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EG-based coatings for flame retardance of shape stabilized phase change materials

机译:EG基涂料,用于形状稳定的相变材料的阻燃性

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Shape stabilized phase change material (SSPCM) is a promising thermal storage material used in energy-saving buildings, and much attention has been paid on its flame retardant property. In this paper, surface coating strategy was used to improve the flame retardance of SSPCMs (paraffin/polymer matrix/OMMT = 60/40/20). Three coatings, including acrylic resin/expandable graphite (EG), alkyd resin/EG and epoxy resin/EG, were surface coated on SSPCMs. Their flame retardant effects were evaluated by horizontal burning test, limiting oxygen index (LOI) determination, vertical burning test and cone calorimeter test. The results showed that all surface coated SSPCMs exhibited excellent flame retardance when the EG content exceeded a certain level. The horizontal burning times were increased largely; the UL-94 VO level was achieved; and the LOI values were increased from 17.4 vol.% to over 30 vol.%. Moreover, the peak heat release rates (PHRRs) were decreased by 62-84%, and the heat release processes extended remarkably with reduced total smoke productions. The flame retardant mechanism of the surface coating strategy was investigated by in-situ Fourier transfer infrared spectrometry (FTIR) and thermogravimetric analysis (TGA). It was found that the coatings could hinder the escape of gaseous paraffin at low temperatures. Once exposed to fire or at high temperatures, the formed thick porous char layers helped to delay paraffin evaporation, trap generated combustibles and block the spread of oxygen and heat into the matrix. (C) 2019 Elsevier Ltd. All rights reserved.
机译:形状稳定的相变材料(SSPCM)是一种用于节能建筑的有前途的蓄热材料,并且其阻燃性能已引起广泛关注。在本文中,采用表面涂层策略来改善SSPCM的阻燃性(石蜡/聚合物基质/ OMMT = 60/40/20)。在SSPCM上表面涂覆了三层涂料,包括丙烯酸树脂/可膨胀石墨(EG),醇酸树脂/ EG和环氧树脂/ EG。通过水平燃烧试验,极限氧指数(LOI)测定,垂直燃烧试验和锥形量热仪试验评估了它们的阻燃效果。结果表明,当EG含量超过一定水平时,所有表面涂覆的SSPCM均显示出优异的阻燃性。水平燃烧时间大大增加;达到UL-94 VO水平; LOI值从17.4%(体积)增加到30%(体积)以上。此外,峰值放热率(PHRR)降低了62-84%,并且放热过程显着延长,总烟气产生减少。通过原位傅里叶转移红外光谱(FTIR)和热重分析(TGA)研究了表面涂层策略的阻燃机理。发现该涂层可能在低温下阻碍气态石蜡的逸出。一旦暴露于火中或高温下,形成的厚实多孔炭层有助于延迟石蜡蒸发,捕获生成的可燃物并阻止氧气和热量向基质中扩散。 (C)2019 Elsevier Ltd.保留所有权利。

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