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The Effect of Sintering Temperature on Porous Silica Composite Strength

机译:烧结温度对多孔二氧化硅复合强度的影响

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The effect of sintering temperature on porous silica composite strength was studied by discussing three factors, namely crystal phase, glassy phase and porosity. The fired products of clay and silica are composed of crystalline phase and glassy phase. The crystalline phases consist of alpha-quartz and mullite and the glassy phase contains a disordered silica network. With the increase of sintering temperature up to 1360℃, the crystalline silica decreased gradually. The disappearing silica dissolved into the glass and became a part of glass network and resulted in the enhancement of glass strength. This change in glass played an important role in the improvement of sample strength. At the same time, the increase of sintering temperature promoted the densification of samples and reduced the porosity of products, which also contribute to the increase of sample strength. When the sintering temperature is up to 1390℃, the silica in glass tended to convert to cristobalite with the expansion of glassy phase. This expansion weakened the connection of atoms in glass network and brought some closed pores into products, which led to the decrease of sample strength.
机译:通过讨论晶相,玻璃相和孔隙率三个因素,研究了烧结温度对多孔二氧化硅复合材料强度的影响。粘土和二氧化硅的煅烧产物由结晶相和玻璃相组成。结晶相由α-石英和莫来石组成,玻璃相含有无序的二氧化硅网络。随着烧结温度的升高,达到1360℃,结晶硅逐渐减少。消失的二氧化硅溶解到玻璃中,成为玻璃网络的一部分,从而提高了玻璃强度。玻璃的这种变化在提高样品强度方面起着重要作用。同时,烧结温度的升高促进了样品的致密化,降低了产品的孔隙率,这也有助于提高样品强度。当烧结温度达到1390℃时,玻璃中的二氧化硅会随着玻璃相的膨胀而转变为方石英。这种膨胀削弱了玻璃网络中原子的连接,并在产品中引入了一些封闭的孔,从而导致样品强度降低。

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