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Corrosion Characterization of TiO2 Particulate Reinforced Al-6063 Composites in Chloride and Nitrate Media

机译:TiO2颗粒增强的Al-6063复合材料在氯化物和硝酸盐介质中的腐蚀特性

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摘要

The corrosion behaviour of Al 6063-TiO2 particulate composites in chloride and nitrate media has been studied in the present investigation. The unreinforced matrix and the composites containing 2, 4 and 6 % by weight of TiO2 particulates were prepared by liquid metallurgy route using vortex technique. The potentiodynamic polarization experiments revealed that the composites are susceptible to corrosion compared with their matrix alloy. Moreover, the corrosion rates of the composites markedly increases with increase in the TiO2 content. The pitting effect was more pronounced in presence of aggressive Cl~- ions compared to mild NO_3~- ions. The observed lower corrosion resistance in composites could be attributed to the microgalvanic coupling between the intermetallics around the reinforcement particles such as Mg2Si, AlTi3 and matrix alloy. Insulator TiO2 particulates are perceived to act as inert material and degrade the integrity of the protective oxide layer on the Al matrix alloy. SEM and EDX analysis of samples in chloride media showed the presence of large pits and completely deteriorated surface, complementing polarization studies.
机译:本研究研究了Al 6063-TiO2颗粒复合材料在氯化物和硝酸盐介质中的腐蚀行为。使用涡旋技术通过液体冶金路线制备了未增强的基质和包含2、4和6重量%的TiO 2颗粒的复合物。电位动力学极化实验表明,与基体合金相比,复合材料更容易受到腐蚀。而且,随着TiO 2含量的增加,复合材料的腐蚀速率显着增加。与轻度的NO_3〜离子相比,在存在侵蚀性的Cl〜-离子时,点蚀作用更为明显。复合材料中观察到的较低的耐腐蚀性可能归因于增强颗粒(例如Mg2Si,AlTi3和基体合金)周围的金属间化合物之间的微电流耦合。绝缘体TiO2颗粒被认为是惰性材料,并降低了Al基合金上保护性氧化层的完整性。在氯化物介质中对样品进行的SEM和EDX分析表明,存在大的凹坑和表面完全退化,补充了极化研究。

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