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Un approccio analitico basato sui grafi per lo studio funzionale di prodotti industriali

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[1]. K. Ulrich, S. Eppinger, “Product Design and Development”. McGraw-Hill, 2003.

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[7]. K. H. Rosen, “Discrete Mathematics and its Applications”. McGraw-Hill, 1999.

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[12]. L. Dobrjanskyj, J. Freudenstein, “Some Application of Graph Theory to the Structural Analysis of Mechanism”, Journal of Engineering for Industry, 67, 1967.

[13]. ] A. Kusiak, E. Szczerbicki, “Transforming from Conceptual to Embodiment Design”. IIE Transaction, 25, 1993.

[14]. C. Toffalori, “Teoria della Computabilità e della Complessità”, McGraw-Hill, 2005.

[15]. L. Al-Hakim, A Kusiak, J. Mattew, “A Graph-teoretic Approach to Conceptual Design with Functional Perspectives”, Computer Aided Design, 32, 2000.

[16]. O. Shai, “Transforming Engineering Problems trough Graph Representation”. Advanced Engineering Informatica, 17, 2003.

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[17]. T. Kurtoglu, M. I. Campbell, “A Graph Grammar Based Framework for Automated Concept Generation”, International Design Conference – Design 2006.

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[19]. R. B. Stone, K. L. Wood, “Development of a Functional Basis for Design”, Journal of Mechanical Design, vol. 122, December 2000.

[20]. S. Rizzuti, L. De Napoli, F. Gianpà, F. Lofranco, “Axiomatic design as a means of finding contraddictionin an integrated approach for product design”. ICAD 2009.

[21]. S. Rizzuti, L. De Napoli, F. Gianpà, F. Lofranco , “Application of Clustered Graphs to Functional Analysis for Product Development”. ADM-INGEGRAF 2009.

[22]. Matlab R2008b Tutorial,© 1984-2008 The MathWorks, Inc.

[23]. F. Bruno, M.  Muzzupappa, S. Rizzuti, “A Software  Tool for Supporting  the  Functional Conceptual  Design  of  Industrial  Products”,  XIII  ADM  ‐  XV  INGEGRAF  International  Conference  on  Tools  and  Methods Evolution in Engineering Design, 2003.

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