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在涤棉织物上涂覆TPU-PDMS-TMS以实现多功能防护

Coating of TPU-PDMS-TMS on Polycotton Fabrics for Versatile Protection.

作者信息

Moiz Arsheen, Padhye Rajiv, Wang Xin

机构信息

School of Fashion and Textiles, RMIT University, Melbourne 3056, Australia.

出版信息

Polymers (Basel). 2017 Nov 30;9(12):660. doi: 10.3390/polym9120660.

Abstract

This research aims to develop a non-fluorine based and durable coating technology that brings excellent hydrophobic, oleophobic and aqueous liquid repellent properties to polycotton fabrics (blend ratio 80/20 for cotton/polyester) while maintaining comfort to an acceptable level. A crosslinked network from thermoplastic polyurethane (TPU), polydimethylsiloxane (PDMS) and trimethylated silica (TMS) has been formed on the surface of polycotton fabrics by the conventional padding-knife coating-padding-curing technique. A series of characterizations have been conducted to understand the chemical components, morphology, versatile protection and comfort of the coated fabrics. The TPU-PDMS-TMS (TPT) coated fabrics showed a high hydrophobic surface with a high water contact angle of 142°, and the coating was durable against different cycles of laundering and crocking. The coated fabrics also showed excellent repellency against oils, liquids and chemicals for a long period of time. The coating has affected the air permeability and water vapor permeability together with the moisture management property of the polycotton fabrics, and the thermal resistance of the polycotton fabric has been enhanced at the same time. The coating technology developed can be further applied in protective clothing and functional textiles in different areas including military, mining and outdoor protection gear.

摘要

本研究旨在开发一种无氟且耐用的涂层技术,该技术能赋予涤棉织物(棉/聚酯混纺比例为80/20)优异的疏水、疏油和拒水性能,同时将舒适度维持在可接受水平。通过传统的浸轧-刮刀涂层-浸轧-固化工艺,在涤棉织物表面形成了由热塑性聚氨酯(TPU)、聚二甲基硅氧烷(PDMS)和三甲基化二氧化硅(TMS)组成的交联网络。已进行了一系列表征,以了解涂层织物的化学成分、形态、多功能防护性能和舒适度。TPU-PDMS-TMS(TPT)涂层织物呈现出高疏水表面,水接触角高达142°,并且该涂层在不同的洗涤和摩擦循环下具有耐久性。涂层织物在很长一段时间内还表现出对油、液体和化学品的优异拒斥性。该涂层影响了涤棉织物的透气率、水汽透过率以及水分管理性能,同时提高了涤棉织物的热阻。所开发的涂层技术可进一步应用于包括军事、采矿和户外防护装备等不同领域的防护服和功能性纺织品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e661/6418616/23a7e7cba2e9/polymers-09-00660-g001.jpg

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