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Study on thrust force and torque sensor signals in drilling of Al/CFRP stacks for aeronautical applications

机译:航空应用Al / CFRP烟囱钻孔中的推力和扭矩传感器信号研究

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Multi-material stack products made of carbon fibre reinforce polymers (CFRP) and light-weight metal alloys, such as aluminium alloys, are becoming increasingly employed for aerospace applications. When composite laminates are stacked with metal alloy sheets, the drilling process becomes more complex due to the diverse properties of the stacked materials which involve different wear mechanisms and different drilling parameters. In this framework, the aim of this paper is to investigate the drilling process of Al/CFRP stacks for aeronautical applications through an experimental testing campaign under different drilling conditions. In order to study the thrust force and torque generated during the drilling process, a multiple sensor system is employed for data acquisition, and an advanced methodology for sensor signal processing in the time and frequency domain is developed.
机译:由碳纤维增强聚合物(CFRP)和轻质金属合金(例如铝合金)制成的多材料堆栈产品正越来越多地用于航空航天应用。当复合层压板与金属合金板堆叠在一起时,由于堆叠材料的不同特性(涉及不同的磨损机制和不同的钻孔参数),钻孔过程变得更加复杂。在此框架下,本文的目的是通过在不同钻井条件下进行的试验测试活动,来研究用于航空应用的Al / CFRP烟囱的钻井过程。为了研究钻井过程中产生的推力和扭矩,采用了多传感器系统进行数据采集,并开发了时域和频域中传感器信号处理的先进方法。

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