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暴露在加勒比海水中的2219-T42和6061-T6铝合金表面初始局部腐蚀行为的比较(英文) 被引量:7
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作者 Gloria ACOSTA lucien veleva +1 位作者 Juan Luis LóPEZ D.A.LóPEZ-SAURI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2019年第1期34-42,共9页
将6061-T6和2219-T42铝合金样品暴露在加勒比海水中90 d。将开路电位的波动作为电化学噪声(EN),用来表征和比较合金表面的初始点蚀行为。采用功率谱密度(PSD)与频率的关系图进行电化学噪声分析。PSD图中指数β的减小表明,随着海水中铝... 将6061-T6和2219-T42铝合金样品暴露在加勒比海水中90 d。将开路电位的波动作为电化学噪声(EN),用来表征和比较合金表面的初始点蚀行为。采用功率谱密度(PSD)与频率的关系图进行电化学噪声分析。PSD图中指数β的减小表明,随着海水中铝合金点蚀的进行,出现自发的能量释放。开路电位的波动与新腐蚀层的破裂和形成有关。PSD图中指数β的变化趋势表明,AA2219-T42铝合金的腐蚀过程是一个持续的非稳态过程,其动力学行为受分形布朗运动(fBm)控制;AA6061-T6铝合金的腐蚀过程则主要表现出稳态和弱持久性的特性,这是由于分形高斯噪声(fGn)的贡献。将合金暴露于海水中后进行扫描电镜-X射线能谱(SEM-EDX)分析,发现合金上存在富含Cu或Fe、不规则分布的不溶性金属间化合物颗粒。AA2219-T42合金中Mg和Al的优先溶解发生在S相(Al_2CuMg)。 展开更多
关键词 铝合金 腐蚀 电化学噪声 金属间化合物颗粒 海水
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Degradation of AZ31 and AZ91 magnesium alloys in different physiological media:Effect of surface layer stability on electrochemical behaviour 被引量:3
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作者 Emmanuel Mena-Morcillo lucien veleva 《Journal of Magnesium and Alloys》 SCIE EI CAS 2020年第3期667-675,共9页
This work deals with the degradation of AZ31 and AZ91 magnesium alloys when they are exposed to three types of physiological media for seven days at 37°C:Ringer's,Hanks\and simulated body fluid(SBF)solutions.... This work deals with the degradation of AZ31 and AZ91 magnesium alloys when they are exposed to three types of physiological media for seven days at 37°C:Ringer's,Hanks\and simulated body fluid(SBF)solutions.A combination of immersions tests and surface characterisation methods were employed to evaluate the attack on the surface,and the stability of the formed corrosion product layers for each alloy/electrolyte system.Measurements of the Mg-ion released into the electrolytes were also carried out in order to be correlated with the degradation of the alloys.Electrochemical impedance spectroscopy(EIS)and potentiodynamic polarisation(PDP)techniques were employed to compare the performance of the alloys in these different aggressive electrolytes.According to the obtained results,the Mg-alloys exposed to Hanks'media were the less affected,which fact was attributed to a higher stability of the corrosion products layer formed in this medium,in comparison of those formed in Ringer's and SBF solutions.In add让ion,the corrosion damage was lower for AZ91 than for AZ31 alloy in all environments due to its higher Al content.The mass loss rates calculated from both immersion tests and electrochemical methods followed the same trend for comparative purposes between alloys. 展开更多
关键词 Mg-alloys AZ-series Surface layer Physiological media Mass loss rate DEGRADATION
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Development and assessment of a multifunctional chitosan-based coating applied on AZ31 magnesium alloy: Corrosion resistance and antibacterial performance against Klebsiella Pneumoniae 被引量:2
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作者 Emmanuel Mena-Morcillo lucien veleva +3 位作者 Mariana Cerda-Zorrilla Montserrat Soria-Castro Juan C.Castro-Alcátara Rosa C.Canul-Puc 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2021年第6期2133-2144,共12页
This work presents a simple method to functionalise the surface of AZ31 magnesium alloy by applying a duplex MgF_(2)/chitosan coating,which improves its corrosion resistance and provides it with some antibacterial per... This work presents a simple method to functionalise the surface of AZ31 magnesium alloy by applying a duplex MgF_(2)/chitosan coating,which improves its corrosion resistance and provides it with some antibacterial performance.First,the effect of three chitosan solutions with different concentrations on the growth of the bacteria Klebsiella pneumoniae in nutritive medium(TSB)was evaluated by absorbance kinetics experiments,where the chitosan solution at 2%(m/V)was selected for the coating preparation.Before coating application,the AZ31 substrate was pretreated with hydrofluoric acid for 48 hours in order to form a MgF_(2)conversion layer.Subsequently,the coating was applied to the pretreated substrate through the dry-casting method.Samples of the alloy in each surface condition(bare,pretreated,and pretreated+coated with chitosan)were exposed to simulated body fluid(SBF)for 21 days at 37°C,with the solution renewed every 24 hours and the wastes stored.The surfaces were characterised by SEM-EDS,and XPS after the immersion tests,whereas the stored solutions were employed to measure the change in the Mg-ions concentration.Electrochemical impedance spectroscopy and potentiodynamic polarisation were performed in each surface condition to compare their corrosion resistance in SBF.The antibacterial activity of the functionalised surfaces was evaluated by the plate counting method and compared with bare samples.All results were correlated and demonstrate that the modified surface of AZ31 achieved a higher corrosion resistance when it was exposed to SBF,as well as a reduction of the bacterial growth during in vitro tests. 展开更多
关键词 AZ31 Chitosan coating Simulated body fluid Corrosion Antibacterial activity
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