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Effects of Retrogression Treatment Process on the Mechanical Properties and Corrosion Behavior of the Graphene/7075 Aluminum Matrix Composite

机译:倒退处理工艺对石墨烯/7075铝基复合材料力学性能和腐蚀行为的影响

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The influence of various retrogression and re-ageing (RRA) treatment processes on the hardness, electrical conductivity and corrosion behavior of graphene/7075 aluminum matrix composite were investigated. The results showed that the hardness decreased swiftly at the initial stage and short time to peak value as the retrogression temperature (170 °C, 180 °C, 190 °C, 200 °C) rises. In the RRA 180 °C/120 min process, the electrical conductivity and peak-aging Brinell hardness were 37.9%IACS, 192.8. This RRA treatment possessed excellent pitting corrosion resistance, and the corresponding pitting potential (Epit), the passivation potential (E_(pit)-E_(corr)), the pitting corrosion current density (Logi_(corr)) were-0.756V, 0.558V,-1.836A/cm~2, respectively. This enhance can attribute that the continuous η phase distributed along the grain boundary became intermittent and coarse in the retrogression stage.
机译:研究了石墨烯/7075铝基复合材料的各种退变和再时效(RRA)处理工艺对其硬度、导电性和腐蚀行为的影响。结果表明,随着回复温度(170℃、180℃、190℃、200℃)的升高,硬度在初始阶段迅速下降,并在短时间内达到峰值。在RRA 180°C/120 min工艺中,电导率和峰值时效布氏硬度分别为37.9%IACS和192.8%。这种RRA处理具有优良的抗点蚀性能,相应的点蚀电位(Epit)、钝化电位(E_(pit)-E_(corr))和点蚀电流密度(Logi_(corr))分别为-0.756V、0.558V、-1.836A/cm~2。这种增强可以归因于沿晶界分布的连续η相在退变阶段变得间歇性和粗糙。

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