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Application of additive technology of Fused Deposition Modeling for manufacturing small series of elastic models

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper presents an application of additive method of Fused Deposition Modeling for manufacturing of small series of elastic models. Additive FDM technology is used to produce a casting mould for multiple use. Process of manufacturing of small series of products consists in casting a two-component silicone rubber degassed using vacuum chamber into a multiple use mould. The paper shows the course of the process and related problems on the example of industrial product – a cylindrical seal. The casting mould was produced out of ABS material using BST 1200 machine, whereas casted elastic models were made out of XTX 45 silicone rubber.
Rocznik
Strony
20--31
Opis fizyczny
Bibliogr. 12 poz., fig., tab.
Twórcy
  • Poznań University of Technology, Chair of Management and Production Engineering, Piotrowo 3 Str, PL-60-965 Poznan
autor
  • Poznań University of Technology, Chair of Management and Production Engineering, Piotrowo 3 Str, PL-60-965 Poznan
autor
  • Poznań University of Technology, Chair of Management and Production Engineering, Piotrowo 3 Str, PL-60-965 Poznan
Bibliografia
  • [1] Bellini A., Guceri S.: Mechanical characterization of parts fabricated using fused deposition modeling. Rapid Prototyping Journal, vol. 9, 2003.
  • [2] Hull C., et al.: Rapid prototyping: current technology and future potential. Rapid Prototyping Journal, vol. 1 no. 1, pp. 11-19, 1995.
  • [3] Kai C. C., Howe C. T., Hoe E. K.: Integrating Rapid Prototyping and Tooling with Vacuum Casting for Connectors. International Journal of Advanced Manufacturing Technology. Springer, vol. 14, 617-623, 1998.
  • [4] Konieczny R.: Projektowanie z wykorzystaniem narzędzi Rapid Prototyping, Mechanik, t.76, nr 12, 2003.
  • [5] Kuczko E., et al.: Choosing optimal rapid manufacturing process for thin-walled products using expert algorithm. Journal of Industrial Engineering and Management, vol. 3, no. 2, 2010.
  • [6] Lee C.W., et al.: Rapid investment casting: direct and indirect approaches via fused deposition modeling. International Journal of Advanced Manufacturing Technology. Springer, vol. 23, 2003, pp. 93-101.
  • [7] Mais G., Duchscherer F.: Vacuum casting - development stage of a special-purpose method. Kunststoffe, German plastics, vol. 81, 1999, pp. 14-16.
  • [8] Pająk E., et al.: Techniki przyrostowe i wirtualna rzeczywistość w procesach przygotowania produkcji. Agencja Reklamowo-Promocyjna „Promocja 21”, Poznań 2011.
  • [9] Pham D. T., Dimov S., Lacan F.: Selective laser sintering: applications and technological capabilities. Proc Instn Mech Engrs, vol. 213 Part B, 1999, pp. 435.
  • [10] Rosochowski A., Matuszak A.: Rapid tooling: the state of the art. Journal of Materials Processing Technology, 106 (1-3), pp. 191-198, 2000.
  • [11] Weiss E., et al.: Accuracy of parts manufactured by rapid prototyping technology. 7th International Conference of DAAAM Baltic Industrial Engineering, Tallinn, Estonia, 2010.
  • [12] Weiss E., Waraczyński B.: Zastosowanie Technologii Vacuum Casting do wytwarzania prototypów funkcjonalnych. Zeszyty Naukowe Politechniki Poznańskiej, no. 5, 2007.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-6e6b01b6-4654-4682-b1ab-978ffdd31b0c
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