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Triboelectrochemical investigation of the friction and wear behaviour of TiN coatings in a neutral solution

机译:TiN涂层在中性溶液中的摩擦磨损性能的摩擦电化学研究

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摘要

Triboelectrochemical techniques use an electrochemical set-up (mainly of the three-electrode type) for controlling the potential of the surface of a conducting material subjected to rubbing in a tribometer. In this way it is possible to carry out friction and wear tests in electrolytic solutions under well-defined chemical conditions determined by the applied electrode potential. In addition, triboelectrochemical techniques offer the possibility of following in-situ and in real time the kinetics of electrochemical oxidation reactions (corrosion) by the simple measure of an electrical current. In the present study triboelectrochemical experiments were carried out on sputter deposited TiN coatings sliding against alumina in a borate solution (pH 8.4). The surface of selected worn coatings was characterised by X-ray photoelectron spectroscopy (XPS) and the topography by scanning electron microscopy (SEM). Results show that the rate of wear critically depends on the prevailing (electro)chemical conditions which determine the chemical surface state of the TiN coating. The behaviour is attributed to the lubricating properties of surface oxide films having a thickness in the nanometre range.
机译:摩擦电化学技术使用电化学装置(主要是三电极类型)来控制在摩擦计中经受摩擦的导电材料表面的电势。以此方式,可以在由施加的电极电势确定的明确定义的化学条件下,在电解液中进行摩擦和磨损测试。另外,摩擦电化学技术提供了通过简单的电流测量就地实时地追踪电化学氧化反应(腐蚀)动力学的可能性。在本研究中,在硼酸盐溶液(pH 8.4)中,在氧化铝上滑动的溅射沉积TiN涂层上进行了摩擦电化学实验。所选磨损涂层的表面通过X射线光电子能谱(XPS)表征,形貌通过扫描电子显微镜(SEM)表征。结果表明,磨损率主要取决于决定TiN涂层化学表面状态的主要(电化学)化学条件。该行为归因于厚度在纳米范围内的表面氧化物膜的润滑性能。

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