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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Zinc hydroxystannate microencapsulated to improve its safety and application to flame-retardant, smoke-suppressed polyvinyl chloride composites
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Zinc hydroxystannate microencapsulated to improve its safety and application to flame-retardant, smoke-suppressed polyvinyl chloride composites

机译:羟基炔丙酸锌微胶囊化以改善其对阻燃,抑制抑制聚氯乙烯复合材料的安全性和应用

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摘要

The aluminum hydroxide (ATH)/zinc hydroxystannate (ZHS) microcapsule and melamine-formaldehyde resin (MF)/aluminum hydroxide (ATH)/zinc hydroxystannate (ZHS) microcapsule as halogen-free flame retardants were designed and employed in poly(vinyl chloride) (PVC) composites, a series of PVC/ATH/ ZHS microcapsule and PVC/MF/ATH/ZHS microcapsule composites were obtained, intumesces and acts as a thermal insulator, providing active fire protection to the composite structure. The flame retardancy and mechanical properties of the composites were investigated by means of horizontal burning, vertical burning, limiting oxygen index, cone calorimetry, smoke density, thermogravimetric and mechanical instrument experiments. The results showed that the MF/ATH/ZHS microcapsule was dispersed well in the PVC matrix, which its tensile strength, elongation at break, flame retardancy and smoke density were better than that of PVC/ATH/ZHS microcapsule. The introduction of 6.15% of ATH/ZHS microcapsule and MF/ATH/ZHS microcapsule to the PVC matrix could make the LOI value of PVC composites increased by 28%, and can also slow the heat release and mass loss upon combustion. Meanwhile, the charring ability of composites was enhanced considerably, the horizontal burning rating and vertical burning rating reached HB, V-0 respectively, while MF/ATH/ZHS microcapsule could also improve the self-extinguish and resistance of melt drip properties of the composites at the low loading in PVC matrix. (C) 2017 Elsevier B.V. All rights reserved.
机译:设计并在聚(氯乙烯)中设计氢氢氧化铝(Ath)/锌羟基锰(Zhs)微胶囊和三聚氰胺类微胶囊(MF)/氢氧化锌(氢氧化铝(氢氧化铝)微胶囊,并用(氯乙烯) (PVC)复合材料,获得了一系列PVC / ATH / ZHS微胶囊和PVC / MF / ATH / ZHS微胶囊复合材料,其作为热绝缘体,为复合结构提供主动火灾保护。通过水平燃烧,垂直燃烧,限制氧指数,锥形量热法,烟雾密度,热重度和机械仪器实验研究了复合材料的阻燃性和力学性能。结果表明,MF / ATH / ZHS微胶囊在PVC基质中分散良好,其拉伸强度,断裂伸长率,阻燃性和烟雾密度优于PVC / ATH / ZHS微胶囊。引入6.15%的Ath / Zhs微胶囊和MF / Ath / Zhs微胶囊到PVC基质可以使PVC复合材料的LOI值增加28%,并且还可以减缓燃烧时的热释放和质量损失。同时,复合材料的炭化能力大大提高,水平燃烧额定值和垂直燃烧等级分别达到Hb,V-0,而MF / Ath / Zhs微胶囊也可以改善复合材料的熔体滴灌性质的自熄性和电阻。在PVC矩阵的低负载下。 (c)2017年Elsevier B.V.保留所有权利。

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