Thermal stability, flame retardancy and flame retardant mechanisms of hollow glass microspheres/montmorillonite/epoxy sheet molding compound composites

Zhixiong Huang, Guoqin Jiang, Linxuan Li, Yue Wu, Jialuo Wu, Zongyi Deng
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Abstract

AbstractEpoxy sheet molding compound (ESMC) composites have excellent mechanical properties, dimensional stability and electrical insulation, and are widely used in the automotive industry. In our previous work silane coupling agent modified, hollow glass microspheres (SiHGM) and montmorillonite (MMT) were incorporated to enhance the mechanical properties of the ESMC composites. It was found that the ESMC composites containing MMT (EP/SiHGM/MMT-1) exhibited excellent mechanical strength. However, the flammability of the epoxy resin (EP) limits the use of ESMC composites for applications that require good flame retardancy. In this paper we describe our research in which MMT was used to increase the flame retardancy of ESMC composites. The results showed that the addition of MMT made the ESMC composites have excellent flame retardancy. The limiting oxygen index (LOI) of the ESMC composites containing 1 phr MMT (EP/SiHGM/MMT-1) was 26.8%, which was 8.94% higher than that of the ESMC composites without MMT (EP/SiHGM/MMT-0). In addition, the peak heat release rate (PHRR), average heat release rate (AHRR) and total heat release (THR) of the EP/SiHGM/MMT-1 were 322.8 kW/m2, 95.3 kW/m2 and 38.6 MJ/m2, respectively, which were 22.6%, 8.2% and 8.0% lower than those of EP/SiHGM/MMT-0. The carbon monoxide production (COP) and carbon dioxide production (CO2P) of EP/SiHGM/MMT-1 were 0.0092 g/s and 0.2071 g/s, respectively, which were 34.3% and 22.8% lower than those of EP/SiHGM/MMT-0. The fire growth index (FGI) of EP/SiHGM/MMT-1 was 2.4, which was a decrease by 29.4% compared to EP/SiHGM/MMT-0. In addition, the flame retardant mechanisms were revealed. We suggest that MMT promoted dehydration and charring of the epoxy resin and helped construct an intact physical barrier, which had good blocking effects. The prepared composite has great application prospects for those occasions that require high flame retardancy. Thus, this work provides an innovative strategy for preparing low density epoxy composites with excellent flame retardancy and high mechanical properties.Keywords: MontmorilloniteEpoxy sheet molding compoundFlame retardancyBlocking effectsEvolved gas analysisFlame retardant mechanismsDisclaimerAs a service to authors and researchers we are providing this version of an accepted manuscript (AM). Copyediting, typesetting, and review of the resulting proofs will be undertaken on this manuscript before final publication of the Version of Record (VoR). During production and pre-press, errors may be discovered which could affect the content, and all legal disclaimers that apply to the journal relate to these versions also.
中空玻璃微珠/蒙脱土/环氧板成型复合材料的热稳定性、阻燃性及阻燃机理
摘要环氧板材成型复合材料(ESMC)具有优异的力学性能、尺寸稳定性和电绝缘性,在汽车工业中得到了广泛的应用。在我们之前的工作中,我们加入了硅烷偶联剂改性,中空玻璃微球(SiHGM)和蒙脱土(MMT)来提高ESMC复合材料的力学性能。结果表明,含MMT的ESMC复合材料(EP/SiHGM/MMT-1)具有优异的机械强度。然而,环氧树脂(EP)的可燃性限制了ESMC复合材料在需要良好阻燃性的应用中的使用。本文介绍了用MMT提高ESMC复合材料阻燃性的研究。结果表明,MMT的加入使ESMC复合材料具有优异的阻燃性能。含1 phr MMT (EP/SiHGM/MMT-1)的ESMC复合材料的极限氧指数(LOI)为26.8%,比不含MMT (EP/SiHGM/MMT-0)的ESMC复合材料的极限氧指数(LOI)高8.94%。EP/SiHGM/MMT-1的峰值放热率(PHRR)、平均放热率(AHRR)和总放热率(THR)分别为322.8 kW/m2、95.3 kW/m2和38.6 MJ/m2,分别比EP/SiHGM/MMT-0低22.6%、8.2%和8.0%。EP/SiHGM/MMT-1的一氧化碳产率(COP)和二氧化碳产率(CO2P)分别为0.0092 g/s和0.2071 g/s,分别比EP/SiHGM/MMT-0低34.3%和22.8%。EP/SiHGM/MMT-1的火灾生长指数(FGI)为2.4,比EP/SiHGM/MMT-0降低了29.4%。此外,还揭示了阻燃机理。我们认为MMT促进了环氧树脂的脱水和炭化,并有助于构建完整的物理屏障,具有良好的阻隔效果。所制备的复合材料在对阻燃性要求较高的场合具有很大的应用前景。因此,这项工作为制备具有优异阻燃性和高机械性能的低密度环氧复合材料提供了一种创新的策略。关键词:蒙脱石环氧板成型化合物;阻燃性;阻滞效应;进化气体分析;阻燃机理;免责声明:作为对作者和研究人员的服务,我们提供这个版本的接受稿件(AM)。在最终出版版本记录(VoR)之前,将对该手稿进行编辑、排版和审查。在制作和印前,可能会发现可能影响内容的错误,所有适用于期刊的法律免责声明也与这些版本有关。
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