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溶胶-凝胶法合成SiZrNOC陶瓷前驱体的微观结构和相演化
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作者 杨洋 张志新 赵广东 《黑龙江大学工程学报(中英俄文)》 2024年第2期18-26,共9页
陶瓷材料作为一种高强度、高硬度、耐磨性、耐高温的材料,在航空航天领域拥有着广阔的前景。通过溶胶凝胶法以硅酸四乙酯作为硅源,二苯基甲烷二异氰酸酯作为氮源,正丙醇锆作为锆源合成了SiZrNOC预陶瓷聚合物。通过失重率测试结果显示,当... 陶瓷材料作为一种高强度、高硬度、耐磨性、耐高温的材料,在航空航天领域拥有着广阔的前景。通过溶胶凝胶法以硅酸四乙酯作为硅源,二苯基甲烷二异氰酸酯作为氮源,正丙醇锆作为锆源合成了SiZrNOC预陶瓷聚合物。通过失重率测试结果显示,当Zr/N比为3∶1时,陶瓷产率最高,达到53%。使用扫描电子显微镜对陶瓷微观结构进行分析,结果表明,随着热解温度的升高,材料的内部结构变得规整,致密化程度显著增强。设计的陶瓷材料将有能力改善或扩展其在未来航空航天相关领域的应用。为开发高温下具有热稳定性和抗氧化性的材料提供了一个新的选择。 展开更多
关键词 sizrnoc陶瓷先驱体 溶胶凝胶法 前驱体转化陶瓷 高温稳定性
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Robust,fire-resistant,and thermal-stable SiZrNOC nanofiber membranes with amorphous microstructure for high-temperature thermal superinsulation 被引量:1
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作者 Xiaoshan ZHANG Nana XU +5 位作者 Yonggang JIANG Haiyan LIU Hui XU Cheng HAN Bing WANG Yingde WANG 《Journal of Advanced Ceramics》 SCIE EI CAS CSCD 2023年第1期36-48,共13页
Ceramic nanofibers with robust mechanical properties,high-temperature resistance,and superior thermal insulation performance are promising thermal insulators used under extreme conditions.However,developing of ceramic... Ceramic nanofibers with robust mechanical properties,high-temperature resistance,and superior thermal insulation performance are promising thermal insulators used under extreme conditions.However,developing of ceramic fibers with both low solid thermal conductivity(λs)and low infrared radiation thermal conductivity(λr)is still a great challenge.Herein,according to the Ioffe-Regel limit theory,we report a novel SiZrNOC nanofiber membrane(NFM)with a typically amorphous structure by combining the electrospinning method and high-temperature pyrolysis technique in a NH3 atmosphere.The prepared SiZrNOC NFM has a high tensile strength(1.98±0.09 MPa),excellent thermal stability(1100℃in air),and superior thermal insulation performance.The thermal conductivity of SiZrNOC NFM was 0.112 W·m^(−1)·K^(−1) at 1000℃,which is obviously lower than that of the traditional ceramic fiber membranes(>0.2 W·m^(−1)·K^(−1) at 1000℃).In addition,the prepared SiZrNOC NFM-reinforced SiO2 aerogel composites(SiZrNOCf/SiO2 ACs)exhibited ultralow thermal conductivity of 0.044 W·m^(−1)·K^(−1) at 1000℃,which was the lowest value for SiO2-based aerogel composites ever reported.Such superior thermal insulation performance of SiZrNOC NFMs was mainly due to significant decreasing of solid heat conduction and thermal radiation by the fancy amorphous microstructure and high infrared shielding compositions.This work not only provides a promising high-temperature thermal insulator,but also offers a novel route to develop other high-performance thermal insulating materials. 展开更多
关键词 amorphous microstructure sizrnoc nanofiber thermal stability thermal insulation
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