295
Views
4
CrossRef citations to date
0
Altmetric
Original Articles

Effect of Cr–Fe on friction and wear properties of Cu-based friction material

, , , , , & show all
Pages 869-875 | Received 10 Jun 2017, Accepted 20 Sep 2017, Published online: 21 Dec 2017

References

  • Yu X, Guo ZM, Yang J. Effect of content and friction components on properties of copper-based powder metallurgy friction material. Powder Metall Technol. 2014;32(1):43–47.
  • Bai TQ, Wang XF, Zhong ZG. Effects of friction components on friction properties of power metallurgy friction materials. Mater Sci Eng Power Metall. 2006;11(6):345–348.
  • Bertier Y, Descqrtes S, Busquet M, et al. The role and effects of the third body in the wheel-rail interaction. Fatigue Fracture of Eng Mater Struct. 2004;27(5):423–436. doi: 10.1111/j.1460-2695.2004.00764.x
  • Deshpande PK, Lin RY. Wear resistance of WC particle rein-forced copper matrix composites and the effect of porosity. Mater Sci Eng A. 2006;418:137–145. doi: 10.1016/j.msea.2005.11.036
  • Yao PP, Xiong X, Huang BY. Present situation and development of powder metallurgy airplane brake materials. Powder Metall Ind. 2000;10(6):34–38.
  • Wang GD, Fang CY, Luo XY. Application of P/M friction materials in braking of high speed train. Powder Metall Ind. 2007;17(4):38–42.
  • Chen J, Xiong X, Yao PP. The working of Fe in copper-based P/M friction material. Powder Metall Ind. 2006;16(4):16–20.
  • Mao K, Yao QZ, Ge CC. Influence of sintering atmosphere on properties of Cu-based P/M friction materials. Powder Metall Ind. 2011;21(2):25–29.
  • Tjong SC, Lau KC. Tribological behaviour of SiC particle-reinforced copper matrix composites. Mater Lett. 2000;43(5):274–280. doi: 10.1016/S0167-577X(99)00273-6
  • Han XM, Fu R, Guo F. Effects of content of SiO2 particles on tribological behavior of Cu-matrix friction materials. Chin J Nonferr Met. 2009;19(10):1848–1853.
  • Lu H, Zhang JL, Liu LJ. The effect of SiO2 particle size on Cu-based powder metallurgy friction materials. Power Metall Technol. 2014;32(3):195–199.
  • Wang Y, Yan QZ, Zhang XL. Effect of iron-powder type on the friction and wear properties of Cu-based P/M friction materials. J Univ Sci Technol Beijing. 2014;36(4):467–472.
  • Zhao X, Guo LC, Zhang L. Influence of nano-Al2O3-reinforced oxide-dispersion-strengthened Cu on the mechanical and tribological properties of Cu-based composites. Int J Miner Metall Mater. 2016;12(23):1674–4799.
  • Wang TG, Liang QC, Qin Q. Effect of Al2O3 content on friction and wear properties of copper-based powder metallurgy friction materials. Powder Metallurgy Industry. 2016;26(1):46–50.
  • Fu R, Gao F, Song BY. Friction properties of Cu-SiO2 sintered friction materials. Mater Sci Technol. 2008;16(6):790–793.
  • Zhao X, Hao JJ, Peng K. Friction and wear behavior of Cu-based P/M friction materials with Cr-Fe as friction components. Mater Sci Eng Powder Metall. 2014;19(6):935–939.
  • Zhang YD, Li XL, Xie JP. Preparation of copper-based FGMs (functionally gradient metal composites) by vacuum hot pressing and its properties. Spec Cast Nonferr Alloys. 2014;34(1):105–108.
  • Wang B, Guo ZQ, Geng HR. Hot-pressed sintering copper-based contact material microstructure and property. Mater Heat Treat. 2006;38(18):7–8.
  • Du JH, Liu GM, Xie FK. Effect of nano-SiO2 on tribological properties of Cu-based friction materials. Chin J Nonferr Met. 2008;18(8):1453–1457.
  • Qin FT, Gu JP, Zhang Y. Mechanism for friction reduction of ultrasonic vibration based on binomial theorem of tribology. Micromotors. 2010;43(6):39–42.
  • Bhushan B (author), Ge S (translator). Introduction to tribology. Beijing: China Machine Industry Press; 2006. p. 71–123.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.