会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明专利
    • REFRACTORY BLOCK FOR COOLING
    • JPS60103041A
    • 1985-06-07
    • JP20694583
    • 1983-11-04
    • NIPPON SHEET GLASS CO LTD
    • SAMEJIMA HIROSHIHOSHINO AKIRA
    • C03B5/23F27D9/00
    • PURPOSE:To obtain a refractory block for cooling capable of uniformly cooling molten glass with high efficiency by piercing through holes in a block of a refractory material, putting a nozzle for blowing cooling air in each of the holes, and attaching a baffle to the lower end of the nozzle. CONSTITUTION:The underside of a block 14 of a refractory material is recessed 15 so as to provide the shape of an unfolded fan, and through holes 16 each having one end at the center of each recess 15 and the other end at the top of the block 14 are pierced in the block 14. A pipe 17 for blowing cooling air is inserted into each of the holes 16, a nozzle 18 is put in the pipe 17, and a baffle 19 is attached to the lower end of the nozzle 18 on the recess side so that cooling air fed into the recess 15 from the nozzle 18 flows along the inside of the recess 15. Thus, the desired refractory block 12 for cooling is obtd. This block 12 is suitably attached to the ceiling 10 of the rapid cooling part 5 of a refining vessel so as to reduce the temp. of molten glass.
    • 6. 发明专利
    • Method of cooling molten glass and cooling tank for glass melting furnace
    • 用于玻璃熔融炉的冷却玻璃和冷却罐的方法
    • JPS6117427A
    • 1986-01-25
    • JP13767284
    • 1984-07-02
    • Nippon Sheet Glass Co Ltd
    • SAMEJIMA HIROSHIMANABE SEIICHIROUHOSHINO AKIRA
    • C03B5/00C03B5/04C03B5/225C03B5/23
    • C03B5/04C03B5/225C03B5/23
    • PURPOSE: To absorb remaining bubbles in a material effectively while shortening a cooling time extremely, by annealing molten glass approximately at a temperature where the average temperature of the molten glass is a temperature to show the highest absorption rate of bubbles, and quenching it in a temperature range except it.
      CONSTITUTION: The resolving tank 12 is provided with the feed opening 13 for raw material, the heat storage chambers 14 are set at both the sides of the resolving tank 12, and they are connected to the nozzles 15.... Flame obtained by burning a heavy oil is produced from the nozzles 15..., raw materials are melted, and a glass material is accumulated in the resolving tank 12. The raw materials receive heat at least at 1,500°C for ≥30min, and the raw materials at about 1,500W1,550°C flow into the cooling tank 17. In the sections 17a, 17b, and 17c, the sections 17a and 17c are forcedly cooling sections, and the section 17b is a naturally cooling section. Consequently, molten glass is quenched in the sections 17a and 17c, and annealed in the section 17b.
      COPYRIGHT: (C)1986,JPO&Japio
    • 目的:为了有效地吸收材料中的气泡,同时极短地缩短冷却时间,通过在熔融玻璃的平均温度为气泡的最高吸收速度的温度下退火熔融玻璃,并将其淬火 温度范围除外。 结构:分解槽12设有原料供给口13,蓄热室14设置在分解槽12的两侧,并与喷嘴15连接。燃烧得到的火焰 从喷嘴15 ...产生重油,原料熔化,玻璃材料积聚在分解槽12中。原料在1500℃下接受> 30分钟的热量,原料 约1,500-15550℃的材料流入冷却罐17.在部分17a,17b和17c中,部分17a和17c是强制冷却部分,部分17b是自然冷却部分。 因此,熔融玻璃在部分17a和17c中骤冷,并在部分17b中退火。
    • 7. 发明专利
    • HIGH TEMPERATURE PREHEATING DEVICE FOR GLASS RAW MATERIAL
    • JPS60200831A
    • 1985-10-11
    • JP5863784
    • 1984-03-27
    • NIPPON SHEET GLASS CO LTD
    • SAMEJIMA HIROSHIKAWAMOTO SHINJI
    • C03B5/16C03B3/02
    • PURPOSE:To elevate the temp. of the whole glass raw material in a preheating device to a high temp. and to improve thermal efficiency of a glass melting furnace by maintaining the temp. of a part of the melting furnace where melt-sticking of the glass raw material is feared at an appropriate temp. by a cooling device. CONSTITUTION:When briquettes as the glass raw material are fed to an internal cylinder 13, a briquette layer 10 is formed and moved downward. Waste gas at high temp. is fed to the top of an external cylinder, and flows from the external cylinder 16 to the internal cylinder 13 along arrow marks 11 to preheat the briquette layer 10. On one hand, an annular duct 14 is provided to the neighbourhood where the internal cylinder 13 connects with the external cylinder 16, and air is fed from its air feeding port 14a to the external cylinder 16. The air flows along the inside surface at the bottom of the internal cylinder 13 as shown by the arrow marks 15, and mixes with the high temp. waste gas, and then is discharged. Accordingly, the briquettes at the bottom of the internal cylinder 13 and the neighborhood are cooled weakly and cooling to