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Structure and Properties of Diamond-Like Carbon Films Deposited by PACVD Technique on Light Alloys

机译:PACVD技术在轻合金上沉积类金刚石碳膜的结构和性能

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摘要

The investigations presented in this paper describe surface treatment performed on samples of heat-treated cast magnesium and aluminium alloy. The structure and chemical composition as well as the functional and mechanical properties of the obtained gradient/monolithic films were analysed by high resolution transmission electron microscopy and scanning electron microscopy, Raman spectroscopy, the ball-on-disk tribotester and scratch testing. Moreover, investigation of the electrochemical corrosion behaviour of the samples was carried out by means of potentiodynamic polarisation curves in 1-M NaCl solution. The coatings produced by chemical vapour deposition did not reveal any delamination or defects and they adhere closely to the substrate. The coating thickness was in a range of up to 2.5 microns. Investigations using Raman spectra of the DLC films confirmed a multiphase character of the diamond-like carbon layer, revealing the sp2 and sp3 electron hybridisation responsible for both the hardness and the friction coefficient. The best wear resistance test results were obtained for the magnesium alloy substrate - AZ61, for which the measured value of the friction path length was equal to 630 m.
机译:本文介绍的研究描述了对热处理铸镁和铝合金样品进行的表面处理。通过高分辨率透射电子显微镜和扫描电子显微镜,拉曼光谱,盘上球三botester和划痕测试分析了所得梯度/整体膜的结构和化学组成以及功能和机械性能。此外,通过在1-M NaCl溶液中的电位动力学极化曲线对样品的电化学腐蚀行为进行了研究。通过化学气相沉积产生的涂层没有显示出任何分层或缺陷,并且它们紧密粘附在基材上。涂层厚度在高达2.5微米的范围内。使用DLC膜的拉曼光谱进行的研究证实了类金刚石碳层的多相特征,揭示了同时引起硬度和摩擦系数的sp2和sp3电子杂化。镁合金基材AZ61的最佳耐磨性测试结果为摩擦路径长度的测量值等于630 m。

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