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Integration and application of feature recognition and mould manufacturing planning navigating process

机译:特征识别与模具制造计划导航流程的集成与应用

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摘要

Plastic injection mould manufacturing is diverse and complex. Traditional mould manufacturing planning often relied on experience and techniques. Therefore, in order not to affect the operation or even cause some loss of the enterprises, geometry information of computer-aided design (CAD) should be converted into manufacturing information of computer-aided process planning (CAPP) and CAM for automatic feature recognition to shorten the lead time. This study is the secondary development in a CAD environment creating a network plastic injection mould manufacturing navigating system and CAD/CAPP for integration and application. As part design is feature-based, each processing step can be regarded as a feature. By applying the hybrid recognition technology of the graph-based approach, the rule-based approach and hint-based approach in the analysis of part feature appearances, it can automatically categorise all the manufacturing features of the part and convert them into corresponding processes. The CAPP developed in this study can convert the part manufacturing features into corresponding processes and plan the part process sequence according to the process priority constraint relations. As proved by the case studies, the use of CAPP in this study can reduce planning time by 87%. It can provide users with a reference regarding process sequence, and speed up the part planning progress. Coupled with the mould manufacturing navigating process, it can achieve automatic design and manufacturing.
机译:注塑模具的制造是多样而复杂的。传统的模具制造计划通常依赖于经验和技术。因此,为了不影响运营甚至造成企业损失,应将计算机辅助设计(CAD)的几何信息转换为计算机辅助过程计划(CAPP)和CAM的制造信息,以自动识别特征。缩短交货时间。这项研究是在CAD环境中的二次开发,它创建了网络塑料注塑模具制造导航系统和CAD / CAPP进行集成和应用。由于零件设计是基于特征的,因此每个处理步骤都可以视为一个特征。通过将基于图的方法,基于规则的方法和基于提示的方法的混合识别技术应用于零件特征外观的分析中,它可以自动对零件的所有制造特征进行分类,并将它们转换为相应的过程。本研究开发的CAPP可以将零件制造特征转换为相应的过程,并根据过程优先级约束关系来计划零件过程顺序。案例研究证明,在本研究中使用CAPP可以将计划时间减少87%。它可以为用户提供有关过程顺序的参考,并加快零件计划进度。加上模具制造的导航过程,就可以实现自动化的设计与制造。

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