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首页> 外文期刊>Advances in Applied Ceramics >Effect if MgO addition and sintering parameters on mullite formation through reaction sintering kaolin and alumina
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Effect if MgO addition and sintering parameters on mullite formation through reaction sintering kaolin and alumina

机译:MgO添加和烧结参数对反应烧结高岭土和氧化铝对莫来石形成的影响

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In the present work, the influence of MgO addition and sintering parameters on the formation and densification of mullite was investigated. The morphology of powders and the microstructure of the sintered samples were characterised by means of a scanning electron microscope. X-ray diffraction was used to characterise phases formed in sintered samples. The density of sintered samples was measured using a densimeter and quantified according to the Archimedes principle. MgO was added at 1, 2, 3, 4, 5 and 6 wt-% to kaolin and alumina and the powders were ball milled for 5 h then uniaxially compacted at 75 MPa and finally sintered at 1500, 1550, 1600 and 1650℃ for 2, 4, 6 and 8 h. It was found that addition of MgO not only affected mullite formation but also promoted grain growth. For samples containing 0, 1 and 2 wt-%MgO only mullite was formed. While, in addition to mullite, Al{sub}2O{sub}3 was present in sample containing 3 wt-%MgO. At higher MgO content (4, 5 and 6 wt-%), three phases, i.e. mullite, Al{sub}2O{sub}3 and spinel, were formed. Addition of 1 wt-%MgO increased the density of all samples for all sintering times and higher densities corresponded to higher sintering temperatures. At higher MgO content, higher temperatures led to lower densities and lower temperatures led to higher densities for almost all sintering times.
机译:在目前的工作中,研究了MgO的添加和烧结参数对莫来石的形成和致密化的影响。粉末的形态和烧结样品的微观结构通过扫描电子显微镜表征。 X射线衍射用于表征在烧结样品中形成的相。使用密度计测量烧结样品的密度,并根据阿基米德原理进行定量。将MgO以1、2、3、4、5和6 wt%的量添加到高岭土和氧化铝中,并将粉末球磨5 h,然后在75 MPa下单轴压实,最后在1500、1550、1600和1650℃下烧结。 2、4、6和8小时。发现添加MgO不仅影响莫来石的形成,而且还促进了晶粒的生长。对于包含0、1和2 wt%MgO的样品,仅形成莫来石。同时,除了莫来石,Al {sub} 2O {sub} 3还存在于含有3 wt%MgO的样品中。在较高的MgO含量(4、5和6重量%)下,形成了三相,即莫来石,Al {sub} 2O {sub} 3和尖晶石。 1重量%的MgO的添加增加了在所有烧结时间下所有样品的密度,并且更高的密度对应于更高的烧结温度。在较高的MgO含量下,几乎在所有烧结时间内,较高的温度导致较低的密度,而较低的温度导致较高的密度。

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