Startseite Effect of reinforcement size hybridization on the wear properties of SiCp/Cu Composites
Artikel
Lizenziert
Nicht lizenziert Erfordert eine Authentifizierung

Effect of reinforcement size hybridization on the wear properties of SiCp/Cu Composites

  • Yongzhong Zhan EMAIL logo , Haofeng Xie und Xiaobo Shi
Veröffentlicht/Copyright: 12. Januar 2022
Veröffentlichen auch Sie bei De Gruyter Brill

Abstract

Reinforcement size is an important factor that influences the mechanical and tribological properties of particulate reinforced metal matrix composites (PRMMCs). However, relatively few works have been carried out to investigate this issue. There are still many problems to be solved, on the optimum design of PRMMCs of tribological applications. In this work, copper-matrix composites reinforced with SiC particles of mono-size and hybrid-size are fabricated through a powder-metallurgy plus hot-extrusion method. The main purpose is to investigate the effect of reinforcement size hybridization on the dry sliding wear behavior of PRMMCs. The results indicate that finer particles result in a better reinforcing effect and significantly reduce the plastic flow and adhesive transfer of surface and subsurface material. The deeply embedded coarse particles bear the external applied load and resist the plowing effect of the counterpart. The different roles of the particulate components with various sizes promote the exertion of the other’s strengthening function, therefore resulting in higher wear resistance.


Dr. Yongzhong Zhan Institute of Materials Science School of Physics Science and Engineering Technology Guangxi University Nanning, Guangxi 530004, P. R. China Tel.: +86 771 323 3530

Y. Zhan et al.: Effect of reinforcement size hybridization on the wear properties


  1. This work was jointly supported by the Foundation of Guangxi Education Office (No. 2004-20), Guangxi Science Foundation (No. 0542011) and the Support Program for 100 Young and Middle-aged Disciplinary Leaders in Guangxi Higher Education Institutions (2005-46). The financial support is gratefully acknowledged.

References

[1] M. Noguchi, K. Fukizawa: Adv. Mater. Process 143 (1993) 20.Suche in Google Scholar

[2] I. Sallit, C. Richard, R. Adam, F. Robbe-Valloire: Mater. Charact. 40 (1998) 169.10.1016/S1044-5803(98)00007-2Suche in Google Scholar

[3] Y. Zhan, G. Zhang: Mater. Lett. 57 (2003) 4583.10.1016/S0167-577X(03)00365-3Suche in Google Scholar

[4] A.P. Sannino, H.J. Rack: Wear 189 (1995) 1.10.1016/0043-1648(95)06657-8Suche in Google Scholar

[5] R.L. Deuis, C. Subramanian, J.M. Yellup: Wear 201 (1996) 132.10.1016/S0043-1648(96)07228-6Suche in Google Scholar

[6] O. Yilmaz, S. Buytoz: Compos. Sci. Technol. 61 (2001) 2381.10.1016/S0266-3538(01)00131-2Suche in Google Scholar

[7] S. Das, D.P. Mondal, G. Dixit: Metall. Mater. Trans. A 32 (2001) 633.10.1007/s11661-001-0080-3Suche in Google Scholar

[8] A. Wang, H.J. Rack: Mater. Sci. Eng. A 147 (1991) 211.10.1016/0921-5093(91)90848-HSuche in Google Scholar

[9] J. Zhang, A.T. Alpas: Acta Mater. 45 (1997) 513.10.1016/S1359-6454(96)00191-7Suche in Google Scholar

[10] J. Zhang, A.T. Alpas: Mater. Sci. Eng. A 161 (1993) 273.10.1016/0921-5093(93)90522-GSuche in Google Scholar

[11] J. Hu, D.Y. Li, R. Llewellyn: Wear 259 (2005) 6.10.1016/j.wear.2005.02.017Suche in Google Scholar

[12] O. Yilmaz, H. Turhan: Wear 249 (2002) 901.10.1016/S0043-1648(01)00823-7Suche in Google Scholar

[13] Y. Zhan, G. Zhang: Tribol. Lett. 17 (2004) 91.10.1023/B:TRIL.0000017423.70725.1cSuche in Google Scholar

[14] Y. Zhan, G. Zhang, Y. Zhuang: Mater. Trans. 45 (2004) 2332.10.2320/matertrans.45.2332Suche in Google Scholar

[15] G. Zhang, C. Zhao: Metal Matrix Composite, Shanghai Jiaotong University Press, Shanghai, 1996, p. 34.Suche in Google Scholar

