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The Effect of Mg Content on Intergranular Corrosion of Al-Mg-Mn Alloys after Annealing

机译:镁含量对Al-Mg-Mn合金退火后晶界腐蚀的影响

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The Intergranular Corrosion (IGC) properties of Al-xMg-0.6Mn (x=3,4,5,6 and 7) wt.% alloys were studied using the mass loss test. The mass loss test results of the alloys annealed at 100-300°C for 1h indicated that the alloys with 3 and 4% Mg were resistant to IGC. While the mass loss values of the 6 and 7% Mg alloys were increased to IGC severe sensitive region, and then abruptly fallen to the IGC-resistant region with the increasing temperature. The mass loss-temperature curve of 5% Mg alloy was actually located between them. After isothermal annealing, the mass loss results indicated a stabilization temperature of the alloys with 5, 6 and 7% Mg appeared at the temperature beyond 220°C, 250°C and 270°C, respectively. Furthermore, below the stabilization temperature 10-20°C, it was observed a type of "special mass loss curve " in so-called transition region that was showed a quick mass loss increasing to sensitization region and then a decrease to the IGC resistant region with a prolonged annealing time. To explore the "special curve" in transition region, the TEM observation of Al-7Mg alloy annealing at 250°C was conducted, which indicated the sensitization resulted from the continuity of β phase, while the descending to the IGC might to be attributed to the spheroidization of β phase.
机译:使用质量损失测试研究了Al-xMg-0.6Mn(x = 3、4、5、6和7)重量%合金的晶间腐蚀(IGC)性能。在100-300°C退火1h的合金的质量损失测试结果表明,具有3%和4%Mg的合金具有耐IGC的能力。当6和7%Mg合金的质量损失值增加到IGC严重敏感区域时,然后随着温度的升高突然下降到耐IGC的区域。 5%Mg合金的质量损失-温度曲线实际上位于它们之间。在等温退火之后,质量损失结果表明具有5、6和7%Mg的合金的稳定温度分别出现在超过220°C,250°C和270°C的温度下。此外,在稳定温度10-20°C以下,在所谓的过渡区域中观察到一种“特殊质量损失曲线”,表现为快速质量损失增加至敏化区域,然后下降至IGC抗性区域延长退火时间。为了探究过渡区的“特殊曲线”,对Al-7Mg合金在250°C退火进行了TEM观察,表明增感是由β相的连续性引起的,而IGC的下降可能归因于β相的球化。

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