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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Directly printed wearable electronic sensing textiles towards human-machine interfaces
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Directly printed wearable electronic sensing textiles towards human-machine interfaces

机译:直接打印可穿戴电子传感纺织品,朝向人机界面

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摘要

Gesture control is an emerging technological goal in the field of human-machine interfaces (HMIs). Optical fibers or metal strain sensors as sensing elements are generally complex and not sensitive enough to accurately capture gestures, and thus there is a need for additional complicated signal optimization. Electronic sensing textiles hold great promise for the next generation of wearable electronics. Here, soft, deformable and ultrahigh-performance textile strain sensors are fabricated by directly stencil printing silver ink on pre-stretched textiles towards HMIs. These textile strain sensors exhibit ultrahigh sensitivity (a gauge factor of approximate to 2000), stretchability (up to 60% strain), and durability (10000 stretching cycles). Through a simple auxiliary signal processing circuit with Bluetooth communication technology, an intelligent glove assembled with these textile strain sensors is prepared, which is capable of detecting the full range of fingers' bending and can translate the fingers' bending into wireless control commands. Immediate applications, for example, as a smart car director, for wireless typing, and as a remote PowerPoint controller, bring out the great practical value of these textile strain sensors in the field of wearable electronics. This work provides a new prospective for achieving wearable sensing electronic textiles with ultrahigh performance towards HMIs, and will further expand their impact in the field of the Internet of Things.
机译:手势控制是人机界面(HMIS)领域的新兴技术目标。作为传感元件的光纤或金属应变传感器通常是复杂的并且不足以准确地捕获手势,因此需要额外的复杂信号优化。电子传感纺织品对下一代可穿戴电子产品具有很大的承诺。这里,通过直接模板印刷银墨水在预拉伸的纺织品上朝向HMIS直接制造柔软,可变形和超高性能纺织菌株传感器。这些纺织菌株传感器表现出超高敏感性(近似达2000的量因子),可拉伸性(高达60%的菌株)和耐久性(& 10000拉伸循环)。通过具有蓝牙通信技术的简单辅助信号处理电路,准备了一种与这些纺织菌株传感器组装的智能手套,能够检测到全系列的手指弯曲,并且可以将手指弯曲转换为无线控制命令。例如,即时应用程序,作为无线打字的智能汽车导演,作为远程​​PowerPoint控制器,可以在可穿戴电子设备领域中提出这些纺织菌应变传感器的巨大实用价值。这项工作为实现了具有超高性能的可穿戴式传感电子纺织品提供了一种新的前景,并将进一步扩展其对互联网领域的影响。

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