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Prefabrication and Automated Micro Assembly of Piezoceramic Fiber Array Transducers in Microstructured Surfaces of Sheet Metals

机译:钣金微结构表面中压电陶瓷纤维阵列换能器的预制和自动微装配

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In order to realize resource-efficient products and manufacturing processes, lightweight construction solutions have become enormously significant in many areas. Generally, material savings are always done at the expense of rigidity. However, additional weight can be saved through functional integration. One possibility is given by the functional material piezoceramic. This material can be used as sensor or actuator. A new approach for the structural integration of piezoceramic in sheet metals is with the technique joining by forming. Therefore, PZT fibers are assembled in a local microstructure of a sheet metal, which is followed by the joining operation. The article is a contribution to transfer this approach into a high-volume production process, which is necessary for the industrial area to take root. Manufacturing processes for PZT fiber arrays with minimal manufacturing tolerances are presented. The process of stacking PZT plates with distance elements and subsequent dicing into slices is shown as a suitable variant. Furthermore, an automated assembly system is tested with regard to the measuring technology. A machine vision and a chromatic confocal sensor are compared in the assembly system. The results show that the machine vision system is better suited for pose measurement of the PZT fiber arrays and the chromatic confocal sensor achieves better results for the microstructured sheet metals.
机译:为了实现资源节约型产品和制造过程,轻型建筑解决方案在许多领域都变得极为重要。通常,节省材料总是以牺牲刚性为代价的。但是,通过功能集成可以节省更多的重量。一种功能是压电陶瓷。该材料可用作传感器或执行器。钣金中压电陶瓷结构集成的一种新方法是通过成型连接的技术。因此,将PZT纤维组装在金属薄板的局部微观结构中,然后进行连接操作。本文为将这种方法转换为大批量生产过程做出了贡献,这对于工业领域扎根是必不可少的。介绍了具有最小制造公差的PZT光纤阵列的制造工艺。将带有距离元素的PZT板堆叠并随后切成薄片的过程显示为合适的变体。此外,针对测量技术对自动化装配系统进行了测试。在组装系统中比较了机器视觉和彩色共焦传感器。结果表明,机器视觉系统更适合用于PZT纤维阵列的姿态测量,并且彩色共聚焦传感器对微结构化钣金具有更好的结果。

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