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Numerical analysis of the screw connection with preload tension used in the mounting of slewing bearings

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EN
Slewing bearings are used as devices that connect two part working machine, usually with a rotating chassis body must meet safety criteria, manage to cope with extreme loads and environmental factors operation life. In this paper the distribution of pressure on surfaces of the screw's connections with preload tension is considered. A joining model which is used in rolling bearing is the subject of the analysis. The aim of the work is to introduce an auxiliary criterion of 'connection tightness' to the calculating methodology of bearings' fastening connections with building structure. Considered part of the three-row roller bearing, rings bearings and mounting elements are modelled solid type, and the bolts are modelled with beam-type element introduced preload tension value equivalent catalogue. Connected elements of the screw head rigid elements. The screws used in such a combined coronary bearings are not close fit, and established contact between the surfaces of the rings and the building is not homogeneous. Work is not only dedicated to the stress of contact between the contact surfaces A and B, but also considered is the effect of pitch spacing of the screws on the pitch rolling element bearing in the numerical solution ADINA system was used to prepare numerical models of junction. The results of the calculations of pressure distributions for changeable screw's span are shown graphically and the table of percentages of the load loss of contact between the surfaces A and B of slewing bearing screw connection.
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  • Technical University of Czestochowa Department of Mechanical Engineering and Computer D..browskiego Street 73, 42-200 Czestochowa, Poland tel.: tel. +48 34 325-06-20, fax: +48 34 325-06-47, reszka@.imipkm.pcz.pl
Bibliografia
  • [1] Kania, L., Analyze of internal load of slewing bearings in respect of their load carrying capacity, Czestochowa University of Technology Publishing, Czestochowa 2005.
  • [2] Dziurski, A., Kania, L., Mazanek, E., Calculation of bolted joints in slewing bearings, Review of Mechanical Engineering, Vol. 61, No. 9, pp. 30-36, 2002.
  • [3] Slewing Bearings GWL_GB, Rothe Erde, Dortmund 2011.
  • [4] Smolnicki, T., Physical aspects of the coherence of large-scale deformation of rolling bearings and support structures, Publishing House of Technical University of Wroclaw, Wroclaw 2002.
  • [5] Smolnicki, T., Derlukiewicz, D., Stańco, M., Evaluation of load distribution in the superstructure rotation joint of single-bucket caterpillar excavators, Automation in Construction, Vol. 17, No. 3, pp. 218-223, 2008.
  • [6] Chaib, Z., Daidié, A., Leray, D., Screw behavior in large diameter slewing bearing assemblies: numerical and experimental analyses, International Journal on Interactive Design and Manufacturing, Vol. 1, No. 1, pp. 21-31, 2007.
  • [7] Jeong Kim, J., Yoon, J., Kang, B., Finite element analysis and modelling of structure with bolted joints, Applied Mathematical Modelling, Vol. 31, No. 5, pp. 895–911, 2007.
  • [8] Pollicino, F., Schleeßelmann, R., Berechnung der hochbelasteten Schraubenverbindung des Rotorblattes einer Windenergieanlage mittels FEM und VDI 2230 unter Berücksichtigung der Montage, Germanischer Lloyd Wind Energie GMBH, Hamburg 1-25, 2005.
  • [9] Göncz, P., Glodež, S., Calculation model for pre-stressed bolted joints of slewing bearings, Advanced Engineering, Vol. 3, No. 2, pp. 175-186, 2009.
  • [10] Mazanek, E., Krynke, M., Possibility of modelling the fastening bolts slewing bearing, XXIII Trends in the Development of Heavy Duty Machines, Zakopane 2010.
  • [11] Łożyska toczne wielkogabarytowe, katalog-informator, Zawierciańska Mechanical Plant„Bumar-Łabędy” S.A., Zawiercie 1997.
  • [12] ADINA, Theory and Modelling Guide, ADINA R&D, Inc., Watertown 2011.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ8-0019-0082
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