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Crystallization of fluorcanasite-fluorrichterite glasses

机译:氟硅铝石-氟锂玻璃的结晶

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The crystallization behavior of alkali-modified glasses in the fluorcanasite-fluorrichterite system was investigated using DTA, XRD, SEM, dilatometry and other techniques. The coefficient of thermal expansion, density, Vickers' microhardness and chemical durability of the obtained products were also evaluated. Limestone, magnesite, and quartz sand together with potassium and sodium carbonates, calcium and magnesium fluorides served as starting materials for glass preparation. The main crystalline phases formed after different heat-treatments were fluorcanasite, fluorrichterite, agrellite, fluorite and diopside ss. The microstructures of the crystalline products consisted of interlocking blade-like and acicular crystals with increasing degrees of fineness as the nominal fluorrichterite content was increased.The coefficient of thermal expansion of the obtained glass-ceramic materials ranged between 79 X10~-7 and 109X10~-7 deg~-1; and the density between 2.55 and 2.93 gm/cm~3. The crystalline products attained Vickers' hardness values of 508-743 kg/mm~2. The chemical durability of the materials was better in acidic than in alkaline solutions.
机译:使用DTA,XRD,SEM,膨胀法和其他技术研究了碱改性玻璃在萤石-萤石中的结晶行为。还评估了所得产物的热膨胀系数,密度,维氏显微硬度和化学耐久性。石灰石,菱镁矿和石英砂以及碳酸钾和碳酸钠,氟化钙和氟化镁是玻璃制备的起始原料。经过不同热处理后形成的主要结晶相为萤石,萤石,方沸石,萤石和透辉石。晶体产物的显微组织由互锁的叶片状和针状晶体组成,随着标称萤石含量的增加,细度也随之提高。所得玻璃陶瓷材料的热膨胀系数在79 X10〜-7和109X10〜之间。 -7度〜-1;密度在2.55至2.93 gm / cm〜3之间。结晶产物达到维氏硬度值为508-743 kg / mm〜2。该材料的化学耐久性在酸性条件下比在碱性溶液中更好。

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