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CFRP Crash Absorbers in Small UAV: Design and Optimization

机译:CFRP小UAV中的撞击器:设计和优化

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The high number of hull losses is a main concern in the UAV field, mostly due to the high cost of on-board equipment. A crashworthiness design can be helpful to control the extent and position of crash impact damage, minimizing equipment losses. However, the wide use of composite materials has recently put the accent on the lack of data about the behavior of these structures under operative loads, such as the crash conditions. This paper presents the outcome of a set of tests carried out to achieve a controlled crush of UAV structures, and to maximize the Specific Energy Absorption. In this work, a small-scale experimental test able to characterize the energy absorption of a Carbon-fiber-reinforced polymer under compression was developed introducing self-supporting sinusoidal shape specimens, which avoid the need for complex anti-buckling devices. The specimens were produced with different auto-triggering configurations and fibers' continuity was interrupted in selected position and for different extent in order to investigate the Specific Energy Absorption of the weakened laminates. The auto-triggering configuration was able to control the position of the initial failure of the specimen without any decrease in safety performance. This new kind of very light crash absorber can be used in small UAV to reduce the crash loads in the avionic and payload bay. With reference to a small UAV designed and manufactured at University of Bologna, an optimization of the crash absorbers positions has been carried out in order to achieve the best results in terms of energy dissipation.
机译:大量船体损失是UAV领域的主要问题,主要是由于车载设备的高成本。崩溃设计可能有助于控制碰撞冲击损坏的程度和位置,最大限度地减少设备损失。然而,复合材料的广泛使用最近将重点放在操作负荷下缺乏关于这些结构的行为的数据,例如碰撞条件。本文介绍了一组测试的结果,以实现对无人机结构的受控挤压,并最大限度地提高特定能量吸收。在这项工作中,开发了一种小规模的实验测试,其能够在压缩下进行碳纤维增强聚合物的能量吸收,从而引入自支撑正弦形状标本,这避免了复杂的抗屈曲装置的需要。用不同的自动触发配置产生标本,并且在选定的位置中断纤维的连续性,并且在不同程度上被中断,以研究弱化层压板的特定能量吸收。自动触发配置能够控制样本初始故障的位置,而不会下降安全性能。这种新型非常轻的碰撞吸收器可用于小无人机,以减少航空电子和有效载荷舱中的碰撞载荷。参考在博洛尼亚大学设计和制造的小无人机,已经进行了碰撞吸收剂位置的优化,以便在能量耗散方面获得最佳结果。

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