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Strength of abs parts produced by fused deposition modelling technology – a critical orientation problem

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Języki publikacji
EN
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EN
Numerous experimental studies, including experiments performed by the authors, have shown that the part orientation during layer deposition has a very strong in-fluence on final strength of a product manufactured by additive Fused Deposition Technology. The paper presents the results of tensile, bending and impact strength tests performed on samples of various orientations, made out of ABS material using FDM technology. The results of these tests allowed discovering a unique phenomenon – with the changing orientation, not only the values of strength indexes change, but macroscopic material behavior under load as well. The transition between a “yield point” and “brittle” material usually happens in a certain range of orientation values, named a critical orientation by the authors. The paper indicates supposed ranges of critical orientation for various types of loads
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autor
  • Management and Production Engineering, Poznań University of Technology, Piotrowo 3, 60-965 Poznań, Poland
  • Management and Production Engineering, Poznań University of Technology, Piotrowo 3, 60-965 Poznań, Poland
autor
  • Management and Production Engineering, Poznań University of Technology, Piotrowo 3, 60-965 Poznań, Poland
autor
  • Management and Production Engineering, Poznań University of Technology, Piotrowo 3, 60-965 Poznań, Poland
autor
  • Management and Production Engineering, Poznań University of Technology, Piotrowo 3, 60-965 Poznań, Poland
Bibliografia
  • 1. Chua C.K., Leong K.F., Lim C.S. Rapid prototyping: Principles and applications. World Scientific Publishing, Singapore 2003, p. 420.
  • 2. Pająk E., Górski F., Wichniarek R., Dudziak A.: Techniki przyrostowe i wirtualna rzeczywistość w procesach przygotowania produkcji. Promocja 21, Poznań 2011.
  • 3. Górski F., Wichniarek R., Kuczko W.: Influence of process parameters on dimensional accuracy of parts manufactured using Fused Deposition Modeling technology. Advances in Science & Technology Research Journal, 7(19), 2013, 27–35.
  • 4. Bellini A., Guceri S., Mechanical characterization of parts fabricated using Fused Deposition Modeling. Rapid Prototyping Journal, 9, 2003, 252–264.
  • 5. Ahn S.H. et al.: Anisotropic tensile failure model of rapid prototyping parts – Fused Deposition Modeling (FDM). International Journal of Modern Physics B, 17(8-9), 2003.
  • 6. Han W.B, Jafari M.A, Seyed K. Process speeding up via deposition planning in fused deposition-based layered manufacturing processes. Rapid Prototyping Journal, 9, 2007, 212–218.
  • 7. Masood S.H, Rattanawong W, Iovenitti P. Part build orientation based on volumetric error in fused deposition modeling. International Journal of Advanced Manufacturing Technology 16, 2000, 162–168.
  • 8. Perez L.C.J. Analysis of surface roughness and dimensional accuracy capability of fused deposition modelling processes. International Journal of Production Research, 40, 2002, 2865–2881.
  • 9. Rodrigues J.F, Thomas J.P, Renaud J.E. Mechanical behavior of acrylonitrile butadiene styrene fused deposition materials modeling. Rapid Prototyping Journal, 9, 2003, 219–230.
  • 10. Ghorpade A, Karunakaran K.P, Wiwari M.K. Selection of optimal part orientation in fused deposition modeling using swarm intelligence. Journal of Engeenering Manufacture 221, 2007, 1209–1219.
  • 11. Thrimurthulu K, Pandey P.M, Venkata R.N. Optimum part deposition orientation in fused deposition modeling. International Journal of Machine Tools &Manufacture, 44, 2004, 585–594.
  • 12. Bagsik A., Schöppner V., Mechanical properties of Fused Deposition Modeling parts manufactured with ULTEM*9085. Proceedings of ANTEC 2011, Boston 2011.
  • 13. Górski F., Kuczko W., Wichniarek R., Impact strength of ABS parts manufactured using Fused Deposition Modeling technology. Archives of Mechanical Technology and Automation, 31(1), 2014, 3–12.
  • 14. Górski F., Wichniarek R., and Andrzejewski J., Influence of part orientation on strength of ABS models manufactured using Fused Deposition Modeling technology. Polymer Processing, 9, 2012, 428–435.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-3e1603fb-137f-433f-88a1-481e35d916ff
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