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A constraint-based approach for assessing the capabilities of existing designs to handle product variation

机译:基于约束的方法,用于评估现有设计处理产品变化的能力

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摘要

All production machinery is designed with an inherent capability to handle slight variations in product. This is initially achieved by simply providing adjustments to allow, for example, changes that occur in pack sizes to be accommodated, through user settings or complete sets of change parts. By the appropriate use of these abilities most variations in product can be handled. However when extreme conditions of setups, major changes in product size and configuration, are considered there is no guarantee that the existing machines are able to cope. The problem is even more difficult to deal with when completely new product families are proposed to be made on an existing product line. Such changes in product range are becoming more common as producers respond to demands for ever increasing customization and product differentiation. An issue exists due to the lack of knowledge on the capabilities of the machines being employed. This often forces the producer to undertake a series of practical product trials. These however can only be undertaken once the product form has been decided and produced in sufficient numbers. There is then little opportunity to make changes that could greatly improve the potential output of the line and reduce waste. There is thus a need for a supportive modelling approach that allows the effect of variation in products to be analyzed together with an understanding of the manufacturing machine capability. Only through their analysis and interaction can the capabilities be fully understood and refined to make production possible. This thesis presents a constraint-based approach that offers a solution to the problems above. While employing this approach it has been shown that, a generic process can be formed to identify the limiting factors (constraints) of variant products to be processed. These identified constraints can be mapped to form the potential limits of performance for the machine. The limits of performance of a system (performance envelopes) can be employed to assess the design capability to cope with product variation. The approach is successfully demonstrated on three industrial case studies.
机译:所有生产机械都具有固有的能力,可以处理产品中的细微变化。最初,这是通过简单地提供调整来实现的,例如,可以通过用户设置或整套更换零件来容纳包装尺寸的变化。通过适当使用这些功能,可以处理产品中的大多数变化。但是,如果考虑到极端的设置条件,产品尺寸和配置的重大变化,则不能保证现有机器能够应对。当提议在现有产品线上制造全新的产品系列时,该问题将更加难以解决。随着生产商对不断增长的定制和产品差异的需求做出响应,产品范围的这种变化变得越来越普遍。由于缺乏对所使用机器功能的了解而存在问题。这通常迫使生产者进行一系列实际的产品试验。但是,只有在确定了产品形式并以足够数量生产后,才能进行这些操作。因此,几乎没有机会进行更改,从而可以极大地提高生产线的潜在产量并减少浪费。因此,需要一种支持建模方法,该方法允许对产品变化的影响进行分析,并了解制造机器的能力。只有通过他们的分析和互动,才能充分理解和完善这些功能以使生产成为可能。本文提出了一种基于约束的方法,为上述问题提供了解决方案。当采用这种方法时,已经表明,可以形成通用过程来识别要加工的变体产品的限制因素(约束)。这些确定的约束条件可以映射为形成机器性能的潜在极限。系统的性能极限(性能范围)可用于评估设计能力以应对产品变化。该方法已在三个工业案例研究中成功证明。

著录项

  • 作者

    Matthews Jason Anthony;

  • 作者单位
  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 English
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