Rapid manufacturing technologies. Part 1: Optimization and improvement of rapid tooling technology-Coproinmold

Authors

  • Esther Serres Moliner Universidad Autónoma de Barcelona
  • Milton Coba Salcedo Universidad Politécnica de Cataluña

DOI:

https://doi.org/10.17533/udea.redin.343239

Keywords:

rapid prototyping, rapid tooling, stereolitography, Coproinmold

Abstract

Making pieces directly from a CAD model is considered an important method for reduction of production time and manufacturing costs of new products. Rapid prototyping techniques are a way of producing conceptual models in a quick and simple fashion. Rapid tooling is the method of producing tools of general use, aimed specifically at obtaining small and medium series of pieces. This article studies the optimization of Coproinmold technology for obtaining molds for plastic injection.

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Author Biographies

Esther Serres Moliner, Universidad Autónoma de Barcelona

SCAMM PLUS, Servicios Tecnológicos S. L., Applus + Materiales y Procesos Industriales.

Milton Coba Salcedo, Universidad Politécnica de Cataluña

Escuela Técnica Superior de Ingenieros Industriales de Barcelona

References

T. Nakagada, “Rapid Prototyping: Modern Manufacture”. Cap. 13. Mechanical Engineering Handbook. Ed. Frank Kreith. Boca Raton. CRC Press LLC. 2000. pp. 107-116.

D.T. Pham, R.S Gault D. T. Pham, “A comparison of rapid prototyping technologies”. Int. J. Mach. Tools Manufact. Vol. 38. U. K. 1998. pp. 1257-1287. DOI: https://doi.org/10.1016/S0890-6955(97)00137-5

X. Yan, P. Gu. “A review of rapid prototyping technologies and systems”. Computer-Aided Design. Vol. 28. N.o 4. U. K. 1996. pp. 307-318. DOI: https://doi.org/10.1016/0010-4485(95)00035-6

S.O. Onuh, Y.Y.Yusuf. “Rapid prototyping technology: Applications and benefits for rapid product development”. Journal of Intelligent Manufact. Vol. 10. U. K. 1999. pp. 301-311. DOI: https://doi.org/10.1023/A:1008956126775

D. T. Pham, S.S. Dimov. “Rapid prototyping and rapid-the key enablers for rapid manufacturing”. Proc. Inst. Mech. Engrs. Vol. 217. Part C. J. Mechanical Engineering Science. U.K. 2003. pp. 1-23. DOI: https://doi.org/10.1243/095440603762554578

A. Rosochowski, A. Matuszak. “Rapid tooling: the state of the art”. Journal of Materials Processing Technology. Vol. 106. U. K. 2000. pp. 191-198. DOI: https://doi.org/10.1016/S0924-0136(00)00613-0

C. K. Chua, K. H. Hong, S. L. Ho. “Rapid tooling technology. Part 1. A comparative study”. The Int. J. of Advan. Manufact. Technol. Vol. 15. U. K. 1999. pp. 604-608. DOI: https://doi.org/10.1007/s001700050108

J. Ginebra, P. Grima, A. Prat, I. Sole, X. Tort-Martorell, M.X. Valls. X Prácticas de estadística con MINITAB. CPDA. Universidad Politécnica de Cataluña. Barcelona, España. 1999.

D. Montgomery. Diseño y análisis de experimentos. Limusa-Wiley. México D. F., México. 2002.

ISO 4287:1997. “Especificación Geométrica de Productos (GPS)”. Calidad Superficial: Método del Perfil; términos, definiciones y parámetros del estado superficial.

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Published

2006-07-29

How to Cite

Serres Moliner, E. ., & Coba Salcedo, M. . (2006). Rapid manufacturing technologies. Part 1: Optimization and improvement of rapid tooling technology-Coproinmold. Revista Facultad De Ingeniería Universidad De Antioquia, (36), 7–20. https://doi.org/10.17533/udea.redin.343239