438
Views
7
CrossRef citations to date
0
Altmetric
Original Articles

Tribological Properties of Self-Lubricating Polymer–Steel Laminated Composites

, , , &
Pages 908-918 | Received 19 Dec 2012, Accepted 10 May 2013, Published online: 08 Aug 2013

REFERENCES

  • Wang , R. Z. , Suo , Z. , Evans , A. G. , Yao , N. and Aksay , I. A. 2001 . Deformation Mechanisms in Nacre . Journal of Materials Research , 16 : 2485 – 2493 .
  • Jia , X. , Ling , X. M. and Tang , D. H. 2006 . Microstructures and Friction–Wear Characteristics of Bivalve Shells . Tribology International , 39 : 657 – 662 .
  • Tong , J. , Wang , H. , Ma , Y. and Ren , L. 2005 . Two-Body Abrasive Wear of the Outside Shell Surfaces of Mollusc Lamprotula fibrosa Heude, Rapana venosa Valenciennes and Dosinia anus Philippi . Tribology Letters , 19 : 331 – 338 .
  • Leung , H. M. and Sinha , S. K. 2009 . Scratch and Indentation Tests on Seashells . Tribology International , 42 : 40 – 49 .
  • Stempfle , P. , Djilali , T. , Njiwa , R. K. , Rousseau , M. , Lopez , E. and Bourrat , X. 2009 . Thermal-Induced Wear Mechanisms of Sheet Nacre in Dry Friction . Tribology Letters , 35 : 97 – 104 .
  • Toschi , F. , Melandri , C. , Pinasco , P. , Roncari , E. , Guicciardi , S. and Portu , G. 2003 . Influence of Residual Stresses on the Wear Behavior of Alumina/Alumina–Zirconia Laminated Composites . Journal of the American Ceramic Society , 86 : 1547 – 1553 .
  • Bueno , S. , Micele , L. , Melandri , C. , Baudin , C. and De Portu , G. 2011 . Improved Wear Behaviour of Alumina–Aluminium Titanate Laminates with Low Residual Stresses and Large Grained Interfaces . Journal of the European Ceramic Society , 31 : 475 – 483 .
  • Hadad , M. , Blugan , G. , Kubler , J. , Rosset , E. , Rohr , L. and Michler , J. 2006 . Tribological Behaviour of Si3N4 and Si3N4–%TiN Based Composites and Multi-Layer Laminates . Wear , 260 : 634 – 641 .
  • Deng , J. X. 2009 . Wear Behaviors of Ceramic Nozzles with Laminated Structure at Their Entry . Wear , 266 : 30 – 36 .
  • Ji , K. J. , Shan , W. G. , Xia , Y. Q. and Dai , Z. D. 2012 . The Tribological Behaviors of Self-Lubricating Composites as Filler in Copper Foam . Tribology Transactions , 55 : 20 – 31 .
  • Hu , T. C. and Hu , L. T. 2011 . Tribological Properties of Lubricating Films on the Al-Si Alloy Surface via Laser Surface Texturing . Tribology Transactions , 54 : 800 – 805 .
  • Qi , Y. E. , Zhang , Y. S. and Hu , L. T. 2012 . High-Temperature Self-Lubricated Properties of Al2O3/Mo Laminated Composites . Wear , 280 : 1 – 4 .
  • Mondelin , A. , Furet , B. and Rech , J. 2010 . Characterisation of Friction Properties between a Laminated Carbon Fibres Reinforced Polymer and a Monocrystalline Diamond under Dry or Lubricated Conditions . Tribology International , 43 : 1665 – 1673 .
  • Zhao , H. , Zhang , J. , Ji , T. , Yang , M. , Chao , M. and Kou , K. 2012 . Investigation of Tribological Properties of PI/FEP Laminated Composites under Dry Sliding, Water- and Oil-Lubricated Conditions . Tribology Letters , 45 : 1 – 7 .
  • Kim , B. C. , Park , D. C. , Kim , B. J. and Lee , D. G. 2010 . Through-Thickness Compressive Strength of a Carbon/Epoxy Composite Laminate . Composite Structures , 92 : 480 – 487 .
