介绍了Miguel lagos等提出的超塑性变形的两相理论以及由K.Higashi等提出的高温高应变速率超塑性变形的液膜理论.两相理论从分析材料晶格空位扩散过程出发,建立了超塑性变形条件下应力与应变速率的数学关系.液膜理论指出:高温条件下,材料内部存在一个厚度为几十纳米的液膜层是材料具有高应变速率超塑性的重要原因,并且提出了液相厚度的计算方法.
参考文献
[1] | FARGHALLI A. MOHAMED .The Role of Impurities during Creep and Superplasticity at Very Low Stresses[J].Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science,2002(2):261-278. |
[2] | Xing H L;Wang C W;Zhang K F .Recent development in the mechanics of superplasticity and its applications[J].Journal of Materials Processing Technology,2004,151:196. |
[3] | Oscar A Kaibyshev .Fundamental aspects of superplastic deformation[J].Materials Science and Engineering,2002,A324:96. |
[4] | Kaibyshev R.;Musin F.;Lesuer DR.;Nieh TG. .Superplastic behavior of an Al-Mg alloy at elevated temperatures[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2003(1/2):169-177. |
[5] | Amiya K Mukherjee .An examination of the constitutive equation for elevated temperature plasticity[J].Materials Science and Engineering,2002,A322:1. |
[6] | Rabinovich M Kh;Trifonov V G .Dynamic grain growth during superplasticity deformation[J].Acta Materialia,1996,44(05):2073. |
[7] | Urdanpilleta M;Sevillano J Gil .A novel method of analysis of superplastic behavior[J].Materials Letters,2004,58:3052. |
[8] | Tadao Watanabe et al.Structure-dependent grain boundary deformation and fracture at high temperatures[J].Materials Science and Engineering,2005,A410:140. |
[9] | Bae D H;Ghosh A K .Grain size and temperature dependence of superplastic deformation in an Al-Mg alloy under isostructural condition[J].Acta Materialia,2000,48:1207. |
[10] | Musin F;Kaibyshev R;Motohashi Y .High strain rate superplasticity in a commercial Al-Mg-Sc alloy[J].Scripta Materialia,2004,50:511. |
[11] | M.g.zelin .ON MICRO-SUPERPLASTICITY[J].Acta materialia,1997(9):3533-3542. |
[12] | Lagos M.;Duque H. .STATISTICAL THEORY OF SUPERPLASTIC DEFORMATION[J].Solid State Communications,1996(5):329-333. |
[13] | Miguel Lagos;Hector Duque .Two-phase theory for the superplastic flow[J].International Journal of Plasticity,2001,17:369. |
[14] | Takayama Y;Tozawaand T;Kato H .Superplasticity and thickness of liquid phase in vicinity of solidus temperature in a 7475 aluminum alloy[J].Acta Materialia,1999,47(04):1263. |
[15] | Mabuchi M;Iwasak H;Higashi K .An investigation of shear deformation in a semi-solid state of a high strain rate superplasticic Si3N4p/Al-Mg-Si composite[J].Acta Materialia,1998,46(15):5335. |
[16] | Koikelt J;Mabuchi M;Higashi K .In-situ observation of partial melting in superplasticity aluminum alloy composites at high temperature[J].Acta Metallurgica Et Materialia,1995,43(01):199. |
[17] | Iwasaki H;Mabuchi M;Higashi K .Plastic cavity growth during superplastic flow in a 7475 Al alloy containing a small amount of liquid[J].Acta Materialia,2001,49:2269. |
[18] | Chino Y;Kobata M;Iwasaki H .An investigation of compressive deformation behavior for AZ91 Mg alloy containing a small volume of liquid[J].Acta Materialia,2003,51:3309. |
[19] | Kaibyshev R;Musin F;Gromov D .Effect of liquid phase on superplastic behavior of a modified 6061 aluminum alloy[J].Scripta Materialia,2002,47:569. |
[20] | Higashi K;Nieh T G;Mabuchi M .Effect of liquid phase on the tensile elongation of superplastic aluminum alloys and composites[J].Scr Metall at Mater,1995,32(07):1079. |
[21] | Iwasaki H;Mabuchi M .The role of liqud phase in cavitation in a Si3N4/Al-Mg-Si composite exhibiting high-strainrate superplasticity[J].Acta Materialia,1997,45(07):2759. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%