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首页> 外文期刊>Macromolecular materials and engineering >Fiber Reinforced Polyimide Aerogel Composites with High Mechanical Strength for High Temperature Insulation
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Fiber Reinforced Polyimide Aerogel Composites with High Mechanical Strength for High Temperature Insulation

机译:气凝胶纤维增强聚酰亚胺复合材料机械强度高,耐高温绝缘

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摘要

Abstract Glass fiber/polyimide aerogel composites are prepared by adding glass fiber mat to a polyimide sol derived from diamine, 4,4′‐oxydianiline, p‐phenylene diamine, and dianhydride, 3,3′,4,4′‐biphenyltetracarboxylic dianhydride. The fiber felt acts as a skeleton for support and shaping, reduces aerogel shrinkage during the preparation process, and improves the mechanical strength and thermal stability of the composite materials. These composites possess a mesoporous structure with densities as low as 0.143–0.177 g?cm ?3 , with the glass fiber functioning to improve the overall mechanical properties of the polyimide aerogel, which results in its Young's modulus increasing from 42.7 to 113.5?MPa. These composites are found to retain their structure after heating at 500?°C, in contrast to pure aerogels which decompose into shrunken ball‐like structures. These composites maintain their thermal stability in air and N 2 atmospheres, exhibiting a low thermal conductivity range of 0.023 to 0.029 W?m ?1 ?K ?1 at room temperature and 0.057to 0.082 W?m ?1 ?K ?1 at 500?°C. The high mechanical strengths, excellent thermal stabilities, and low thermal conductivities of these aerogel composites should ensure that they are potentially useful materials for insulation applications at high temperature.
机译:玻璃气凝胶纤维/聚酰亚胺复合材料准备通过添加玻璃纤维垫聚酰亚胺溶胶来自二胺,4,4’高oxydianilinep高苯二胺和二酐,3, 3 ', 4, 4’biphenyltetracarboxylic二酐。纤维毡作为支持和骨架期间形成,降低气凝胶收缩准备的过程,提高了机械强度和复合材料的热稳定性材料。结构与密度低至0.143 - -0.177g ?功能来提高整体的机械气凝胶性能的聚酰亚胺,导致其杨氏模量增加42.7到113.5 ? MPa。加热在500后保留其结构吗?与分解为纯气凝胶球萎缩的类结构。维持他们在空气中热稳定性和N2 大气,表现出低导热系数的0.023到0.029 W ? ?温度和0.057到0.082 W ?K 共舞?优势、优良的热稳定性和低这些气凝胶的热导率复合材料应该确保它们可能有用的绝缘材料应用高温。

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