Sirkova Brigita Kolcavova, Mouckova Eva
Department of Technologies and Structures, Technical University of Liberec, Praha, Czech Republic.
Sci Rep. 2025 May 4;15(1):15610. doi: 10.1038/s41598-025-00506-4.
This study investigates and discusses the structure of the luminescent phosphorescent multifilament yarns to determine the effect of their external and internal structure geometry on the magnitude of light emission. The polyester luminescent multifilament yarns with the flat, textured, air textured and wraped were analyzed and compared in terms of their structure and the intensity of light emission. The light emission was evaluated based on the wavelength that corresponded to the maximum emission light signal. The signal was determined from the values of the emission light signal of all wavelengths spectrum at zero time for all measured luminescent multifilament yarns. Geometrical properties of luminiscent multifilament yarns (number of fibrils, multifilament diameter and diameter variability, number of entanglements), as well as individual fibrils (fibril fineness, fibril equivalent diameter, and shape factor) were measured and calculated to analyze their effect on light emission. The assumption that light emission increases with increasing yarn count and yarn diameter was not confirmed. In relation to the type of yarns, the geometry of the fibers in the yarn is decisive in terms of fibril fineness and area of fibril cross-section.
本研究对发光磷光复丝纱线的结构进行了调查和讨论,以确定其外部和内部结构几何形状对发光强度的影响。对扁平、变形、空气变形和加捻的聚酯发光复丝纱线的结构和发光强度进行了分析和比较。根据对应于最大发射光信号的波长对发光进行评估。该信号由所有测量的发光复丝纱线在零时刻的所有波长光谱的发射光信号值确定。测量并计算了发光复丝纱线的几何特性(原纤数量、复丝直径和直径变化率、缠结数量)以及单个原纤(原纤细度、原纤等效直径和形状因子),以分析它们对发光的影响。发光随纱线支数和纱线直径增加而增加的假设未得到证实。就纱线类型而言,纱线中纤维的几何形状在原纤细度和原纤横截面积方面起决定性作用。