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Impact Process Identification for Impact Cylinder Piston

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Języki publikacji
EN
Abstrakty
EN
The phenomenon of the tool rebound from the object processed, that can be noticed particularly in the case of impact marking, has a negative influence on the quality of the processing of moving objects, which is a result of the blur effect caused by the shift of the object processed at the time of its retraction. The objective of the study was to determine the influence of both the capacity of the chamber of the accumulator and the working pressure on the characteristics of the phenomenon of the piston rebound from the obstacle that can be noticed after it hits a hard fender for the very first time. The article present the results of research consisting in the analysis of the rebound phenomenon for impact cylinder pistons. The tests were carried out for cylinders whose structure allowed for the change in the capacity of the accumulator chamber. Cylinders with the pistons of 40 and 100 mm in diameter and supplied by 4 and 6 bar pressure were subject to tests that were undertaken at the test stand equipped with Phantom V310 high speed digital camera.
Rocznik
Strony
88--92
Opis fizyczny
Bibliogr. 12 poz., Wykr.
Twórcy
autor
Bibliografia
  • 1. Czajka P., Giesko T. (2008), Characteristic calculation of impact cylinders with an adjusting chamber (in Polish), Problemy Eksploatacji, 3, 123-131.
  • 2. Czajka P., Giesko T., Zbrowski A. (2008), Method and apparatus for the determination and optimizationof work parameters of thepneumatic impact cylinders (in Polish), Przegląd Mechaniczny, 12, 24-28.
  • 3. Giesko T., Zbrowski A. (2008), Method and apparatus for the determination and optimization of work parameters of the pneumatic impact cylinders (in Polish), VI International Scientific-Technical Conference Technika i Technologia MontaŜu Maszyn, Kalnica, 28-30 May 2008, Zeszyty Naukowe Politechniki Rzeszowskiej, Mechanika, 72, 237-244.
  • 4. Giesko T., Zbrowski A., Czajka P. (2007), Method and device for testing the impact cylinders (in Polish), Pneumatyka Przemysłowe Systemy Sprężonego Powietrza, 2, 34-37.
  • 5. Kiczkowiak, T. Grymek, S. (2000), The computer program to support calculation of high-speed pneumatic cylinders with built-in chamber (in Polish), Krajowa Konferencja Pneuma 2000, 25-27.10.2000; Kielce, Zeszyty Naukowe Politechniki Świętokrzyskiej, seria: Elektryka, nr: 39, 147-154.
  • 6. Lenczewski J., Łunarski J. (1999), The pneumatic impact cylinder (in Polish), Technologia i Automatyzacja Montażu, 1, 30-32. 7. Lenczewski J., Łunarski J. (2000), Pneumatic impact presses (in Polish),Technologia i Automatyzacja Montażu, 1, 36-37.
  • 7. Lenczewski J., Łunarski J. (2000), Pneumatic impact presses (in Polish),Technologia i Automatyzacja MontaŜu, 1, 36-37.
  • 8. Lenczewski J., Łunarski J. (2001), The pneumatic impact punching in pre mounting operations (in Polish), Technologia i Automatyzacja Montażu, 1, 30-32.
  • 9. Liu Y.; Jiang Ch. (2007), Pneumatic actuating device with nanopositioning ability utilizing PZT impact force coupled with differential pressure, Precision Engineering, Vol: 31, Issue: 3, 293-303
  • 10. Mikulczyński T., Kiczkowiak T. (1999), Application of high-speed pneumatic drive for dynamic squeezing of moulding sands (in Polish), Przegląd Odlewnictwa , Vol. 13, Z. 4, 141 -143.
  • 11. Zbrowski A., Jóźwik W. (2012), Determination of energy parameters of impact cylinder, The 8th International Conference Mechatronic Systems And Materials 2012. 8-13 July, 2012 Białystok. Abstract book, 70.
  • 12. Zbrowski A., Jóźwik W. (2012), Determination of the characteristics of the impact cylinders wit use of fast camera (in Polish), Problemy Eksploatacji, 3/2012 (in press).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPB2-0068-0021
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