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Exploring the Manual Forming of Complex Geometry Composite Panels for Productivity and Quality Gains in Relation to Automated Forming Capabilities

机译:探索复杂几何复合面板的手动成形,以实现自动化成型能力的生产率和质量收益

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In a variety of industries there is a growing need to manufacture high quality carbon fibre epoxy matrix composite structures at greater production rates and lower costs than has historically been the case. This has developed into a desire for the automation of the manufacture of components, and in particular the lay-up phase, with Automated Tape Laying (ATL) and Fibre Placement (AFP) the most popular choices. When used for large primary structures there are such potential gains to be had that both techniques have seen rapid implementation into manufacturing environments. But significant concerns remain and these have limited their wider adoption into secondary structure manufacturing, where manual forming of woven broadgoods is dominant. As a result the manufacture of secondary structures is generally explored for costs reduction through drape simulation and lower cost materials. Improvements in lay-up quality and yield are possible, but the effect of this approach on productivity and build costs has perhaps been under explored. This paper investigates this by reviewing the manufacture of a complex geometry representative of a fixed trailing edge panel, identifying the current forming philosophy and then applying novel drape simulation tools to improve on that forming route to facilitate productivity increases. This was possible by the development of unambiguous forming instruction sets, that when combined with some preforming solutions further increased the productivity and cost reduction potential. The low cost manual forming was compared to an in-house AFP productivity assessment, and it was found that the rates were comparable on an hourly deposition rate, but when assessed in terms of other metrics manual forming could still remain the most suitable manufacturing route. The work has shown that for complex structures manual forming with well developed drape solutions can still be the most low cost and productive process.
机译:在各种行业中,越来越需要以更高的生产率制造高质量的碳纤维环氧基质复合结构,并且成本低于历史上的成本。这已经发展成为对组件制造的自动化的需求,特别是具有自动胶带铺设(ATL)和纤维放置(AFP)最受欢迎的选择。当用于大型主要结构时,有这种技术可以看到这两种技术都可以快速实现到制造环境中。但是,仍然存在重大问题,这些令人担忧与二级结构制造的更广泛的采用限制,其中手动形成编织宽良品是显性的。结果,通常探索二次结构的制造,以降低通过覆盖仿真和更低的成本。筹设质量和产量的改善是可能的,但这种方法对生产力和建立成本的影响可能已经探索。本文通过审查制造具有固定后缘面板的复杂几何形状的制造来调查这一点,识别目前的形成哲学,然后应用新颖的悬垂仿真工具来改进该形成途径以便于促进生产率的增加。通过开发明确的成形指令集可以实现这一点,即与一些预成型解决方案结合进一步提高了生产率和成本降低潜力。将低成本的手动成形与内部AFP生产力评估进行比较,发现该速率在每小时沉积速率上可比,但在其他度量手动成形方面评估时仍然是最合适的制造路线。该工作表明,对于复杂的结构,具有良好发育的悬垂解决方案的手动成形仍然是最低的成本和生产过程。

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