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Alumina/Glass Composites Fabricated by Melt-infiltration of Glass into Porous Alumina

机译:通过将玻璃熔融浸润成多孔氧化铝制造的氧化铝/玻璃复合材料

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Alumina/glass composites were successfully fabricated by melt-infiltration of glass into porous alumina pellets. Alumina powder was first pressed uniaxially at 100MPa to form disc-shaped pellets, then, heated up to 1200°C for 2 h to form porous pellets with moderate strength for subsequent infiltration. A mixture of calcium aluminosilicate and magnesium borosilicate glass powders were melt-infiltrated into porous alumina at 1200°C~1250°C by capillary pressure to form composites. The infiltration depths varied with the square root of infiltration time. And the activation energy of the infiltration process was estimated to be 621 KJ/mole. After complete infiltration, the composite had bulk density approaching 3.3 g/cm{sup}3 (~96% of theoretical density) and open porosity reaching zero, with slight expansion of 0.5% in diameter. Its flexural strength was 150MPa and its Vickers microhardness was about 1000 Kg/mm{sup}2.
机译:通过将玻璃熔融浸润成多孔氧化铝颗粒,成功地制造了氧化铝/玻璃复合材料。首先在100MPa下单轴压制氧化铝粉末,形成盘形粒料,然后加热至1200℃,形成多孔粒料,以适中的强度进行后续渗透。通过毛细管压力在1200℃〜1250℃下将硅铝酸钙和镁硼硅酸镁玻璃粉末的混合物熔融渗透到多孔氧化铝中以形成复合材料。渗透深度随着渗透时间的平方根而变化。渗透过程的激活能量估计为621kJ /摩尔。完全渗透后,复合材料的批量密度接近3.3g / cm {sup} 3(〜96%的理论密度),开放孔隙率达到零,直径略有膨胀0.5%。其弯曲强度为150MPa,其维氏显微硬度约为1000kg / mm {sup} 2。

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