首页> 外文期刊>Journal of Materials Engineering and Performance >Structure and Anticorrosion, Friction, and Wear Characteristics of Pure Diamond-Like Carbon (DLC), Cr-DLC, and Cr-H-DLC Films on AZ91D Mg Alloy
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Structure and Anticorrosion, Friction, and Wear Characteristics of Pure Diamond-Like Carbon (DLC), Cr-DLC, and Cr-H-DLC Films on AZ91D Mg Alloy

机译:纯金刚石状碳(DLC),CR-DLC和AZ91D镁合金中CR-H-DLC膜的结构和防腐,磨损和磨损特性

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This study evaluated the protection against corrosion and wear afforded to AZ91D Mg alloy by coatings of hydrogen-free and low-Cr-doped hydrogenated diamond-like carbon (DLC) films. The microstructure and corrosion resistance were evaluated using scanning electron microscopy, atomic force microscopy, Raman spectroscopy, polarization curves, and neutral salt spraying tests. Wear tests were performed to investigate the friction and wear behaviors of the samples against 9Cr18 in humid air, deionized water, and 3.5 wt.% NaCl solution using a reciprocating sliding test in the ball-on-disk mode. The results showed that the more compact Cr-H-DLC film improved the corrosion resistance of the Mg alloy, whereas the Cr-DLC film accelerated the corrosion in the 3.5 wt.% NaCl solution. All Mg alloy samples coated with DLC films exhibited low coefficient of friction (COF) values and smaller wear volumes compared with those of bare substrate in air, water, or NaCl solution. The Cr-DLC film presented the lowest COF and wear rate in air, but the worst corrosion protection in air and NaCl solution, whereas the converse was found for the Cr-H-DLC film. Unfortunately, all coated samples showed limited protection ability because of pore defects in the films, high galvanic potential between the substrate and the buffer layer or film, and high electrical conductivity, which caused severe tribocorrosion of the Mg alloy during the wear tests in NaCl solution. The corrosion protection ability of DLC films is key to the wear resistance protection of Mg alloys in water or NaCl solution.
机译:本研究评估了通过无氢和低Cr掺杂的氢化金刚石状碳(DLC)薄膜的涂层提供腐蚀和耐磨和耐磨的保护。使用扫描电子显微镜,原子力显微镜,拉曼光谱,偏振曲线和中性盐喷涂试验评价微观结构和耐腐蚀性。进行磨损测试以研究使用往复盘模式中的往复滑动试验的潮湿空气,去离子水和3.5重量%的样品对9Cr18的摩擦和磨损行为。结果表明,CR-H-DLC膜更紧凑地提高了Mg合金的耐腐蚀性,而CR-DLC薄膜加速了3.5重量%的腐蚀。%NaCl溶液。与空气,水或NaCl溶液中的裸衬底相比,涂有DLC膜的所有Mg合金样品表现出低摩擦系数(COF)值和较小的磨损体积。 CR-DLC薄膜在空气中呈现最低的COF和磨损率,但空气和NaCl溶液中最易腐蚀性,而Cr-H-DLC膜发现逆转。遗憾的是,由于薄膜中的孔隙缺陷,基材和缓冲层或薄膜之间的高电电位,以及高电导率,并且在NaCl溶液中的磨损试验期间,所有涂层样品都显示出有限的保护能力,基板和缓冲层或薄膜之间的高电脉电位,以及导致Mg合金的严重腐蚀。 。 DLC膜的耐腐蚀能力是水或NaCl溶液中Mg合金耐磨性保护的关键。

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