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首页> 外文期刊>Coatings >Mechanical, Electrochemical, and Osteoblastic Properties of Gradient Tantalum Coatings on Ti6Al4V by Prepared Plasma Alloying Technique
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Mechanical, Electrochemical, and Osteoblastic Properties of Gradient Tantalum Coatings on Ti6Al4V by Prepared Plasma Alloying Technique

机译:采用制备等离子体合金化技术对Ti6Al4V梯度钽涂层的机械,电化学和骨细胞性能

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摘要

Plasma alloying technique capable of producing metallic coatings with metallurgical bonding has attracted much attention in dental and orthopedic fields. In this study, the effects of temperature and time of plasma tantalum (Ta) alloying technique on the mechanical, electrochemical, and osteoblastic properties of Ta coatings were systematically investigated. Ta coatings prepared at 800 °C possess better interfacial strengths than those prepared at 750 and 850 °C, and the interfacial strength increases with prolonged alloying time (30–120 min). At 800 °C, however, the increased proportion of the soft Ta deposition layer with alloying time in the whole coating impairs the surface mechanical properties of the entire coating, as convinced by decreased microhardness and wear resistance. Moreover, Ta coatings exhibit better corrosion resistance than the Ti6Al4V substrate in Dulbecco’s modified Eagle medium. The enhanced adhesion and extracellular matrix mineralization level of osteoblasts demonstrate the better cytocompatibility and osteogenic activity of the Ta coating. Ta30 (Ta coating prepared at 800 °C for 30 min) exhibits excellent mechanical, electrochemical, and osteoblastic behaviors and is promising in biomedical applications.
机译:能够生产具有冶金粘合的金属涂层的等离子体合金化技术引起了牙科和整形外观的巨大关注。在该研究中,系统研究了血浆钽(TA)合金化技术对机械,电化学和骨细胞性能的温度和时间的影响。在800℃下制备的TA涂层具有比750和850℃的制备的界面强度更好,并且界面强度随着延长的合金时间(30-120分钟)增加。然而,在800℃下,在整个涂层中具有合金化时间的软TA沉积层的比例增加损害整个涂层的表面力学性能,通过降低的显微硬度和耐磨性来相信。此外,TA涂层比Dulbecco改良鹰介质中的Ti6Al4V衬底具有更好的耐腐蚀性。成骨细胞的增强的粘附性和细胞外基质矿化水平证明了TA涂层的更好的细胞组合和骨质化活性。 TA30(在800℃下制备的TA涂层30分钟)表现出优异的机械,电化学和骨赘行为,并且在生物医学应用中具有很大。

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