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Static and quasi-static Behavior of an Adaptive System to compensate Path Errors for Smart Fiber Placement

机译:自适应系统的静态和准静态行为,用于补偿智能光纤放置中的路径误差

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Smart fiber placement is an ambitious topic in current research for automated manufacturing of large-scale composite structures, e.g. wing covers. Adaptive systems get in focus to obtain a high degree of observability and controllability of the manufacturing process. In particular, vibrational issues and material failure have to be studied to significantly increase the production rate with no loss in accuracy of the fiber layup. As one contribution, an adaptive system has been developed to be integrated into the fiber placement head. It decouples the compaction roller from disturbances caused by misalignments, varying components' behavior over a large work area and acceleration changes during operation. Therefore, the smart system axially adapts the position of the compaction roller in case of disturbances. This paper investigates the behavior of the system to compensate quasi-static deviations from the desired path. In particular, the compensation efficiency of a constant offset, a linear drift with constant gradient and a single-curved drift is studied. Thus, the test bed with measurement devices and scenarios is explained. Based on the knowledge obtained by the experimental data, the paper concludes with a discussion of the proposed approach for its use under operating conditions and further implementation.
机译:在当前的研究中,智能纤维的放置是用于大型复合结构的自动化制造的一个雄心勃勃的课题。机翼罩。自适应系统成为获得生产过程高度可观察性和可控制性的焦点。特别是,必须研究振动问题和材料故障,以在不降低纤维铺放精度的情况下显着提高生产率。作为一项贡献,已经开发了一种自适应系统,可以将其集成到光纤铺放头中。它将压实辊与未对准,在较大工作区域上变化的部件行为以及运行过程中的加速度变化所引起的干扰分离。因此,在出现干扰的情况下,智能系统会轴向调整压实辊的位置。本文研究了系统的行为,以补偿与所需路径有关的准静态偏差。特别地,研究了恒定偏移,具有恒定梯度的线性漂移和单曲线漂移的补偿效率。因此,说明了带有测量设备和方案的测试台。基于实验数据获得的知识,本文最后讨论了在工作条件下使用该方法和进一步实施的建议方法。

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