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Surface Modification of Powder Metallurgy Titanium by Colloidal Techniques and Diffusion Processes for Biomedical Applications

机译:粉末冶金钛的胶体技术和扩散工艺对生物医学应用的表面改性

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摘要

This contribution focuses on modifying the composition and surface characteristics of powder metallurgy titanium substrates to improve their wear resistance and to reduce the surface Younǵs modulus, while maintaining the corrosion resistance and biocompatibility. The modification consists of Mo and TiN coatings produced by colloidal techniques which are deposited by electrophoretic deposition (EPD) or spraying onto green or sintered titanium substrates. The final surface structures are formed during a heat treatment, during which diffusion and consolidation of the layers take place. The surfaces are characterised by XRD, SEM, and micro-indentation; showing diffusion areas of between 40 and 85 microns with clear microstructural changes as well as higher hardness values.
机译:该贡献集中于改变粉末冶金钛基材的组成和表面特性,以提高其耐磨性并降低表面杨氏模量,同时保持耐腐蚀性和生物相容性。改性包括通过胶体技术生产的Mo和TiN涂层,可通过电泳沉积(EPD)或将其喷涂在绿色或烧结的钛基材上来沉积。最终的表面结构是在热处理过程中形成的,在此过程中各层发生扩散和固结。表面通过XRD,SEM和微压痕进行表征。表现出40至85微米之间的扩散区域,具有明显的微观结构变化以及更高的硬度值。

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