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    • 74. 发明授权
    • Method for melting glass-making materials
    • 冶炼玻璃制品的方法
    • US3850606A
    • 1974-11-26
    • US37553273
    • 1973-07-02
    • OWENS ILLINOIS INC
    • ROUGH R
    • C03B3/00C03B5/027C03B5/03C03B5/187C03B5/18
    • C03B5/027C03B3/00C03B5/1875
    • A method and apparatus for rapidly melting glass-making materials wherein the glass-making materials are introduced into a chamber containing molten glass, heat is applied to the materials in the chamber by passage of an electric current between spaced electrodes while one of the electrodes is moved within the molten materials to agitate the materials to constantly move the location of the heating point through the batch glass-making materials and to enfold newly-added glassmaking materials into the molten glass within the chamber. The moving electrode moves in a generally circular path so that a portion of its path moves it out of and back into the molten glass.
    • 一种用于快速熔化玻璃制造材料的方法和装置,其中将玻璃制造材料引入含有熔融玻璃的室中,通过在间隔开的电极之间的电流通过室中的材料,将电热施加到电极中的一个电极 在熔融材料内移动以搅拌材料以使加热点的位置不断移动通过间歇玻璃制造材料,并将新添加的玻璃制造材料包装到室内的熔融玻璃中。 移动电极以大致圆形路径移动,使得其路径的一部分将其移出并返回到熔融玻璃中。
    • 76. 发明授权
    • Apparatus and methods for melting glass compositions for glass laser rods
    • 玻璃激光玻璃组合物的熔化装置和方法
    • US3656924A
    • 1972-04-18
    • US3656924D
    • 1969-11-17
    • OWENS ILLINOIS INC
    • CHAPMAN GEORGE CSUEUR JAMES T LE
    • C03B5/02C03B5/08C03B5/12C03B5/167C03B5/187C03B5/235C03B7/08C03C3/095C03C4/00C03C4/12H01S3/17C03B5/18
    • C03C4/0071C03B5/02C03B5/08C03B5/12C03B5/167C03B5/1675C03B5/1875C03B5/235C03C3/095
    • Methods of melting and refining molten glass for the production of glass laser rods, the glass having a relatively high lithia content of at least about 8 mole percent, the glass being melted in a platinum lined furnace having a roof, sidewalls and a bottom having a discharge opening and a plunger adapted to open and close the opening. The method includes the steps of (1) charging into the furnace by means of a charge opening and a charge tube raw glass batch materials in the form of oxides, (2) melting the batch materials to form molten glass and refining the same, (3) providing an atmosphere of inert gas above the molten glass by a flow of gas into the atmosphere, and using the inert gas to purge any air from the furnace atmosphere during the charging of the raw batch materials, (4) stirring the molten glass with stirrers having platinum surfaces on the portion thereof exposed to the molten glass furnace atmosphere, (5) sealing the charge tube, the stirrers and the plunger with molten glass seals to prevent air from coming into the furnace atmosphere and to prevent condensation of platinum vapors to thereby eliminate deposits of platinum containing material in the molten glass which could cause platinum inclusions, and (6) charging the molten refined glass through the discharge opening for the production of high quality glass laser rods having a minimum of platinum inclusions.
    • 熔融和精炼熔融玻璃以生产玻璃激光棒的方法,所述玻璃具有至少约8摩尔百分比的相对高的锂离子含量,所述玻璃在具有屋顶的铂衬里炉中熔化,所述侧壁和底部具有 排出口和适于打开和关闭开口的柱塞。 该方法包括以下步骤:(1)通过充电开口将炉子装入炉中,并以氧化物的形式加入充电管原料玻璃批料,(2)熔化批料以形成熔融玻璃并精制其 3)通过气体流入大气中,在熔融玻璃上方提供惰性气体气氛,并且在生成批料材料的充填期间使用惰性气体从炉内气氛吹扫任何空气,(4)搅拌熔融玻璃 搅拌器在其暴露于熔融玻璃炉气氛的部分上具有铂表面,(5)用熔融玻璃密封件密封充电管,搅拌器和柱塞,以防止空气进入炉气氛并防止铂蒸汽冷凝 从而消除熔融玻璃中含铂材料的沉积物,这可能导致铂夹杂物,(6)通过排出口对熔融精炼玻璃进行充填以产生高温 具有最少铂夹杂物的Ality玻璃激光棒。