制备了一种压缩断裂塑性应变接近2%的铜基块状非晶板材,并利用三点弯曲实验进行了其弯曲塑性、剪切带间距与试样厚度关系的研究.结果表明:非晶合金的弯曲断裂塑性应变明显依赖于试样厚度,即弯曲断裂塑性应变随试样厚度增加呈指数衰减关系减少;弯曲时剪切带间距随试样厚度增加而线性增加;剪切带间距与试样厚度的比值对于同一非晶合金为恒定值,但随非晶合金种类的不同而变化,与非晶合金的塑性变形能力有关.
参考文献
[1] | Inoue A, Zhang T, Kita K, Masumoto T. Trans Jpn Inst Met, 1989; 30:870 |
[2] | Inoue A, Takeuchi A. Mater Sci Eng, 2004; A375-77:16 |
[3] | Conner R D, Johnson W L, Paton N E, Nix W D. J Appl Phys, 2003; 94:904 |
[4] | Conner R D, Li Y, Nix W D, Johnson W L. Acta Mater,2004; 52:2429 |
[5] | Inoue A, Katsuya A, Amiya K, Masumoto T. Mater Trans JIM, 1995; 36:802 |
[6] | Katuya A, Inoue A, Amiya K. Int J Rapid Solidifi, 1996;9(2): 137 |
[7] | Chen L C, Spaepen F. Nature, 1988; 336:6197 |
[8] | Xu D H, Duan G, Johnson W L. Phys Rev Lett, 2004; 92:245504 |
[9] | Das J, Tang M B, Kim K B, Theissmann R, Baier F, Wang W H, Eckert J. Phys Rev Lett, 2005; 94:205501 |
[10] | Inoue A, Zhang W. Mater Trans JIM, 2002; 43:2921 |
[11] | Inoue A, Zhang W. Zhang T, Kurosaka K. Acta Mater,2001; 49:2645 |
[12] | Metals Databook. In: Japan Institute of Metals, ed., Metals Databook, Tokyo: Maruzen, 1983:366 |
[13] | Lu J, Ravichandran G. J Mater Res, 2003; 18:2039 |
[14] | Ramamurty U, Jana S, Kawamura Y, Chattopadhyay K.Acta Mater, 2005; 53:705 |
[15] | Schroers J, Johnson W L. Phys Rev Left, 2004; 93:255506 |
[16] | Xi X K, Zhao D Q, Pan M X, Wang W H, Wu Y,Lewandowski J J. Phys Rev Lett, 2005; 94:125510 |
[17] | Huang R, Suo Z, Prevost J H, Nix W D. J Mech Phys Solids, 2002; 50:1011 |
[18] | Demetriou M D, Johnson W L. J Appl Phys, 2004; 95:2857 |
[19] | Flores K M, Dauskardt R H. Acta Mater, 2001; 49:2527 |
[20] | Lee J G, Park S S, Lee D G, Lee S, Kim N J. Intermetallics, 2004; 12:1125 |
[21] | Gao H, Huang Y, Nix W D, Hutchinson J W. J Mech Phys Solids, 1999; 47:1239 |
[22] | Huang Y, Gao H, Nix W D, Hutchinson J W. J Mech Phys Solids, 2000; 48:99 |
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