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Enriching STEP Product Model With Geometric Dimension and Tolerance Information for One-Dimensional Tolerance Analysis

机译:用几何尺寸和公差信息丰富STEP产品模型以进行一维公差分析

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摘要

Information exchange and sharing become a necessity for digital factory but they have been more challenging as the industry is computerized more. This is mainly because the capabilities of computerized systems have grown significantly in a very rapid pace in their own information structure, and they require to retrieve various data from different computer systems. ISO I0303-STEP has been developed to provide a neutral format for exchanging product data. However, implementation of STEP has several issues, including the following two: (1) the complete STEP file should be processed even for querying a small set of data, and (2) information required for realizing any functional activity (e.g., any analysis on any part of a product) is not explicitly identified. Hence, in this study, functionality-based conformance classes (FCCs) are developed to organize the current conformance classes (CCs) (which are the classes required to be implemented fully in order to be conformant to any particular STEP standard) for supporting different functional activities. Following the concept of data exchange specification (DEX)/template, several templates that are repeatedly used small information groups are introduced in order to create manageable sets of data constructs. In this study, the FCCs for 1D tolerance analysis are developed by enriching the available STEP information models with GD&T. The use of extended STEP models is illustrated with a case study.
机译:信息交换和共享成为数字工厂的必要条件,但是随着行业计算机化程度的提高,它们变得更具挑战性。这主要是因为计算机化系统的功能以其自身的信息结构以非常快的速度显着增长,并且它们需要从不同的计算机系统检索各种数据。已开发ISO I0303-STEP,以提供用于交换产品数据的中性格式。但是,STEP的实现存在几个问题,其中包括以下两个问题:(1)即使查询少量数据,也应处理完整的STEP文件;(2)实现任何功能活动(例如,对任何功能进行分析)所需的信息产品的任何部分)均未明确标识。因此,在本研究中,开发了基于功能的一致性类(FCC)以组织当前的一致性类(CC)(为完全符合任何特定的STEP标准,需要完全实现这些类)以支持不同的功能活动。遵循数据交换规范(DEX)/模板的概念,引入了几个反复使用的小型信息组模板,以创建可管理的数据结构集。在本研究中,通过用GD&T丰富可用的STEP信息模型来开发用于一维公差分析的FCC。案例研究说明了扩展STEP模型的使用。

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  • 来源
    《Journal of Computing and Information Science in Engineering》 |2017年第2期|021004.1-021004.10|共10页
  • 作者单位

    ASME Department of Mechanical Engineering, Cukurova University, Saricam, Adana 01330, Turkey;

    ASME Department of Mechanical and Aerospace Engineering, Syracuse University, Syracuse, NY 13244;

    ASME Department of Energy, Advanced Manufacturing Office, Office of Energy Efficiency and Renewable Energy (EERE), Washington, DC 20585;

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