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Melamine poly(zinc phosphate) as flame retardant in epoxy resin: Decomposition pathways, molecular mechanisms and morphology of fire residues

机译:三聚氰胺聚磷酸锌作为环氧树脂的阻燃剂:分解途径,分子机理和火残留物的形态

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摘要

Synergistic multicomponent systems containing melamine poly(metal phosphate)s have been recently proposed as flame retardants. This work focuses on the decomposition pathways, molecular mechanisms and morphology of the fire residues of epoxy resin (EP) flame retarded with melamine poly(zinc phosphate) (MPZnP) to explain the modes of action and synergistic effects with selected synergists (melamine polyphosphate (MPP) and AIO(OH), respectively). The total load of flame retardants was always 20 wt.%. The decomposition pathways were investigated in detail via thermogravimetric analysis coupled with Fourier transform infrared spectroscopy. The fire residues were investigated via elemental analysis und solid-state nuclear magnetic resonance spectroscopy. The morphology of intumescent fire residues was investigated via micro-computed tomography and scanning electron microscopy. EP + (MPZnP + MPP) formed a highly voluminous residue that showed structural features of both EP + MPZnP and EP + MPP, resulting in a highly effective protection layer. EP + (MPZnP + AIO(OH)) preserved the entire quantity of phosphorus content during combustion due to the formation of Zn_2P_2O_7 and AlPO_4.
机译:最近已经提出了包含三聚氰胺多金属磷酸盐的协同多组分体系作为阻燃剂。这项工作着眼于三聚氰胺聚磷酸锌(MPZnP)阻燃的环氧树脂(EP)的燃烧残渣的分解途径,分子机理和形态,以解释与选定协同剂(三聚氰胺聚磷酸( MPP)和AIO(OH)。阻燃剂的总负载总是20重量%。通过热重分析结合傅里叶变换红外光谱对分解途径进行了详细研究。通过元素分析和固态核磁共振波谱研究了火焰残留物。通过微计算机断层扫描和扫描电子显微镜研究了膨胀型火残留物的形态。 EP +(MPZnP + MPP)形成大量残留物,具有EP + MPZnP和EP + MPP的结构特征,从而形成了高效的保护层。由于形成了Zn_2P_2O_7和AlPO_4,EP +(MPZnP + AIO(OH))保留了燃烧过程中的全部磷含量。

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