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Influence of ceramic particle features on the thermal behavior of PPO-matrix composites

机译:陶瓷颗粒特征对PPO-基体复合材料热性能的影响

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Thermoplastic poly(phenylene oxide) (PPO)-matrix composites were prepared and characterized in order to evaluate the effect of different ceramic fillers on the thermal and combustion behavior of the matrix. In particular, ceramic particles having three different shapes were exploited as fillers, particles showing a platelet-like, a needle-like or an equiaxial morphology. The composite materials were produced through a melt blending method, which yielded a homogeneous distribution of the ceramic particles in the organic matrix. It was demonstrated that the presence of the inorganic particles influenced the temperature range in which the degradation processes of the polymer occurred. In addition, the three fillers modified the thermal behavior of PPO differently in terms of enthalpy. Finally, the presence of the filler induced a change in combustion behavior of the polymeric matrix; in particular, sepiolite was able to increase the charring ability of the PPO/polystyrene blend with the development of a visible carbonaceous layer.
机译:制备并表征了热塑性聚苯醚(PPO)-基体复合材料,以评估不同陶瓷填料对基体的热和燃烧行为的影响。特别地,具有三种不同形状的陶瓷颗粒被用作填料,该颗粒表现出片状,针状或等轴形态。通过熔融共混法生产复合材料,其产生陶瓷颗粒在有机基质中的均匀分布。证明了无机颗粒的存在影响了聚合物降解过程发生的温度范围。另外,这三种填料在焓方面改变了PPO的热性能。最后,填料的存在引起了聚合物基体燃烧行为的改变。特别是,海泡石能够通过形成可见的碳质层来提高PPO /聚苯乙烯共混物的炭化能力。

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