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首页> 外文期刊>Materials science forum >Mechanical Properties of MgO-Doped Transparent Crystalline Alumina Fabricated by Two-Step Pressureless Sintering
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Mechanical Properties of MgO-Doped Transparent Crystalline Alumina Fabricated by Two-Step Pressureless Sintering

机译:两步无压烧结法制备MgO掺杂透明结晶氧化铝的力学性能

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摘要

Transparent polycrystalline alumina with high bending strength has been fabricated using two-step pressureless sintering. The microstructure and mechanical property has been investigated by varying the MgO doping concentration and sintering parameters. The results showed that the grain size markedly decreased with the increasing content of MgO addition. Although the density of alumina could be increased by the higher temperature for the first sintering step, the larger grain would depress the bending strength. Hence, the optimum bending strength was achieved with 0.5 wt% MgO with the two-step sintering of 1450°C for 20 min and 1400°C for 20 h. The Vickers hardness of the transparent PCA increased doping content, and the variation tendency was well accelerated with the relative density, indicated that the porosity plays a more important on hardness than the grain size.
机译:使用两步无压烧结制造了具有高弯曲强度的透明多晶氧化铝。通过改变MgO的掺杂浓度和烧结参数研究了显微组织和力学性能。结果表明,随着MgO添加量的增加,晶粒尺寸明显减小。尽管在第一烧结步骤中可以通过较高的温度来增加氧化铝的密度,但是较大的晶粒会降低弯曲强度。因此,在1450°C下20分钟和1400°C下20小时的两步烧结过程中,使用0.5 wt%MgO可获得最佳的弯曲强度。透明PCA的维氏硬度增加了掺杂含量,并且随着相对密度的变化趋势得到了很好的加速,这表明孔隙率对硬度的影响比晶粒尺寸更为重要。

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