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Effect of the heating time on the preferred growth of hydroxyapatite crystal prepared by microwave-hydrothermal technique on the defective surface of sprayed coating

机译:加热时间对微波水热技术在喷涂涂层缺陷表面上羟基磷灰石晶体择优生长的影响

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摘要

A calcium phosphate (Ca-P) coating is prepared on carbon/carbon (C/C) substrate by supersonic atmospheric plasma sprayed (SAPS) method. After that, microwave-hydrothermal (MH) method is used as the postprocessing method to lower surface defects for sprayed coating as well as obtaining uniform decomposition phase. The aim of this work is an extensive study on the preferred growth of hydroxyapatite (HA) crystals existing in the coating after MH treatment which can rapidly form in-situ growth structures to repair surface defects. The preferred orientation of these generated HA crystals is discussed. Chemical components, length-diameter ratio, particle diameter distribution, microstructure, formula derivation, thermal properties and protein adsorption of the HA crystals prepared by the MH method on sprayed coating are also studied. As a result, it is found that the MH heating time on the preferred orientation of the HA crystal appeared on sprayed coating plays an important role and the optimal crystal growth time during the MH process is 35 min. The coating after MH treatment for 250 min has the most excellent protein adsorption ability of 553 mu g/disc.
机译:通过超音速常压等离子体喷涂(SAPS)方法在碳/碳(C / C)基材上制备磷酸钙(Ca-P)涂层。之后,将微波水热法(MH)用作后处理方法,以降低喷涂涂层的表面缺陷并获得均匀的分解相。这项工作的目的是对MH处理后涂层中存在的羟基磷灰石(HA)晶体的优选生长进行广泛研究,该晶体可以快速形成原位生长结构以修复表面缺陷。讨论了这些生成的HA晶体的优选取向。还研究了用MH法在喷涂涂层上制备的HA晶体的化学成分,长径比,粒径分布,微观结构,分子式,热性质和蛋白质吸附。结果,发现在喷涂涂层上出现的HA晶体的优选取向上的MH加热时间起着重要的作用,并且MH过程中的最佳晶体生长时间是35分钟。 MH处理250分钟后的涂层具有553μg / disc的最出色的蛋白质吸附能力。

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