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首页> 外文期刊>Journal of Applied Polymer Science >Mechanism of Fire Retardancy of Polyurethanes Using Ammonium Polyphosphate
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Mechanism of Fire Retardancy of Polyurethanes Using Ammonium Polyphosphate

机译:聚磷酸铵对聚氨酯的阻燃机理

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摘要

In this work, we studied the mechanism of the fire retardancy of ammonium polyphosphate (APP) in polyurethane (PU). Indeed, according to the limiting oxygen index test, the efficiency of APP in PU coating was proven. On the one hand, thermogravimetric analyses showed that the addition of APP to PU accelerates the decomposition of the matrix but leads to an increase in the amount of high-temperature residue, under an oxidative or inert atmosphere. This stabilized residue acts as a protective thermal barrier during the intumescence-fire retardancy process. On the other hand, spectroscopic analysis of the charring materials using infrared spectroscopy, MAS NMR of the solid state, and ESR enables better understanding of the carbonization process and, consequently, of the intumescence phenomenon. It has been shown that the char resulting from PU consists of an aromatic carbonaceous structure which condenses and oxidizes at high temperature. In the presence of APP, a reaction between the additive and the polymer occurs, which leads to the formation of a phosphocarbonaceous polyaromatic structure. Moreover, this char is strongly paramagnetic. The presence of large radical species, such as a polyaromatic macromolecule trapping free radicals, was demonstrated. Both of these characteristics help to explain the fire-retardant performance of PU/APP.
机译:在这项工作中,我们研究了聚氨酯(PU)中聚磷酸铵(APP)的阻燃机理。实际上,根据极限氧指数测试,证明了PU涂层中APP的效率。一方面,热重分析表明,在氧化性或惰性气氛下,向PU中添加APP可以加速基体的分解,但导致高温残留物的量增加。这种稳定的残留物在膨胀阻燃过程中充当保护性热障。另一方面,使用红外光谱,固态的MAS NMR和ESR对炭化材料进行光谱分析,可以更好地理解碳化过程,从而了解膨胀现象。已经表明,由PU产生的炭由在高温下冷凝和氧化的芳族碳质结构组成。在APP的存在下,添加剂与聚合物之间发生反应,这导致形成磷酸碳多芳族结构。此外,这种炭很强的顺磁性。证明了存在大量自由基,例如捕获自由基的多芳族大分子。这两个特性有助于解释PU / APP的阻燃性能。

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