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首页> 外文期刊>International Journal of Electrochemical Science >Corrosion and Tribological Studies of Bamboo Leaf Ash and Alumina Reinforced Al-Mg-Si Alloy Matrix Hybrid Composites in Chloride Medium
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Corrosion and Tribological Studies of Bamboo Leaf Ash and Alumina Reinforced Al-Mg-Si Alloy Matrix Hybrid Composites in Chloride Medium

机译:竹叶灰和氧化铝增强的Al-Mg-Si合金基杂化复合材料在氯化物介质中的腐蚀与摩擦学研究

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The corrosion and wear behaviours of Al matrix hybrid composites prepared using bamboo leaf ashand alumina as reinforcements were investigated in chloride medium. Alumina samples added with 2,3, and 4 wt% bamboo leaf ash (BLA) were utilized to prepare 10 wt% of the reinforcing phase withAl-Mg-Si alloy as matrix using double stir casting process. Electrochemical studies and wear testswere performed to assess the behaviours of the composites in 3.5% NaCl. The wear and corrosionmechanisms were established with the aid of scanning electron microscopy. The analyses of the resultsobtained show that the corrosion resistance of the composites decreased with BLA addition in 3.5 %NaCl solution. Preferential dissolution of the more anodic Al-Mg-Si alloy matrix around the Al-Mg-Simatrix/ BLA/Al2O3 particle interfaces was identified as the primary corrosion mechanism. Thecoefficient of friction and consequently, the wear rate of the hybrid composite containing 4 wt % BLAwas observed to be the highest among the composite samples produced. The single alumina reinforcedand the hybrid composites containing 2 and 3 wt % BLA had comparable wear rates with the hybridsshowing slightly superior wear resistance.
机译:研究了以竹叶氧化铝作为增强材料制备的Al基复合材料在腐蚀介质中的腐蚀和磨损行为。利用添加有2,3和4 wt%竹叶灰(BLA)的氧化铝样品,采用双搅拌铸造工艺,以Al-Mg-Si合金为基质制备10 wt%的增强相。进行了电化学研究和磨损测试,以评估复合材料在3.5%NaCl中的行为。借助于扫描电子显微镜确定磨损和腐蚀机制。对所得结果的分析表明,在3.5%NaCl溶液中加入BLA会使复合材料的耐蚀性降低。主要的腐蚀机理被确定为:在Al-Mg-Simatrix / BLA / Al2O3颗粒界面周围较阳极化的Al-Mg-Si合金基体优先溶解。在生产的复合材料样品中,观察到摩擦系数,因此,含4 wt%BLA的杂化复合材料的磨损率最高。单一氧化铝增强的和含有2和3重量%BLA的杂化复合材料具有可比的磨损率,杂化材料显示出稍强的耐磨性。

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