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Effect of Fabric Integration on the Physical and Optical Performance of Electroluminescent Fibers for Lighted Textile Applications

机译:织物集成对轻型纺织应用电致发光纤维物理和光学性能的影响

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The advent of electroluminescent (EL) fibers, which emit light in response to an applied electric field, has opened the door for fabric-integrated light emission and displays in textiles. However, there have been few technical publications over the past few years about the performance of these light emitting fibers inside functional fabrics. Thus, there is limited information on the effect of integration on the physical and optical performance of such devices. In this work, alternating current powder-based EL (ACPEL) fibers were evaluated under a range of operating conditions both inside and outside of a knit matrix to understand how the EL fiber device performance changed inside a functional fabric. The device efficiency, adjustable brightness, and mechanical properties of these fibers are presented. The effects of fabric integration on the light-emitting fibers as well as the supporting knit fabric are discussed as they relate to the practical applications of this technology.
机译:电致发光(EL)纤维的出现是响应外加电场而发光的,这为织物集成的光发射和在纺织品中展示提供了方便。然而,在过去的几年中,关于这些发光纤维在功能性织物内部的性能的技术出版物很少。因此,关于集成对此类设备的物理和光学性能的影响的信息有限。在这项工作中,对交流粉末基EL(ACPEL)纤维在针织基体内外的一系列操作条件下进行了评估,以了解功能性织物内部EL纤维器件的性能如何变化。介绍了这些纤维的器件效率,可调节的亮度和机械性能。讨论了织物集成对发光纤维以及支撑针织物的影响,因为它们与该技术的实际应用有关。

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