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首页> 外文期刊>International Journal of Computer Integrated Manufacturing >Metrology-assisted robotic processing of aerospace applications
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Metrology-assisted robotic processing of aerospace applications

机译:航空航天应用的计量辅助机器人处理

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摘要

Modern aerospace structures tend to consist of large numbers of geometrically complex structural components which by their very nature tend to suffer from significant levels of physical distortion and are thus difficult to assemble. One solution to this problem is to use large complex jigs which physically control the shape of the parts. These jigs are usually loaded using either direct manual labour or manual labour assisted by cranes or lifting devices. The use of manual operations represents a significant health and safety risk and increased likelihood of damaging components during assembly. The application of automation in the processing of such structures has so far been confined to small product specific cells owing to difficulties in pre-defining and fixing the exact geometry and positioning of parts within the work volume. The use of specially designed jigs, fixtures and aids such as drilling templates can be adapted to support automation but are expensive, have long manufacturing lead times and cannot be economically modified for use on other aircraft types. The paper proposes a solution to the above problems using standard industrial robots and an advanced control and non-contact metrology systems. The developed methodology is generic and has been evaluated and demonstrated in a number of different applications. The application described in this paper is the assembly of regional jet fuselage panels. Results are presented along with an analysis of the accuracy and repeatability of the system and its elements.
机译:现代航空航天结构倾向于由大量几何复杂的结构部件组成,这些结构部件就其本质而言往往遭受很大程度的物理变形,因此难以组装。解决此问题的一种方法是使用大型复杂的夹具,这些夹具可以物理控制零件的形状。这些夹具通常使用直接人工或由起重机或起重设备辅助的人工来装载。手动操作的使用会带来重大的健康和安全风险,并且在组装过程中损坏组件的可能性也会增加。迄今为止,由于在工作空间内预先定义和固定零件的精确几何形状和定位方面存在困难,因此自动化在此类结构的处理中的应用仅限于特定于小型产品的单元。特殊设计的夹具,固定装置和辅助工具(例如钻孔模板)的使用可以适应自动化需求,但价格昂贵,制造周期长且无法经济地修改以用于其他飞机类型。本文提出了使用标准工业机器人以及先进的控制和非接触式计量系统来解决上述问题的解决方案。所开发的方法是通用的,已经在许多不同的应用程序中进行了评估和演示。本文所述的应用是区域喷气式飞机机身面板的组装。给出结果以及对系统及其元素的准确性和可重复性的分析。

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