PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Assessment of the manufacturing possibility of thin-walled robotic portals for conveyance workplaces

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper discusses evaluation of machining solutions for oversized thin-walled robotic portal component for conveyance workplaces. The following portal CNC machining centers have been selected. Firstly, a FSGC 300 “portal type” portal was proposed, with a 50000 mm “X” axis and Heidenhain control system, the second portal was a DMU 340 portal with the maximum axis “X” of 6000 mm and Siemens Sinumerik control system and the last portal was the VF-10 / 40 one, with the maximum axis “X” of 3048 mm and Fanuc control system. Further, the method of fixing a thin-walled robotic portal is designed and individual options are evaluated for their economy. The CAM software application used for programming the production was SolidWorks.
Twórcy
  • Technical University of Kosice, Faculty of Manufacturing Technologies with seat in Presov, Bayerova 1, 08001, Slovakia
  • VŠB - Technical University of Ostrava, 17. listopadu 15/2172, 708 33 Ostrava - Poruba, Czech Republic
  • Milpoš 177, 082 71, Slovakia
Bibliografia
  • 1. Mantic M. et al. Influence of selected digitization methods on final accuracy of 3D model. 2016. 475–480.
  • 2. Panda A. et al. Analysis of Cutting Tools Durability Compared with Standard ISO 3685, Int. J. Comput. Theory Eng. 2012, 4, 621–624.
  • 3. Murčinková Z. et al. Research and analysis of stress distribution in multilayers of coated tools, Int. J. Mater. Res. 2017, 108.
  • 4. Straka Ľ. et al. Evaluation of Thin Microhardened Surface Layer of Tool Steel after Wire EDM, Metals (Basel), 2016, 6, 95.
  • 5. Das P. et al. Optimization of degree of sphericity of primary phase during cooling slope casting of A356 Al alloy: Taguchi method and regression analysis, Meas. J. Int. Meas. Confed., 2014, 55, 605–615.
  • 6. Pedersen K.M.et al. Temperature measurement during solidification of thin wall ductile cast iron. Part 1: Theory and experiment, Meas. J. Int. Meas. Confed., 2008, 41, 551–560.
  • 7. Mouralova K. et al. Analysis of surface morphology and topography of pure aluminium machined using WEDM, Meas. J. Int. Meas. Confed., 2018, 114, 169–176.
  • 8. Conway J.R. et al.: Experimental study of contouring accuracy for CNC machines executing curved paths with constant and curvature-dependent feedrates, Robot. Comput. Integr. Manuf., 2013, 29, 357–369.
  • 9. Ramesh B. et al. Drilling of pultruded and liquid composite moulded glass/epoxy thick composites: Experimental and statistical investigation, Meas. J. Int. Meas. Confed., 2018, 114, 2018. 109–121.
  • 10. D’Aleo F.P et al. Design and development of resistive temperature detector arrays on aluminium substrates. Measurements in mixing experiments, Flow Meas. Instrum., 2015, 45, 176–187.
  • 11. Strohmandl H. Use of simulation to reduction of faulty products, UPB Sci. Bull. Ser. D Mech. Eng., 2014, 76, 223–230.
  • 12. Kosza G. et al. Application of FEM analysis of the structure of a trailer-supporting frame with variabile operation parameters, 2012, 14.
  • 13. Novak-Marcincin J. et al. Use of alternative scanning devices for creation of 3D models of machine parts., Tehnički Vjesnik, 2014, 21, 1, 107–113.
  • 14. Molnár V. et al. Statistical approach for evaluation of pipe conveyor’s belt contact forces on guide idlers, Measurement, 2013, 46, 3127–3135.
  • 15. Molnár V. et al. Analysis of asymmetrical effect of tension forces in conveyor belt on the idler roll contact forces in the idler housing, Measurement, 2014, 52, 2014. 22–32.
  • 16. Fedorko G. Et Al. Analysis Of Pipe Conveyor Belt Damaged By Thermal Wear, Engineering Failure Analysis, Volume 45, Published. Oct 2014. 41-48.
  • 17. Fedorko G. Et Al. Failure Analysis Of Irreversible Changes In The Construction Of Rubber-Textile Conveyor Belt Damaged By Sharp-Edge Material Impact. Engineering Failure Analysis. Volume: 39. Published: Apr 2014. 135-148.
  • 18. Molnár V. et al. Influence of tension force asymmetry on distribution of contact forces among the conveyor belt and idler rolls in pipe conveyor during transport of particulate solids, Measurement, Volume 63, Mar. 2015. 120-127.
  • 19. Fedorko G. et al. The use of industrial metrotomography in the field of maitenance and reliability of rubber-tetile conveyor belt in closed continuous transport systems, Eksploatacja i Niezawodnosc - Maintenance and Reliability, 2016, 18, 4, 539-543.
  • 20. Klepka T. et al.: Characteristics of high-density polyethylene and its properties simulation with use of finite element method, Polimery, 2009, 54, 9, 668-672.
  • 21. Jachowicz T., Sikora R. Methods of forecasting of the changes of polymeric products properties. POLIMERY, Volume: 51, Issue 3. 2006. 177-185.
  • 22. Liptai P. et al. Check measurements of magnetic flux density: Equipment design and the determination of the confidence interval for EFA 300 measuring devices, Measurement, 2017, 111, 51-59
  • 23. Website STROJÍRNA TYC S.R.O.: http://www. strojirna-tyc.cz/en/wp-content/uploads/2016/02/ FSGC/
  • 24. Website DMG Mori: http://media.dmgmori.com/ media/epaper/dmu_dmc_portal_uk/index.html#2
  • 25. Website DMG Mori: http://en.dmgmori.com/products/machines/milling/5-axis-milling/dmc-portal/ dmc-340-u
  • 26. Website International Haas Automation Inc.: http://int.haascnc.com/we_spec1. a s p ? i n tLa n g u a g eCo d e=1 0 33&id=VF- 10/40&sizeID= 120_150 IN CH_VMC 20
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-42b895ca-eef8-4a50-8147-a1380a1b046f
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.