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Electrodeposition of DLC films on carbon steel from acetic acid solutions

机译:用乙酸溶液在碳钢上电沉积DLC膜

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摘要

In this paper the electrodeposition of DLC films on carbon steel from aqueous acetic acid solutions and their structural and mechanical characterization are reported. The process is performed at room temperature at relatively low cell voltages (from -8 to -20 V) with entirely environmentally friendly chemicals. Qualitative and quantitative evaluation of C hybridisation type have been performed by Raman spectroscopy. Microhardness and adhesion of the supported electrodeposited films have been measured by micro-indentation and scratch-testing. Notably, ductile failure was found to correspondence to a wide range of film growth conditions. The corrosion resistance of DLC-coated steel has been assessed by electrochemical impedance spectrometry in a neutral chloride solution. Optimal electrodeposition conditions were identified for the formation of high-quality DLC films ca. 270 nm thick with a high content of diamond-coordinated carbon and an ideal combination of hardness and adhesion; films formed under these conditions also confer some degree of corrosion protection to the steel substrate.
机译:本文报道了乙酸水溶液中碳钢上DLC膜的电沉积及其结构和力学特性。该过程在室温下以完全环保的化学药品在相对较低的电池电压(-8至-20 V)下进行。 C杂交类型的定性和定量评估已经通过拉曼光谱法进行。通过微压痕和划痕测试已经测量了所支撑的电沉积膜的显微硬度和粘附性。值得注意的是,发现延性破坏与广泛的膜生长条件相对应。已经在中性氯化物溶液中通过电化学阻抗光谱法评估了DLC涂层钢的耐腐蚀性。确定了用于形成高质量DLC膜的最佳电沉积条件。 270 nm厚,具有高含量的金刚石配位碳,是硬度和附着力的理想组合;在这些条件下形成的膜还可以为钢基材提供一定程度的腐蚀防护。

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