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高硅矿物加工装饰板材的若干方法
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作者 刘建平 《石材》 2013年第5期10-12,共3页
对石英岩玉、透闪石、透辉石和叠层石等SiO:较高的矿物,采用高分子聚合物并用压力进行渗胶及钻孔注胶,以原构聚合方式使裂隙矿物成材,其聚合产品具有较显著的净化环境性能及较好的装饰效果。
关键词 石英岩玉 透闪石 高分子 压力渗胶 钻孔注 原构聚合 薄板加拼板 净化环境
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Near-net shaped Al/SiCP composites via vacuum-pressure infiltration combined with gelcasting 被引量:8
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作者 Cui-ge DONG Ri-chu WANG +3 位作者 Yi-xin CHEN Xiao-feng WANG Chao-qun PENG Jing ZENG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2020年第6期1452-1462,共11页
To solve the problem of difficult machining, the near-net shaped Al/SiCP composites with high volume fraction of SiC particles were fabricated by vacuum-pressure infiltration. The SiCP preform with a complex shape was... To solve the problem of difficult machining, the near-net shaped Al/SiCP composites with high volume fraction of SiC particles were fabricated by vacuum-pressure infiltration. The SiCP preform with a complex shape was prepared by gelcasting. Pure Al, Al4Mg, and Al4Mg2Si were used as the matrices, respectively. The results indicate that the optimal parameters of SiCP suspension in gelcasting process are pH value of 10, TMAH content of 0.5 wt.%, and solid loading of 52 vol.%. The Al matrix alloyed with Mg contributes to improving the interfacial wettability of the matrix and SiC particles, which increases the relative density of the composite. The Al matrix alloyed with Si is beneficial to inhibiting the formation of the detrimental Al4C3 phases. The Al4Mg2Si/SiCP composite exhibits high relative density of 99.2%, good thermal conductivity of 150 W·m^-1·K^-1, low coefficient of thermal expansion of 10.1×10^-6 K^-1, and excellent bending strength of 489 MPa. 展开更多
关键词 Al/SiCP composites GELCASTING vacuum-pressure infiltration microstructure properties
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