Kalazić Ana, Badrov Tea, Schwarz Ivana, Brnada Snježana
Department of Textile Design and Management, Faculty of Textile Technology Zagreb, University of Zagreb, Prilaz baruna Filipovića 28a, 10000 Zagreb, Croatia.
Polymers (Basel). 2023 Jul 14;15(14):3048. doi: 10.3390/polym15143048.
Woven fabrics are widely used for thermal protection due to their porosity, which provides thermal insulation and breathability. This research focuses on investigating the influential parameters in the thermal protective properties of layer interchanging double cloth, including the woven structure and varying yarn fineness. The properties affecting the protective properties and comfort of multilayered woven fabrics include the fabric thickness, fabric porosity, and air permeability. Darcy's law is applicable for determining the effective air permeability of woven fabrics. By understanding and controlling fabric porosity, it becomes possible to develop thermal protective clothing that combines improved comfort, cost-efficiency, and effectiveness. This study represents a novel approach for the clarification of airflow permeability behavior in complex structures of elastic multilayer woven fabrics using Darcy's law. This innovative approach expands the understanding of permeability in fabrics beyond single-layer fabrics with vertical pores or 3D fabrics used in resin injection processes.
机织物因其孔隙率而被广泛用于热防护,孔隙率提供了隔热性和透气性。本研究着重调查层间交替双层织物热防护性能的影响参数,包括机织结构和变化的纱线细度。影响多层机织物防护性能和舒适度的特性包括织物厚度、织物孔隙率和透气性。达西定律适用于测定机织物的有效透气性。通过理解和控制织物孔隙率,就有可能开发出兼具更高舒适度、成本效益和有效性的热防护服。本研究提出了一种新颖的方法,利用达西定律阐明弹性多层机织物复杂结构中的气流渗透行为。这种创新方法拓展了对织物渗透性的理解,超越了具有垂直孔隙的单层织物或树脂注射工艺中使用的三维织物。