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An Intelligent Cavity Layout Design System for Injection Moulds  

Hu, Weigang (Industrial Research Institute Swinburne (IRIS), Swinburne University of Technology)
Masood, Syed (Industrial Research Institute Swinburne (IRIS), Swinburne University of Technology)
Publication Information
Abstract
This paper presents the development of an Intelligent Cavity Layout Design System (ICLDS) for multiple cavity injection moulds. The system is intended to assist mould designers in cavity layout design at concept design stage. The complexities and principles of cavity layout design as well as various dependencies in injection mould design are introduced. The knowledge in cavity layout design is summarized and classified. The functionality, the overall structure and general process of ICLDS are explained. The paper also discusses such issues as knowledge representation and case-based reasoning used in the development of the system. The functionality of the system is illustrated with an example of cavity layout design problem.
Keywords
Intelligent design; cavity layout design; injection mould design; case-based reasoning; design support system;
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1 Kruth, J.P. and Willems, R. (1994), 'Intelligent support system for the design of injection moulds', Journal of Engineering Design, 4(5), 339-351
2 Irani, R.K. Kim, B.H. and Dixon, J.R. (1995), 'Towards automated design of the feed system of injection moulds by integrating CAE, iterative redesign and features', Transactions ASME Journal Engineering for Industry, 117(1), 72-77
3 Britton, G.A., Tor, S.B., et. al. (2001), 'Modelling functional design information for injection mould design', International Journal of Production Research, 39(12), 2501-2515
4 Park, S.J. and Kwon, T.R. (1998), 'Thermal and Design sensitivity analyses for cooling system of injection mould. Part 2:Design sensitivity analysis', Transactions ASME Journal Manufacturing Science & Engineering, 120(2), 296-305
5 Maher, M.L. et. al.. (1996), 'Developing Case-Based Reasoning for Structural Design', Intelligent System & Their Applications, IEEE Expert, USA, June
6 Chen, L-L and Chou, S-Y (1995), 'Partial visibility for selecting a parting direction in mould and die design', Journal of Manufacturing Systems, 14(5), 319-330
7 Kwong, C.K. and Smith, G.F. (1998), 'A computational system for process design of injection moulding: combining blackboard-based expert system and casebased reasoning approach', International Journal of Advanced Manufacturing Technology, 14(4), 239-246
8 Lee, R-S, Chen, Y-M,and Lee, C-Z (1997), 'Development of a concurrent mould design system: a knowledge based approach', Computer Integrated Manufacturing Systems, 10(4), 287-307
9 Menges, G. et. al. (1986), 'How to Make Injection Molds', Hanser Publisher, Munich
10 Mok, C.K., Chin, K.S., and Ho, J.K.L. (2001), 'An interactive knowledge-based CAD system for mould design in injection moulding processes', International Journal of Advanced Manufacturing Technology, 17(1), 27-38
11 Nee, A.Y.C., Fu, M.W. et. al., (1997), 'Determination of optimal parting directions in plastic injection mould design', Annals CIRP, 46(1), 429-432
12 The Haley Enterprise, Inc. (1994), 'Documentation of RETE++'
13 Raviwongse, R. and Allada, V. (1997), 'Artificial neural network based model for computation of injection mould complexity', International Journal of Advanced Manufacturing Technology, 13(8), 577-586
14 Ong, S.K. Prombanpong, S. and Lee, K.S. (1995), 'An object-oriented approach to computer-aided design of a plastic injection mould', Journal of Intelligent Manufacturing, 6(1), 1-10
15 Lin, J.C. (2001), 'Optimum gate design of freedom injectionmould using the abductive network', International Journal of Advanced Manufacturing Technology, 17(4), 297-304