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在钛合金上等离子喷涂的功能梯度羟基磷灰石/钛复合涂层的表征

Characterization of functionally graded hydroxyapatite/titanium composite coatings plasma-sprayed on Ti alloys.

作者信息

Chen Chun-Cheng, Huang Tsui-Hsien, Kao Chia-Tze, Ding Shinn-Jyh

机构信息

School of Dentistry, Chung-Shan Medical University Hospital, Taichung 402, Taiwan, Republic of China.

出版信息

J Biomed Mater Res B Appl Biomater. 2006 Jul;78(1):146-52. doi: 10.1002/jbm.b.30465.

Abstract

Bioceramic coatings like hydroxyapatite (HA) have shown promising bioactive properties in load-bearing implant applications. The aim of this work is to deposit functionally graded HA/Ti layers consisting of an underlying Ti bond coat, the alternating layer, and an HA top-layer on Ti6Al4V substrates using plasma spray to improve the coating-substrate interface properties. The alternating layers were created by means of changing the feeding rate and input power of Ti and HA powders, which gradually decrease Ti content with increasing depth from the Ti bond-coat. The major consideration is to examine the stability of the graded coatings. Experimental results indicated that surface chemistry and morphology of the graded coatings were similar to those of monolithic HA coatings. The bond strength values of the as-sprayed graded coatings were much superior to those of monolithic HA coatings. The cyclic fatigue did have a statistically significant effect on bond strength of monolithic HA coatings, with a decrease of 23%. However, the graded coatings were able to survive 1 million cycles of loading in air without significantly reduced bond strength. The in vitro electrochemical measurement results also indicated that the graded coatings had a more beneficial and desired behavior than monolithic HA coatings after fatigue.

摘要

像羟基磷灰石(HA)这样的生物陶瓷涂层在承重植入物应用中已显示出有前景的生物活性特性。这项工作的目的是使用等离子喷涂在Ti6Al4V基体上沉积功能梯度的HA/Ti层,该层由底层的Ti粘结层、交替层和HA顶层组成,以改善涂层与基体的界面性能。交替层是通过改变Ti和HA粉末的进料速率和输入功率来形成的,随着从Ti粘结层开始深度的增加,Ti含量逐渐降低。主要考虑因素是研究梯度涂层的稳定性。实验结果表明,梯度涂层的表面化学和形态与整体HA涂层相似。喷涂态梯度涂层的结合强度值远优于整体HA涂层。循环疲劳对整体HA涂层的结合强度确实有统计学上的显著影响,降低了23%。然而,梯度涂层能够在空气中承受100万次加载循环而结合强度没有显著降低。体外电化学测量结果还表明,疲劳后梯度涂层比整体HA涂层具有更有益和理想的性能。

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