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Electrodeposition Of Al-mn Alloy On Az31b Magnesium Alloy In Molten Salts

机译:熔盐中Az31b镁合金上Al-mn合金的电沉积

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The Al-Mn alloy coatings were electrodeposited on AZ31B Mg alloy in AlCl_3-NaCl-KCl-MnCl_2 molten salts at 170 ℃ aiming to improve the corrosion resistance. However, in order to prevent AZ31B Mg alloy from corrosion during electrodeposition in molten salts and to ensure excellent adhesion of coatings to the substrate, AZ31B Mg alloy should be pre-plated with a thin zinc layer as intermediate layer. Then the microstructure, composition and phase constituents of the coatings were investigated by scanning electron microscopy (SEM), energy-dispersive X-ray spectrometry (EDX), and X-ray diffraction (XRD). It was indicated that, by adjusting the MnCl_2 content in the molten salts from 0.5 wt% to 2 wt%, the Mn content in the alloy coating was increased and the phase constituents were changed from f.c.c Al-Mn solid solution to amorphous phase. The corrosion resistance of the coatings was evaluated by potentiodynamic polarization measurements in 3.5% NaCl solution. It was confirmed that the Al-Mn alloy coatings exhibited good corrosion resistance with a chear passive region and significantly reduced corrosion current density at anodic potentiodynamic polarization. The corrosion resistance of the alloy coatings was also related with the microstructure and Mn content of the coatings.
机译:为了提高耐蚀性,在170℃的AlCl_3-NaCl-KCl-MnCl_2熔融盐中电沉积Al-Mn合金涂层。但是,为了防止AZ31B Mg合金在电沉积过程中在熔融盐中腐蚀,并确保涂层与基材的优异粘合性,应在AZ31B Mg合金上预镀一层薄的锌层作为中间层。然后通过扫描电子显微镜(SEM),能量色散X射线光谱(EDX)和X射线衍射(XRD)研究了涂层的微观结构,组成和相组成。结果表明,通过将熔融盐中的MnCl 2含量从0.5wt%调整到2wt%,合金涂层中的Mn含量增加,并且相成分从f.c.c Al-Mn固溶体变为非晶相。通过在3.5%NaCl溶液中的电位动力学极化测量来评估涂层的耐腐蚀性。可以确定的是,Al-Mn合金涂层具有良好的耐蚀性和钝化区域,并且在阳极电势极化时显着降低了腐蚀电流密度。合金涂层的耐蚀性也与涂层的显微组织和Mn含量有关。

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