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KNOWLEDGE BASED REVERSE ENGINEERING METHODOLOGY

机译:基于知识的逆向工程方法

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摘要

In Reverse Engineering, commercial solutions such as Geomagic™ or RapidForm™ or CAD software such as CATIA™ provide very efficient toolboxes that enable to rebuild geometry. Moreover, some of them provide segmentation algorithms, sketchers and/or many other facilities rebuilding tools in order to help to recover the original surface. Those software's enable to rebuild the geometry of a technical object as a set of functions (protrusion, revolution, sweep...), they enable to add colours and textures, and they enable realistic kinematical animation and many other things. Unfortunately, all those toolboxes present a lack of geometry analysis tools. The geometry of a given product is the consequence of a complete process, it is important, considering Reverse Engineering activities, to try to recover any evidence of its past life (including socio-economical aspects, the design intents of the former designer, its different uses...) from its geometry in order to produce a good quality 3D model. Such models can provide important possibilities for Reverse Engineering. It enables to study the product more efficiently than a geometrical model based on a mesh or on free form surfaces. This paper proposes approaches and methodologies for using knowledge to rebuild CAD model to the best closer to the original CAD model that could have been obtained by the original designer. Such a model is feature based. They can be functional features or manufacturing features. For a good rebuilt of 3D model, the geometry of these features is driven by parameters, rules and relationships that are provided by the former designer.
机译:在逆向工程中,商业解决方案(例如Geomagic™或RapidForm™)或CAD软件(例如CATIA™)提供了非常有效的工具箱,可以重建几何图形。此外,它们中的一些提供了分割算法,草绘器和/或许多其他工具重建工具,以帮助恢复原始表面。这些软件能够将技术对象的几何形状重建为一组功能(突出,旋转,清扫...),可以添加颜色和纹理,还可以实现逼真的运动动画和许多其他功能。不幸的是,所有这些工具箱都缺乏几何分析工具。给定产品的几何形状是整个过程的结果,考虑逆向工程活动,重要的是设法恢复其过往寿命的任何证据(包括社会经济方面,前任设计师的设计意图,不同之处)。用途...)从其几何图形生成高质量的3D模型。这样的模型可以为逆向工程提供重要的可能性。与基于网格或自由曲面的几何模型相比,它可以更有效地研究产品。本文提出了使用知识来重建CAD模型的方法和方法,以最接近原始设计者可能已经获得的原始CAD模型。这样的模型是基于特征的。它们可以是功能部件,也可以是制造部件。为了更好地重建3D模型,这些特征的几何形状由前设计师提供的参数,规则和关系驱动。

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