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Non-Destructive Identification of Fibre Orientation in Multi-Ply Biaxial Laminates Using Contact Temperature Sensors

机译:使用接触温度传感器的多层双轴层压板中纤维取向的无损识别

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摘要

Fibre orientation within composite structures dictates the material properties of the laminate once cured. The ability to accurately and automatically assess fibre orientation of composite parts is a significant enabler in the goal to optimise the established processes within aftermarket aerospace industries. Incorrect ply lay-up results in a structure with undesirable material properties and as such, has the potential to fail under safe working loads. Since it is necessary to assure structural integrity during re-manufacture and repair assessment, the paper demonstrates a novel method of readily and non-destructively determining fibre orientation throughout multi-ply Biaxial woven composite laminates using point temperature contact sensors and data analysis techniques. Once cured, only the outermost laminates are visible to assess orientation. The inspection method is conducted visually, with reference guides to allow for rapid adoption with minimum training, as well as harnessing established temperature sensors within the Maintenance Repair and Overhaul (MRO) environment. The system is amenable to integration within existing repair/re-manufacture processes without significant impact to process flow. The method is able to identify noisy samples with an accuracy, precision and recall of 0.9, and for synthetically created samples of double the cure ply thickness, a precision of 0.75, a recall of 0.7 and an accuracy of 0.87.
机译:复合结构中的纤维取向决定了一旦固化的层压板的材料特性。准确性和自动评估复合部件的纤维方向的能力是一个重要的推动者,以优化售后市场航空航天行业内的既定流程。在具有不希望的材料特性的结构中不正确的层铺层导致具有不希望的材料性质的结构,因此在安全工作负载下具有失效的可能性。由于有必要在重新制造和修复评估期间确保结构完整性,因此使用点温度接触传感器和数据分析技术,阐述了在多层双轴编织复合材料层压板上容易和无损地确定纤维取向的新方法。一旦固化,只有最外层的层压板可以评估取向。检查方法在视觉上进行,参考指南,以允许快速采用最小训练,以及在维护修复和大修(MRO)环境中利用建立的温度传感器。该系统可用于在现有的修复/重建过程中集成,而不会对过程流动的显着影响。该方法能够以精度,精度和召回为0.9的噪声样品,并且对于固化帘布层的双加湿样品,精度为0.75,召回0.7,精度为0.87。

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