛(10×5mbar)中的不同温度和时间以获得完全致密的部件。进行金相研究以确定致密化程度和相应的微观结构变化。通过自体流体浸渍试验和细胞培养实验,电化学性地进行烧结样品的电化学性和生物相容性。结果表明,Ti10NB10ZR合金可以烧结至最大99%的理论密度。获得的最大抗拉强度,伸长率和硬度分别在1500Ω℃下分别为748℃,14.3和114HRB。另外,烧结的Ti10NB10ZR合金在生理环境中表现出高机械和腐蚀性。

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