[16] M.F. Ashby, J. Abulawi, H.S. Kong: Tribol. Trans. 34 (1991) 577.10.1080/10402009108982074Suche in Google Scholar

[17] L.H. Dai, Z. Ling, Y.L. Bai: Scripta Mater. 41 (1999) 245.10.1016/S1359-6462(99)00153-0Suche in Google Scholar

[18] S.V. Kamat, A.D. Rollett, J.P. Hirth: Scripta Metall. 25 (1991) 27.10.1016/0956-716X(91)90348-5Suche in Google Scholar

[19] B. Venkataraman, G. Sundararajan: Wear 245 (2000) 22.10.1016/S0043-1648(00)00463-4Suche in Google Scholar

Received: 2005-09-23
Accepted: 2005-12-16
Published Online: 2022-01-12

© 2006 Carl Hanser Verlag, München

Artikel in diesem Heft

  1. Contents
  2. Extended editorial with anecdotes
  3. Anelastic relaxation and structure of ternary Fe–Al–Me alloys with Me = Co, Cr, Ge, Mn, Nb, Si, Ta, Ti, Zr
  4. Kinetic study of the β → α + γ transformation reaction in a CuZnAl alloy
  5. Calorimetric investigation of the binary Cu–In system
  6. Thermodynamic properties of liquid Cu–In–Zn alloys
  7. Comparing the thermodynamic behaviour of Al(l) + ZrO2(4% Y2O3) and Al(l) + Al2O3
  8. Failure-mode dependence of the strengthening effect in Ti3AlC2/10 vol.% Al2O3 composite
  9. Investigation of Cu-graphite composites prepared by electroforming
  10. Neutron diffraction analysis of martensite ageing in high-carbon FeCMnSi steel
  11. Effect of reinforcement size hybridization on the wear properties of SiCp/Cu Composites
  12. Temperature dependence of lattice mismatch and γ′ volume fraction of a fourth-generation monocrystalline nickel-based superalloy
  13. Novel combinatorial microstructures in Ti-6Al-4V alloy achieved by an electric-current-pulse treatment
  14. The Effect of Ti–B and Sr on the mechanical behaviour of the Zinc–Aluminum-based ZA-12 alloy produced by gravity casting
  15. Determination of retained austenite in multiphase steels by magnetic force microscopy
  16. Filtration resistance during pressure filtration tests of liquid aluminium alloys
  17. Microstructure of a Damascene sabre after annealing
  18. Effect of tin added to the zinc bath on the formation and the microstructure of hot-dip galvanized coatings
  19. Personal
  20. Conferences
  21. Contents
  22. Editorial
  23. Extended editorial with anecdotes
  24. Basic
  25. Anelastic relaxation and structure of ternary Fe–Al–Me alloys with Me = Co, Cr, Ge, Mn, Nb, Si, Ta, Ti, Zr
  26. Kinetic study of the β → α + γ transformation reaction in a CuZnAl alloy
  27. Calorimetric investigation of the binary Cu–In system
  28. Thermodynamic properties of liquid Cu–In–Zn alloys
  29. Comparing the thermodynamic behaviour of Al(l) + ZrO2(4% Y2O3) and Al(l) + Al2O3
  30. Failure-mode dependence of the strengthening effect in Ti3AlC2/10 vol.% Al2O3 composite
  31. Investigation of Cu-graphite composites prepared by electroforming
  32. Neutron diffraction analysis of martensite ageing in high-carbon FeCMnSi steel
  33. Applied
  34. Effect of reinforcement size hybridization on the wear properties of SiCp/Cu Composites
  35. Temperature dependence of lattice mismatch and γ′ volume fraction of a fourth-generation monocrystalline nickel-based superalloy
  36. Novel combinatorial microstructures in Ti-6Al-4V alloy achieved by an electric-current-pulse treatment
  37. The Effect of Ti–B and Sr on the mechanical behaviour of the Zinc–Aluminum-based ZA-12 alloy produced by gravity casting
  38. Determination of retained austenite in multiphase steels by magnetic force microscopy
  39. Filtration resistance during pressure filtration tests of liquid aluminium alloys
  40. Microstructure of a Damascene sabre after annealing
  41. Effect of tin added to the zinc bath on the formation and the microstructure of hot-dip galvanized coatings
  42. Notifications
  43. Personal
  44. Conferences
Heruntergeladen am 25.9.2025 von https://www.degruyterbrill.com/document/doi/10.3139/ijmr-2006-0178/html
Button zum nach oben scrollen