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用于提高纺织品阻燃性的无卤水性聚合物杂化涂料。

Halogen-Free Waterborne Polymeric Hybrid Coatings for Improved Fire Retardancy of Textiles.

作者信息

Yilmaz Onur, Kucuk Mehmet, Darie-Nita Raluca Nicoleta, Cheaburu-Yilmaz Catalina Natalia

机构信息

Leather Engineering Department, Faculty of Engineering, Ege University, Bornova 35100, Izmir, Türkiye.

ACADEMICHEM Kimya ARGE San. Tic. Ltd. Şti, Ege University Technology Development Zone, Bornova 35100, Izmir, Türkiye.

出版信息

Polymers (Basel). 2023 Nov 23;15(23):4496. doi: 10.3390/polym15234496.

Abstract

Wildfires are becoming more intense and more frequent, ravaging the habitations and ecosystems in their path. One solution to reducing the risk of damage to buildings and other structures during a fire event is the use of fire-retardant coatings that can stop or slow down the spread of flames, especially for textile materials. The present study focuses on the preparation and application of halogen-free boron/bentonite-based polymeric fire-retardant (FR) hybrid coating formulations for fabrics such as cotton (CO) and polyester (PE) fibers. For the preparation of FR composites, two types of boron derivatives, disodium octaborate and zinc borate, were used in combination with sodium bentonite. A styrene-acrylic copolymer was specifically synthesized and used as a coating binder for FR components to apply on fabrics. The properties of the synthesized copolymer and FR composites were characterized with a particle size analysis, FTIR spectroscopy, a dynamic mechanical thermal analysis (DMTA), and rheological measurements. The obtained hybrid composites based on styrene-acrylic copolymers and two different inorganic fillers were applied on cotton (CO) and polyester (PE) fabrics with a screen-printing technique, and the flame retardancy performance of the finished textile samples was investigated by means of flame spread and limit oxygen index (LOI) tests. The findings showed that the FR-composite-coated fabrics had higher LOI values and much decreased flame spread rates in comparison with uncoated ones. Among the boron derivatives, the composites prepared with disodium octaborate (FR-A) had much more pronounced LOI values and decreased flame spread behavior in comparison with the composite with zinc borate (FR-B). When compared to a commercial product, the FR-A composite, in conjunction with the specially synthesized polymer, demonstrated commendable fire retardancy performance and emerged as a promising candidate for a halogen-free waterborne fire-retardant coating for fabrics.

摘要

野火正变得愈发强烈且频繁,肆虐着沿途的栖息地和生态系统。降低火灾事件中建筑物及其他结构受损风险的一种解决方案是使用阻燃涂料,这种涂料能够阻止或减缓火焰蔓延,对于纺织材料尤为如此。本研究聚焦于用于棉(CO)和聚酯(PE)纤维等织物的无卤硼/膨润土基聚合物阻燃(FR)混合涂料配方的制备与应用。为制备FR复合材料,将两种硼衍生物,即八硼酸钠和硼酸锌,与钠膨润土结合使用。专门合成了一种苯乙烯 - 丙烯酸共聚物,并用作FR组分的涂料粘合剂以应用于织物。通过粒度分析、傅里叶变换红外光谱(FTIR)、动态机械热分析(DMTA)和流变学测量对合成的共聚物和FR复合材料的性能进行了表征。基于苯乙烯 - 丙烯酸共聚物和两种不同无机填料所制得的混合复合材料通过丝网印刷技术应用于棉(CO)和聚酯(PE)织物上,并通过火焰蔓延和极限氧指数(LOI)测试研究了成品纺织样品的阻燃性能。研究结果表明,与未涂层的织物相比,涂覆FR复合材料的织物具有更高的LOI值且火焰蔓延速率大幅降低。在硼衍生物中,与含硼酸锌的复合材料(FR - B)相比,用八硼酸钠制备的复合材料(FR - A)具有更为显著的LOI值和更低的火焰蔓延性能。与一种商业产品相比,FR - A复合材料与专门合成的聚合物相结合,展现出了值得称赞的阻燃性能,成为一种有前景的用于织物的无卤水性阻燃涂料候选材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4de8/10707787/d47cfa1ea008/polymers-15-04496-sch001.jpg

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