Wesolek Dorota, Gasiorowski Ryszard, Rojewski Szymon, Walentowska Judyta, Wojcik Rafał
Department of Innovative Biomaterials and Nanotechnologies, Institute of Natural Fibres & Medicinal Plants, Wojska Polskiego 71b, 60-630 Poznan, Poland.
Polymers (Basel). 2016 Dec 2;8(12):419. doi: 10.3390/polym8120419.
This work presents the effectiveness of a phosphorus-containing flame retardant based on siloxane resin and ethylene-vinyl chloride copolymer as a back-coating of fabrics. The possibility of improving flame retardant efficiency of this composition by introducing fumed silica, montmorillonite, carbon nanotubes, and graphite was evaluated. The effect of each additive on the efficiency of the composition was examined separately. Flammability tests of flame retardant-coated fabrics (natural and synthetic) were carried out using pyrolysis combustion flow calorimetry (PCFC), cone calorimetry, and limiting oxygen index determination. An assessment of the ignitability of upholstered furniture containing flame retardant fabric, resistance to washing, antifungal activity, and some of the utility properties of the final newly-developed flame-retardant coating was conducted.
这项工作展示了一种基于硅氧烷树脂和乙烯 - 氯乙烯共聚物的含磷阻燃剂作为织物背涂层的有效性。评估了通过引入气相二氧化硅、蒙脱石、碳纳米管和石墨来提高该组合物阻燃效率的可能性。分别研究了每种添加剂对组合物效率的影响。使用热解燃烧流动量热法(PCFC)、锥形量热法和极限氧指数测定法对涂覆有阻燃剂的织物(天然和合成)进行了燃烧性能测试。对含有阻燃织物的软体家具的可燃性、耐洗涤性、抗真菌活性以及最终新开发的阻燃涂层的一些实用性能进行了评估。