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α-Al2O3纤维的制备及其改性Al2O3复合陶瓷性能的研究 被引量:5
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作者 刘壕东 詹兴宇 +4 位作者 赵子栋 童来发 霍颜秋 方一航 赵先锐 《中国陶瓷》 CAS CSCD 北大核心 2019年第8期41-45,共5页
以尿素和Al(NO3)3·9H2O为原料,通过水热反应法合成α-Al2O3前驱体纤维,研究了合成α-Al2O3前驱体纤维的形成机理和微观形貌以及不同α-Al2O3纤维含量对Al2O3复合陶瓷力学性能的影响。结果表明,α-Al2O3前驱体纤维主要由尿素水解产... 以尿素和Al(NO3)3·9H2O为原料,通过水热反应法合成α-Al2O3前驱体纤维,研究了合成α-Al2O3前驱体纤维的形成机理和微观形貌以及不同α-Al2O3纤维含量对Al2O3复合陶瓷力学性能的影响。结果表明,α-Al2O3前驱体纤维主要由尿素水解产生的NH4^+,OH^-,HCO3-离子和Al^3+离子重新反应形成,纤维表面光滑,长度为3~6μm,长径比达到6∶1;经1100℃热处理后,α-Al2O3前驱体纤维分解形成α-Al2O3纤维,纤维表面由于气体的释放产生了许多小孔,长度稍短为1~5μm,长径比也达到6∶1。α-Al2O3纤维掺杂α-Al2O3复合陶瓷力学性能表明,当纤维含量为5.0%时,Al2O3复合陶瓷材料获得十分优异的综合室温力学性能:显微硬度为1907 HV,断裂韧性和抗弯强度达到5.8 MPa·m^1/2和813 MPa。 展开更多
关键词 α-al2o3前驱体纤维 α-al2o3纤维 形成机理 al2o3复合陶瓷 力学性能
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Preparation of Fe-M Intermetallic/TiC-M_2O_3 Ceramic Composites from Ilmenite by SHS
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作者 邹正光 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2007年第4期706-709,共4页
Fe-Al intermetallic/TiC-Al2O3 ceramic composites were successfully prepared by selfpropagating high-temperature synthesis (SHS) from natural ilmenite, aluminium and carbon as the raw materials. The effects of carbon... Fe-Al intermetallic/TiC-Al2O3 ceramic composites were successfully prepared by selfpropagating high-temperature synthesis (SHS) from natural ilmenite, aluminium and carbon as the raw materials. The effects of carbon sources, preheating time and heat treatment temperature on synthesis process and products were investigated in detail, and the reaction process of the FeTiO3-Al-C system was also discussed. It is shown that the temperature and velocity of the combustion wave are higher when graphite is used as the carbon source, which can reflect the effect of the carbon source structure on the combustion synthesis; Prolonging the preheating time or heat treatment temperature is beneficial to the formation of the ordered intermetallics; The temperature and velocity of the combustion wave are improved, but the disordered alloys are difficult to eliminate with the preheating time prolonged. The compound powders mainly containing ordered Fe3Al intermetallic can be prepared through heat treatment at 750 ℃. 展开更多
关键词 ILMENITE Fe-AI intermetallic/TiC-al2o3 ceramic composites SHS I/CMC
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(La0.2Ce0.2Nd0.2Sm0.2Eu0.2)PO4: A high-entropy rare-earth phosphate monazite ceramic with low thermal conductivity and good compatibility with Al2O3 被引量:18
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作者 Zifan Zhao Heng Chen +4 位作者 Huimin Xiang Fu-Zhi Dai Xiaohui Wang Zhijian Peng Yanchun Zhou 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2019年第12期2892-2896,共5页
Low thermal conductivity, matched thermal expansion coefficient and good compatibility are general requirements for the environmental/thermal barrier coatings(EBCs/TBCs) and interphases for Al2O3 f/Al2O3 composites. I... Low thermal conductivity, matched thermal expansion coefficient and good compatibility are general requirements for the environmental/thermal barrier coatings(EBCs/TBCs) and interphases for Al2O3 f/Al2O3 composites. In this work, a novel high-entropy(HE) rare-earth phosphate monazite ceramic (La0.2Ce0.2Nd0.2Sm0.2Eu0.2)PO4 is designed and successfully synthesized. This new type of HE rare-earth phosphate monazite exhibits good chemical compatibility with Al2O3, without reaction with Al2O3 as high as 1600℃ in air. Moreover, the thermal expansion coefficient(TEC) of HE (La0.2Ce0.2Nd0.2Sm0.2Eu0.2)PO4(8.9 × 10^-6/℃ at 300–1000℃) is close to that of Al2O3. The thermal conductivity of HE (La0.2Ce0.2Nd0.2Sm0.2Eu0.2)PO4 at room temperature is as low as 2.08 W·m^-1·K^-1, which is about 42% lower than that of La PO4. Good chemical compatibility, close TEC to that of Al2O3, and low thermal conductivity indicate that HE (La0.2Ce0.2Nd0.2Sm0.2Eu0.2)PO4 is suitable as a candidate EBC/TBC material and an interphase for Al2O3 f/Al2O3 composites. 展开更多
关键词 (La0.2Ce0.2Nd0.2Sm0.2Eu0.2)Po4 High-entropy ceramics al2o3f/al2o3ceramic matrix composites Environmental barrier coating materials Interphase material Thermal expansion coefficient Thermal conductivity Solution synthesis Rare-earth phosphates MoNAZITE
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陶瓷基复合材料(Fe_3Al/Al_2O_3)设计专家系统原型的研究与实现 被引量:1
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作者 赵秀阳 刘希民 +2 位作者 梁立新 赵合计 尹衍升 《山东轻工业学院学报(自然科学版)》 CAS 2003年第4期56-59,共4页
 本文简要介绍了材料设计的意义和Fe3Al/Al2O3陶瓷复合材料的性能特点,重点阐述了Fe3Al/Al2O3陶瓷复合材料设计专家系统的组成及实现。
关键词 材料设计 陶瓷基复合材料 Fe3al/al2o3 专家系统 系统组成
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