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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Ca-P bioactive coating prepared by combining microwave-hydrothermal and supersonic atmospheric plasma spraying methods
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Ca-P bioactive coating prepared by combining microwave-hydrothermal and supersonic atmospheric plasma spraying methods

机译:通过组合微波 - 水热和超声波大气等离子体喷涂方法制备Ca-P生物活性涂层

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摘要

Ca-P based coatings on carbon/carbon composite (C/C) were manufactured via a combined method comprising of microwave-hydrothermal (MH) and supersonic atmospheric plasma spraying (SAPS) techniques. However, a weak mutual interaction between the coating and C/C substrate has been a critical issue for a long time. Herein, we reported a new method for shear strength enhancement without compromising the osteoconductivity and osteoproductivity. Results showed that the inner layer has a strong mechanical interlocking with C/C substrate and the failure mode of outer layer changed from the coating cohesion (within the coating) to adhesive (at the coating/substrate interface) fracture. The shear strength between Ca-P bioactive coating-C/C substrate by MH/SAPS was significantly improved as compared to that prepared by SAPS. The Ca-P bioactive coating exhibited a good bioactivity as evidenced by the formation of a uniform carbonate-apatite layer formed on coating after immersing into stimulated body fluid for a specified period of time. (C) 2016 Published by Elsevier B.V.
机译:通过组合方法制造Ca-P基涂层,通过组合方法制造,所述方法包括微波 - 热水(MH)和超声常压等离子体喷涂(SAPS)技术。然而,涂层和C / C衬底之间的弱相互作用是很长一段时间的关键问题。在此,我们报道了一种用于剪切强度增强的新方法,而不会影响骨导电性和骨存性。结果表明,内层具有强大的机械互锁与C / C衬底,外层的故障模式从涂层内聚(在涂层内)变为粘合剂(在涂层/衬底界面)骨折上。与通过SAP制备的相比,MH / SAP的Ca-P生物活性涂层-C / C底板之间的剪切强度显着提高。 Ca-P生物活性涂层表现出良好的生物活性,如在涂层上浸入刺激的体液后形成的均匀碳酸盐 - 磷灰石层的形成所指定的一段时间。 (c)2016年由Elsevier B.V发布。

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