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    • 7. 发明申请
    • GLASS MELTING METHOD AND MOLTEN GLASS LAYER BUBBLING GLASS MELTING FURNACE
    • 玻璃熔炼法和玻璃层熔化玻璃熔炼炉
    • WO2013085430A1
    • 2013-06-13
    • PCT/RU2012/001011
    • 2012-12-03
    • THE FEDERAL STATE AUTONOMOUS EDUCATIONAL INSTITUTION OF THE HIGHER PROFESSIONAL EDUCATION "NATIONAL UNIVERSITY OF SCIENCE AND TECHNOLOGY "MISIS"SBORSHIKOV, Gleb SemenovichKLEGG, Juriy DgimovichGRISHAEVA, Svetlana ViсtorovnaKLEGG, Dmitriy Jurievich
    • SBORSHIKOV, Gleb SemenovichKLEGG, Juriy DgimovichGRISHAEVA, Svetlana ViсtorovnaKLEGG, Dmitriy Jurievich
    • C03B5/193
    • C03B5/193C03B3/023C03B3/026C03B5/225C03B5/2356C03B5/43C03B5/44F23C3/004F23D14/78F23D2214/00
    • This invention relates to the continuous production of molten glass for further production of glassware and can be used for glass melting and obtaining glass semiproduct. The technical objective of this invention is to provide a method and a furnace for producing molten glass with stabilized physical properties due to an increased phase boundary area, higher temperature in the glass furnace bath and intensified mixing as well as due to a higher output of the glass furnace. Molten glass layer bubbling glass melting method comprising melting the glass layer in the first chamber of the furnace to the working level, further uninterrupted loading of large and small charge portions into the molten glass layer with simultaneous intense bubbling of the molten glass layer with high-temperature combustion products aiming at the formation of the maximum possible charge/molten glass phase boundary area and achieving a molten glass temperature of at least 1500°C, which conditions intensify the melting, silicate formation, vitrification and homogenizing processes, delivery of the chemically and thermally homogeneous molten glass produced by bubbling to the degassing and cooling section located under the bubbled molten glass layer, with an intense release from the molten glass layer of process gases that pass through the bubbled layer to the space above the layer where the process gases undergo primary cleaning and cooling, and the degassed molten glass is delivered to the further output section.
    • 本发明涉及连续生产用于进一步生产玻璃器皿的熔融玻璃,可用于玻璃熔融和获得玻璃半成品。 本发明的技术目的是提供一种用于生产具有稳定物理性质的熔融玻璃的方法和炉子,这是由于增加的相界面积,玻璃熔池中的较高温度和强化的混合以及由于较高的 玻璃炉。 熔融玻璃层鼓泡玻璃熔化方法包括将炉子的第一室中的玻璃层熔化到工作水平,进一步不间断地将大的和小的电荷部分加载到熔融玻璃层中,同时使熔融玻璃层与高熔点玻璃层同时发生高压, 温度燃烧产物旨在形成最大可能的电荷/熔融玻璃相边界面积,并实现至少1500℃的熔融玻璃温度,该条件加剧了熔融,硅酸盐形成,玻璃化和均质化过程,化学和/ 通过鼓泡到位于起泡的熔融玻璃层下方的脱气和冷却部分产生的均匀均匀的玻璃熔融物,从经过鼓泡层的工艺气体的熔融玻璃层强烈释放到工艺气体经历的层上方的空间 初级清洁和冷却,并且脱气的熔融玻璃被输送t o进一步的输出部分。