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Characterization and optimization of an inkjet-printed smart textile UV-sensor cured with UV-LED light

机译:用UV-LED灯固化喷墨印刷智能纺织UV传感器的特征和优化

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For the development of niche products like smart textiles and other functional high-end products, resource-saving production processes are needed. Niche products only require small batches, which makes their production with traditional textile production techniques time-consuming and costly. To achieve a profitable production, as well as to further foster innovation, flexible and integrated production techniques are a requirement. Both digital inkjet printing and UV-light curing contribute to a flexible, resource-efficient, energy-saving and therewith economic production of smart textiles. In this article, a smart textile UV-sensor is printed using a piezoelectric drop-on-demand printhead and cured with a UV-LED lamp. The UV-curable ink system is based on free radical polymerization and the integrated UV-sensing material is a photochromic dye, Reversacol Ruby Red. The combination of two photoactive compounds, for which UV-light is both the curer and the activator, challenges two processes: polymer crosslinking of the resin and color performance of the photochromic dye. Differential scanning calorimetry (DSC) is used to characterize the curing efficiency of the prints. Color measurements are made to determine the influence of degree of polymer crosslinking on the developed color intensities, as well as coloration and decoloration rates of the photochromic prints. Optimized functionality of the textile UV-sensor is found using different belt speeds and lamp intensities during the curing process.
机译:对于智能纺织品和其他功能高端产品等利基产品的开发,需要节省资源的生产流程。利基产品只需要小批次,这使其生产与传统的纺织生产技术耗时且昂贵。为实现有利可图的生产,并进一步促进创新,灵活和综合的生产技术是必需品。两种数字喷墨印刷和紫外线固化都有助于灵活,资源效率,节能,以及智能纺织品的经济生产。在本文中,使用压电滴按需打印头打印智能纺织UV传感器,并用UV-LED灯固化。 UV可固化油墨系统基于自由基聚合,并且集成的紫外线感测材料是光致变色染料,Reversacol Ruby Red。两种光学活性化合物的组合,紫外线是丙晶均均配有丙醇和活化剂,挑战两种方法:聚合物交联树脂和光致变色染料的颜色性能。差分扫描量热法(DSC)用于表征印刷的固化效率。进行颜色测量以确定聚合物交联程度对显影色强度的影响,以及光致变色印刷的着色和脱色率。在固化过程中使用不同的皮带速度和灯强度找到纺织UV传感器的优化功能。

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