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Direct-Write Spray Coating of a Full-Duplex Antenna for E-Textile Applications

机译:用于电子纺织应用的全双工天线的直接写入喷涂

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摘要

Recent advancements in printing technologies have greatly improved the fabrication efficiency of flexible and wearable electronics. Electronic textiles (E-textiles) garner particular interest because of their innate and desirable properties (i.e., conformability, breathability, fabric hand), which make them the ideal platform for creating wireless body area networks (WBANs) for wearable healthcare applications. However, current WBANs are limited in use due to a lack of flexible antennas that can provide effective wireless communication and data transfer. In this work, we detail a novel fabrication process for flexible textile-based multifunctional antennas with enhanced dielectric properties. Our fabrication process relies on direct-write printing of a dielectric ink consisting of ultraviolet (UV)-curable acrylates and urethane as well as 4 wt.% 200 nm barium titanate (BT) nanoparticles to enhance the dielectric properties of the naturally porous textile architecture. By controlling the spray-coating process parameters of BT dielectric ink on knit fabrics, the dielectric constant is enhanced from 1.43 to 1.61, while preserving the flexibility and air permeability of the fabric. The novel combination textile substrate shows great flexibility, as only 2 N is required for a 30 mm deformation. The final textile antenna is multifunctional in the sense that it is capable of operating in a full-duplex mode while presenting a relatively high gain of 9.12 dB at 2.3 GHz and a bandwidth of 79 MHz (2.260–2.339 GHz) for each port. Our proposed manufacturing process shows the potential to simplify the assembly of traditionally complex E-textile systems.
机译:印刷技术的最新进步大大提高了柔性和可穿戴电子产品的制造效率。电子纺织品(E-Textiles)Garner特别兴趣,因为它们是天生的和理想的属性(即,适当的性,透气性,织物手),这使得它们为可穿戴医疗应用程序创建无线体积网络(WBANS)的理想平台。然而,由于缺乏柔性天线可以提供有效的无线通信和数据传输,目前的WBAN在使用中受到限制。在这项工作中,我们详细介绍了一种新颖的制造工艺,用于柔性纺织基多功能天线,具有增强的电介质特性。我们的制造过程依赖于由紫外线(UV)丙烯酸酯和氨基甲酸酯组成的介电油墨的直接写印刷,以及4重量%200nm钛酸钡(BT)纳米颗粒,以增强天然多孔纺织架构的介电性能。通过在针织织物上控制BT介电油墨的喷涂工艺参数,介电常数从1.43到1.61增强,同时保持织物的柔韧性和透气性。新颖的组合纺织基材显示出极高的柔韧性,只需2 n毫米变形即可。最终纺织天线是多功能的,因为它能够以全双工模式运行,同时呈现为2.3 GHz的相对高增益为9.12 dB,每个端口为79 MHz(2.260-2.39 GHz)的带宽。我们所提出的制造过程显示了简化传统复杂的电子纺织系统组装的潜力。

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