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层状复合氧化铝纤维硬质隔热毡的制备及性能
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中国建筑材料科学研究总院,中国建材检验认证集团股份有限公司,中国建筑材料科学研究总院,中国建筑材料科学研究总院,中国建筑材料科学研究总院,中国建筑材料科学研究总院

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Preparation and Properties of Layered Hard Alumina Fiber Insulation Felt
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China Building Materials Academy,China Building Material Test Certification Group Co Ltd,China Building Materials Academy,China Building Materials Academy,China Building Materials Academy,China Building Materials Academy

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    摘要:

    针对硬质碳毡在高温下由于辐射传热严重存在导热系数偏高的问题,本文以氧化铝纤维为主要原料,以石墨箔为辐射屏蔽层,以酚醛树脂为粘接剂和浸渍剂,采用真空压滤和浸渍炭化工艺制备出了层状复合氧化铝纤维硬质隔热毡。对其微观结构、力学性能和隔热性能进行了测试和分析,结果表明:酚醛树脂炭化后对材料基体产生的“铠装”和“锚固”作用使材料具备了一定刚性;采用酚醛树脂浓度35%浸渍的样品层间抗拉强度达70KPa,1000℃导热系数为0.18 W/mK;在热面1000℃的隔热效果测试中,10mm样品冷面平衡温度为640℃,比市售碳毡低200℃,隔热性能优异。

    Abstract:

    Due to severe radiation heat transfer at high temperature, the thermal conductivity of hard carbon felt is high. In this paper, the layered hard alumina fiber insulation felt was derived successfully by vacuum impregnation and carbonization process, from alumina fiber as the main material, graphite foil as radiation shielding layer, phenolic resin as impregnant. The materials were tested and analyzed on microstructure, mechanical properties and thermal insulation properties. The results show that the sample has a certain rigidity due to the role of armored" and "anchoring" effect which is produced by carbonization of phenolic resin; The tensile strength of the sample with the 35% concentration of phenolic resin was 70KPa and the thermal conductivity is 0.18 W/m.K at 1000 degrees; In the thermal insulation testing, keeping the hot surface of the sample with thickness of 10mm at constant temperature of 1000 degrees, the temperature of its cold face at steady state is only 640 degrees, which is 200 degrees lower than the temperature, if a commercial carbon felt were used in the same testing. The material has excellent performance and wide application prospect.

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张世超,吴蔚,孙现凯,陈玉峰,方凯,陶柳实.层状复合氧化铝纤维硬质隔热毡的制备及性能[J].稀有金属材料与工程,2018,47(S1):273~276.[Zhang Shichao, Wu Wei, Sun Xiankai, Chen Yufeng, Fang Kai, Tao Liushi. Preparation and Properties of Layered Hard Alumina Fiber Insulation Felt[J]. Rare Metal Materials and Engineering,2018,47(S1):273~276.]
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  • 收稿日期:2017-06-27
  • 最后修改日期:2017-06-27
  • 录用日期:2018-01-29
  • 在线发布日期: 2018-10-22
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