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Microstructural influences of corrosion sensitization in Al 5XXX series aluminum alloys

机译:Al 5XXX系列铝合金腐蚀敏化的微观结构影响

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Al 5XXX series aluminum alloys are being used in naval military applications, and being exposed to outdoor environments. With sufficient time and temperature exposure, these alloys undergo a process in which a secondary B phase forms at the grain boundary that sensitizes the alloy to stress corrosion cracking. The relationship between this sensitization and the microstructural features of Al 5083-H116, 5083-H131, 5083-H321, 5456-H116 aluminum alloys, such as grain boundary misorientation angle, dislocation densities, and B phase nucleation densities were examined and reviewed. Samples were aged for up to 30 months at varying temperatures (40°C, 50°C, 60°C, and 70°C), then analyzed using the ASTM G-67 mass loss test. Grain size and grain boundary information were collected via electron backscatter diffraction (EBSD). Geometrical dislocation density information was calculated from the EBSD data. SEM and AFM data were used to determine B phase nucleation density values. Grain boundary misorientation angle, grain size, and dislocation density were found to influence the B phase nucleation density and rate of sensitization. These features were correlated with the mass loss tests performed on these alloys at varying degrees of sensitization. A model was built to simulate the effects of these different factors on the sensitization rate and outcome of the mass loss tests.
机译:Al 5XXX系列铝合金已用于海军军事应用,并暴露在室外环境中。在足够的时间和温度下,这些合金会经历一个过程,在该过程中,在晶界处形成第二B相,使合金对应力腐蚀开裂敏感。研究并审查了这种敏化度与Al 5083-H116、5083-H131、5083-H321、5456-H116铝合金的微观结构特征之间的关系,例如晶界错位角,位错密度和B相成核密度。将样品在不同温度(40°C,50°C,60°C和70°C)下老化30个月,然后使用ASTM G-67质量损失测试进行分析。晶粒尺寸和晶界信息是通过电子背散射衍射(EBSD)收集的。从EBSD数据计算几何位错密度信息。 SEM和AFM数据用于确定B相成核密度值。发现晶界错位角,晶粒尺寸和位错密度会影响B相成核密度和敏化率。这些特征与在不同敏化度下对这些合金进行的质量损失测试相关。建立了一个模型来模拟这些不同因素对致敏率和质量损失测试结果的影响。

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