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2013, vol. 11, br. 1, str. 45-54
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Razvoj metoda reverznog inženjerstva u kreiranju 3D CAD modela implantata kolena
Development of method for reverse engineering in creation of 3D CAD model of knee implant
aTechnical College of Applied Sciences, Zrenjanin bUniverzitet u Novom Sadu, Tehnički fakultet 'Mihajlo Pupin', Zrenjanin c'Eftimie Murgu' University of Resita, Romania
e-adresa: aleksandar.rajic@vts-zr.edu.rs
Sažetak
U radu je opisana procedura primene tehnologije reverznog inženjerstva za kreiranje 3D CAD modela femoralne komponente totalne endoproteze kolena, na bazi postojećeg topljivog modela za precizno livenje. Kada se jednom prihvati CAD zapis podataka, on će tokom čitavog životnog ciklusa komponente implantata kolena, predstavljati središte za upravljanje informacijama o njegovoj geometriji. Tako se promene u konstrukciji komponente, u slučaju potrebe, mogu provesti brzo i za sve CAx-alate koji prate razvoj proizvoda stajati konzistentno na raspolaganju. Procedura je definisana u okviru rada na međunarodnom IPA projektu prekogranične saradnje Rumunija - Republika Srbija, u kojem se proučavaju tehnologije reverznog inženjerstva i aditivne proizvodnje.
Abstract
The paper gives a description of the Reverse Engineering technology application procedure for the creation of 3D CAD model of femoral component of total knee endoprothesis based on available meltable wax model for investment casting. Once CAD data record is accepted it presents an information management center for its geometry throughout the lifetime of the knee implant component. Thus, in the case a change in the component construction should be made, it can be managed quickly and consistently made available for all CAx-tools which accompany the product development. The procedure is defined within the work conducted in the international IPA cross-border cooperation project Romania-Republic of Serbia where the Reverse Engineering technologies and Additive Manufacturing (AM) are studied.
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Reference
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1
|
Cheah, C.M., Chua, C.K., Lee, C.W., Feng, C., Totong, K. (2004) Rapid prototyping and tooling techniques: A review of applications for rapid investment casting. London: Springer-Verlag Limited
|
|
Gibson, I. (2005) Advanced manufacturing technology for medical applications, reverse engineering, software conversion and rapid prototyping. John Wiley & Sons Ltd
|
|
Gibson, I., Rosen, D.W., Stucker, B. (2010) Additive manufacturing technologies, rapid prototyping to direct digital manufacturing. Springer Science
|
4
|
Milovanović, J., Trajanović, M. (2007) Primene rapid prototyping tehnologija u medicini. Facta universitatis - series: Mechanical Engineering, vol. 5, br. 1, str. 79-85
|
|
Rajić, A., Stojadinović, S. (2008) Applying of direct metal laser sintering (DMLS) process in investment casting. u: Metal and non-metal materials, MNM - 2008, Scientific/professional symposium, Zenica, Bosnia & Herzegovina, 15. - 16. May
|
|
Rajić, A., Manić, M. (2010) Rapid prototyping tehnologije u preciznom livenju metalnih implantata. IMK-14 - Istraživanje i razvoj, vol. 16, br. 2, str. 39-44
|
3
|
Trajanović, M., Korunović, N., Milovanović, J., Vitković, N., Mitković, M. (2010) Primena računarskih modela samodinamizirajućeg unutrašnjeg fiksatora po Mitkoviću u saniranju trauma femura. Facta universitatis - series: Mechanical Engineering, vol. 8, br. 1, str. 27-38
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