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Electrical Conductivity Variations in X2096, 8090, 7010 and an Experimental Aluminium Lithium Alloy

机译:X2096,8090,7010和实验铝锂合金的电导率变化

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The alloy X2096 (M-Cu-Li-Mg-Ag) is a low-density high strength structural alloy designed to achieve the strength of 7075T6 combined with the SCC resistance of 7010/7050T74 without the necessity for cold working after solution heat treatment. The alloy is weldable with forging, plate and extrusion applications. The composition of this alloy has been optimised for the maximum lithium content without forming delta'. There is evidence that the electrical conductivity of X2096 does not follow an expected pattern during heat treatment. An air-cooled homogenised ingot of X2096 displayed a conductivity of 16 percent IACS but when solution heat-treated the conductivity was noted to increase to approx 18 percent IACS. The electrical conductivity and Vickers hardness of this alloy has been determined after both isothermal and isochronal heat treatments and compared to 8090, a new next generation experimental Al-Li alloy and the Al-Zn-Mg-Cu alloy 7010. The hardness and conductivity variations of X2096 are reported and correlated with microstructural observations.
机译:合金X2096(M-CU-LI-MG-AG)是一种低密度高强度结构合金,设计为达到7010 / 7050t74的SCC电阻的7075t6的强度,而无需在溶液热处理后冷加工。该合金可与锻造,板材和挤出应用焊接。该合金的组合物已针对最大锂含量进行优化而不形成δ'。有证据表明X2096的电导率在热处理期间不会遵循预期的图案。 X2096的空气冷却均化锭均显示为16%IACS的电导率,但当溶液热处理时,注意到导电性增加至约18%的IACS。这种合金的电导率和维氏硬度已经在等温和等时的热处理之后确定,并与8090相比,新的下一代实验Al-Li合金和Al-Zn-Mg-Cu合金7010。硬度和电导率变化报告X2096并与微观结构观察相关。

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