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Concurrent computer-aided design system for supporting technological aspect of cutting die design

机译:支持切削模具设计技术方面的并行计算机辅助设计系统

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摘要

Designing of stamping dies is a complex procedure where comprehensive knowledge is needed, in order to understand the interactions of various interdependent parameters that are extensively engaged within all development phases of a sheet-metal stamping product. Many important die design decisions are made based on technological knowledge, which is especially closely related to understanding the activities of product design and process planning. Due to the lack of such valuable knowledge within conventional three-dimensional computer-aided design systems, a concurrent system for supporting technological aspect of die design process is proposed within this article. The system that was developed on top of computer-aided three-dimensional interactive application CATIA V5 product lifecycle management software enables die design automation on the basis of constraint solving. Product design and process planning activities are accomplished concurrently by system's modules. Finally, it extracts relevant technological information and decisions directly to the die design phase. The system also represents unique basis for the development of some modules capable of automatic reasoning, regarding die design and performing actions on this basis. The experimental results showed that the use of this system significantly shortens sheet-metal product development cycle, improves its quality, and enables efficient training of inexperienced designers.
机译:冲压模具的设计是一个复杂的过程,需要全面的知识,以便了解钣金冲压产品所有开发阶段广泛涉及的各种相互依赖的参数之间的相互作用。许多重要的模具设计决策都是基于技术知识做出的,这与理解产品设计和过程计划的活动尤其密切相关。由于在常规的三维计算机辅助设计系统中缺少此类有价值的知识,因此在本文中提出了用于支持模具设计过程的技术方面的并发系统。该系统是在计算机辅助三维交互式应用程序CATIA V5产品生命周期管理软件之上开发的,可在约束解决的基础上实现模具设计自动化。产品设计和过程计划活动由系统模块同时完成。最后,它直接在模具设计阶段提取相关的技术信息和决策。该系统还代表了一些能够自动推理的模块的独特基础,这些模块可以进行模具设计并在此基础上执行动作。实验结果表明,该系统的使用大大缩短了钣金产品的开发周期,提高了质量,并且可以对没有经验的设计师进行有效的培训。

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