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采用激光冲击粘接试验(LASAT)测定 Ti-6Al-4V 基底羟基磷灰石涂层的结合强度。

Bond strength determination of hydroxyapatite coatings on Ti-6Al-4V substrates using the LAser Shock Adhesion Test (LASAT).

机构信息

MINES ParisTech, Centre des Matériaux, CNRS UMR 7633, Centre de Compétence en Procédés de Projection, Evry, France.

出版信息

J Biomed Mater Res A. 2010 Dec 15;95(4):1096-104. doi: 10.1002/jbm.a.32907. Epub 2010 Sep 28.

Abstract

An adhesion test procedure applied to plasma-sprayed hydroxyapatite (HA) coatings to measure the "LASAT threshold" (LAser Shock Adhesion test) is described. The good repeatability and minimal discrepancy of the laser-driven adhesion test data were ascertained for conventional plasma sprayed HA coatings. As a further demonstration, the procedure was applied to HA coatings with diverse characteristics on the ceramic/metal interface. Different preheating and grit blasting conditions and the presence of a thick plasma-sprayed Ti sublayer or a thin TiO(2) layer prepared by oxidation were investigated through LASAT. It was assessed that a rough surface can significantly improve the coating's bond strength. However, it was also demonstrated that a thin TiO(2) layer on a smooth Ti-6Al-4V substrate can have a major influence on adhesion as well. Preheating up to 270°C just prior to the first HA spraying pass had no effect on the adhesion strength. Further development of the procedure was done to achieve an in situ LASAT with in vitro conditions applied on HA coatings. To that end, different crystalline HA contents were soaked in simulated body fluid (SBF). Beyond the demonstration of the capability of this laser-driven adhesion test devoted to HA coatings in dry or liquid environment, the present study provided empirical information on pertinent processing characteristics that could strengthen or weaken the HA/Ti-6Al-4V bond.

摘要

一种应用于等离子喷涂羟基磷灰石(HA)涂层的粘附测试程序,用于测量“LASAT 阈值”(激光冲击粘附测试)被描述。对于常规等离子喷涂 HA 涂层,已经确定了激光驱动粘附测试数据的良好重复性和最小差异。作为进一步的证明,该程序被应用于陶瓷/金属界面具有不同特性的 HA 涂层。通过 LASAT 研究了不同的预热和喷砂条件、存在厚的等离子喷涂 Ti 底层或通过氧化制备的薄 TiO2 层的情况。评估表明,粗糙的表面可以显著提高涂层的结合强度。然而,也证明了在光滑的 Ti-6Al-4V 基底上的薄 TiO2 层也会对粘附产生重大影响。在第一次喷涂 HA 之前预热至 270°C 对粘附强度没有影响。进一步开发了该程序,以实现原位 LASAT,并将体外条件应用于 HA 涂层。为此,不同结晶态的 HA 含量在模拟体液(SBF)中浸泡。除了展示专门用于干燥或液体环境下的 HA 涂层的这种激光驱动粘附测试的能力外,本研究还提供了有关可能增强或削弱 HA/Ti-6Al-4V 结合的相关处理特性的经验信息。

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