Have a personal or library account? Click to login
Measurement of Air Springs Volume Using Indirect Method in the Design of Selected Pneumatic Devices Cover

Measurement of Air Springs Volume Using Indirect Method in the Design of Selected Pneumatic Devices

Open Access
|Apr 2018

References

  1. 1. Abbas R., Ihmels C., Enders S., Gmehling J. (2011), Joule–Thomson coefficients and Joule–Thomson inversion curves for pure compounds and binary systems predicted with the group contribution equation of state VTPR, Fluid phase equilibria, 306, 181-189.10.1016/j.fluid.2011.03.028
  2. 2. Baworski A., Garbala K., Czech P., Witaszek K. (2015), Estimation of the ability to use a mass of air from a moving vehicle in wind turbine propulsion, Scientific Journal of Silesian University of Technology, Series Transport, 88, 5-17.10.20858/sjsutst.2015.88.1
  3. 3. Czech P. (2014), Conception of use vibroacoustic signals and neural networks for diagnosing of chosen elements of internal combustion engines in car vehicles, Scientific Journal of Silesian University of Technology, Series Transport, 82, 51-58 (in Polish).
  4. 4. Czech P., Wojnar G., Burdzik R., Konieczny Ł., Warczek J. (2014), Application of the discrete wavelet transform and probabilistic neural networks in IC engine fault diagnostics, Journal of Vibroengineering, 16, 1619-1639.
  5. 5. Dresig H., Holzweißig F. (2007), Dynamics of Machines, Springer, Berlin Heidelberg (in German).
  6. 6. Grega R. (2014), Examination of applicated pneumatic flexible coupling and its effect on magnitude of vibrations in drive of belt conveyer, Scientific Journal of Silesian University of Technology. Series Transport, 85, 21-25.
  7. 7. Haľko J., Pavlenko S. (2012), Analytical suggestion of stress analysis on fatigue in contact of the cycloidal - vascular gearing system, Scientific Journal of Silesian University of Technology. Series Transport, 76, 63-66.
  8. 8. Handrik M., Vaško M., Kopas P., Sága M. (2014), Effective finite element solution and post-processing for wide load spectrum, Communications, 16(3A), 19-26.10.26552/com.C.2014.3A.19-26
  9. 9. Homišin J. (2002), New types of pneumatic flexible shaft couplings: development, research, application, Vienala, Košice (in Slovak).
  10. 10. Homišin J. (2014), New methods for tuning of mechanical systems during operation in steady state, Scientific Journal of Silesian University of Technology. Series Transport, 85, 49-55.
  11. 11. Homišin J., Kaššay P. (2014), Experimental verification of the possibility using pneumatic flexible shaft couplings for the extremal control of torsional oscillating mechanical system, Diagnostyka, 15(2), 7-12.
  12. 12. Homišin J., Urbanský M. (2015), Partial results of extremal control of mobile mechanical system, Diagnostyka, 16(1), 35-39.
  13. 13. Klenovčanová A. (2007), Thermomechanics, Faculty of mechanical engineering, Technical University of Košice (in Slovak).
  14. 14. Kohl O, Pešík L. (2016), Evaluation of a driver's seat's dynamic properties, Scientific Journal of Silesian University of Technology. Series Transport, 91, 59-69.10.20858/sjsutst.2016.91.6
  15. 15. Łazarz B., Wojnar G., Madej H., Czech P. (2009), Evaluation of gear power losses from experimental test data and analytical methods, Mechanika, 80(6), 56-63.
  16. 16. Massey, B. (2006), Mechanics of fluids, Taylor and Francis, London.
  17. 17. Meret (2017), Pressure transmitters type TSZ with a sensor with metal diaphragm. Accessed: 13.04.2016. Available at: http://www.meret.sk/en/produkty/meranie-tlaku/snimace-tlaku/snimace-tlaku-typu-tsz/
  18. 18. Pešík L., Němeček P. (1997), Monitoring of vibration of machines with an elastic support, Insight, 39, 566-568.
  19. 19. Rubena (2016), Rubber-textil products, air springs. Accessed: 31.03.2016. Available at: http://www.rubena.cz/air-springs/t-659/.
  20. 20. Sapietová A., Dekýš V. (2016) Dynamic analysis of rotating machines in MSC.ADAMS, Procedia Engineering, 136, 143-149.10.1016/j.proeng.2016.01.188
  21. 21. Scully, L. (2015), Make pneumatic connections air tight. Accessed: 13.04.2016. Available at: http://www.hydraulicspneumatics.com/fittings-couplings/make-pneumatic-connections-air-tight/
  22. 22. Sturm M., Pešík L. (2017), Experimental determination and simulation of spring-tensions under working conditions of a vibrating bowl feeder, Acta Mechanica et Automatica, 11, 243-246.10.1515/ama-2017-0038
  23. 23. Urbanský M., Kaššay, P. (2015), The new realized mobile device for extremal control research and presentation, Scientific Journal of Silesian University of Technology. Series Transport, 89, 173-178.10.20858/sjsutst.2015.89.18
  24. 24. Wojnar G. (2010), Using of torsional vibrations velocity for the detection of toothed wheels' fault, Scientific Journal of Silesian University of Technology. Series Transport, 66, 123-128.
DOI: https://doi.org/10.2478/ama-2018-0003 | Journal eISSN: 2300-5319 | Journal ISSN: 1898-4088
Language: English
Page range: 19 - 22
Submitted on: Apr 14, 2016
Accepted on: Mar 2, 2018
Published on: Apr 4, 2018
Published by: Bialystok University of Technology
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2018 Matej Urbanský, Jaroslav Homišin, Peter Kaššay, Jozef Krajňák, published by Bialystok University of Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.