首页> 外文会议>ASME international mechanical engineering congress and exposition >AUTOMATIC GEOMETRIC RECOGNITION OF WELD BEADS FOR SUPPORTING VIRTUAL PROTOTYPING AND COST ESTIMATION OF WELDING
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AUTOMATIC GEOMETRIC RECOGNITION OF WELD BEADS FOR SUPPORTING VIRTUAL PROTOTYPING AND COST ESTIMATION OF WELDING

机译:支持虚拟原型的焊接珠的自动几何识别和焊接成本估算

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Welding is widely used in industry for products made pf joined sheet metal parts and beams. The virtual prototyping process of welds in standard CAD systems relies on functionalities to manually add weld beads to the assembly models. Weld beads can be in the form of symbolic annotations or 3D solid representations. The size of products in terms of number of parts and required weld beads makes this process cumbersome and time consuming. This paper presents a method to analyze CAD models of product assemblies in order to automatically identify possible welds among the parts using geometric recognition rules. Adjacent faces are detected and Boolean operators on planar loops are used to identify bead paths. Beads are then split in homogeneous portions based on the topology of the connected parts. The geometrical analysis of the connected parts also allows a bead to be characterized in terms of thickness, type, length and accessibility. Finally, the user is provided with functionalities to edit manufacturing properties or exclude unwanted welds. The approach is applied at the design stage to rapidly come to the definition of the welds. If integrated with a CAD tool, this can be used as input for an efficient detailing phase. Moreover, the paper presents an application for the cost estimation of the designed welded product. Weld beads are given a realization time, and hence a cost, based on their geometric size and employed welding technology. Some examples from the industry are presented to show benefits in terms of time savings and accuracy of the cost estimation process.
机译:焊接在工业上广泛用于由金属薄板连接的零件和梁制成的产品。在标准CAD系统中,焊缝的虚拟原型制作过程依赖于将焊缝手动添加到装配模型中的功能。焊缝可以采用符号注释或3D实体表示的形式。根据零件数量和所需焊缝的大小,产品的尺寸使该过程既麻烦又费时。本文提出了一种分析产品装配体CAD模型的方法,以便使用几何识别规则自动识别零件之间的可能焊缝。检测到相邻的面,并使用平面循环上的布尔运算符来标识磁珠路径。然后根据所连接零件的拓扑将珠子分成均匀的部分。连接部分的几何分析还可以使珠子的厚度,类型,长度和可及性得以表征。最后,为用户提供了编辑制造属性或排除不需要的焊缝的功能。该方法在设计阶段就被应用,以快速得出焊缝的定义。如果与CAD工具集成在一起,则可以将其用作有效详图阶段的输入。此外,本文提出了一种用于设计焊接产品的成本估算的应用。根据焊缝的几何尺寸和所采用的焊接技术,给焊缝提供了实现时间,从而节省了成本。提出了一些来自行业的示例,以显示在节省时间和成本估算过程的准确性方面的好处。

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