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In-Line Integration of Sensors in Thermoplastic Composite Structures Using Novel Continuous Orbital Winding Technology

机译:采用新型连续轨道绕组技术在线集成传感器在热塑性复合材料结构中的一体化

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Currently there is a great demand for energy and resource efficient and also function integrating manufacturing processes. Therefore, suitable technologies and corresponding foundational researches are being pursued in the federal cluster of excellence "MERGE Technologies for Multifunctional Lightweight Structures" at the Chemnitz University of Technology. A part of this project is the development of the continuous orbital winding (COW) technology including the goal of a large-scale process used for special fiber-reinforced thermoplastic semi-finished products. This method is an inverted winding process. The winding core needs to perform only the feed motion. Furthermore, this allows synchronization to upstream and downstream process chains.Due to the modular structure of the machine concept, it is possible to integrate a sensor system during production without interrupting the process. For this purpose, a textile carrier tape with integrated electrically conductive fibers and applied sensors is embedded. Various silicon sensors, e.g. acceleration, pressure or stress sensors are applied by micro-injection molding. A so-called "interposer" is used as an electrical adapter between the microstructures of the sensor system and the mesostructures of the textile.In this article, basic investigations for the continuous processing of semi-finished thermoplastic structures and the integration of sensors are presented. It is intended to determine the bonding properties, possible structural thickening by the sensors and the resistance of the sensor systems and its electronic components to the process conditions.In summary, investigations are carried out to determine the parameters of the machine system as well as to determine the optimum processing conditions for the application of additional elements.
机译:目前对能源和资源有效的需求很大,还有整合制造过程的功能。因此,在Chemnitz技术大学的联邦卓越“多功能轻质结构合并技术”中,正在追求合适的技术和相应的基础研究。该项目的一部分是开发连续轨道绕组(牛)技术,包括用于特殊纤维增强热塑性半成品的大规模过程的目标。该方法是倒绕组过程。绕组芯需要仅执行进料运动。此外,这允许与上游和下游过程链同步。到机器概念的模块化结构,可以在不中断该过程的情况下在生产过程中集成传感器系统。为此目的,嵌入具有集成导电纤维和应用传感器的纺织载体胶带。各种硅传感器,例如通过微注射成型施加加速度,压力或应力传感器。所谓的“插入器”用作传感器系统的微观结构和纺织品的型材结构之间的电适配器。在本文中,提出了用于连续处理半成品热塑性结构的基本研究以及传感器的集成。 。它旨在确定粘合性能,通过传感器的可能结构增厚以及传感器系统的电阻及其电子元件到过程条件。在概要中,进行研究以确定机器系统的参数以及确定应用附加元素的最佳处理条件。

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