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An Ontology for the Autonomous Reconfiguration of a Flexible Fixture Device

机译:柔性夹具设备的自主重新配置的本体

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The need for reconfigurable manufacturing systems has long been recognized as a key factor to gain the necessary flexibility for economical production of small batch sizes.Automation of the reconfiguration processes is a challenge both on the hardware and the software level.Addressing this issue in the field of fixture design,a new reconfigurable fixture device for a CNC milling machine has been developed.The developed vise contains interchangeable and customizable jaws enabling the secure fixture of a variety of workpiece geometries.To enable automated reconfiguration,a reasoning system is needed that can determine feasible fixture configurations based on the given workpiece and part as well as the available fixture components.In this paper,an ontology for representing fixture design and reconfiguration knowledge for vise-type flexible fixtures is presented.The ontology builds on and extends an existing ontology for modular fixture design.The creation of the ontology is based on a systematic building methodology,going from informal to formal concept definitions in a middle-out approach.The core concepts and relations of the ontology are presented and the ontology is validated both on the informal and on the formal level by its ability to find feasible fixture configurations,i.e.,appropriate vise jaw pairs to fix example workpieces.The ontology can represent type-specific fixture designs in an unambiguous way and can hence serve as a basis for the development of applications needed to create an autonomous fixture design system.
机译:长期以来,人们一直认为对可重配置制造系统的需求是获得小批量经济生产所需灵活性的关键因素。可重配置过程的自动化在硬件和软件层面均面临挑战。夹具设计的基础上,开发了一种用于数控铣床的可重新配置的新型夹具设备。已开发的虎钳包含可互换和可定制的钳口,可确保对各种几何形状的工件进行固定。为了实现自动重新配置,需要一种推理系统来确定基于给定的工件和零件以及可用的夹具组件的可行夹具配置。本文提出了一种表示夹具设计和夹具配置柔性夹具的重新配置知识的本体。该本体在现有本体的基础上进行了扩展。模块化夹具设计。本体的创建基于系统tematic的构建方法,从中间到非正式的方法,从非正式的定义到正式的概念定义。介绍了本体的核心概念和关系,并通过其找到可行的夹具配置的能力在非正式和正式的层次上对本体进行了验证本体可以以明确的方式表示特定类型的夹具设计,因此可以作为开发自主夹具设计系统所需的应用程序的基础。

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  • 来源
    《Journal of Computing and Information Science in Engineering》 |2013年第2期|021003.1-021003.11|共11页
  • 作者

    Thomas Gmeiner; Kristina Shea;

  • 作者单位

    Virtual Product Development Group,Institute of Product Development,Technische Universitaet Muenchen,Boltzmannstr. 15,85748 Garching,Germany;

    Engineering Design and Computing Laboratory,Department of Mechanical and Process Engineering,ETH Zurich,8092 Zurich,Switzerland;

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