可燃性
材料科学
化学工程
丹宁
热重分析
热解
燃烧性
热分解
量热计(粒子物理)
锥形量热计
增塑剂
复合材料
燃烧
化学
有机化学
烧焦
工程类
电气工程
探测器
食品科学
作者
Clara Delgado‐Sánchez,Johan Sarazin,F.J. Santiago-Medina,Vanessa Fierro,A. Pizzi,Serge Bourbigot,A. Celzard
标识
DOI:10.1016/j.polymdegradstab.2018.04.006
摘要
The fire retardance properties of rigid, biosourced phenolic foams derived from tannins, which are novel, environment-friendly thermal insulators, are essential before the latter can be applied to the building sector. In this work, tannin-based foams prepared from new formulations and using different foaming methods were investigated by thermo-gravimetric analysis (TGA), cone calorimetry, and pyrolysis combustion flow calorimeter (PCFC). It was found that the flammability strongly depends on the formulation, so that tannin foams perform very differently depending on the presence of surfactant and plasticiser and, more importantly, on their initial water content. Moreover, a good correlation was observed between TGA and PCFC results. Nevertheless, due to their highly resistant phenolic, crosslinked, polymer network, all materials released a quite low amount of hydrocarbon fuel during thermal decomposition, leading to low heat release rates and high ignition times, and thus providing very good fire retardance properties. Based on the above, the foam presenting the highest fire retardance was identified, confirming our conclusions about the role of the ingredients in the formulation.
科研通智能强力驱动
Strongly Powered by AbleSci AI