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    • 2. 发明专利
    • Press molding device of glass product
    • 玻璃制品的成型装置
    • JPS5964535A
    • 1984-04-12
    • JP17600382
    • 1982-10-05
    • Nippon Electric Glass Co Ltd
    • SHIMOMURA ATSUSHIUESUGI TSUNEYATSUJIMURA TADATSUGU
    • C03B11/16B30B15/22C03B11/06
    • C03B11/06
    • PURPOSE: The titled device preventing occurrence of crack, etc. of products, wherein a by-pass valve is opened and press pressure is reduced immediately after the press pressure of a plunger is detected, the plunger is lowered to the given final position, and excess press pressures is produced.
      CONSTITUTION: In a device wherein the plunger 3 is lowered by the hydraulic cylinder 10 and a glass lump fed to the bottom mold 1 is press molded, the hydraulic piping 12 is provided with the pressure gauge 13 to detect press pressure of the plunger 3 and the by-pass valve 24 to reduce press pressure by a detected signal when the plunger 3 is lowered to the final position to produce excess pressure. Consequently, given glass products free from defects such as protruded pieces like fins are constantly prepared without being influenced by variability of weight of glass lump, difference of space of molds, etc.
      COPYRIGHT: (C)1984,JPO&Japio
    • 目的:防止产生裂纹的标题装置,其中旁路阀被打开,并且在检测到柱塞的压力之后立即降低压力压力,柱塞降低到给定的最终位置,并且 产生过量的压力。 构成:在柱塞3被液压缸10降低并且供给到底模1的玻璃块被压模的装置中,液压管12设置有压力计13以检测柱塞3的压力和 旁通阀24,当柱塞3下降到最终位置以产生过压时,通过检测信号来减小压力。 因此,不受玻璃块重量的变化影响,模具空间差异等的影响,不断地制作没有缺陷的玻璃制品,例如凸条等。
    • 5. 发明专利
    • Tabular work piece vertical conveyance device
    • TABULAR WORK PIECE垂直输送装置
    • JP2009242013A
    • 2009-10-22
    • JP2008087412
    • 2008-03-28
    • Nippon Electric Glass Co Ltd日本電気硝子株式会社
    • UESUGI TSUNEYAYASUI TADANORI
    • B65G47/52H01L21/677
    • PROBLEM TO BE SOLVED: To largely reduce or simplify operation on a mechanism of a vertical conveyance device, without unjustly increasing a lifting speed of a tabular work placed on a conveyor, and without unjustly expanding the placing area of the conveyor, when lifting the conveyor between an upper stage and a lower stage.
      SOLUTION: Transfer conveyors 7 and 8 lifting between an upper side transfer area E2 adjacent to an end part of an upper side carrier conveyor 2 arranged in the upper stage F2 and a lower side transfer area E1 adjacent to an end part of a lower side carrier conveyor 3 arranged in the lower stage F1, are arranged in two places of separating at least 180 degrees in the outer peripheral end of a rotary support composed of an arm 5. These transfer conveyors 7 and 8 are put in an attitude capable of placing the tabular work G in a flatly placing state regardless of a change in a rotation angle of the arm 5, and are constituted so as to be respectively simultaneously positioned in the upper side transfer area E2 and the lower side transfer area E1 when rotation of the arm 5 stops.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了大大减小或简化垂直输送装置的机构的操作,而不会不正当地增加放置在输送机上的平板状工作的提升速度,并且在不正确地扩大输送机的放置面积的情况下, 在上层和下层之间提起输送机。 解决方案:在布置在上层F2中的与上侧运输输送机2的端部相邻的上侧传送区域E2与邻近上侧传送区域E2的末端部分相邻的下侧传送区域E1之间提升传送带7和8 布置在下级F1中的下侧托架输送机3布置在由臂5组成的旋转支撑件的外周端中至少180度分离的两个位置。这些转印输送器7和8被置于能够 无论臂5的旋转角度如何变化,都将平板状工件G置于平坦放置状态,并且在旋转时被构造成分别同时位于上侧传送区域E2和下侧传送区域E1中 的手臂5停了。 版权所有(C)2010,JPO&INPIT
    • 9. 发明专利
    • GLASS GOB FEEDER
    • JPS5983940A
    • 1984-05-15
    • JP19415882
    • 1982-11-04
    • NIPPON ELECTRIC GLASS CO
    • UCHIUMI AKIHISAUESUGI TSUNEYA
    • C03B7/086
    • PURPOSE:To simplify the titled apparatus, and to prevent the abrasion of the constituent components, by converting the displacement of the cam attached to the operation directive mechanism of a forming machine to an electrical signal, and controlling the vertical motion of a needle by the signal sent through a connector mechanism and servo mechanism, etc. CONSTITUTION:The cam 9 is attached to the shaft 13 of the operation directive mechanism of the forming machine, and the displacement of the cam 9 is converted to an electrical signal by an electromagnetic device composed of the differential transformer 18, the directive circuit 17, the comparator circuit 19, the power amplifier circuit 24, the three-way cock 23, etc. The servo mechanism 1 composed of the first hydraulic cylinder 4, the spool 5 of a servo valve, the needle piston 3, etc. is operated by the directive corresponding to the electrical signal by the aid of the second hydraulic cylinder 20, and the connector mechanism 10. The needle 2 is moved vertically by the servo mechanism 1 to feed the glass gob G intermittently to the mold. Glass gob can be fed automatically by the glass gob feeder having simple structure by this process.