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Tytuł artykułu

A device for the experimental investigation of surface contact under load

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The structure of a device for the investigation of the contact deformations of flat surfaces under normal load is described. The conditions, for which the device must satisfy in order to ensure normal load are defined. Errors which may occur during the loading of a rough specimen, relating to the mechanical structure of the device, the specimen itself and the measuring systems, are estimated. Finally, the device is subjected to testing which includes specimen roughness measurements before and after loading, the loading and unloading of the specimens in the device and again measuring their roughness. The device developed herein can be characterisedby its vacuum mounting method of the specimen and also by the accurate and simple loading mechanism, i.e., movable member.
Słowa kluczowe
Rocznik
Strony
97--112
Opis fizyczny
Bibliogr. 18 poz., rys.
Twórcy
autor
  • Wroclaw University of Technology, Faculty of Mechanical Engineering, Wroclaw, Poland
  • Wroclaw University of Technology, Faculty of Mechanical Engineering, Wroclaw, Poland
  • Wroclaw University of Technology, Faculty of Mechanical Engineering, Wroclaw, Poland
Bibliografia
  • [1] ITO Y., 2008, Modular design for machine tools, The McGraw-Hill Companies, Inc., USA, ISBN: 9780071496605.
  • [2] DOLBEY M. P., BELL R., 1971, The contact stiffness of joints at low apparent interface pressures , Annals of the C.I.R.P, XVIV, 67-79.
  • [3] THORNLEY R., CONNOLLY R., BARASH M., KOENIGSBERGERS F., 1965, The effect of surface topography upon the static stiffness of machine tools joints, International Journal of Machine Tool Design and Research, 5/1-2, 57-74.
  • [4] SUŁEK M.W., JEDYNAK H.R., 2004, The effect of the action of plastic asperities on motion resistances at dry friction, Tribologia, 4, 229-236, (in Polish).
  • [5] STUPKIEWICZ S., 2007, Micromechanics of contact and interphase layers, Springer, Berlin,
  • [6] SADOWSKI P., STUPKIEWICZ S., 2010, A model of thermal contact conductance at high real contact area fractions, Wear, Elsevier, 261/1-2, 77-85.
  • [7] HOLMBERG K, RONKAINEN H, LAUKKANEN A, WALLIN K., 2007, Friction and wear of coated surfaces—scales, modelling and simulation of tribomechanisms, Surface & Coatings Technology, 202/4-7, 1034–1049.
  • [8] JOHNSON K.L., 1995, Contact mechanics and the wear of metals, Wear, 190/2, 162-170.
  • [9] NOGUEIRA I., ROBBE-VALLOIRE F., GRAS R., 2010, Experimental validations of elastic to plastic asperity-based models using normal indentations of rough surfaces, Wear 269, 709–718.
  • [10] YEAU-REN J., SHIN-RUNG P., 2007, Contact behaviour of surfaces containing elliptical asperities with gaussian and non-gaussian height distribution, J Tribol, 129/4, 743-753.
  • [11] BUCZKOWSKI R., KLEIBER M., 2006, Elasto-plastic statistical model of strongly anisotropic rough surfaces for finite element 3D-contact analysis, Computer Methods in Applied Mechanics and Engineering, 195/37–40, 5141–5161.
  • [12] LIOU J.L., LIN J.F., 2009, A microcontact model developed for asperity heights with a variable profile fractal dimension, a surface fractal dimension, topothesy, and Non-Gaussian Distribution, Journal of Mechanics, 25, 103-115.
  • [13] KUCHARSKI S., STARZYNSKI G., 2014, Study of contact of rough surfaces, Modelling and experiment, Wear, 311, 167–179.
  • [14] PEI L., HYUN S., MOLINARI J.F., ROBBINS ., 2005, Finite element modelling of elasto-plastic contact between rough surfaces, Journal of the Mechanics and Physics of Solids, 53/11, 2385–2409.
  • [15] SELLGREN U., BJÖRKLUND S., ANDERSSONS., 2003, A finite element-based model of normal contact between rough surfaces, Wear, 254/11, 1180–1188.
  • [16] SADOWSKI P., 2008, The modelling of the heat flow through the surface of contact between rough bodies in plastic working processes, PhD dissertation, PAN, IPPT, Warsaw, (in Polish).
  • [17] GROCHOWSKI M., JEDRZEJEWSKI J., 2008, Comparison of two fea-based approaches in prediction of workpiece-fixture static behaviour, Journal of Machine Engineering, 8/3, 54-65.
  • [18] XIONG C.H., WANG MY., YONG T., XIONG Y.L., 2005, On the prediction of passive contact forces of workpiece-fixture systems, Proceedings of the Institution of Mechanical Engineer, 219/3, 309-324.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-75dcbdbe-8348-4750-b087-38f14f5c1260
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