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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of controlled interfacial reaction on the microstructure and properties of the SiCp/Al composites prepared by pressureless infiltration
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Effect of controlled interfacial reaction on the microstructure and properties of the SiCp/Al composites prepared by pressureless infiltration

机译:受控界面反应对无压浸渗制备的SiCp / Al复合材料组织和性能的影响

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摘要

High volume fraction SiCp/Al composite is prepared by pressureless infiltration. In this paper, the effect of both the addition of Si to aluminum and passive oxidation of SiC to control SiC/Al interfacial reaction on the microstructure, thermal conductivity and coefficient of thermal expansion of infiltrated composite is investigated. TEM and X-ray results showed that severe interfacial reaction occurred between SiC reinforcement and Al matrix by the infiltration of the unoxidized SiCp preform by Al-8 wt percent Mg at 1000 deg C. And the reaction can be suppressed by the use of aluminum with 12 wt percent Si addition or the SiC preform oxidized in air at 1200 deg C for 3 h. The method of addition of Si to aluminum is more favorable to prepare composites with higher thermal conductivity, lower coefficient of thermal expansion and porosity as compared to the method of passive oxidation of SiC. The effect mechanism of both methods on the microstructure and thermal-physical properties is discussed.
机译:通过无压渗透制备高体积分数的SiCp / Al复合材料。本文研究了在铝中添加硅和被动氧化SiC以控制SiC / Al界面反应对渗透复合材料的组织,导热系数和热膨胀系数的影响。 TEM和X射线结果表明,在1000℃下,Al-8wt%的Mg渗入未氧化的SiCp预成型坯,使SiC增强体与Al基体发生了严重的界面反应。添加12 wt%的Si或SiC预制棒在1200摄氏度的空气中氧化3小时。与被动氧化SiC的方法相比,向铝中添加Si的方法更有利于制备具有更高的导热率,更低的热膨胀系数和孔隙率的复合材料。讨论了两种方法对组织和热物理性能的影响机理。

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