4.1 Article

The Effects of Copper and Polytetrafluoroethylene (PTFE) on Thermal Conductivity and Tribological Behavior of Polyoxymethylene (POM) Composites

期刊

出版社

TAYLOR & FRANCIS INC
DOI: 10.1080/00222348.2010.540987

关键词

friction and wear behavior; polymer-matrix composites; polyoxymethylene; sliding wear; solid lubricant; thermal conductivity

资金

  1. National Natural Science Foundation of China [20706015, 50703009]
  2. Shanghai Rising-Star Program [07QA14014]
  3. Major Basic Research Project of Shanghai [07DJ14001]
  4. Ph.D. Programs Foundation of Ministry of Education of China [20070251022]
  5. Special Projects for Key Laboratories in Shanghai [09DZ2202000]
  6. Special Projects for Nanotechnology of Shanghai [0852nm02000, 0952nm02000, 0952nm02100]
  7. Program of Shanghai Subject Chief Scientist [08XD1401500]
  8. Shanghai Shuguang Scholars Tracking Program [08GG09]
  9. Shanghai Leading Academic Discipline Project [B502]

向作者/读者索取更多资源

The effects of copper and polytetrafluoroethylene (PTFE) on thermal conductivity and tribological behavior of polyoxymethylene (POM) composites were investigated by a hot disk thermal analyzer and an M-2000 friction and abrasion testing machine. The results indicated that the incorporation of 3 wt% copper particles into POM had little effect on the thermal conductivity of POM composites, but led to the decreased friction coefficient and wear rate of composites. As the copper content was increased, the thermal conductivity increased and reached 0.477 W m(-1) K(-1) for POM-25% Cu composite, an increase of 35.9% compared with that of unfilled POM, while the friction coefficient and wear rate of composites also increased. The incorporation of PTFE into POM-Cu composites had a negligible effect on the thermal conductivity of composites, but helped in the formation of a continuous and uniform transfer film and resulted in the reduction in the friction coefficient and wear rate of composites. The POM-15% Cu-10% PTFE composite, with a value of wear rate similar to unfilled POM possessed higher thermal conductivity and lower friction coefficient.

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