  • Kim , S. S. , Lee , H. G. and Lee , D. G. 2005 . Tribological Behaviors of Carbon Composite Grooved Surfaces . Composite Structures , 71 : 238 – 245 .
  • ASTM International . 2010 . “ Standard Test Method for Linearly Reciprocating Ball-on-Flat Sliding Wear Designation ” . ASTM Standard G133-05
  • Zhang , D. Y. , Lin , P. , Dong , G. N. and Zeng , Q. F. 2013 . Mechanical and Tribological Properties of Self-Lubricating Laminated Composites with Flexible Design . Materials & Design , 50 : 830 – 838 .
  • Zhang , W. , Li , X. and Yang , R. 2011 . Pyrolysis and Fire Behaviour of Epoxy Resin Composites Based on a Phosphorus-Containing Polyhedral Oligomeric Silsesquioxane (Dopo-Poss) . Polymer Degradation and Stability , 96 : 1821 – 1832 .
  • Biswas , S. and Satapathy , A. 2010 . A Study on Tribological Behavior of Alumina-Filled Glass–Epoxy Composites Using Taguchi Experimental Design . Tribology Transactions , 53 : 520 – 532 .
  • Öztürk , B. , Arslan , F. and Öztürk , S. 2013 . Effects of Different Kinds of Fibers on Mechanical and Tribological Properties of Brake Friction Materials . Tribology Transactions , 56 : 536 – 545 .
  • Li , D. X. , You , Y. L. , Deng , X. , Li , W. J. and Xie , Y. 2013 . Tribological Properties of Solid Lubricants Filled Glass Fiber Reinforced Polyamide 6 Composites . Materials & Design , 46 : 809 – 815 .
  • Meng , H. , Sui , G. X. , Xie , G. Y. and Yang , R. 2009 . Friction and Wear Behavior of Carbon Nanotubes Reinforced Polyamide 6 Composites under Dry Sliding and Water Lubricated Condition . Composites Science and Technology , 69 : 606 – 611 .
  • Liza , S. , Haseeb , A. , Masjuki , H. H. and Abbas , A. A. 2012 . The Wear Behaviour of Cross-Linked UHMWPE under Dry and Bovine Calf Serum-Lubricated Conditions . Tribology Transactions , 56 : 130 – 140 .
  • Zhang , L. , Xiao , J. and Zhou , K. 2012 . Sliding Wear Behavior of Silver–Molybdenum Disulfide Composite . Tribology Transactions , 55 : 473 – 480 .
  • Hu , T. C. , Zhang , Y. S. and Hu , L. T. 2012 . Tribological Investigation of MoS2 Coatings Deposited on the Laser Textured Surface . Wear , 278 : 77 – 82 .
  • Dong , G. N. , Hua , M. , Li , J. and Chuah , K. B. 2007 . Temperature Field and Wear Prediction for UHMWPE Acetabular Cup with Assumed Rectangular Surface Texture . Materials & Design , 28 : 2402 – 2416 .
  • Zhang , R. , Guessous , L. and Barber , G. C. 2012 . Investigation of the Validity of the Carslaw and Jaeger Thermal Theory under Different Working Conditions . Tribology Transactions , 55 : 1 – 11 .
  • Mu , L. W. , Shi , Y. J. , Feng , X. , Zhu , J. H. and Lu , X. H. 2012 . The Effect of Thermal Conductivity and Friction Coefficient on the Contact Temperature of Polyimide Composites: Experimental and Finite Element Simulation . Tribology International , 53 : 45 – 52 .
  • Laraqi , N. , Alilat , N. , de Maria , J. M. and Baïri , A. 2009 . Temperature and Division of Heat in a Pin-on-Disc Frictional Device—Exact Analytical Solution . Wear , 266 : 765 – 770 .

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.