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DSC analyses of static and dynamic precipitation of an Al–Mg–Si–Cu aluminum alloy
作者姓名:Manping Liu  Zhenjie Wu  Rui Yang  Jiangtao Wei  Yingda Yu  P?l C. Skaret  Hans J. Roven
作者单位:School of Materials Science and Engineering, Jiangsu Province Key Laboratory of Materials Tribology, Jiangsu University;Department of Materials Science and Engineering, Norwegian University of Science and Technology (NTNU)
基金项目:supported by the Basic Research Program (Natural Science Foundation) of Jiangsu Province (grantBK2012715);the Key University Science Research Project of Jiangsu Province (grant 14KJA430002);the Foundation of the Jiangsu Province Key Laboratory of High-end Structural Materials Project (grant hsm1301);the National Natural Science Foundation of China (grant 50971087)
摘    要:In the present investigation, both static and dynamic precipitations of an Al–Mg–Si–Cu aluminum alloy after solid-solution treatment(SST)were comparatively analyzed using differential scanning calorimetry(DSC). Dynamic aging was performed in the SST alloy through equal channel angular pressing(ECAP) at different temperatures of room temperature, 110, 170, 191 and 300 1C. For comparison, static artificial aging was conducted in the SST alloy at 191 1C with two aging times of 4 and 10 h. The DSC analyses reveal that the dynamic precipitation has occurred in the ECAPed samples, while the activation energies associated with the strengthening precipitates in the dynamic samples are considerably higher than the energies in the SST and static aged samples. The higher activation energies are probably attributed to the smaller grains and higher dislocation density developed after ECAP. The results in the present investigation allow the prediction of the type of the dynamic precipitates to influence the strength of the ultrafine grained alloy during ECAP at various temperatures.

关 键 词:Differential scanning calorimetry  Al–Mg–Si–Cu aluminum alloy  Dynamic aging  Precipitation behaviors  Equal channel angular pressing  Severe plastic deformation
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