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Effect of ECAP Pass on Corrosion Behavior of High-AI Content Magnesium Alloys

机译:ECAP通过对高AI含量镁合金腐蚀行为的影响

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In view of low strength and poor corrosion resistance of Mg alloys, a Mg-12Al-0.7Si alloy was designed, fabricated and subjected to equal channel angular pressing(ECAP) in order to refine the microstructure. Microstructure observation and electrochemical performance test were conducted to investigate the influence of the microstructural variation subjected to multi-pass ECAP processing on the corrosion behavior of the alloy. The results showed that both a-Mg matrix and β-Mg_(17)Al_(12) of the alloy were significantly refined after processing for different passes (2,4,6,8) through route BC, and the 4-pass ECAPed alloy in 3.5% NaCl solution presents the lowest weight loss, lower corrosion current and higher corrosion potential in the polarization curves. The reason for high corrosion resistance of 4-pass ECAPed alloy and the effects of grain size of the matrix and the particle size, distribution of second phase and dynamic precipitates on corrosion behavior of the alloy were discussed.
机译:针对镁合金强度低,耐蚀性差的问题,设计,制造了Mg-12Al-0.7Si合金,并对其进行了等通道角挤压(ECAP),以细化组织。进行了显微组织观察和电化学性能测试,以研究经过多道次ECAP处理的显微组织变化对合金腐蚀行为的影响。结果表明,经过BC路线的不同遍(2,4,6,8)处理后,合金的a-Mg基体和β-Mg_(17)Al_(12)均得到了显着细化,并且进行了4遍ECAP合金在3.5%NaCl溶液中的极化曲线表现出最低的失重,更低的腐蚀电流和更高的腐蚀电位。讨论了四道次ECAPed合金的高耐蚀性的原因,以及基体的晶粒尺寸和粒度,第二相的分布以及动态沉淀物对合金的腐蚀行为的影响。

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