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This paper describes a simulation model of the process of developing steel rollers’ surface layer roughness obtained with Cubitron™ II grinding wheels by the Quickpoint technique, depending on the assumed grinding conditions. In particular, the authors present physical assumptions of the respective model, a conception and algorithm of its operation, and the results of simulation tests. The results were later verified in specific experiments by comparing the statistical average values of the selected ground steel rollers’ surface roughness parameters with the values generated by simulations.
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Tom
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54--68
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Bibliogr. 18 poz., rys., tab.
Twórcy
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- Production Engineering Institute of the Mechanical Faculty, Cracow University of Technology, Cracow, Poland
autor
- Production Engineering Institute of the Mechanical Faculty, Cracow University of Technology, Cracow, Poland
autor
- Production Engineering Institute of the Mechanical Faculty, Cracow University of Technology, Cracow, Poland
Bibliografia
- [1] Catalog of Junker GmbH, 2011, Quickpoint grinding, 2011, Germany, www.junker-group.com Accessed 11 May 2017.
- [2] KLOCKE F., BÜCKER C., 1996, Quickpoint – Schleifen: Baustein einer flexiblen Produktion. Komplett bearbeiten in nur einer Aufspannung, Ind. Anz, 118, 39-48.
- [3] NIŻANKOWSKI CZ., 2013, Technology and exploitation of grinding wheels made of sintered corundum used in surface grinding, Politechnika Krakowska, Kraków, 135-146 (in Polish).
- [4] Product Catalog of 3M, 2016, Cubitron II – grinding wheels, Applied to life, www.3m.pl/cubitron, 2-3 Accessed 30 July 2016.
- [5] MARINESCU I.D., HITCHINER M. UHLMANN E., ROWE W.B., INASAKI I., 2011, Handbook of machining with grinding wheels, CRC Press, Boca Raton.
- [6] JACKSON M.J. DAVIN J.P., 2011, Machining with abrasives, Springer, New York.
- [7] JINYUAN H.C., WEIHUA T., CHEN Z.C., 2017, The equal theoretical surface roughness grinding method for gear generating grinding, The International Journal of Advanced Manufacturing Technology, 1-10, DOI: 10.1007/s00170-016-9651-8.
- [8] KACALAK W., WOŹNIAK K., 1999, Impact of grain shape on process and grinding results, Postępy technologii maszyn I Urządzeń, z. 1 (in Polish).
- [9] Product Catalogue of Polska Grupa Zbrojeniowa, 2016, International Defence Industry Exhibition MSPO, Kielce (in Polish).
- [10] MARINESCU I.D., ROWE W.B., DIMITROV B., IMASAKI I., 2004, Tribology of abrasive machining processes. Wiliam Andrew Inc., Norwich.
- [11] ADOLNY K., 2014, State of the art in production, properties and applications of the microabrasive sintered corundum abrasive grains, Int. J. Adv. Manuf. Technolog., 74/9, 1445-1449, doi: 10:1007/s00170-014-6090-2.
- [12] WANG L.,TIAN X., LIU Q., LI Y., TANG X., YANG L., 2017, Experimental study and theoretical analysis of the form grinding of gears using new type micro-crystal corundum grinding wheels, The International Journal of Advanced Manufacturing Technology, 1-11, DOI: 10.1007/s00170-017-0246-9.
- [13] WEBSTER J, TRICARD M., 2004, Innovations in abrasive products for precision grinding, CIRP Ann., 53/2, 590-610.
- [14] CAO Y., BO J.G., XIAOLONG L., JIANGXINC., GAN J., 2013, Modelling and simulation of grinding surface topography considering wheel vibration, The International Journal of Advanced Manufacturing Technology, 66/5, 937-945.
- [15] MAMALIS A.G., KUNDRÁK J., MANOLAKOS D.E., GYANI K., MARKOPOULOS A., HORVATH M., 2003, Effect of the workpiece material on the heat affected zones during grinding: a numerical simulation, The International Journal of Advanced Manufacturing Technology, 22/11, 761-767.
- [16] WANG C., CHEN J., FANG Q., LIU F., LIU Y., 2016, Study on brittle material removal in the grinding process utilizing theoretical analysis and numerical simulation, The International Journal of Advanced Manufacturing Technology, 87/9, 2603-2614.
- [17] YU H., WANG J., LU Y., 2016, Simulation of grinding surface roughness using the grinding wheel with an abrasive phyllotactic pattern, The International Journal of Advanced Manufacturing Technology, 84/5, 861-871.
- [18] POLAŃSKI ZB., 1994, Planning experience in technics, PWN, 77-81, (in Polish).
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Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-6eaf71f4-9890-4fdb-b055-e56c63aebbbb