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Thermal Storage/Release and Mechanical Properties of Octadecane-Containing Microcapsule Treated Fabric for the Development of Thermostatic Fabrics  

김정혜 (연세대학교 의류환경학과)
정혜진 (연세대학교 의류환경학과)
조길수 (연세대학교 의류환경학과)
조창기 (한양대학교 섬유고분자공학과)
Publication Information
Textile Science and Engineering / v.40, no.2, 2003 , pp. 203-211 More about this Journal
Abstract
In order to develop a thermostatic fabric using phase transition materials, octadecane-containing microcapsules were synthesized and the fabric finishing process was investigated. The optimum treatment conditions were proposed by evaluating the durability, hand, and physical properties of treated fabrics. The synthesis of microcapsules by interfacial polymerization method was confirmed through analyzing the structure of microcapsules using FT-IR. The core content and encapsulation efficiency were confirmed by DSC. The optimum treatment temperature and time combination to obtain the best thermal storage and release properties from microcapsule treated fabrics was 60 $^{\circ}C$ and 8 min. Thermal properties of treated fabrics after laundering decreased. Bending and shear rigidities of treated fabrics increased, which meant the coated fabric became stiffer and harder to bend and shear. And mean deviation of surface roughness of treated fabrics increased. Koshi, Shari, and Hari of treated fabrics increased but Fukurami decreased as microcapsule concentration increased. The treated fabrics exhibited lower air permeability and water vapor permeability, and higher moisture regain compared with the untreated fabric.
Keywords
octadecane; thermal storage/release properties; phase change material, interfacial poly-merization; thermostatic fabric; hand, laundering durability;
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