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基于带有溅射金属电极的介电弹性体的用于用户交互的多功能传感器阵列

Multifunctional Sensor Array for User Interaction Based on Dielectric Elastomers with Sputtered Metal Electrodes.

作者信息

Gratz-Kelly Sebastian, Cerino Mario, Philippi Daniel, Göttel Dirk, Nalbach Sophie, Hubertus Jonas, Schultes Günter, Heppe John, Motzki Paul

机构信息

Smart Material Systems, ZeMA-Center for Mechatronics and Automation Technology, 66121 Saarbruecken, Germany.

Sensors and Thin Film Group, University of Applied Sciences, 66117 Saarbruecken, Germany.

出版信息

Materials (Basel). 2024 Dec 6;17(23):5993. doi: 10.3390/ma17235993.

Abstract

The integration of textile-based sensing and actuation elements has become increasingly important across various fields, driven by the growing demand for smart textiles in healthcare, sports, and wearable electronics. This paper presents the development of a small, smart dielectric elastomer (DE)-based sensing array designed for user control input in applications such as human-machine interaction, virtual object manipulation, and robotics. DE-based sensors are ideal for textile integration due to their flexibility, lightweight nature, and ability to seamlessly conform to surfaces without compromising comfort. By embedding these sensors into textiles, continuous user interaction can be achieved, providing a more intuitive and unobtrusive user experience. The design of this DE array draws inspiration from a flexible and wearable version of a touchpad, which can be incorporated into clothing or accessories. Integrated advanced machine learning algorithms enhance the sensing system by improving resolution and enabling pattern recognition, reaching a prediction performance of at least 80. Additionally, the array's electrodes are fabricated using a novel sputtering technique for low resistance as well as high geometric flexibility and size reducibility. A new crimping method is also introduced to ensure a reliable connection between the sensing array and the custom electronics. The advantages of the presented design, data evaluation, and manufacturing process comprise a reduced structure size, the flexible adaptability of the system to the respective application, reliable pattern recognition, reduced sensor and line resistance, the adaptability of mechanical force sensitivity, and the integration of electronics. This research highlights the potential for innovative, highly integrated textile-based sensors in various practical applications.

摘要

随着医疗保健、体育和可穿戴电子产品等领域对智能纺织品的需求不断增长,基于纺织品的传感和驱动元件的集成在各个领域变得越来越重要。本文介绍了一种小型的、基于智能介电弹性体(DE)的传感阵列的开发,该阵列设计用于人机交互、虚拟物体操纵和机器人技术等应用中的用户控制输入。基于DE的传感器因其灵活性、轻质特性以及能够无缝贴合表面而不影响舒适度,是纺织品集成的理想选择。通过将这些传感器嵌入纺织品中,可以实现持续的用户交互,提供更直观且不引人注目的用户体验。该DE阵列的设计灵感来自于一种可穿戴的柔性触摸板,它可以集成到服装或配饰中。集成先进的机器学习算法通过提高分辨率和实现模式识别来增强传感系统,预测性能至少达到80。此外,阵列的电极采用一种新型溅射技术制造,具有低电阻、高几何灵活性和尺寸可缩减性。还引入了一种新的压接方法,以确保传感阵列与定制电子设备之间的可靠连接。所提出的设计、数据评估和制造工艺的优点包括结构尺寸减小、系统对各自应用的灵活适应性、可靠的模式识别、降低的传感器和线路电阻、机械力灵敏度的适应性以及电子设备的集成。这项研究突出了创新的、高度集成的基于纺织品的传感器在各种实际应用中的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d415/11643587/56c6b9f91ff2/materials-17-05993-g001.jpg

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