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Object-oriented design of product assembly feature data requirements in advanced assembly planning

机译:产品装配特征数据在高级装配计划中的面向对象设计

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摘要

Purpose - This paper introduces a schema for the product assembly feature data in an object-oriented and module-based format using Unified Modeling Language (UML). To link production with product design, it is essential to determine at an early stage which entities of product design and development are involved and used at the automated assembly planning and operations. To this end, it is absolutely reasonable to assign meaningful attributes to the parts' design entities (assembly features) in a systematic and structured way. As such, this approach empowers processes such as motion planning and sequence planning in assembly design. Design/methodology/approach - The assembly feature data requirements are studied and definitions are analyzed and redefined. Using object-oriented techniques, the assembly feature data structure and relationships are modeled based on the identified requirements as five UML packages (Part, three-dimensional (3D) models, Mating, Joint and Handling). All geometric and non-geometric design data entities endorsed with assembly design perspective are extracted or assigned from 3D models and realized through the featured entity interface class. The featured entities are then associated (used) with the mating, handling and joints features. The AssemblyFeature interface is realized through mating, handling and joint packages related to the assembly and part classes. Each package contains all relevant classes which further classify the important attributes of the main class. Findings - This paper sets out to provide an explanatory approach using object-oriented techniques to model the schema of assembly features association and artifacts at the product design level, all of which are essential in several subsequent and parallel steps of the assembly planning process, as well as assembly feature entity assignments in design improvement cycle. Practical implications - The practical implication based on the identified advantages can be classified in three main features: module-based design, comprehensive classification, integration. These features help the automation and solution development processes based on the proposed models much easier and systematic. Originality/value - The proposed schema's comprehensiveness and reliability are verified through comparisons with other works and the advantages are discussed in detail.
机译:目的-本文介绍了使用统一建模语言(UML)以面向对象和基于模块的格式的产品装配特征数据的架构。要将生产与产品设计联系起来,必须尽早确定在自动装配计划和操作中涉及并使用了哪些产品设计和开发实体。为此,以系统和结构化的方式为零件的设计实体(装配特征)分配有意义的属性是绝对合理的。这样,此方法可在装配设计中授权诸如运动计划和顺序计划之类的过程。设计/方法/方法-研究装配特征数据要求,并分析和重新定义定义。使用面向对象的技术,基于识别出的需求,将装配特征数据结构和关系建模为五个UML包(零件,三维(3D)模型,配合,接合和处理)。从装配体设计角度认可的所有几何和非几何设计数据实体均从3D模型中提取或分配,并通过功能实体接口类实现。然后将特征实体与交配,处理和关节特征关联(使用)。 AssemblyFeature接口是通过与装配和零件类相关的配合,处理和接头封装实现的。每个软件包都包含所有相关的类,这些类进一步对主类的重要属性进行分类。调查结果-本文旨在提供一种解释性的方法,该方法使用面向对象的技术在产品设计级别上对装配特征关联和工件的模式进行建模,所有这些对于装配计划过程的多个后续步骤和并行步骤都是必不可少的。以及设计改进周期中的装配特征实体分配。实际含义-基于已识别优势的实际含义可分为三个主要特征:基于模块的设计,全面分类,集成。这些功能可帮助基于建议模型的自动化和解决方案开发流程更加轻松和系统。原创性/价值-通过与其他作品进行比较来验证所提议的方案的全面性和可靠性,并详细讨论其优点。

著录项

  • 来源
    《Assembly Automation》 |2018年第1期|97-112|共16页
  • 作者单位

    Department of Machine Design, Industrial Systems Engineering and Management School, KTH Royal Institute of Technology, Stockholm, Sweden;

    Department of Machine Design, Industrial Systems Engineering and Management School, KTH Royal Institute of Technology, Stockholm, Sweden;

    Department of Production Engineering, Industrial Systems Engineering and Management School, KTH Royal Institute of Technology, Stockholm, Sweden;

    Department of Production Engineering, Industrial Systems Engineering and Management School, KTH Royal Institute of Technology, Stockholm, Sweden;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Automatic assembly; Object-oriented design; Assembly feature; Evolvable production system;

    机译:自动组装;面向对象的设计;组装特征不断发展的生产系统;

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