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在JGP560V磁控溅射镀膜设备上镀制多晶铜膜,利用纳米压入技术测量了其室温下的蠕变性能.结果表明:由于不同加载方式下,材料加工硬化程度的不同造成了应力指数的差异,因而,不同加载方式对测得的铜膜蠕变应力指数有比较大的影响;由于材料在高载荷时在压头下端产生更多的位错,阻碍了压头的压入,使蠕变率降低,因而,随着保载载荷的升高,蠕变应力指数变大.

参考文献

[1] 岳珠峰;吕震宇;何健 等.镍基单晶合金的γ'相筏化准则及蠕变性能的晶体取向相关性[J].金属学报,1999,35(06):585-588.
[2] 田素贵,张禄廷,张静华,杨洪才,徐永波,胡壮麒.单晶镍基合金的蠕变特性及影响因素[J].中国有色金属学报,2000(01):43-46.
[3] Raman V;Berriche R .Investigation of the creep processes in tin and aluminum using a depth-sensing indentation technique[J].Journal of Materials Research,1992,7(03):627-638.
[4] Feng G;Ngan A H W .Creep and strain burst in indium and aluminum during nanoindentation[J].Scripta Materialia,2001,45(08):971.
[5] May M J;Nix W D .Micro-indentation study of superplasticity in Pb, Sn and Sn-38%Pb[J].Acta Materialia,1988,36(08):2183-2192.
[6] Lafontaine W R;Yost B;Black R D et al.Indentation load relaxation experiments with indentation depth in the submicron range[J].Journal of Materials Research,1990,5(10):2100-2106.
[7] Mayo M J;Siegel R W;Liao Y X et al.Nanoindentation of nanocrystalline ZnO[J].Journal of Materials Research,1992,7(04):973-979.
[8] Mayo M J;Siegel R W;Narayanasamy A et al.Mechanical properties of nanophase TiO2 as determined by nanoindentation[J].Journal of Materials Research,1990,5(05):1073-1082.
[9] Yue Z F;Probst H M;Eqqeler G .Determination of creep parameters from indentation creep experiments:a parametric finite elements study for single phase materials[J].Materials at High Temperatures,2000,17(04):449-456.
[10] Yang Tse Cheng;Che-Min Cheng .Scaling relationships in indentation of power-law creep solids using self-similar indenters[J].Philosophical Magazine Letters,2001(1):9-16.
[11] Fujiwara M;Otsuka M .Indentation creep of β-Sn and Sn-Pb eutectic alloy[J].Materials Science and Engineering A,2001,A319-321:929-933.
[12] Li W B;Henshall J L;Hooper R M et al.Mechanisms of indentation creep[J].Acta Materialia,1991,39(12):3099-3110.
[13] Chang H;Alstetter C J;Averback R S .Characteristics of nanophase TiAl produced by inert gas condensation[J].Journal of Materials Research,1992,7(11):2962-2970.
[14] Lucas B N;Oliver W C;Swindeman J E.Dynamics of frequency-specific, depth-sensing indentation testing[A].San Francisco CA,USA:Materials Research Society,1998:3-14.
[15] B. L. Shen;T. Itoi .INDENTATION CREEP OF NANOCRYSTALLINE Cu-TiC ALLOYS PREPARED BY MECHANICAL ALLOYING[J].Scripta materialia,2000(9):893-898.
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