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首页> 外文期刊>Journal of Materials Science >EFFECT OF STARTING PARTICLE SIZE ON HOT-PRESSING OF MAGNESIUM OXIDE POWDER PREPARED BY VAPOUR-PHASE OXIDATION PROCESS
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EFFECT OF STARTING PARTICLE SIZE ON HOT-PRESSING OF MAGNESIUM OXIDE POWDER PREPARED BY VAPOUR-PHASE OXIDATION PROCESS

机译:起始颗粒尺寸对气相氧化法制备氧化镁粉热压的影响

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摘要

Effect of starting particle size on hot-pressing of magnesium oxide (MgO) powder was examined using seven kinds of MgO powders prepared by a vapour-phase oxidation process; the average primary particle sizes were 11, 25, 32, 44, 57, 107 and 261 nm. These compressed powders (compacts) were hot-pressed at a temperature between 900 and 1300 degrees C. The densifications of these compacts during the hot-pressing proceeded via (i) the sintering of primary particles within secondary particles and the rearrangement of secondary particles/grains (900 degrees C), (ii) the gradual grain growth controlled by the pore migration (900 similar to 1100 degrees C) and (iii) the rapid grain growth due to the active mass transfer (1300 degrees C); the grain sizes of MgO compacts hot-pressed at and below 1100 degrees C were < 1 mu m, while those at 1300 degrees C attained 20 similar to 30 mu m. The translucent compact with the relative density of 99.7% could be obtained when the compressed powder with the average primary particle size of 44 nm was hot-pressed at a temperature as low as 1100 degrees C for 1 h. [References: 22]
机译:使用七种通过汽相氧化法制备的MgO粉末,研究了起始粒径对氧化镁(MgO)粉末热压的影响。平均一次粒径为11、25、32、44、57、107和261 nm。这些压缩粉末(压粉)在900到1300摄氏度之间的温度下热压。在热压过程中,这些压粉的致密化过程是通过(i)二次粒子内初级粒子的烧结和二次粒子的重排进行的。晶粒(900摄氏度),(ii)受孔隙迁移控制的逐渐晶粒生长(900接近1100摄氏度),以及(iii)由于有效传质(1300摄氏度)而晶粒快速生长;在1100摄氏度或更低的温度下热压的MgO压块的晶粒尺寸小于1微米,而在1300摄氏度下热压的MgO压片的晶粒尺寸为30微米。当将平均一次粒径为44nm的压缩粉末在低至1100℃的温度下热压1小时时,可获得相对密度为99.7%的半透明压坯。 [参考:22]

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