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Modeling of Tension Control System with Passive Dancer Roll for Automated Fiber Placement

机译:自动纤维放置中无源舞者卷张力控制系统的建模

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The fiber tension should be kept constant during the automated placement of fiber prepreg. The velocity of the fiber placement end-effector moving on complex aircraft panel mould surface varies rapidly, which greatly disturbs the precision of tension control. This paper proposes a tension control strategy combining active control and passive control. The pay-off motor controls the fiber tension directly and a passive dancer roll is designed theoretically as the equipment for attenuation of tension disturbance to realize the real-time compensation of low-frequency velocity variations. The nonlinear model of tension control system, which includes the dynamics of the passive dancer roll, is established, and the effect of dancer roll parameters on its disturbances attenuation performance is analyzed. The controller is designed using the H∞ mixed sensitivity method. An experimental tension control precision about 2% is obtained at stable placement speed on the automated fiber placement (AFP) machine. The experiments also indicated that the tension would not vary over 1?N at a maximum acceleration of 4?m/s2.
机译:在纤维预浸料的自动放置期间,纤维张力应保持恒定。在复杂的飞机板模具表面上移动的纤维放置末端效应器的速度迅速变化,这极大地扰乱了张力控制的精度。本文提出了一种结合主动控制和被动控制的张力控制策略。切换电机直接控制纤维张力,并且无源舞者辊设计为衰减张力扰动的设备,以实现低频速度变化的实时补偿。建立了张力控制系统的非线性模型,包括被动舞者卷的动态,分析了舞者辊参数对其干扰衰减性能的影响。控制器使用H∞混合灵敏度方法设计。在自动纤维放置(AFP)机器上以稳定的放置速度获得约2%的实验张力控制精度。实验还表明,在4μm/ s2的最大加速度下,张力不会超过1?n。

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