Si-N Matrix as an Effective Fire Retardant Source for Cotton Fabric, Prepared through Sol–Gel Process

Fire Pub Date : 2024-02-26 DOI:10.3390/fire7030069
Z. Rehman, Laila Khan, Lee Hwain, Yun Chiho, B. Koo
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Abstract

In this study, process control factors such as dipping time, heat treatment time and curing conditions were optimized to prepare N-Si network sol–gel-based coatings on a cotton fabric. The dipping time was varied from 14 h to 30 min, the heat treatment time at ~90 °C was varied between no heating conditions to 15 h and the curing was performed at 165 °C. The microstructure of the coating was analyzed using low electron scanning microscopy (LV-SEM), while a compositional study of the coated substrate was carried out using FTIR and EDS techniques. From the thermal and combustion analysis of the coated samples using thermogravimetric and vertical flame test techniques, significant resistance to the degradation process was observed, particularly in the initial stages, in addition to the highest char residue for DI-0.5 h-15~32.93%. Similarly, for DI–5 h–RT, the peak degradation temperature was around ~372 °C, accompanied by a notable char residue of approximately 31.12%. The flame spread and burning rate profile further supported the findings; DI-0.5 h-15 and DI-5 h-RT had the lowest flame spread.
通过溶胶-凝胶工艺制备的作为棉织物有效阻燃剂来源的 Si-N 基质
本研究对浸渍时间、热处理时间和固化条件等工艺控制因素进行了优化,以制备棉织物上的 N-Si 网络溶胶凝胶涂层。浸渍时间从 14 小时到 30 分钟不等,〜90 °C的热处理时间从无加热条件到 15 小时不等,固化温度为 165 °C。使用低电子扫描显微镜(LV-SEM)分析了涂层的微观结构,并使用傅立叶变换红外光谱(FTIR)和电离辐射分析(EDS)技术对涂层基底进行了成分研究。利用热重法和垂直火焰试验技术对涂层样品进行了热分析和燃烧分析,结果表明,除了 DI-0.5 h-15~32.93% 的炭残留量最高外,涂层样品还具有显著的抗降解能力,尤其是在初始阶段。同样,DI-5 h-RT 的降解峰值温度约为 ~372 °C,残炭率约为 31.12%。火焰蔓延和燃烧速率曲线进一步证实了上述发现;DI-0.5 h-15 和 DI-5 h-RT 的火焰蔓延最小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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