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GAJA: 3D CAD methodology for developing a parametric system for the automatic (re)modeling of the cutting components of compound washer dies

机译:GAJA:3D CAD方法论,用于开发参数系统以自动(重新)建模复合清洗机模具的切削组件

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摘要

For the designing of cutting-dies is a complex and experience-based process, it is poorly supported by conventional 3D CAD software. Thus, the majority of design activities, including the (re)modeling of those cutting die-components that are directly responsible for performing shaping operations on a sheet-metal stamping part, traditionally still need to be carried-out repetitively, separately, and manually by the designer. To eliminate some of these drawbacks and upgrade the capabilities of conventional 3D CAD software, this paper proposes a new methodology for the development of a parametric system capable of automatically performing a (re)modeling process of compound washer dies’ cutting-components. The presented methodology integrates CATIA V5 built-in modules, including Part Design, Assembly Design and Knowledge Advisor, publication mechanism, and compound cutting die-design knowledge. The system developed by this methodology represents an ‘intelligent’ assembly template composed of two modules GAJA1 and GAJA2, respectively. GAJA1 is responsible for the direct input of the die-design problem regarding the shape, dimensions and material of the stamping part, its extraction in the form of geometric features, and the transferring of relevant design parameters and features to the module GAJA2. GAJA2 interprets the current values for the input parameters and automatically performs the modeling process of cutting die-components, using die-design knowledge and the company’s internal design and manufacturing standards. Experimental results show that this system significantly shortens the modeling-time for cutting the die-components, improves the modeling-quality, and enables the training of inexperienced designers.
机译:由于切割模的设计是一个复杂且基于经验的过程,因此常规3D CAD软件对其的支持很差。因此,大多数设计活动,包括直接负责在钣金冲压件上执行成形操作的那些切削模具组件的(重新)建模,传统上仍然需要重复,分别和手动进行由设计师。为了消除其中的一些缺点并升级常规3D CAD软件的功能,本文提出了一种新的方法论,用于开发能够自动执行复合清洗机模具切割部件的(重新)建模过程的参数化系统。所提出的方法集成了CATIA V5内置模块,包括零件设计,装配设计和知识顾问,发布机制以及复合切削模具设计知识。用这种方法开发的系统代表一个“智能”装配模板,分别由两个模块GAJA1和GAJA2组成。 GAJA1负责直接输入与冲压零件的形状,尺寸和材料有关的模具设计问题,以几何特征的形式提取模具设计问题以及将相关的设计参数和特征转移到模块GAJA2。 GAJA2使用模具设计知识以及公司的内部设计和制造标准来解释输入参数的当前值,并自动执行切割模具组件的建模过程。实验结果表明,该系统显着缩短了切割模具组件的建模时间,提高了建模质量,并且可以培训经验不足的设计师。

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