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The role of microstructure and microchemistry on intergranular corrosion of aluminium alloy AA7085-T7452

机译:显微组织和化学成分对铝合金AA7085-T7452晶间腐蚀的作用

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摘要

The intergranular corrosion (IGC) of an AA7085-T7452 aluminium alloy forging was determined via ASTM G110 exposure, and rationalised with electron backscattered diffraction and transmission electron microscopy. The alloy microstructure, microchemistry and IGC propensity varied depending on the location within the forging, and thus quarter (t/4) and mid (t/2) thicknesses of the forging were explored herein. The number of IGC fissures and mass loss of specimens was lower in the t/2 position, as a result of higher Cu content in grain boundary precipitates, eta-phase, Mg(Cu-x (=) Zn-0.08-0.32(1-x))(y) (=) (1.4-2.8) and (Zn, Cu)-rich eta-phase, Mg(Cu-x (=) Zn-0.2-0.54(1-x))(y) (=) (4.4-8.5) in the t/2 position, whilst the t/4 position contained eta-phase, Mg(Cu-x (=) Zn-0.09-0.31(1-x))(y) (=) (1.7-2.3) and Zn-rich eta-phase, Mg(Cu-x (=) Zn-0.05-0.12(1-x))(y) (=) (4.4-4.5).
机译:通过ASTM G110曝光确定AA7085-T7452铝合金锻件的晶间腐蚀(IGC),并通过电子背散射衍射和透射电子显微镜对其进行合理化。合金的显微组织,微观化学和IGC倾向随锻件内的位置而变化,因此本文探讨了锻件的四分之一(t / 4)和中位(t / 2)厚度。在t / 2位置,IGC裂纹的数量和试样的质量损失较低,这是由于晶界沉淀物中的Cu含量较高,η相,Mg(Cu-x(=)Zn-0.08-0.32(1) -x))(y)(=)(1.4-2.8)和富含(Zn,Cu)的eta相Mg(Cu-x(=)Zn-0.2-0.54(1-x))(y)( =)(4.4-8.5)位于t / 2位置,而t / 4位置包含η相,Mg(Cu-x(=)Zn-0.09-0.31(1-x))(y)(=) (1.7-2.3)和富锌eta相Mg(Cu-x(=)Zn-0.05-0.12(1-x))(y)(=)(4.4-4.5)。

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