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公开(公告)号:US20220098079A1
公开(公告)日:2022-03-31
申请号:US17425542
申请日:2020-08-12
Applicant: JUSHI GROUP CO., LTD.
Inventor: Yuqiang ZHANG , Changying FANG , Xianliang ZHAO , Yucang YAN , Xiaodong WENG
Abstract: A cover plate structure for a glass fiber tank furnace forehearth includes chest wall bricks at two sides of the forehearth, cover plate bricks each spanning between a top end of at least one of the chest wall bricks at one of the two sides of the forehearth and a top end of at least one of the chest wall bricks at another one of the two sides of the forehearth, a thermal insulation layer covering outer surfaces of the cover plate bricks and the chest wall bricks, and a gap-covering brick fixed between the cover plate bricks and the thermal insulation layer and covering a gap between adjacent ones of the cover plate bricks.
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公开(公告)号:US20210024398A1
公开(公告)日:2021-01-28
申请号:US17044593
申请日:2019-03-21
Applicant: JUSHI GROUP CO., LTD.
Inventor: Changying FANG , Lifeng YU , Yucang YAN , Xianliang ZHAO , Peijun SHEN , Xiaodong WENG
IPC: C03B5/43
Abstract: A glass fiber tank kiln passage crown structure includes a chest wall brick, a supporting column built on a top of the chest wall brick, and a crown having an arch structure. Two ends of the crown are built on the supporting column, and a span of the crown is in a range from 0.5 meters to 4 meters.
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公开(公告)号:US20200299167A1
公开(公告)日:2020-09-24
申请号:US16088701
申请日:2016-08-24
Applicant: JUSHI GROUP CO., LTD.
Inventor: Yuqiang ZHANG , Guorong CAO , Changying FANG , Lifeng YU , Peijun SHEN , Xianliang ZHAO , Yucang YAN , Xiaodong WENG
Abstract: A glass tank furnace having a high melting rate. The ratio of the length of the glass tank furnace to the width thereof is 2.3 to 2.8. By reducing the area of a furnace and optimizing the length-to-width ratio thereof, the heat loss of the tank furnace is reduced. By designing an appropriate liquid glass tank depth, the temperature of a furnace bottom is improved and the quality of the liquid glass is guaranteed. By providing pure oxygen burners (3) and electrodes (7), sufficient energy is guaranteed, the melting capability and the heating efficiency of the tank furnace are improved, and energy consumption and the discharge amount of carbon dioxide are significantly reduced. Weirs (5) arranged on the furnace bottom improve the outlet temperature of the liquid glass, reduce energy consumption, lower the temperature of the furnace bottom in the electrode area, prolong the service life of the furnace bottom, and guarantee an increased proportion of auxiliary power. By means of the design of bubbles (6) at the furnace bottom, the backflow strength of the liquid glass, the melting capability, and the quality of the liquid glass are improved.
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