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首页> 外文期刊>Journal of Materials Science >Sintering and crystallisation of a P2O5-added Li2O-ZrO2-SiO2 glass powder system
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Sintering and crystallisation of a P2O5-added Li2O-ZrO2-SiO2 glass powder system

机译:添加P2O5的Li2O-ZrO2-SiO2玻璃粉末体系的烧结和结晶

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Sintering and crystallisation of a 11.5 wt % Li2O, 22.8 wt % ZrO2, 65.7 wt % SiO2 glass powder with P2O5 added were investigated. By means of thermal shrinkage measurements, sintering was found to start at about 650°C and was completed in a very short temperature interval (ΔT ≈ 100°C) in less than 30 min. Crystallisation took place just after completion of densification and was almost completed at about 900°C in 20 min. Secondary porosity prevailed over the primary porosity during the crystallisation stage. The glass powder compacts first crystallised into lithium metasilicate (Li2SiO3) and/or zircon (ZrSiO4) and tridymite (SiO2) which transformed and/or grew into lithium disilicate (Li2Si2O5), zircon and tridymite after the crystallisation process was essentially complete, so that, a crystallinity degree between 52.4 ± 2.0 and 68.5 ± 3.2 wt % was obtained. P2O5 doping little affected the densification. However, adding P2O5 remarkably enhanced the zircon and tridymite crystallisation while delaying the Li2SiO3 to Li2Si2O5 transformation. The microstructure is characterised by fine crystals uniformly distributed arbitrarily oriented throughout the residual glass phase.
机译:研究了添加了P2O5 的11.5 wt%Li2O,22.8 wt%ZrO2 ,65.7 wt%SiO2玻璃粉末的烧结和结晶。通过热收缩率测量,发现烧结始于大约650°C,并且在非常短的温度间隔内(ΔT≈100°C)在不到30分钟的时间内完成。在致密化完成后立即进行结晶,并在约900°C下于20分钟内几乎完成。在结晶阶段,次要孔隙度高于主要孔隙度。玻璃粉末压块首先结晶为偏硅酸锂(Li2 SiO3 )和/或锆石(ZrSiO4 )和鳞石英(SiO2 ),它们转变和/或生长为二硅酸锂。结晶过程中的(Li 2 Si 2 O 5),锆石和鳞石英基本完成,因此结晶度为52.4±2.0至68.5±3.2wt%。 P2 O5 掺杂对致密化影响很小。然而,添加P2 O5 显着增强了锆石和鳞石英的结晶,同时延迟了Li2 SiO3 向Li2 Si2 O5 的转变。 。微观结构的特征是在整个残留玻璃相中均匀分布的任意取向的细晶体。

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