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低介电损耗AlN陶瓷及BN-AlN基陶瓷材料研究 被引量:2
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作者 张巨先 《真空电子技术》 2009年第4期50-53,68,共5页
首先利用化学工艺制备出烧结助剂Y2O3均匀混合的AlN粉体及BN均匀包覆AlN的复合粉体。利用无压烧结制备出AlN陶瓷及BN-AlN基复相陶瓷。通过对陶瓷显微结构、热性能及微波介电性能的研究发现,通过化学工艺,将BN包覆到AlN粉体表面,制备出... 首先利用化学工艺制备出烧结助剂Y2O3均匀混合的AlN粉体及BN均匀包覆AlN的复合粉体。利用无压烧结制备出AlN陶瓷及BN-AlN基复相陶瓷。通过对陶瓷显微结构、热性能及微波介电性能的研究发现,通过化学工艺,将BN包覆到AlN粉体表面,制备出显微结构均匀的AlN-20%BN(质量比)复相陶,其热导率为78.1 W/m.K,在Ka波段介电常数为7.2、介电损耗最小值为13×10-4;通过材料化学工艺,将烧结助剂Y2O3均匀添加到AlN基体中,制备出热导率为154.2W/m.K,在Ka波段介电常数为8.5、介电损耗最小值为9.3×10-4的AlN陶瓷材料。 展开更多
关键词 ALN陶瓷 bn—AlN陶瓷 低介电损耗 化学工艺
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Mechanical Properties and Thermal Shock Resistance of SrAl_(2)Si_(2)O_(8) Reinforced BN Ceramic Composites
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作者 WANG Bo CAI Delong +7 位作者 ZHU Qishuai LI Daxin YANG Zhihua DUAN Xiaoming LI Yanan WANG Xuan JIA Dechang ZHOU Yu 《无机材料学报》 SCIE EI CAS 2024年第10期1182-1188,共7页
Hexagonal boron nitride(h-BN)ceramics have become exceptional materials for heat-resistant components in hypersonic vehicles,owing to their superior thermal stability and excellent dielectric properties.However,their ... Hexagonal boron nitride(h-BN)ceramics have become exceptional materials for heat-resistant components in hypersonic vehicles,owing to their superior thermal stability and excellent dielectric properties.However,their densification during sintering still poses challenges for researchers,and their mechanical properties are rather unsatisfactory.In this study,SrAl_(2)Si_(2)O_(8)(SAS),with low melting point and high strength,was introduced into the h-BN ceramics to facilitate the sintering and reinforce the strength and toughness.Then,BN-SAS ceramic composites were fabricated via hot press sintering using h-BN,SrCO_(3),Al_(2)O_(3),and SiO_(2) as raw materials,and effects of sintering pressure on their microstructure,mechanical property,and thermal property were investigated.The thermal shock resistance of BN-SAS ceramic composites was evaluated.Results show that phases of as-preparedBN-SAS ceramic composites are h-BN and h-SrAl_(2)Si_(2)O_(8).With the increase of sintering pressure,the composites’densities increase,and the mechanical properties shew a rising trend followed by a slight decline.At a sintering pressure of 20 MPa,their bending strength and fracture toughness are(138±4)MPa and(1.84±0.05)MPa·m^(1/2),respectively.Composites sintered at 10 MPa exhibit a low coefficient of thermal expansion,with an average of 2.96×10^(-6) K^(-1) in the temperature range from 200 to 1200℃.The BN-SAS ceramic composites prepared at 20 MPa display higher thermal conductivity from 12.42 to 28.42 W·m^(-1)·K^(-1) within the temperature range from room temperature to 1000℃.Notably,BN-SAS composites exhibit remarkable thermal shock resistance,with residual bending strength peaking and subsequently declining sharply under a thermal shock temperature difference ranging from 600 to 1400℃.The maximum residual bending strength is recorded at a temperature difference of 800℃,with a residual strength retention rate of 101%.As the thermal shock temperature difference increase,the degree of oxidation on the ceramic surface and cracks due to thermal stress are also increased gradually. 展开更多
关键词 bn matrix composite hot-press sintering mechanical property thermal shock resistance service reliability
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