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Towards Industry 4.0: The Future Automated Aircraft Assembly Demonstrator

机译:迈向工业4.0:未来的自动飞机组装演示器

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As part of the Future Automated Aircraft Assembly Demonstrator developed by the University of Nottingham, this paper presents a new flexible production environment for the complete manufacturing of high-accuracy high-complexity low-volume aerospace products. The aim is to design a product-independent manufacturing and assembly system that can react to fluctuating product specifications and demands through self-reconfiguration. This environment features a flexible, holistic, and context-aware solution that includes automated positioning, drilling and fastening processes, and is suitable for different aircraft structures with scope to address other manufacturing domains in the future (e.g. automotive, naval and energy). The assembly cell features industrial robots for the handling of aircraft components, while intelligent metrology and control systems monitor the cell to ensure that the assembly process is safe and the target tolerances are met. These three modules are integrated into a single standardized interface, requiring only one operator to control the cell. Performance analyses have shown that, using the reconfigurable production environment described hereafter, a positioning accuracy better than ±0.1 mm can be achieved for large airframe components.
机译:作为诺丁汉大学开发的未来飞机自动组装演示器的一部分,本文提出了一种新的灵活生产环境,用于完整制造高精度,高复杂度,小批量的航空航天产品。目的是设计一种独立于产品的制造和装配系统,该系统可以通过自我重新配置来应对不断变化的产品规格和需求。该环境具有灵活,整体和上下文相关的解决方案,其中包括自动定位,钻孔和紧固过程,适用于不同飞机结构,其范围涵盖了未来的其他制造领域(例如汽车,海军和能源)。装配单元配备了用于处理飞机部件的工业机器人,而智能计量和控制系统则对装配单元进行监控,以确保装配过程安全并达到目标公差。这三个模块集成到单个标准化接口中,仅需一个操作员即可控制单元。性能分析表明,使用下文所述的可重构生产环境,大型机体部件的定位精度可达到±0.1 mm。

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