Gardon M, Concustell A, Dosta S, Cinca N, Cano I G, Guilemany J M
Thermal Spray Centre, CPT, University of Barcelona, Martí i Franquès 1, 08028 Barcelona, Spain.
Thermal Spray Centre, CPT, University of Barcelona, Martí i Franquès 1, 08028 Barcelona, Spain.
Mater Sci Eng C Mater Biol Appl. 2014 Dec;45:117-21. doi: 10.1016/j.msec.2014.08.053. Epub 2014 Sep 6.
The fabrication of cermet biocompatible coatings by means Cold Gas Spray (CGS) provides prosthesis with outstanding mechanical properties and the required composition for enhancing the bioactivity of prosthetic materials. In this study, hydroxyapatite/Titanium coatings were deposited by means of CGS technology onto titanium alloy substrates with the aim of building-up well-bonded homogeneous coatings. Powders were blended in different percentages and sprayed; as long as the amount of hydroxyapatite in the feedstock increased, the quality of the coating was reduced. Besides, the relation between the particle size distribution of ceramic and metallic particles is of significant consideration. Plastic deformation of titanium particles at the impact eased the anchoring of hard hydroxyapatite particles present at the top surface of the coating, which assures the looked-for interaction with the cells. Coatings were immersed in Hank's solution for 1, 4 and 7 days; bonding strength value was above 60 MPa even after 7 days, which enhances common results of HAp coatings obtained by conventional thermal spray technologies.
通过冷气体喷涂(CGS)制备金属陶瓷生物相容性涂层,可为假体提供出色的机械性能以及增强假体材料生物活性所需的成分。在本研究中,采用CGS技术在钛合金基体上沉积羟基磷灰石/钛涂层,目的是制备结合良好的均匀涂层。将粉末按不同比例混合后进行喷涂;随着原料中羟基磷灰石含量的增加,涂层质量下降。此外,陶瓷颗粒和金属颗粒的粒度分布关系也很重要。钛颗粒在撞击时的塑性变形有助于固定涂层顶面存在的硬羟基磷灰石颗粒,从而确保与细胞的预期相互作用。将涂层浸入汉克溶液中1天、4天和7天;即使在7天后,结合强度值仍高于60 MPa,这优于通过传统热喷涂技术获得的羟基磷灰石涂层的常见结果。