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Studies on thermal degradation kinetics and dielectric properties of polyether imide foam/nanosilica-based nanocomposites

机译:聚醚酰亚胺泡沫/纳米硅基纳米复合材料的热降解动力学和介电性能研究

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摘要

In this paper, polyether imide (PEI) having properties such as a high glass transition temperature of 216 degrees C, high heat resistance, high flame resistance, low smoke generation and a high melting point within the range of 400 degrees C, having low thermal conductivity and low dielectric constant was chosen to be a polymeric foam. Water vapor-induced phase separation method was used to prepare PEI foams. PEI foams were reinforced with nano-silica (weight 1, 3 and 5%) in order to alter the dielectric properties, thermal conductivity and degradation kinetics of foamed polymer. The tested samples showed a reduction in dielectric constant than that of solid PEI but at a higher loading, it showed a higher value due to threshold percolation and a reduction in thermal conductivity was observed for foamed PEI. From thermogravimetric analysis, we can conclude that PEI with 3% filler loading showed better thermal stability compared to other PEI foam compositions.
机译:本文,聚醚酰亚胺(PEI)具有216℃,高耐热性,高阻燃性,低烟雾的高玻璃化转变温度,低熔点在400摄氏度范围内的性能,具有低热 选择电导率和低介电常数是聚合物泡沫。 水蒸气诱导的相分离方法制备PEI泡沫。 用纳米二氧化硅(重量1,3和5%)加固PEI泡沫,以改变泡沫聚合物的介电性能,导热性和降解动力学。 测试的样品显示介电常数低于固体PEI,但在更高的负载下,它显示出由于阈值渗透而较高的值,并且观察到泡沫PEI的导热率降低。 从热重分析中,我们可以得出结论,与其他PEI泡沫组合物相比,具有3%填料载荷的PEI显示出更好的热稳定性。

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