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首页> 外文期刊>Journal of Advanced Ceramics >Role of MgF2 addition on high energy ball milled kalsilite: Implementation as dental porcelain with low temperature frit
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Role of MgF2 addition on high energy ball milled kalsilite: Implementation as dental porcelain with low temperature frit

机译:MGF2加入高能量球的作用磨床Kalsilite:以低温玻璃料为牙科瓷器实施

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摘要

Porcelain fused to metal (PFM) has received great attention over the last few years due to its importance in the dentistry. Kalsilite (K2O·Al2O3·SiO2) is a high thermal expansion porcelain, suitable for bonding to metals. However, kalsilite is a metastable phase which gets converted into crystalline leucite upon heating. In the current work feasibility of developing stable kalsilite phase, dispersion of MgF2 in it as an additive and using mechanochemical synthesis are studied. Micro fine dental material has been formulated by mixing prepared kalsilite with low temperature frit (LTF) in different ratio. The crystalline phases evolved in fired powders are characterized by powder X-ray diffraction (XRD) technique. Kalsilite with different ratio of LTF has been cold pressed and heat treated to examine its coefficient of thermal expansion (CTE), flexural strength, apparent porosity (AP), bulk density (BD) and microstrucrure. Results indicate that MgF2 addition and high milling duration help in kalsilite stabilization. Temperature also plays an important role in this stabilization, and at 1100 °C single phase kalsilite formation is observed. Present outcomes demonstrate that it is easily possible to synthesize a stable single phase kalsilite with desirable properties.
机译:由于其在牙科的重要性,陶瓷与金属(PFM)融合的瓷器受到了极大的关注。 Kalsilite(K2O·Al2O3·SiO 2)是一种高热膨胀瓷,适用于金属粘合。然而,Kalsilite是一种稳定性相,在加热时被转化为结晶益酸盐。在当前的开发稳定Kalsilite相的工作可行性中,研究了MGF2作为添加剂和使用机械化学合成的分散。通过以不同比例的低温料(LTF)混合制备的Kalsilite与微细牙科材料配制。在烧制粉末中演化的结晶相的特征在于粉末X射线衍射(XRD)技术。具有不同LTF比率的Kalsilite已被冷压制和热处理,以检查其热膨胀系数(CTE),弯曲强度,表观孔隙率(AP),散装密度(BD)和微核。结果表明,Kalsilite稳定化的MGF2加入和高铣削持续时间有助于。温度也在这种稳定化中起重要作用,并且观察到1100°C的单相卡列特地形成。现有结果表明,易于合成具有所需性质的稳定单相卡尔丝石。

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