CAD Tools and Algorithms for Product Design by Jordan J. Cox (auth.), Pere Brunet, Christoph M. Hoffmann,

By Jordan J. Cox (auth.), Pere Brunet, Christoph M. Hoffmann, Dieter Roller (eds.)

Systems to help the always shrinking product improvement cycles and the expanding caliber specifications want major improvements and new approaches.
In this e-book vital new instruments and algorithms for destiny product modeling structures are awarded. it really is in accordance with a seminar on the foreign convention and study middle for computing device technological know-how, Schloß Dagstuhl, Germany, awarded by way of across the world well-known specialists in CAD technology.

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Jr::'"_'-~F~ruRE " _ :'" m 0___ . :0 0"...... ":"~~ .... _... . oo . "oo . . ' ••••••• . ~ .... . . 0N MEANS FiUDg ageDt a) b) c) Fig. 2: Graphical representation of the assembly structure. Because of the hierarchical nature of the assembly structure representation, and the high number of components in an assembly product, a aD graphical visualization has been developed, for replacing the flat 2D representation. One of the major advantages offered by Chapter 1: Design, Assembly and Integration 37 using 3D representations of general structures is that it is more efficient to interact and browse the structure and to represent big structures made of tens or hundreds of components [RCC91].

Such graphics are then trans1ated into more complete and precise geometric models, which are essential to the design process, since: · they embody design intents, · they communicate such intents to other designers. There is a strong tendency in the academic research world to consider that such design intents would be better defined as functions or functional form features relating the functions to the geometry . This tendency spreads out in the CAD-CAM world since it has the strength of logic evidences.

There will be no more modifying surfaces until surface quality and/or shape character are achieved, but quality characteristics themselves will be predefined and changed respectively and the underlying surface will be adjusted by the system accordingly. e. a better surface quality in a shorter period of time) is possible even while maintaining the method of surface reconstruction. All goals FIORES aims at regarding the improvement ofthe aesthetic design workflow can be summarized as follows: • lntroduction of computer aided tools for target driven modeling ~ Avoiding tedious optimization loops ~ Avoiding physical models for evaluation ~ Avoiding surface reconstruction • Ensuring a high data quality of created CAD I CAS surfaces ~ N o quality loss between CAS and CAD ~ Avoiding physical models as reference models • Providing an intuitive user interface ~ Willingness of stylists to work with computers ~ Content users Project pIan and mid-term results The FIORES consortium was formed with the aim of connecting the fields of research, industrial application and CAD system suppliers.

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