Development of Halogen Free Sustainable Polybenzoxazine Matrices and Composites for Flame Retardant Applications

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Abstract

In recent years, with the growing concern on energy crises, the development of new products from sustainable resources have been received much greater consideration owing to the environmental concerns caused by the rapid reduction of non-renewable fossil resources. The widespread utilization of polymeric materials led to a considerable increase in fire risk in our daily life due to their flammable behavior. Hence, the flame-retardant properties of polymeric materials are considered as one of the most significant criteria to use them in wide range of industrial applications. It is well known that mostly halogenated flame retardant materials are widely used for flame retardant applications. However, they release toxic gases and corrosive smoke during combustion, and consequently they contribute to serious environmental pollution. In this connection, in the present chapter we discussed the different types of non-halogen based environmentally friendly bio-based polybenzoxazine matrices developed from renewable and sustainable bio-phenolic materials viz., cardanol, eugenol, guiacol and etc., and the composites obtained by reinforcing with varying weight percentages of flame resistant reinforcements/additives and their flame retardant properties obtained from different analytical techniques.
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无卤可持续聚苯并恶嗪阻燃材料的研制
近年来,随着人们对能源危机的日益关注,由于不可再生化石资源的迅速减少所引起的环境问题,利用可持续资源开发新产品得到了更多的考虑。高分子材料的广泛应用使得其可燃性大大增加了我们日常生活中的火灾风险。因此,高分子材料的阻燃性能被认为是广泛应用于工业应用的最重要的标准之一。众所周知,大多数卤化阻燃材料被广泛用于阻燃应用。然而,它们在燃烧过程中释放出有毒气体和腐蚀性烟雾,从而造成严重的环境污染。因此,在本章中,我们讨论了以可再生和可持续的生物酚类材料腰果酚、丁香酚、桂枝酚等为原料开发的不同类型的无卤环保生物基聚苯并恶嗪基基质,以及通过添加不同重量百分比的阻燃增强剂/添加剂得到的复合材料,以及通过不同的分析技术得到的阻燃性能。
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