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Differences in energy flow in three directions in Human-Tool biomechanical systems based on spatial human physical models specified in the ISO 10068:2012 standard

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The article presents the differences in energy flow for two human physical models from ISO 10068:2012. The models are compared on the basis of a numerical simulation of energy flow implemented with MATLAB/simulink software. For purposes of comparison, the dynamics of the two Human-Tool systems is mathematically modelled and then used to derive their energy models. The model dynamic structures are fully specified in order to determine and compare three kinds of powers. The study revealed differences between the model characteristics when analysed along different directions of vibrations and as a whole.
Rocznik
Strony
789--798
Opis fizyczny
Bibliogr. 17 poz., rys., tab.
Twórcy
autor
  • Poznan University of Technology, Institute of Applied Mechanics, Poznań, Poland
autor
  • Poznan University of Technology, Institute of Applied Mechanics, Poznań, Poland
Bibliografia
  • 1. Cannon R.H. Jr., 1973, Dynamics of Physical Systems (in Polish), Wydawnictwa Naukowo- -Techniczne
  • 2. Dobry M.W., 1998, Optimization of the Energy Flow in the Human-Tool Base System (in Polish), Rozprawa habilitacyjna, Seria “Rozprawy” nr 330, ISSN 0551-6528, Wydawnictwo Politechniki Poznańskiej, Poznań
  • 3. Dobry M. W., 2001, Energy diagnostics and assessment of dynamics of mechanical and biomechatronics systems, Machine Dynamics Problems, 25, 35-54
  • 4. Dobry M.W., 2012, Fundamentals of Energy Diagnostics of Mechanical and Biomechanical Systems (in Polish), Wydawnictwo Naukowe Instytutu Technologii Eksploatacji – PIB, Radom
  • 5. Dobry M.W., Hermann T., 2014, Comparison of human physical models specified in ISO 10068:2012 based on the distribution of power, Vibrations in Physical Systems, 26, 49-56
  • 6. Dobry M.W., Hermann T., 2015, A comparison of human physical models based on the distribution of power in a dynamic structure in the case of hand-arm vibrations, Journal of Theoretical and Applied Mechanics, 53, 1, 3-13
  • 7. Dong R.G., Dong J.H., Wu J.Z., Rakheja S., 2007, Modelling of biodynamic responses distributed at the fingers and the palm of the human hand-arm system, Journal of Biomechanics, 40, 2335-2340
  • 8. Dong R.G., Rakheja S., McDowell T.W., Welcome D.E., Wu J.Z., 2010, Estimation of the biodynamic responses distributed at fingers and palm based on the total response of the hand-arm system, International Journal of Industrial Ergonomics, 40, 425-436
  • 9. Dong R.G., Welcome D.E., McDowell T.W., Wu J.Z., 2013, Modelling of the biodynamic responses distributed at the fingers and palm of the hand in three orthogonal directions, Journal of Sound and Vibration, 332, 1125-1140
  • 10. Griffin M.J., 1990, Handbook of Human Vibration, Academic Press, London
  • 11. ISO 10068:1998, Mechanical vibration and shock – free, mechanical impedance of the human handarm system at the driving point
  • 12. ISO 10068:2012, Mechanical vibration and shock – mechanical impedance of the human hand-arm system at the driving point
  • 13. Książek A.M., 1996, Analysis of the existing biodynamic hand-arm models to isolation of a human – operator from vibrations emitted by the hand-held tools (in Polish), Czasopismo Techniczne, Wydawnictwo Politechniki Krakowskiej, 87-114
  • 14. Meltzer G., 1981, A vibration model for the human hand-arm-system, Studies in Environmental Science, 13, 210-221
  • 15. Rakheja S., Wu J.Z., Dong R.G., Schopper A.W., 2002, A comparison of biodynamic models of the Human hand-arm system for applications to hand-held power tools, Journal of Sound and Vibration, 249, 55-82
  • 16. Reynolds D.D., Soedel W., 1972, Dynamic response of the hand-arm system to a sinusoidal input, Journal of Sound and Vibration, 21, 339-353
  • 17. Żółtowski B., 2002, Study of the Dynamics of Machines (in Polish), Markar – B.Ż., Bydgoszcz
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-61ef55cb-fdd7-4320-a3dd-f1bbb374b2f5
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