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Influence of reinforcement proportion and matrix composition on pitting corrosion behaviour of cast aluminium matrix composites (A3xx.x/SiCp)

机译:补强比例和基体组成对铸铝基复合材料(A3xx.x / SiCp)点蚀性能的影响

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摘要

The influence of silicon carbide (SiCp) proportion and matrix composition on four aluminium metal matrix composites (A360/SiC/10p, A360/SiC/20p, A380/SiC/10p, A380/SiC/20p) immersed in 1-3.5wt% NaCl at 22℃ was investigated by potentiodynamic polarization. The kinetics of the corrosion process was studied on the basis of gravimetric measurements. The nature of corrosion products was analysed by scanning electron microscopy (SEM) and low angle X-ray diffraction (XRD). The corrosion damage in Al/SiCp composites was caused by pitting attack and by nucleation and growth of  Al_2O_3 • 3H_2O on the material surface. The main attack nucleation sites were the interface region between the matrix and the reinforcement particles. The corrosion process was influenced more by the concentration of alloy elements in the matrix than by the proportion of SiCp reinforcement and saline concentration.
机译:碳化硅(SiCp)的比例和基体组成对浸入1-3.5wt%的四种铝金属基复合材料(A360 / SiC / 10p,A360 / SiC / 20p,A380 / SiC / 10p,A380 / SiC / 20p)的影响通过电位动力学极化研究了22℃下的NaCl。在重量分析的基础上研究了腐蚀过程的动力学。腐蚀产物的性质通过扫描电子显微镜(SEM)和低角度X射线衍射(XRD)分析。 Al / SiCp复合材料的腐蚀损伤是由点蚀和andAl_2O_3•3H_2O在材料表面的形核和生长引起的。主要的攻击成核位点是基体和增强颗粒之间的界面区域。腐蚀过程受基质中合金元素浓度的影响比受SiCp增强材料的比例和盐水浓度影响更大。

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