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Oxygen diffusion hardening of cp-titanium for biomedical applications

机译:用于生物医学的cp钛的氧扩散硬化

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Common methods to increase the wear resistance of titanium by surface hardening in biomedical applications, such as chemical/physical vapour deposition techniques or thermal/electrochemical oxidation, result in a layer of titanium dioxide or titanium nitride on the metal surface with a sharp interface between the hard and brittle coating and the ductile metallic substrate. A major disadvantage of these methods is that the sharp transition in material properties may cause exfoliation of these coatings. In this work, a two-step heat treatment was used to investigate oxygen diffusion hardening and its capability to produce hard surfaces with a transition zone between the coating and the ductile substrate. During the first step, the native oxide layer was strengthened. In the second step, oxygen diffusion was activated and a transition zone was formed. Different methods of analysis confirmed the success of the thermal treatment, as well as the change of the mechanical properties.
机译:在生物医学应用中通过表面硬化来提高钛耐磨性的常用方法,例如化学/物理气相沉积技术或热/电化学氧化,会导致金属表面上的二氧化钛或氮化钛层之间形成锐利的界面。硬而脆的涂层和韧性金属基材。这些方法的主要缺点是材料性能的急剧转变可能导致这些涂层剥落。在这项工作中,使用了两步热处理来研究氧扩散硬化及其在涂层和延展性基材之间形成过渡区的硬表面的能力。在第一步中,天然氧化物层得到了强化。在第二步骤中,激活氧扩散并形成过渡区。不同的分析方法证实了热处理的成功以及机械性能的变化。

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