Open Access
Issue
Mechanics & Industry
Volume 15, Number 4, 2014
Page(s) 279 - 285
DOI https://doi.org/10.1051/meca/2014039
Published online 20 June 2014
  1. Y. Zhang, X. Lai, P. Zhu, W. Wang, Mater. Design 27 (2006) 64–68 [Google Scholar]
  2. M.F.B. Abdollah, R. Hassan, J. Mech. Eng. Technol. 5 (2013) 11–18 [Google Scholar]
  3. D. Chan, G.W. Stachpwiak, Proc. Instit. Mech. Eng. D: J. Automobile Eng. 218 (2004) 953–966 [Google Scholar]
  4. P.J. Blau, Compositions, Functions, and Testing of Friction Materials and Their Additives. OAK Ridge National Laboratory Report ORNL/TM 2001/64, Oak Ridge, Tennesse, 2001, pp. 1–29 [Google Scholar]
  5. M. Eriksson, F. Bergman, S. Jacobson, Wear 232 (1999) 163−167 [CrossRef] [Google Scholar]
  6. F. Bergman, M. Eriksson, S. Jacobson, Wear 299 (1999) 62–628 [Google Scholar]
  7. S. Kim, H. Jang, Tribol. Int. 33 (2000) 477–484 [CrossRef] [Google Scholar]
  8. C. Ramazzini, Call for an International Ban on Asbestos, Environment Resolution 83 (2000) 79–81 [CrossRef] [Google Scholar]
  9. L. Han, L. Huang, J. Zhang, Y. Lu, Sci. Technol. 66 (2006) 505–513 [Google Scholar]
  10. B.F. Yousif, U. Nirmal, K.J. Wong, Composite 31 (2010) 4514–4521 [Google Scholar]
  11. S.A.R. Hashmi, U.K. Dwivedi, G. Navin, Wear 262 (2007) 1426–1432 [CrossRef] [Google Scholar]
  12. B.A. Acha, N.E. Marcovich, M.M. Reboredo, J. Polymer Sci. 262 (2005) 736–741 [Google Scholar]
  13. Q. Liu, M. Hughes, Composites A: Appl. Sci. Manufact. 39 (2011) 1644–1652 [CrossRef] [Google Scholar]
  14. N.S.M. El-Tayeb, Wear 39 (2008) 223–235 [CrossRef] [Google Scholar]
  15. M. Yunhai, S. Shenglong, T. Jin, Y. Wei, Y. Yazhou, Z. Jiang, J. Thermoplastic Composite Mater. 26 (2010) 845–859 [Google Scholar]
  16. M.F. Ashby, D. Cebon, Teaching Engineering Materials: The CES Edupack. Engineering Department, Cambridge University, 2007, pp. 1−13 [Google Scholar]
  17. J. O’Hare, E. Cope, S. Warde, Five steps to Eco Design, Improving the Environmental Performance of Products through Design. Granta Design Limited, 2011, pp. 1–12 [Google Scholar]
  18. S. Katsuhiro, G. Akira, Y. Satoshi, A. Yuichi, N. Koji, Development of Brake Friction Material, Honda Research and Development Co. Ltd., 1993, pp. 149-161 [Google Scholar]
  19. R.J. Talib, S.S. Mohmad, and K. Ramlan, Selection of Best Formulation for Semi-Metallic Brake Friction Materials Development, Powder Metallurgy, Dr Katsuyoshi Kondoh (Ed.), ISBN:978-953-51-0071-3, InTech. Available from: http://www.intechopen.com/books/powder-metallurgy/ Selection-of-Best-Formulation-for-Semi-Metallic-Brake-Friction-Materials-Development, 2012. [Google Scholar]
  20. M.G. Jacko, S.K. Rhee, B. Linings, C. Facing, In: M. Grayson, (ed.), Encyclopedia of Composite Materials and Component, John Wiley and Sons, USA, 1995, pp. 144–154 [Google Scholar]
  21. N.M. Kinkaid, O.M. O’Reilly, P. Papadopoulos, J. Sound Vib. 267 (2003) 105–166 [Google Scholar]
  22. G. Cueva, A. Sinatora, W.L. Guesser, A.P. Tschiptschin, Wear 255 (2003) 1256–1260 [CrossRef] [Google Scholar]
  23. L. Han, L. Huang, J. Zhang, Y. Lu, Compos. Sci. Technol. 66 (2006) 2895–2906 [Google Scholar]
  24. R. Yun, Y. Lu, P. Filip, Tribology Int. 43 (2010) 2010−2019 [CrossRef] [Google Scholar]
  25. N.S.M. EL-Tayeb, K.W. Liew, Wear 266 (2009) 275−287 [CrossRef] [Google Scholar]
  26. K.S. Bhabani, P. Amar, D. Nandan, R. Prasanta, S.T. Bharat, J. Eng. Technol. 226 (2012) 439–445 [Google Scholar]
  27. M.F. Ashby, D. Cebon, Case studies in material selection, Granta Design Limited, Cambridge, 1996 [Google Scholar]
  28. Y.C. Kima, M.H. Cho, S.J. Kim, H. Jang, Wear 264 (2008) 204–210 [CrossRef] [Google Scholar]

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