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首页> 外文期刊>Journal of Composite Materials >Analysis of corrosion behaviour and surface properties of plasma-sprayed composite coating of hydroxyapatite-tantalum on biodegradable Mg alloy ZK60
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Analysis of corrosion behaviour and surface properties of plasma-sprayed composite coating of hydroxyapatite-tantalum on biodegradable Mg alloy ZK60

机译:羟基磷灰石 - 钽脂肪磷酸盐膜腐蚀行为及表面性能分析生物降解镁合金ZK60

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摘要

Magnesium (Mg) and its alloys are promising candidates for biodegradable bio-implants. However, the excessive corrosion in the physiological environment and subsequent decline in the mechanical integrity of Mg and its alloys have limited their utility as biomaterials. In the present study, an attempt has been made to improve the corrosion resistance of Mg alloy ZK60 plasma sprayed with tantalum (Ta)-reinforced hydroxyapatite coating. The experiment was conducted with three varied levels, i.e. 10, 20 and 30 weight percent (wt%) of Ta-content in hydroxyapatite coating. The coatings were characterized and in vitro corrosion behaviour was investigated by electrochemical measurements in Ringer's solution along with the analysis of surface properties. The corrosion resistance of the Mg alloy increased with the incremental increase in Ta reinforcement in hydroxyapatite coating. An increase in the protection efficiency was analysed for the Ta-reinforced hydroxyapatite coatings (similar to 10%, 18% and 23% for hydroxyapatite-10Ta, hydroxyapatite-20Ta and hydroxyapatite-30Ta, respectively) as compared to the pure hydroxyapatite coating. The hydroxyapatite coating effectively increased the surface hardness of the Mg alloy and Ta reinforcement further enhanced it. Surface roughness decreased with the incremental increase in Ta-content in hydroxyapatite coating. Wettability analysis revealed the hydrophilic nature of pure hydroxyapatite and Ta-reinforced hydroxyapatite coatings. The results of the study suggest that the proposed Ta reinforcement in hydroxyapatite is potentially important for biodegradable Mg bio-implants.
机译:镁(Mg)及其合金是可生物降解生物植入物的有希望的候选者。然而,生理环境中过度腐蚀和MG机械完整性的随后下降,其合金的效用限制为生物材料。在本研究中,已经尝试改善用钽(TA)喷涂的Mg合金ZK60等离子体的耐腐蚀性 - 抗脂肪磷灰石涂层。在羟基磷灰石涂层中,用三种变化的水平,即10,20和30重量%(wt%)进行实验。涂料的特征在于,并通过林纳溶液中的电化学测量以及表面性质的分析来研究体外腐蚀行为。镁合金的耐腐蚀性随着羟基磷灰石涂层中的Ta加固的增量增加而增加。与纯羟基磷灰石涂层相比,分析了Ta加强羟基磷灰石涂层(类似于羟基磷灰石-10TA,羟基磷灰石-20TA和羟基磷灰石-30TA的10%,18%和23%,分析了保护效率的增加。羟基磷灰石涂层有效地增加了Mg合金的表面硬度和TA加固进一步增强了它。表面粗糙度随羟基磷灰石涂层中的TA含量的增量增加而降低。润湿性分析揭示了纯羟基磷灰石和TA型羟基磷灰石涂料的亲水性质。该研究的结果表明,羟基磷灰石中所提出的TA加固可能对可生物降解的MG生物植入物具有重要意义。

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