Domain-Specific Modelling of Micro Manufacturing Processes for the Design of Alternative Process Chain

D. Rippel, M. Lütjen, M. Freitag
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引用次数: 2

Abstract

In the context of an industrial production of micro components, the planning and configuration of process chains constitutes a major factor of success for the involved companies. Besides very small tolerances and high quality requirements, high production speeds have to be achieved. Moreover, so called size-effects introduce additional uncertainties to the planning process. While the modelling methodology “Micro Process Planning and Analysis” provides a series of tools and methods to achieve a detailed planning and configuration of process chains in micro manufacturing, the high level of detail requires a comparably large amount of manual work, as well as a broad knowledge about available processes. Moreover, several processes can be substituted to achieve specific forms and shapes, while providing their own advantages and disadvantages for the overall production system. This article describes an extension to the methodology, which enables an automatic selection of suitable processes using geometry focused annotations. While these annotations only add minor efforts to the modelling process, they can be used to automatically derive alternative process chains. Particularly for production systems offering a broad range of processes, this extension reduces the manual effort in modelling and evaluating alternative process chains.
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面向可选工艺链设计的微制造过程领域特定建模
在微型部件工业生产的背景下,流程链的规划和配置构成了相关公司成功的主要因素。除了非常小的公差和高质量要求外,还必须实现高生产速度。此外,所谓的规模效应给规划过程带来了额外的不确定性。虽然建模方法“微工艺规划和分析”提供了一系列工具和方法来实现微制造过程链的详细规划和配置,但高水平的细节需要相当大量的手工工作,以及对可用工艺的广泛了解。此外,几种工艺可以替代以实现特定的形式和形状,同时为整个生产系统提供各自的优点和缺点。本文描述了该方法的扩展,它支持使用以几何为中心的注释自动选择合适的过程。虽然这些注释只给建模过程增加了很小的工作量,但它们可用于自动派生可选流程链。特别是对于提供广泛过程的生产系统,这种扩展减少了建模和评估替代过程链的人工工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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