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Simulation of polymer injection molding: A new practical approach to improve computation Accuracy

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Simulation of injection molding of polymeric materials is still a series scientific and engineering problem. The quality of the input data is crucial for computation accuracy. The original, relatively simple tool has been designed to validate simulations. This allows a fast identification of the critical input data, and next their proper adjustment to computations. FEM simulations have been compared with directly registered pictures of cavity filling process in a special injection mold with a sight-glass.
Rocznik
Strony
25--28
Opis fizyczny
Bibliogr. 14 poz., rys.
Twórcy
autor
  • Warsaw University of Technology, Faculty of Production Engineering, Polymer Processing Department, Narbutta 85, 02-524 Warsaw, Poland
  • Warsaw University of Technology, Faculty of Production Engineering, Polymer Processing Department, Narbutta 85, 02-524 Warsaw, Poland
Bibliografia
  • [1] Ziobro J.: The Numerical Simulation in Elastomer Injection Molding by Moldex3D Software on the Example Basis of the Chloroprene Rubber, Elastomery 1/2010, p.22
  • [2] Yokoi H.: Progress in Visualization Technologies, The Polymer Processing Society Sixteenth Annual Meeting, Shanghai, 2000
  • [3] Wilczyński K.: Cadmould-3D System for Computer Modeling of Injection Molding of Polymeric Materials (in Polish), Polimery 1999, p.407
  • [4] Yokoi H.: Study On Filling Balance Of Plastic Injection Molding In Multi-Cavity Mold With “H” Pattern Runner System, Europa-Africa Meeting of the Polymer Processing Society, Athens, 2003
  • [5] Yeo M.W. I., Daver F.: An Investigation of Fibre Flow Mechanism During Injection Moulding of Glass Fibre Reinforced Plastics, The Polymer Processing Society Eighteenth Annual Meeting, Guimaraes 2002
  • [6] Nabiałek J.: Experimental Validation Of Polymer Composite Injection Moulding Process Simulation, Kompozyty 4/2011, p. 283
  • [7] Chen S. C., Yu T., Lin Y., Tseng C., Chen T., Hsu C., Huang C.: Simulation and Verification of Gas-Assisted Injection Molding on Hollowed Core Ratio of Spiral Tube, Proceedings of ANTEC 2011
  • [8] Chen S. C., Yang S. P., Chang J. A., Sun S., Chiu H., Hsu C.: Verification of Experiment and Numerical Method Simulation on Venting Design for Improving Product Surface Quality, Proceedings of ANTEC 2012
  • [9] Okonski A.: An Injection-Molding Study: Material Properties versus Simulation Accuracy, Proceedings of ANTEC 2013
  • [10] Wilczyński K., Nastaj A.: SSEM-AG Computer Model for Optimization of Polymer Extrusion, Proceedings of IMECE, Chicago 2006, p.13074.
  • [11] www.autodesk.com/products/moldflow
  • [12] Wilczyński K.: Reologia w przetwórstwie tworzyw sztucznych, WNT, Warszawa 2001.
  • [13] Wilczyński K., Wilczyński K.J., Narowski P.: Badania symulacyjno-doświadczalne nierównomiernego wypełniania form wtryskowych zrównoważonych geometrycznie, Polimery 2015, p. 411
  • [14] Narowski P., Wilczyński K.: Study on Filling Patterns of Engineering Polymers in Geometrically Balanced Injection Molds, Challenges of Modern Technology, 2015, p.15
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-e111bdfc-dd8d-45e7-82ec-154bfe290499
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