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CVD deposition of nanocrystalline diamond coatings on implant alloy materials with CrN/Al interlayer

机译:CRN / Al interloyer植入合金材料上纳米晶金刚石涂层的CVD沉积

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摘要

Integration of smooth nanocrystalline diamond coatings on biomedical implant substrates (CoCr, SS316) for enhanced biomedical performances has great application potentials due to their extraordinary wear/corrosion resistance and biocompatibility. However, chemical vapor deposition (CVD) of adherent diamond coatings on such substrates encounters a major technical barrier of weak interface bonding strength. In this study, single CrN interlayer of different thickness and duplex CrN/Al interlayer have been prepared on CoCr alloy and SS316 steel substrates to improve the adhesion of diamond coatings. The diamond coating produced with a single CrN interlayer up to 1 pm thick still shows insufficient adhesion ability to the substrates. A combination of CrN and Al, with a total thickness of 0.45 mu m, significantly enhances the diamond coating/substrate bonding strength. The fundamental mechanism of enhanced interfacial adhesion is discussed in terms of the individual role the two kinds of interlayer materials play.
机译:由于其非凡的磨损/耐腐蚀性和生物相容性,在生物医学植入物衬底(COCR,SS316)上的光滑纳米晶金刚石涂层的整合具有很大的应用潜力。然而,这种基板上的粘附金刚石涂层的化学气相沉积(CVD)遇到了弱界面粘合强度的主要技术屏障。在该研究中,在Cogry合金和SS316钢基板上制备了不同厚度和双链CRN / Al中间层的单CRN层间,以改善金刚石涂层的粘附性。用单个CRN中间层产生的金刚石涂层,厚度为1pm厚,仍然显示出对基材的不充分的粘合能力。 CrN和Al的组合,总厚度为0.45μm,显着提高了金刚石涂层/基板键合强度。在各种中间层材料发挥作用方面,讨论了增强界面粘附的基本机制。

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