TANG De-lin, LIU Xiang-hua, SONG Meng. Size Effect in Copper Foil After Rolling[J]. Journal of Northeastern University Natural Science, 2017, 38(9): 1239-1242.
[1]董湘怀,王倩,章海明,等.微成形中尺寸效应研究的进展[J].中国科学,2013,43 (2):115-130.(Dong Xiang-huai,Wang Qian,Zhang Hai-ming,et al.Progress in size effect of microforming [J].Science China,2013,43(2):115-130.) [2]Tang D L,Liu X H,Li X Y,et al.Permissible minimum thickness in asymmetrical cold rolling [J].Journal of Iron and Steel Research,International,2013,20(11):21-26. [3]Yu Q B,Liu X H,Tang D L.Extreme extensibility of copper foil under compound forming conditions[J].Scientific Reports,2013,3(8):3556. [4]Stlken J S,Evans A G.A microbend test method for measuring the plasticity length scale[J].Acta Materialia,1998,46(14):5109-5115. [5]Fu H H,Benson D J,Meyers M A.Analytical and computational description of effect of grain size on yield stress of metals [J].Acta Materialia,2001,49(13):2567-2582. [6]Lederer M,Grger V,Khatibi G,et al.Size dependency of mechanical properties of high purity aluminium foils [J].Materials Science and Engineering A,2010,527(3):590-599. [7]Greer J R,Hosson J T M D.Plasticity in small-sized metallic systems:intrinsic versus extrinsic size effect [J].Progress in Materials Science,2011,56(6):654-724. [8]赵宾,王刚,李萍.基于尺寸效应的镁合金箔材本构关系的研究[J].精密成形工程,2014,6(4):58-62.(Zhao Bin,Wang Gang,Li Ping.Constitutive relationship of magnesium alloy foil based on the size effect [J]. Journal of Netshape Forming Engineering,2014,6(4):58-62.) [9]孟庆当,李河宗,董湘怀,等.304不锈钢薄板微塑性成形尺寸效应的研究[J].中国机械工程,2013,24(2):280-283.(Meng Qing-dang,Li He-zong,Dong Xiang-huai,et al. Investigation of size effects of 304 stainless steel foils in microforming processes [J].China Mechanical Engineering,2013,24(2):280-283.) [10]Wang Q,Dong X H,Zhang H M,et al.Constitutive model for thin sheet metal with one or several grains across thickness in microforming [J].Transactions of Nonferrous Metals Society of China,2013,23(5):1428-1434.