Effect of Rolling Draughts on the Evolution of Through-Thickness Textures in Aluminum 5000X Sheet

알루미늄 5000계 판재에서 두께 층에 따른 집합조직 형성에 미치는 압연 패스당 변형률의 영향에 관한 연구

  • 김현철 (고려대학교 공과대학 재료금속공학부) ;
  • 김용희 (고려대학교 공과대학 재료금속공학부) ;
  • 허무영 (고려대학교 공과대학 재료금속공학부)
  • Published : 2000.04.01

Abstract

The influence of rolling draughts on the formation of through-thickness textures in aluminum 5000X sheet was investigated by X-ray texture measurements and microstructure observations. In order to intensify the deformation inhomogeneities, cold rolling was performed without lubrication. Applying a large draught gave rise to the formation of the shear texture at the surface, whereas a normal plane strain testure formed at the surface after deformation with a small draught. The orientation density along the $\beta$-fiber orientations which developed in the center layer of the rolled specimen was also dependent on the strain gradients in a roll gap. Upon annealing, the deformed substructure of sample surfaces was transformed into a fine grained recrystallized microsturcture through extended recovery reaction. However, coarse grains developed after the discontinuous recrystallization which gave rise to the development of the Cube-texture.

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References

  1. Metall.Trans v.13A T. Sato;Y. Kojima;T. Talabashi
  2. Sumitomo Light Metal Technical Report 34 Y. Takeshima;T. Hikida;H. Uto
  3. Mcqueen, Metall. Tran. v.23A G. A. Henshall;M.E. Kassner;H.J.
  4. Inter. Met. Rev. v.29 W.B. Hutchinson
  5. Metallkunde v.90 M.Y. Huh;Y.S. Cho;J.S. Kim;O. Engler, Z.
  6. Textures and Microstructures v.24 M.Y. Huh;O. Engler;D. Raabe
  7. J. of Kor. Soc. for Tech. of Plasticity v.2 J.H. Kwak;M.Y. Huh;S.U. An
  8. J. of Kor. Inst. Met. & Mater. v.32 J.P. Ahn;M.Y. Huh
  9. Steel Research v.66 M.Y. Huh;D. Raabe;O. Engler
  10. Mat. Sci. Forum M.Y. Huh;J.H. Kim;K.Y. Ha;S. Lee
  11. Mater. Sci. Eng. v.A271 O. Engler;M.Y. Huh
  12. Plastic Deformation D.N. Lee
  13. Fundamentals of Deformation W.F. Hosford.Jr.;W.A. Backofen
  14. J. Mater. Sci. v.20 D.N. Lee;K.H. Oh
  15. Proc. ICOTOM 12 M.Y. Huh;O. Engler;J.A. Szpunar(ed.)
  16. J. of Kor. Inst. Met. & Mater. v.36 Y.H. Kim;Y.S. Cho;M.Y. Huh
  17. Met and Mater. v.3 M.Y. Huh;J.C. Park;S. Lee
  18. Metall. Mater. Trans. A. O. Engler;M.Y. Huh;C.N. Tome
  19. Proc. Plasticity 99' O. Engler;M.Y. Huh;A.S. Kahn(ed.)
  20. Metall. Trans. v.11A W. Truszkowski;J. Korl;B. Major
  21. Meter. Sci. Eng. v.27 R. E. Bauer;H. Mecking;K. L$\"{u}$cke
  22. Mat. and Mater. v.5 M.Y. Huh;H.C. Kim;J.J. Park;O. Engler
  23. Mat. Sci. Eng. v.A247 M.Y. Huh;Y.S. Cho;O. Enger
  24. J. Inst. Metall. v.62 G. I. Taylor
  25. Mathematical Methoden der Texturanalyse H.J. Bunge
  26. Acta metall. v.36 J. Hirsch;K. L$\"{u}$cke
  27. Metall. Trans. v.22A C.S. Lee;B.J. Duggan
  28. Acta Mater. v.44 O. Engler;P. Yang;X.W. Kong
  29. Mater. Sci. Tech. v.12 H.E. Vatne;T. Furu;E. Nes
  30. Recrystallization, Grain Growth and Textures G. Ibe;K. L$\"{u}$cke;Margolin(ed.)
  31. Acta Mater. v.46 R.K. Davies;V. Randle;G.J. Marshall
  32. Mater. Sci. Forum A. Oscarsson;H.E. Ekstrom;W.B. Hutchinson
  33. Proc. ICAA3 K. L$\"{u}$cke;O. Engler;L. Arnberg(ed.et al.)
  34. Recrystallization and Related Annealing Phenomena F.J. Humphreys;M. Hatherly
  35. Metall. Mater. Trans. v.30A O. Engler