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EFFECT OF MOISTURE ON IGNITION TIME OF POLYMERS

机译:水分对聚合物点火时间的影响

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摘要

A previous study of poly(arlyether-ether-ketone) (PEEK) showed that the ignitability of this high temperature engineering plastic is sensitive to the presence of absorbed moisture. The present research extends this work to include five other engineering plastics: polycarbonate (PC), polyoxymethylene (POM), polymethylmethacrylate (PMMA), polyphenylsulfone (PPSU) and polyhexamethyleneadipamide (PA66). Separate batches of each polymer were equilibrated in hot (80°C) water, 50% relative humidity at 20°C, or vacuum dried at 100°C and tested in a cone calorimeter at heat fluxes between 10 and 75 kW/m2. These hygrothermally-conditioned samples were also examined by differential scanning calorimetry, thermogravimetric analysis, and microscale combustion calorimetry to determine the effect of moisture on the thermal, decomposition, and combustion properties. It was found that absorbed moisture did not change the thermal decomposition or ignition temperatures significantly, but was released as steam that formed microscopic surface bubbles at or above the softening (glass transition or melting) temperature of the polymer. The phase change from bound water to steam entrained in the polymer melt (foam) significantly reduced the ignition time compared to dry samples. Attempts were made to account for the moisture-sensitive ignition delay in terms of thermal properties and chemical processes governing ignition, and a numerical thermokinetic pyrolysis model.
机译:先前对聚(芳苯醚 - 醚 - 酮)(PEEK)的研究表明,该高温工程塑料的可燃性对吸收水分的存在敏感。本研究扩展了这项工作,包括五种其他工程塑料:聚碳酸酯(PC),聚甲醛(POM),聚甲基丙烯酸甲酯(PMMA),聚苯砜(PPSU)和聚环亚甲基海方(PA66)。将每种聚合物的单独的批次在热(80℃)水中平衡,在20℃下在50%相对湿度下平衡,或在100℃下真空干燥,并在10至75kW / m 2之间的热通量下在锥形量热仪中进行测试。这些湿热调节样品也通过差示扫描量热法,热重分析和微观燃烧量热法检测,以确定水分对热,分解和燃烧性能的影响。发现吸收的水分不会显着改变热分解或点火温度,而是作为在聚合物的软化(玻璃化转变或熔化或熔化)温度的微观表面气泡的蒸汽中释放为蒸汽。与干燥样品相比,从结合在聚合物熔体(泡沫)中夹带的蒸汽的相变显着降低了点火时间。试图考虑在热性质和用于点火的化学过程中的水分敏感点火延迟,以及数值热因子热解模型。

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