荧光纺织产品的实例分析

B. Mahltig, Vanessa Ernst, Lisa Schöder
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引用次数: 0

摘要

在波长较低的光照射下,荧光材料发出波长较高的光。在许多商业应用中,荧光材料将不可见的紫外线(UV)转化为可见光。这样可以获得额外的色彩效果和更高的可视性。荧光染料的一个典型应用领域是纺织领域。在这里,荧光纺织品有多种用途,例如增亮效果、光效和防紫外线。在此背景下,本研究的目的是调查具有荧光特性的典型市售纺织品。为此,选择了四种不同颜色和用途的聚酯纤维基材料进行研究。研究是在不同的照明安排下用紫外光和可见光进行的。CIE-Lab测量完成。此外,扫描电子显微镜(SEM)和傅里叶变换红外光谱(FT-IR)的使用。荧光光谱法记录了样品的发光和激发。进行二维荧光光谱分析。用电子色散光谱(EDS)测定了纺织品样品的化学成分。在所有被调查的商品纺织品中,紫外光照射时的发光非常强烈。这种荧光效应可以强烈增强颜色外观。除了现有荧光染料对紫外线的吸收外,二氧化钛的存在也支持了纺织品样品的紫外线防护性能。最后得出结论,荧光纤维材料是高级功能性纺织品的成熟产品。这些材料甚至可以在具有成本效益的日常消费品中找到。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exemplarily view on selected fluorescence textile products
Fluorescent materials emit light of higher wavelength, in case of illumination with light exhibiting lower wavelength. In many commercial applications, fluorescent materials transfer non-visible ultraviolet (UV) light into visible light. By this an additional color effect and higher visibility is reached. One typical field for application of fluorescence dyes is the textile area. Here, fluorescent textile products are manifold used and offered, e.g. for brightening effects, light effects and UV protection. With this background, the aim of the current study is the investigation of typical commercially available textile products with fluorescent properties. For this, four different polyester fiber-based materials of different coloration and purpose are selected for investigation. Investigations are performed by illumination under different illumination arrangements with UV light and visible light. CIE-Lab measurements are done. Further, scanning electronic microscopy (SEM) and Fourier Transform infrared (FT-IR) spectroscopy are used. Light emission and excitation of the samples is recorded by fluorescence spectroscopy. 2D fluorescence spectroscopy is performed. The chemical composition of the investigated textile samples is determined by using electron dispersive spectroscopy (EDS). For all investigated commercial textile products, the light emission during illumination with UV light is extraordinary strong. The color appearance can be enhanced strongly by this fluorescence effect. Beside the absorption of UV light by the present fluorescence dyes, also the presence of titanium dioxide supports an UV protective property of the textile samples. Finally, it can be concluded that fluorescent fiber materials are well established products for advanced and functional textiles. These materials can be even found in cost effective and everyday consumer products.
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