Manufacturing Technology 2015, 15(1):20-24 | DOI: 10.21062/ujep/x.2015/a/1213-2489/MT/15/1/20

Measurement and Analysis of Mass Flow and Abrasive Sieving Impact on Technological Head Vibrations during Cutting Abrasion Resistant Steels with Abrasive Water Jet Technology

Stanislav Fabian, ©tefánia Salokyová
Faculty of Manufacturing Technologies, Department of Manufacturing Processes Operation, Technical University of Ko¹ice, Bayerova 1, 080 01 Pre¹ov, Slovakia

The article presents the results of Technical University in Ko¹ice Faculty of Manufacturing Technologies Department of production processes operation and Technical University in Ostrava Physics Institute Liquid jet workplace cooperation in the area of operational states diagnosis of manufacturing systems with abrasive water jet technology (AWJ). Within the operational states diagnostics is the impact of selected technological parameters on technological head vibrations studied. Based on an extensive set of experiments are original graphical dependences determined of the abrasive mass flow and abrasive sieving impact on the vibrations parameter - technological head vibrations acceleration amplitude of manufacturing system with AWJ technology. In addition to the original graphical dependences are in article new knowledge formulated in the area of science and research and recommendations for companies that operates manufacturing systems with AWJ technology.

Keywords: Casting HARDOX 500, Cutting, Hydro-abrasive water jet, Abrasive mass flow rate, vibrations acceleration amplitude

Published: February 1, 2015  Show citation

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Fabian S, Salokyová ©. Measurement and Analysis of Mass Flow and Abrasive Sieving Impact on Technological Head Vibrations during Cutting Abrasion Resistant Steels with Abrasive Water Jet Technology. Manufacturing Technology. 2015;15(1):20-24. doi: 10.21062/ujep/x.2015/a/1213-2489/MT/15/1/20.
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References

  1. SERVÁTKA, M. (2009). Modelling, simulation and optimization of technological parameters related to requested product quality in manufacturing technologies with water jet. Dissertation. Pre¹ov, 125 p.
  2. PLANÈÁR, ©. (2012). Modelling and simulation of influence of selected material and technological parameters in AWJ machining of steel. FVT Pre¹ov
  3. FABIAN, S., SALOKYOVÁ, ©. (2012). Experimental verification of abrasive mass flow impact on the technological head acceleration amplitude and vibrations frequency in the production system with AWJ technology. In: Manufacturing technology. 12 12, 18-21. Go to original source...
  4. FABIAN, S., SALOKYOVÁ, ©., JACKO, P. (2012). Experimental verification of the freqeuncy spectrum of unwear and wears guidance tube on the technological head vibrations creation in the production system with AWJ technology. In: Manufacturing Technology. 12 13, 105 - 108. Go to original source...
  5. FABIAN, S., SALOKYOVÁ, ©., OLEJÁR, T. (2011). Analysis and experimental study of the technological head feed rate impact on vibrations and their frequency spectra during material cutting using AWJ technology. In: Nonconventional Technologies Review. 4, 27-32.
  6. KMEC, J., BIÈEJOVÁ, ¥., KRENICKÝ, T. (2011). AWJ production technology system technology head vibrations formation due to water press changes. In: Annals of Faculty of Engineering Hunedoara. 9. 3, 343-344.
  7. BIÈEJOVÁ, ¥. (2013). Water jet technology head vibration generation due to selected technology parameters fluctuation effect during alloy cutting. In: Applied Mechanics and Materials. 308, 81-86. Go to original source...
  8. KALIÈINSKÝ, J. (2009). Control of technological parameters of liquid jet in violation of materials. Dissertation. Ostrava
  9. HREHA, P. (2012). Study of processes resulting from the hydroabrasive disintegration of metallic materials by vibration, Dissertation. Pre¹ov, 303 p.
  10. BIÈEJOVÁ, ¥. (2010). Modelling and simulation of operational conditions influencing the formation and extent of vibrations in manufacturing systems, Dissertation. Pre¹ov, 184 p.
  11. JACKO, P. (2011). Modelling and simulation of technological parameters related to usage of non-traditional abrasives in AWJ technology, Dissertation. Pre¹ov, 163 p.
  12. SALOKYOVÁ, ©. (2012). Analysis, modelling and simulation of vibrations in manufacturing systems with water jet technology, Dissertation. Pre¹ov, 303 p.
  13. HASHISH, M. (1991). In: Journal of Engineering for Industry, 1, 29 - 37 Go to original source...
  14. MAÒKOVÁ, I. (1995). Progressive Technologies. Ko¹ice: TU Ko¹ice, Faculty of Mech. Engineering, 2000, 275 p.
  15. SUMMERS, A. D. Water jetting Technology, Oxford, 882
  16. STRAKA, ¥. (2004). Optimization of automated quality control of manufacturing processes in engineering applications in the electrical discharge machining technology, Dissertation. Pre¹ov, 135 p.
  17. KREHE¥, R. (2011). In: Scientific Papers : operation and diagnostics of machines and production systems operational states. Lüdenscheid, RAM-Verlag, pp. 23-27
  18. KRENICKÝ, T. (2011). Scientific Papers: In: Operation and Diagnostics of Machines and Production Systems Operational States. 4. 5-8pp.
  19. JURKO, J., PANDA, A., BEHÚN, M. (2012). In: Applied Mechanics and Materials, Trans Tech Publications, Zurich, Switzerland, 224 142, 142-145 Go to original source...