Identyfikatory
Warianty tytułu
Języki publikacji
Abstrakty
In the context of product development, the term rapid prototyping (RP) is widely used to describe technologies which create physical prototypes directly from digital data. Recently, this technology has become one of the fastest-growing methods of manufacturing parts. The paper provides brief notes on the creation of composites using RP methods, such as stereolithography, selective laser sintering or melting, laminated object modelling, fused deposition modelling or three-dimensional printing. The emphasis of this work is on the methodology of composite fabrication and the variety of materials used in these technologies.
Słowa kluczowe
Wydawca
Czasopismo
Rocznik
Tom
Strony
891--896
Opis fizyczny
Bibliogr. 24 poz., rys.
Twórcy
autor
- AGH University of Science and Technology, Facult y of Mechanical Engineering and Robotics, Al. Mickiewicza 30, 30-059 Kraków, Poland
autor
- AGH University of Science and Technology, Facult y of Materials Science and Ceramics, Al. Mickiewicza 30, 30-059 Kraków, Poland
Bibliografia
- [1] I. Gibson, D. W. Rosen, B. Stucker, Additive manufacturing technologies: rapid prototyping to direct digital manufacturing, New York 2010.
- [2] P. Dudek, J. Cieślik, Introduction to Reverse Engineering and Rapid Prototyping in medical applications, in: I. Roterman Konieczna (Ed), Simulations in medicine : pre-clinical and clinical applications, Walter de Gruyter GmbH 2015.
- [3] G. Zak, A. Y. F., C. B. Park, B. Benhabib, Rapid Prototyp. J. 2(3) 16 (1996).
- [4] D. E. Karalekas, Mater. Design 24, 665 (2003).
- [5] C. M. Cheah, J. Y. H. Fuh, A. Y.C Nee, L. Lu, Rapid Prototyping J. 5(3), 112(1999).
- [6] S. H. Chiu, S. T. Wicaksono, K. T. Chen, C. Y. Chen, S. H. Pong, Rapid Prototyping J. 21(3), 262 (2015).
- [7] http://www.lithoz.com/en/products/
- [8] J. Park, M. J. Tari, H.T. Hahn, Rapid Prototyping J. 6(1), 36 (2000).
- [9] D. Klosterman, R. Chartoff, G. Graves, N. Osborne, B. Priore, Compos. Part A-Appl. S. 29A, 1165 (1998).
- [10] D. A. Klosterman, R.P. Chartoff, N.R. Osborne, G.A. Graves, A Lightman, G. Han, et. al., Rapid Prototyping J. 5(2), 61(1999).
- [11] H. Seitz, W. Rieder, S. Irsen, B. Leukers, C. Tille, J. Biomed. Maters. Res. B 74(2), 782 (2005).
- [12] R. T. Dutta, J.L. Simon, J.L. Ricci, E.D. Rekow, V.P. Thompson, J.R. Parsons, J. Biomed. Maters. Res. A 67A(4), 1228 (2003).
- [13] R. Noguera, M. Lejeune, T. Chartier, J Eur. Ceram. Soc. 25(12), 2055 (2005).
- [14] P. F. Blazdell, J. R. G. Evans, M. J. Edirisinghe, P. Shaw, M.J. Binstead, J. Mater. Sci. Lett. 14, 1562(1995).
- [15] P. Dudek, Arch. Metall. Mater. 58 (4), 1415 (2013).
- [16] H. K. Garg, R. Singh, J Cent. South. Univ. T. 22, 3705(2015).
- [17] F. Ning, W. Cong, J. Qiu, J. Wei, S. Wang, Compos. Part B-Eng. 80, 369(2015).
- [18] J. Mireles, A. Adame, D. Espalin, F. Medina, R. Winker, T. Hoppe, B. Zinniel, R. Wicker, Analysis of sealing methods for FDM-fabricated parts. Technical Report, W.M. Keck Center for 3D Innovation. 2011, The Univ. of Texas, El Paso.
- [19] L. Hao, M.M. Savalani, R.A. Harris, Y. Zhang, K.E. Tanner, Int. J Comput. Appl. T. 36(1), 25 (2009).
- [20] W. Zeng, Y. Guo, K. Jiang, Appl Mech Mater. 26-28, 616 (2010).
- [21] H. Zheng, J. Zhang, G. Wang, Z. Xu, Mater. Lett. 60(9-10), 1219 (2006).
- [22] D. D. Gu, W. Meiners, K. Wissenbach, R. Poprawe, Int. Mater. Rev. 57(3), 133 (2012).
- [23] A. B. Spierings, C. Leinenbach, C. Kenel, K. Wegener, Rapid Prototyping J. 21(2), 130 (2015).
- [24] D. Gu, Y. Shen, Mater. Lett. 60(29-30), 3664 (2006).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-1847e83b-bd00-490b-8250-8158bb275a6e