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Impact of the technological conditions of plane surface machining on a triangular milling cutter on the residual hysteresis of the movement axis of the machine

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The paper deals with the possibilities of measuring the residual displacement or hysteresis on the lateral direction of the movement forces caused by the cutting forces of the machining. A special adjustment of laser interferometry assemblies was used for measurement. The measurement results indicate that the positioning accuracy in addition to the cutting forces also influences the position of the displaced moving substances and the temperature. The complex effect of these parameters is greatly dependent on the design of the machine.
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  • Technical University of Košice, Faculty of Mechanical Engineering, Letná 9, 042 00 Košice, Slovak Republic
autor
  • Technical University of Košice, Faculty of Mechanical Engineering, Letná 9, 042 00 Košice, Slovak Republic
autor
  • Technical University of Košice, Faculty of Mechanical Engineering, Letná 9, 042 00 Košice, Slovak Republic
autor
  • Technical University of Košice, Faculty of Mechanical Engineering, Letná 9, 042 00 Košice, Slovak Republic
autor
  • Technical University of Košice, Faculty of Mechanical Engineering, Letná 9, 042 00 Košice, Slovak Republic
  • Technical University of Košice, Faculty of Economics, Němcovej 32, 042 00 Košice, Slovak Republic
Bibliografia
  • 1.Chen X. B., Geddam A., Yuan Z. J. Accuracy improvement of three-axis CNC machining centers by quasi-static error compensation. Journal of Manufacturing Systems, 16(5), 1997, 323-336.
  • 2.Debski H., Teter A., Kubiak T., Samborski S. Local buckling, post-buckling and collapse of thin-walled channel section composite columns subjected to quasi-static compression, Compos. Struct. 136, 2016. doi:10.1016/j.compstruct.2015.11.008.
  • 3.Garbacz T. Jachowicz T. Gajdoš I. Kijewski G. Research on the influence of blowing agent on selected properties of extruded cellular products, Advances in Science and Technology Research Journal, 28(9), 2015, 81-88.
  • 4.Herzog R. Blanc P. Time-optimal trajectory planning in CNC machining including vibrational behaviour. In Control Conference (ECC), 2015 European, IEEE, 2015, July, 1950-1954.
  • 5.Ibaraki S. Blaser P. Shimoike M. Takayama N. Nakaminami M. Ido Y. Measurement of thermal influence on a two-dimensional motion trajectory using a tracking interferometer. CIRP Annals-Manufacturing Technology, 65(1), 2016, 483-486.
  • 6.Kráľ J. ml., Kráľ J. Verification of a three axis milling machine accuracy in the process of complex shaped part production. In: Applied Mechanics and Materials: Novel Trends in Production Devices and Systems. 474, 2014, 261-266.
  • 7.Mayr J. Ess M. Weikert, S. Wegener K. Compensation of thermal effects on machine tools using a FDEM simulation approach. Proceedings Lamdamap, 9, 2009.
  • 8.Molnár V. Fedorko G. Stehlíková B. Michalik P. Weiszer M., A regression model for prediction of pipe conveyor belt contact forces on idler rolls, Meas. J. Int. Meas. Confed. 46, 2013, 3910–3917. doi:10.1016/j.measurement.2013.07.045.
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę (zadania 2017)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-7b3f4155-e6e6-4757-83e8-005e21a0871b
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