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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Innovative Tape Placement Robotic Cell: High Flexibility System to Manufacture Composite Structural Parts With Variable Thickness
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Innovative Tape Placement Robotic Cell: High Flexibility System to Manufacture Composite Structural Parts With Variable Thickness

机译:创新的胶带放置机器人单元:高柔性系统,用于制造厚度可变的复合结构零件

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摘要

Until today, there are only automated processes able to manufacture composite components with a constant thickness. This work focuses on the need to find a system able to manufacture composite structural parts characterized by a variable thickness. An innovative tape placement robotic cell composed of a deposition integrated system and an anthropomorphic robot with 6DOF is shown in this work. The mean characteristics of the designed deposition integrated system, are (i) alternate deposition movement, (ii) tape compaction system, and (Hi) tape tension control system by proportional-integral-derivative (PID) controllers. With these,systems, it is possible to obtain a high flexibility robotic cell that allows to manufacture variable thickness components with good mechanical volumetric properties. After the design phase, the system has been realized and afterwards it has been validated by analyzing the experimental tests with the quality of some benchmark manufactured by the innovative cell.
机译:直到今天,只有自动化工艺能够制造厚度恒定的复合材料组件。这项工作的重点是寻找一种能够制造厚度可变的复合结构部件的系统。这项工作展示了一个创新的胶带放置机器人单元,该单元由沉积集成系统和具有6DOF的拟人机器人组成。设计的沉积集成系统的平均特性是(i)交替沉积运动,(ii)带压实系统和(Hi)通过比例积分微分(PID)控制器进行的带张力控制系统。利用这些系统,可以获得高柔性机器人单元,其允许制造具有良好机械体积特性的可变厚度的部件。在设计阶段之后,已经实现了该系统,然后通过分析实验测试来验证该系统,并通过创新型电池制造的某些基准进行了质量测试。

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