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Development of a Modular Structure-based Changeable Manufacturing System with High Adaptability  

Park, Hong-Seok (School of Mechanical and Automotive Engineering, University of Ulsan)
Choi, Hung-Won (School of Mechanical and Automotive Engineering, Graduated School, University of Ulsan)
Publication Information
Abstract
Today, manufacturers are forced to acknowledge that the life cycles of products are becoming shorter. In the case of the door trim assembly field, the highly frequent introduction of new products and the continuous increase in product varieties leads to the demand for redesigning assembly systems more often. Modular manufacturing systems can be an important issue in helping to overcome these problems. This paper presents the development of a modular assembly system for the door trim, and because it takes the change drives into consideration, this system is highly flexible in adapting to changes in the environment.
Keywords
Modular design; Change drives; Changeable assembly system; Knowledge-based system;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
Times Cited By Web Of Science : 4  (Related Records In Web of Science)
Times Cited By SCOPUS : 5
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1 Zaeh, M. F., Cisek, R. and Rimpau, C., "Planning of Continuous Factory Structure Adaptation," Journal of Production Engineering Vol. 13, No. 1, pp.167-170, 2006
2 Chryssolouris, G., "Manufacturing Systems: Theory and Practice," Springer Verlag, pp. 11-53, 2006
3 Denkena, B. and Drabow, G., "Modular Factory Structures: Increasing Manufacturing System Transformability," CIRP 2nd International Conference on Reconfigurable Manufacturing, 2003
4 Nofen, D. and Klussmann, J., "Transformability by Modular Facility Structures," CIRP 2nd International Conference on Reconfigurable Manufacturing, 2003
5 Park, H. S., "A Knowledge-Based System for Assembly Sequence Planning," International Journal of Precision Engineering and Manufacturing, Vol. 1, No. 2, pp. 35-42, 2000
6 Urbani, A., "Life Cycle Costing Calculation for Manufacturing Systems by Means of Reconfigurability Analysis," Springer Verlag, pp. 643-658, 2006
7 Abele, E., Liebeck, T. and Woern, A., " Measuring Flexibility in Investment Decisions for Manufacturing Systems," Annals of CIRP, Vol. 55, No. 1, pp. 433-440, 2006   DOI   ScienceOn
8 Lee, S. B., Kim, D. H.and Kim, B. M., "Development of An Optimal Layout Design System in Multihole Blanking Process," International Journal of Precision Engineering and Manufacturing, Vol. 5, No. 1, pp. 36-41, 2004
9 Kim, S. C. and Choi, K. H., "Development of Flexible Manufacturing System Using Virtual Manufacturing Paradigm," International Journal of Precision Engineering and Manufacturing, Vol. 1, No. 1, pp. 84-90, 2000
10 Park, H. S. and Lee, H. B. "Development of Digital Laser Welding System," International Journal of Automotive Techonology, Vol. 7, No. 6, pp. 721-728, 2006
11 Eversheim, W., "Modular Plant Architecture-An Approach Towards Agility and Reconfigurability," wt Werkstattstechnik online, Vol. 91, No. 10, pp. 654-657, 2001
12 Bi, Z. M., William, A. G. and Lang, S. Y. T., "Analysis and Synthesis of Reconfigurable Robotics System," Journal of Concurrent Engineering, Vol. 12, No. 2, pp. 145-153, 2004   DOI   ScienceOn
13 Schuh, G., Brussel, H. V., Boër, C., Valckenaers, P., Sacco, M., Bergholz, M. and Harre, J., "A Model-based Approach to Design Modular Plant Architecture," Proceedings of the 36th CIRP International Seminar Progress in Virtual Manufacturing Systems, 2003
14 Wiendahl, H.-P., Nofen, D. and Klussmann, J. H., "Planung modularer Fabriken - Vorgehen und Beispiele aus der Praxis (Planning of modular factories - approach and practical examples)," Carl Hanser Verlag, pp. 112-128, 2005
15 Sheen, D. M., Lee, C. H., Nor, S. D. and Lee, K. W., "A Process Planning System for Machining of Dies for Auto- Body Production - Operation Planning and NC Code Post- Processing," International Journal of Precision Engineering and Manufacturing, Vol. 2, No. 3, pp. 69-78, 2001