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In situ formation of a TiN/Ti metal matrix composite gradient coating on NiTi by laser cladding and nitriding

机译:通过激光熔覆和氮化在NiTi上原位形成TiN / Ti金属基复合梯度涂层

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摘要

A TiN reinforced metal matrix composite (MMC) layer was fabricated in Situ on a NiTi substrate aiming at improving the wear resistance and reducing the surface Ni content in view of potential medical applications. Ti powder was preplaced on a NiTi Substrate and irradiated with a high-power CW Nd:YAG laser in N-2 atmosphere for laser nitriding and alloying. SEM micrographs of the cross-section revealed a gradient coating with an almost compact TiN film of about 1-2 mu m thickness as the outermost layer and an MMC layer beneath with the amount of TiN decreasing with depth. The hardness was increased from 250 HV in the substrate to 600-900 HV in the modified layer due to the presence of the hard TiN phase. The wear resistance against a diamond ball was correspondingly increased by a factor of two. EDS analysis also indicated a low Ni content in the surface layer. These results suggest that the laser modification technique employed in the present study is capable of enhancing the feasibility and biocompatibility of NiTi samples used as orthopedic implants. (c) 2005 Elsevier B.V. All rights reserved.
机译:考虑到潜在的医学应用,旨在改善耐磨性并降低表面镍含量,在NiTi衬底上原位制备TiN增强金属基复合材料(MMC)层。将Ti粉末预先放置在NiTi基板上,并在N-2气氛中用高功率CW Nd:YAG激光照射,以进行激光氮化和合金化。横截面的SEM显微照片显示,梯度涂层的最外层为厚度约为1-2μm的几乎致密的TiN膜,最下层为MMC层,且TiN的含量随深度而降低。由于存在硬TiN相,硬度从基材中的250 HV增加到改性层中的600-900 HV。金刚石球的耐磨性相应提高了两倍。 EDS分析还表明表面层中的镍含量低。这些结果表明,本研究中采用的激光改性技术能够增强用作骨科植入物的NiTi样品的可行性和生物相容性。 (c)2005 Elsevier B.V.保留所有权利。

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