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Review of Reconfigurable Assembly Systems Technologies for Cost Effective Wing Structure Assembly

机译:复制成本系统技术对成本效益翼结构组件的回顾

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Airbus commercial wings are assembled manually in dedicated steel structures. The lead time to design, manufacture and commission these fixtures is often in excess of 24 months. Due to the nature of these fixtures, manufacturing is slow in responding to changes in demand. There is underused capacity in some areas and insufficient ramp-up speed where increased production rate is needed. Reconfigurable Manufacturing Systems and Reconfigurable Assembly Systems (RAS) provide an approach to system design that provides appropriate capacity when needed. The aim of the paper is to review RAS technologies that are suitable for cost-effective wing structure assembly and what knowledge gaps exist for a RAS to be achieved. The paper examines successful cases of RAS and reviews relevant system design approaches. Cost savings are acknowledged and tabularised where demonstrated in research. The research gaps to realising a RAS for wing assembly are identified and different approaches are considered. A table summarises the technologies and methods that are reviewed and acknowledges feasibility and costs.
机译:空中客车商品翼手动在专用钢结构中组装。设计,制造和委托这些夹具的提前时间通常超过24个月。由于这些固定装置的性质,制造业缓慢响应需求变化。在某些领域有未充分利用的能力,需要增加生产率的增加速度。可重新配置的制造系统和可重新配置的组装系统(RAS)提供了一种在需要时提供适当的容量的系统设计方法。本文的目的是审查适用于经济高效的翼结构组件的RAS技术以及待实现RA的知识间隙。该论文检查了RA的成功案例,并审查了有关的系统设计方法。节省成本并表明在研究中展示的表明。鉴定了用于实现翼组件RA的研究差距,并且考虑了不同的方法。表总结了审查和确认可行性和成本的技术和方法。

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