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首页> 外文期刊>Thin Solid Films >The bonding of plasma-sprayed hydroxyapatite coatings to titanium: effect of processing, porosity and residual stress
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The bonding of plasma-sprayed hydroxyapatite coatings to titanium: effect of processing, porosity and residual stress

机译:等离子喷涂的羟基磷灰石涂层与钛的结合:加工,孔隙率和残余应力的影响

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摘要

Hydroxyapatite coatings (HACs) were plasma sprayed on titanium to explore the effect of processing [using either a fixed-holder (A-HACs) or a rotational-holder (B-HACs)], structural characteristics and mechanical state of the coatings on the bonding strength of the system. Statistics was employed for analyzing the data obtained from the experiment. It was found that A-HACs exhibit a rough surface morphology, higher crystallinity and porosity content with non-uniform porosity distribution, as well as higher residual stress. Together, these factors cause a change of fracture mode and bonding strength of the coatings. With insignificant variation of porosity in A-HACs or B-HACs themselves, the fracture mode and the bonding strength of either group of coalings were found dominantly correlated with the change of residual stress, which affects the adhesive bonding between HACs and substrate. The large difference of fracture behavior and bonding strength between B-HACs and A-HACs should not only be attributed to the difference in porosity content. The non-uniformity in porosity distribution in A-HACs is rationalized to play a major role, which significantly lowers the bonding strength through dominantly degrading the cohesive strength of the coatings.
机译:将羟基磷灰石涂层(HAC)等离子喷涂在钛上,以研究加工的效果[使用固定支架(A-HAC)或旋转支架(B-HAC)],涂层在涂层上的结构特性和机械状态系统的结合强度。统计数据用于分析从实验中获得的数据。发现A-HACs具有粗糙的表面形态,较高的结晶度和孔隙率以及不均匀的孔隙率分布以及较高的残余应力。这些因素共同导致涂层的断裂模式和粘结强度发生变化。在A-HAC或B-HAC本身的孔隙率变化不明显的情况下,发现任一组聚结的断裂模式和结合强度与残余应力的变化均具有显着相关性,这影响了HAC与基底之间的胶粘结合。 B-HAC和A-HAC之间的断裂行为和结合强度的巨大差异不仅应归因于孔隙率含量的差异。 A-HAC中孔隙分布的不均匀性被合理地发挥了主要作用,这通过显着降低涂层的内聚强度而显着降低了粘结强度。

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