...
【24h】

Adhesion Promotion in Fibers and Textiles Using Photonic Surface Modifications

机译:使用光子表面改性促进纤维和纺织品的粘合

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Obtaining good bonding between two dissimilar materials is critical for several aspects in textile finishing, processing and application, including the durability of common textile finishes and fabric coatings, and the performance of fiber reinforced composites. Both functional properties and long term performance are dependent on the effective adhesion between the fiber on one hand and finishing agent, coating polymer or resin on the other. It is generally accepted that good adhesion is achieved through covalent chemical bonding, acid-base interactions or hydrogen bonding, surface energies that favor complete wetting of the fibers, large specific surface area of fibers, and surface roughness that allows lock and key type mechanical bonding. In practice, various surface treatments have been applied to fibers to alter their surface characteristics and to improve their adhesion properties. For example, chemical modifications such as acid oxidation, corona or plasma pre-treatments have been commonly employed. This paper aims to provide some insight into photon-based processes which, depending on the spectral range of radiation and the characteristics of the radiation sources, can be used to bring about chemical as well as morphological changes to fiber surfaces. We have considered two major applications of surface modification; (1) textiles for improving adhesion to finishes and (2) fiber/resin adhesion enhancement in fiber reinforced composites to improve their mechanical properties. The technical approaches cover photo-chemical surface modification and micro-roughening of fiber surfaces using monochromatic UV lamps and pulsed UV excimer lasers.
机译:在纺织整理,加工和应用的多个方面,包括两种常见纺织整理剂和织物涂层的耐用性以及纤维增强复合材料的性能,在两种不同材料之间获得良好的粘结至关重要。功能特性和长期性能都取决于一方面的纤维与整理剂,另一方面的聚合物或树脂的涂层之间的有效粘合力。通常认为,通过共价化学键,酸碱相互作用或氢键,有利于纤维完全润湿的表面能,纤维的大比表面积以及允许锁定和键型机械键合的表面粗糙度,可以获得良好的粘合性。 。实际上,已经对纤维进行了各种表面处理,以改变其表面特性并改善其粘合性能。例如,通常使用化学修饰,例如酸氧化,电晕或等离子体预处理。本文旨在对基于光子的过程提供一些见识,根据光子的光谱范围和辐射源的特性,这些过程可用于使纤维表面发生化学变化以及形态变化。我们已经考虑了表面改性的两个主要应用; (1)纺织品,用于改善涂饰剂的附着力;(2)增强纤维增强复合材料中的纤维/树脂附着力,以改善其机械性能。该技术方法包括使用单色紫外线灯和脉冲紫外线准分子激光对光化学表面进行改性和对纤维表面进行微糙处理。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号