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Friction force oscillations in the pin-on-disc configuration

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Języki publikacji
EN
Abstrakty
EN
Friction force oscillations occurring in a pin-on-disc configuration, widely used to test tribological properties af engineering materiais, have been experimentally observed. It is argued that these ascillations are not an artefact of a parlicular design of the pin-on-disc apparatus but result from the nature of motion within the region of cantact between the pin and the disc. Moreover, it is postulated that the shape and the rotation of the contact area abaut its geometric centre additionally amplify friction oscillations. The paper is an attempt to provide a rational explanation at the fundamental level for friction force fluctuations in the pin-on-disc configuration. lt is based on the analysis of motion within the contact region.
Rocznik
Strony
699--712
Opis fizyczny
Bibliogr. 16 poz., rys., wykr.
Twórcy
  • Department of Mechanical Engineering, Brunel University, Uxbridge Middlesex UB8 3PH, UNITED KINGDOM
Bibliografia
  • [1] Bayer R. (Ed.) (1980): Wear Tests for Plastics: Selection and Use. - STP701, ASME.
  • [2] Bonham C.D. and Dellacorte C. (1991): Application of a computer data acquisition system to a new high temperature tribometer. - Lub. Eng., vol.47, No.11, pp.907-923.
  • [3] Bowden F.P. and Tabor D. (1964): The Friction and Lubrication of Solids, Pt. II. - Oxford: Clarendon Press.
  • [4] Briscoe B.J. and Smith A.C. (1983): The rheology of thin polymeric films. - J. Macromol. Sci. B22, vol.I, 1983.
  • [5] Brown R.D. (1963): Appraisal of World Literature (F.F. Ling, E.F. Klaus and R.S. Fein, Eds.). - ASME.
  • [6] Cheng L.R. and Rigney D.A. (1985): Transfer during unlubricated sliding wear of selected metal systems. - Wear, vol.105, pp. A7-61.
  • [7] Godfrey D. (1996): Friction oscillations with a pin-on-disc tribometer. - Tribology Int., vol.29, pp.34-42.
  • [8] Jahanmir S. (1985): The relationship of tangentlal stress to wear particle transformation mechanics. - Wear of Metais, ASME,238-247.
  • [9] Lauer L.L. and Dwyer S.R. (199): Continuous high temperature lubrication of ceramics by carbon generated catalytically from hydrocarbon gases. - Tribology Trans., vol.33, No A, pp.529-534.
  • [10] Rabinowicz E. (1957): Investigation of size effects in sliding by means of statistical techniques. - Proc. Conf. Lub. and Wear, IMechE, London, pp.276-280.
  • [11] Shipper D.J. and Odi-Owei S. (1992): A twin transducer for measuring wear. - Tribology Int., vol.25, pp.l69-175.
  • [12] Stolarski T.A. (1979): The influence of combined linear and rotating motions on the friction and wear of organic polymers. - mc Thesis, Imperial College of Science and Technology, London.
  • [13] Stolarski T.A. (1980): Friction in a pin-on-disc configuration. - Mechanics and Machine Theory, vo1.24, NO.5, pp.373-381.
  • [14] Stolarski T.A. (1989): Modeling friction under complex motion conditions. - Trans. ASME, J. of Tribology, vol.111, pp. A91-494.
  • [15] Streator LL. and Bogy D.B. (1992): Accounting for transducer dynamics in the measurement of friction. - J. of Tribology, ASME, vol.114, pp.86-94.
  • [16] Uchiyama Y., Yamada Y. and Miura R. (1980): Fundamental studies of the wear of the plastic material for sliding bearings against aluminium shafts. - l of JSLE, Intern. Ed., vol.l0, pp.11-16.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPZ2-0015-0021
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