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Effect of heating parameters on sintering behaviors and properties of mullite whisker frameworks

机译:加热参数对莫来石晶须框架烧结行为及性质的影响

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摘要

Mullite whisker frameworks were fabricated by vapor-solid reaction with SiO2, Al2O3 and AlF3 powders as the whisker forming agent at high temperatures. The effects of heating temperature and soaking time on the weight loss, liner shrinkage, porosity, microstructure and compressive strength were investigated. The results showed that with the increasing of the sintering temperature and soaking time, the weight loss and liner shrinkage of the samples increased and the porosities decreased due to the accelerated vapor-solid reaction, resulting in strong bonding and grain growth of the mullite frameworks. The compressive strength of the samples increased with increasing the sintering temperature from 1500 to 1650 degrees C, and decreased with the soaking time extended to more than 5 h for 1500 degrees C and 2 h for 1650 degrees C. A maximum compressive strength of 142 MPa at a porosity of 62.3% was obtained for the mullite whisker framework heated at 1500 degrees C for 5 h. The enhanced strength was attributed to the strong bonding strength and fine mullite grains resulting from a relative lower heating temperature and a modest soaking time.
机译:通过与SiO 2,Al 2 O 3和Alf3粉末作为高温的晶须形成剂,通过蒸汽固体反应制造莫来石晶须框架。研究了加热温度和浸泡时间对体重减轻,衬里收缩,孔隙率,微观结构和抗压强度的影响。结果表明,随着烧结温度和浸泡时间的增加,样品的重量损失和衬里收缩增加,孔隙率由于加速蒸汽反应而降低,导致莫来石框架的强粘接和晶粒生长。样品的抗压强度随着从1500至1650℃的增加而增加,并且随着浸泡时间延伸到超过5小时的烧结温度降低到1500℃和2小时,对于1650℃。最大抗压强度为142MPa在1500℃下加热的莫来石晶须框架,得到62.3%的孔隙率为5小时。增强的强度归因于由相对较低的加热温度和适度浸泡时间产生的强粘接强度和细莫来石晶粒。

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