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The Effect of Heat Treatment on the Sensitized Corrosion of the 5383-H116 Al-Mg Alloy

机译:热处理对5383-H116 Al-Mg合金敏化腐蚀的影响

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摘要

In this study, the effects of heat treatment and sensitized corrosion on the 5383-H116 Al-Mg alloy were investigated for temperatures ranging from 100 to 450 °C. The results show that the heat treatment temperature is the main factor that causes changes to the microstructure and mechanical strength of the 5383-H116 Al-Mg alloy, inducing β-phase (Al3Mg2) precipitation in the form of a continuous layer along the grain boundaries. Intergranular corrosion was caused by the β-phase of the grain boundary precipitation, and the corrosion susceptibility of the recrystallized structure was significantly higher than the corrosion susceptibility of the recovered structure. According to the conductivity values detected, β-phase precipitation can enhance the 5383-H116 Al-Mg alloy conductivity, with the response due to structural dislocation density being higher than that due to the recrystallized structure. As such, the β-phase precipitation after sensitization is more significant than the β-phase precipitation prior to the sensitization, such that after sensitization, the conductivity rises to a significantly higher level than that exhibited by the recrystallization structure.
机译:在这项研究中,研究了热处理和敏化腐蚀对5383-H116 Al-Mg合金在100至450°C的温度范围内的影响。结果表明,热处理温度是导致5383-H116 Al-Mg合金组织和机械强度发生变化的主要因素,并沿晶界以连续层的形式诱导β相(Al3Mg2)析出。晶界析出的β相引起晶间腐蚀,再结晶组织的腐蚀敏感性明显高于回收组织的腐蚀敏感性。根据检测到的电导率值,β相析出可以提高5383-H116 Al-Mg合金的电导率,其结构位错密度的响应要高于重结晶组织的响应。这样,在敏化之后的β相沉淀比在敏化之前的β相沉淀更显着,使得在敏化之后,电导率上升到比重结晶结构所表现出的电导率高得多的水平。

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