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A polycarbonate/magnesium oxide nanocomposite with high flame retardancy

机译:具有高阻燃性的聚碳酸酯/氧化镁纳米复合材料

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摘要

A new flame retardant polycarbonate/magnesium oxide (PC/MgO) nanocomposite, with high flame retardancy was developed by melt compounding. The effect of MgO to the flame retardancy, thermal property, and thermal degradation kinetics were investigated. Limited oxygen index (LOI) test revealed that a little amount of MgO (2 wt %) led to significant enhancement (LOI = 36.8) in flame retardancy. Thermogravimetric analysis results demonstrated that the onset temperature of degradation and temperature of maximum degradation rate decreased in both air and N_2 atmosphere. Apparent activation energy was estimated via Flynn-Wall-Ozawa method. Three steps in the thermal degradation kinetics were observed after incorporation of MgO into the matrix and the additive raised activation energies of the composite in the full range except the initial stage. It was interpreted that the flame retardancy of PC was influenced by MgO through the following two aspects: on the one hand, MgO catalyzed the thermal-oxidative degradation and accelerated a thermal protection/mass loss barrier at burning surface; on the other hand, the filler decreased activation energies in the initial step and improved thermal stability in the final period.
机译:通过熔融复合,开发了一种新型的具有高阻燃性的阻燃聚碳酸酯/氧化镁(PC / MgO)纳米复合材料。研究了MgO对阻燃性,热性能和热降解动力学的影响。有限氧指数(LOI)测试表明,少量MgO(2 wt%)导致阻燃性显着提高(LOI = 36.8)。热重分析结果表明,在空气和N_2气氛中,降解的起始温度和最大降解速率的温度均降低。通过Flynn-Wall-Ozawa方法估计了表观活化能。在将MgO掺入基体中后,除初始阶段外,添加剂在整个范围内提高了复合材料的活化能,观察到热降解动力学的三个步骤。据解释,PC的阻燃性受MgO的影响主要有以下两个方面:一方面,MgO催化了热氧化降解,并加速了燃烧表面的热保护/质量损失壁垒;另一方面,填料在初始步骤中降低了活化能,并在最终阶段中提高了热稳定性。

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