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Flammabillty of Layered Silicate Epoxy Nanocomposites Combined with Low-Melting Inorganic Ceepree Glass

机译:层状硅酸盐环氧纳米复合材料与低熔点无机Ceepree玻璃结合的耐火性

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Tetraphenylphosphonium modified layered silicate epoxy nanocomposite (EP/TPPMMT) combined witli low-melting silicate glass, Ceepree (CP) is investigated by thermal analysis, flammability tests and cone calorimeter at different heat fluxes. Adding CP and TPPMMT does not change the pyrolysis apart from increasing inorganic residue. The total heat evolved (THE) is changed insignificantly, as neither relevant additional carbonaceous charring nor flame inhibition occurs. However, flame retardancy is clearly observed due to an inorganic-carbonaceous surface protection layer. The peak heat released rate (PHRR) is reduced by around 32-42% when 5 wt% TPPMMT is added, and 51-63% when 10 wt% CP is added. PHRR reduction less than expected is observed when both additives are combined. The reduction is greater than that achieved by using TPPMMT but less than when only CP is used. The morphology of fire residue is investigated by scanning electron microscope on different length scales and turns out to be the key to understanding the efficiency of flame retardancy. The fire residue of EP/CP shows a layered structure, whereas separated columns limit the barrier properties for EP/ 5%TPPMMT on the micrometer scale. Columns dominating the fire residue structure of EP/5%TPPMMT/ 10%CP deteriorate the fire retardancy, whereas a more integral structure at the top of the residue causes the improvement over EP/5%TPPMMT.
机译:通过热分析,可燃性测试和锥形量热仪在不同热通量下研究了低熔点硅酸盐玻璃(Ceepree)组合的四苯基phosph改性层状硅酸盐环氧纳米复合材料(EP / TPPMMT)。添加CP和TPPMMT不会改变热解,而不会增加无机残留物。放出的总热量(THE)变化不大,因为既没有发生相关的额外碳质炭化也没有发生火焰抑制作用。然而,由于无机碳质表面保护层,因此可以清楚地观察到阻燃性。当添加5 wt%TPPMMT时,峰值放热率(PHRR)降低约32-42%,而当添加10 wt%CP时降低51-63%。当两种添加剂组合时,观察到的PHRR降低小于预期。减少量大于使用TPPMMT所实现的减少量,但小于仅使用CP时的减少量。通过扫描电子显微镜在不同的长度尺度上研究了火渣的形态,这是了解阻燃效率的关键。 EP / CP的燃烧残留物显示为分层结构,而分离的色谱柱在微米级限制了EP / 5%TPPMMT的阻隔性能。占主导地位的EP / 5%TPPMMT / 10%CP燃烧残渣结构的柱降低了阻燃性,而残渣顶部更完整的结构导致相对于EP / 5%TPPMMT的改进。

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