Multifunctional outdoor fabrics with ATO and TiO2 embedded PU coatings

Author:

Zhang Wei,Yao Jiming,Wang Shuo

Abstract

Purpose The purpose of this paper is to invent a new functional coated fabric based on nanomaterials to shield UV and IR. Multifunctional surface coatings with ultraviolet (UV)/near infrared radiations protection and waterproof were widely applied in outdoor fabrics. Herein, ultrafine TiO2 and nano-antimony doped tin dioxide (ATO) were prepared and embedded into water-based polyurethane (PU) coatings and then coated on the nylon fabric. Design/methodology/approach ATO was prepared using the sol–gel method and the two powders were dispersed by ball milling. The results of zeta potential and particle size distribution showed that the ultrafine TiO2 and nano-ATO could be stably dispersed in water at pH 8 with the presence of sodium polycarboxylate. The optimal process was screened out by orthogonal design and scanning electron microscopy (SEM), UV protection, thermal insulation and water-pressure resistance were tested. SEM images indicated the nanoparticles could be uniformly dispersed in the coatings. Findings The effect of UV prevention can get to UPF > 50, UVA < 5 per cent, which meet up with the AATCC 183-2014. Coatings can effectively lower the temperature of fabric surface by 8∼9ºC through the self-made closed test system and by 3ºC through the open test system. Originality/value These PU coatings are environment-friendly and adhesive to impart waterproof, UV-proof and thermal insulation properties to nylon fabrics by coating finishing.

Publisher

Emerald

Subject

Materials Chemistry,Surfaces, Coatings and Films

Reference30 articles.

1. Preparation optimization of ATO particles by robust parameter design;Materials Science in Semiconductor Processing,2016

2. Wet chemical deposition of ATO and ITO coatings using crystalline nanoparticles redispersable in solutions;Thin Solid Films,1999

3. Thermal behaviour and flame retardancy of monoethanolamine-doped sol-gel coatings of cotton fabric;Progress in Organic Coatings,2017

4. Effect of copper and copper alginate treatment on wool fabric: study of textile and antibacterial properties;Surface and Coatings Technology,2013

5. Effects of athletic T-shirt designs on thermal comfort;Fibers and Polymers,2008

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