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铝是一种优良的导电材料,但由于强度低,其应用受到很大限制.随着铝在电力工业中应用逐渐增加,近年来,越来越多的工作致力于提高铝的导电率与强度的综合性能.通过改变传统T6时效工艺顺序发明一种同时显著提高Al-Mg-Si-Cu合金导电率和强度的形变时效工艺.本文采用显微硬度测量,导电率测试以及透射电镜(TEM)微观结构表征研究了形变时效工艺与传统T6时效工艺制备的材料在综合性能和微观组织上的差异.轧制变形引入的位错在后续时效过程调控析出,析出相形貌的改变是导电率相对T6工艺提高的原因,而残留位错可提高材料强度.

参考文献

[1] C.H. Liu;X.L Li;S.H. Wang;J.H. Chen;Q. Teng;J. Chen;Y. Gu.A tuning nano-precipitation approach for achieving enhanced strength and good ductility in Al alloys[J].Materials & design,2014Feb.(Feb.):144-148.
[2] Wang, S.H.;Liu, C.H.;Chen, J.H.;Li, X.L.;Zhu, D.H.;Tao, G.H..Hierarchical nanostructures strengthen Al-Mg-Si alloys processed by deformation and aging[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2013:233-242.
[3] C. Ravi;C. Wolverton.First-principles study of crystal structure and stability of Al-Mg-Si-(Cu) precipitates[J].Acta materialia,200414(14):4213-4227.
[4] M. Torsaeter;W. Lefebvre;C.D. Marioara.Study of intergrown L and Q' precipitates in Al-Mg-Si-Cu alloys[J].Scripta materialia,20119(9):817-820.
[5] Miyajima, Y.;Komatsu, S.-Y.;Mitsuhara, M.;Hata, S.;Nakashima, H.;Tsuji, N..Change in electrical resistivity of commercial purity aluminium severely plastic deformed[J].Philosophical magazine: structure and properties of condensed matter,201033/34(33/34):4475-4488.
[6] Weili Liu;Alexander A. Balandin;Changho Lee;Hae-Yong Lee.Increased thermal conductivity of free-standing low-dislocation-density GaN films[J].Physica Status Solidi, A. Applied Research,200512(12):R135-R137.
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