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Corrosion Behavior of the As-Cast and As-Solid Solution Mg-Al-Ge Alloy

机译:铸态和固溶Mg-Al-Ge合金的腐蚀行为

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摘要

The corrosion behavior of Mg-3Al-xGe (x = 1, 3, 5) alloy in as-cast and as-solid was investigated by virtue of microstructure, corrosion morphology observation, and electrochemical measurement. Among the as-cast alloys, the corrosion rate of Mg-3Al-1Ge with a discontinuous bar-morphology was the highest, which was 101.7 mm·a−1; the corrosion rate of Mg-3Al-3Ge with a continuous network distribution was the lowest, which was 23.1 mm·a−1; and the corrosion rate of Mg-3Al-5Ge of Ge-enriched phase with sporadic distribution was in-between, which was 63.9 mm·a−1. It is suggested that the morphology of the Mg2Ge phase changes with a change in Ge content, which affects the corrosion performance of the alloy. After solid solution treatment, the corrosion rate of the corresponding solid solution alloy increased—Mg-3Al-1Ge to 140.5 mm·a−1, Mg-3Al-3Ge to 52.9 mm·a−1, and Mg-3Al-5Ge to 87.3 mm·a−1, respectively. After investigation of the microstructure, it can be suggested that solid solution treatment dissolves the Mg17Al12 phase, which changes the phase composition of the alloy and also affects its microstructure, thus affecting its corrosion performance.
机译:通过显微组织,腐蚀形貌观察和电化学测量,研究了Mg-3Al-xGe(x = 1,3,5)合金在铸态和固态中的腐蚀行为。在铸态合金中,具有不连续棒状形态的Mg-3Al-1Ge腐蚀速率最高,为101.7 mm·a -1 。网络连续分布的Mg-3Al-3Ge腐蚀速率最低,为23.1 mm·a -1 。富Ge相的Mg-3Al-5Ge之间呈零星分布,腐蚀速率为63.9 mm·a -1 。暗示了Mg2Ge相的形态随Ge含量的变化而变化,这影响了合金的腐蚀性能。固溶处理后,相应的固溶合金的腐蚀速率增加,Mg-3Al-1Ge达到140.5 mm·a -1 ,Mg-3Al-3Ge达到52.9 mm·a - 1 和Mg-3Al-5Ge分别为87.3 mm·a -1 。在对微观结构进行研究后,可以认为固溶处理可溶解Mg17Al12相,这会改变合金的相组成,并影响其微观结构,从而影响其腐蚀性能。

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