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    • 2. 发明公开
    • GUIDED LAUNCHING DEVICE FOR FIREWORK CASINGS
    • VORRICHTUNGFÜRDEN GESTEUERTEN START VONFEUERWERKSKÖRPERN
    • EP2535887A2
    • 2012-12-19
    • EP10803934.8
    • 2010-07-30
    • Innovaciones Vía Solar S.L.
    • RODILLA SALA, VicenteCORBERÁN OLTRA, Gaspar
    • G09F13/46F42B4/24
    • F41F1/08F41A27/06F41A27/20F41A27/28F41F1/06F42B4/06F42B4/20G09F13/46
    • This invention comprises a launching device (1) for firework casings (13), the tubes (2) are guided by means of a computerized system.
      This system allows for precision guiding of the ballistic path in 3D of the discharged casings through a CNC system (computer numerical controlled) to achieve the positioning of said casings over specific spatial coordinates (X1 Y, Z) in a predetermined time in order to trace words and/or drawings (12) in space through properly synchronized fireworks.
      The operator (11) controlling the launch (1) is able to program any desired word, or draw the outline of any object on the monitor screen (9.1).
      When the discharged device is activated, the same words or drawings from the monitor are seen in the sky, creating a fireworks show never before seen in pyrotechnics.
      There are no risks when using this device, not even for the operator or the public watching the show.
    • 本发明包括一个用于烟花包壳(13)的发射装置(1),所述管(2)借助于计算机化系统被引导。 该系统允许通过CNC系统(计算机数字控制)在排出的壳体的3D中精确地引导弹道,以在预定时间内实现所述壳体在特定空间坐标(X1Y,Z)上的定位,以便追踪 文字和/或图画(12)在空间通过适当同步的烟花。 控制发射(1)的操作员(11)能够编程任何所需的字,或者在监视器屏幕上绘制任何对象的轮廓(9.1)。 当放电装置被激活时,从天空看到与监视器相同的单词或图形,从而在烟火中从未见过烟花表演。 使用这种设备时,没有任何风险,甚至不会对运营商或公众观看节目。
    • 4. 发明授权
    • Seitenrichtantrieb für Kampf-fahrzeuge mit Panzerturm
    • 带有一个TUNET GUN MOUNTING的坦克的行驶齿轮
    • EP0313759B1
    • 1992-11-04
    • EP88113931.5
    • 1988-08-26
    • Wegmann & Co. GmbH
    • Schieche, JostWallwey, Erich
    • F41A27/18F41A27/22F16H57/12F16H37/08
    • F16H57/12F16H37/0826F16H2057/122F41A27/20
    • Two drive motors (2, 3) are connected via a common gear to two output pinions (4, 5) engaging into the toothed ring of the turret. The common gear is composed of two planetary gears (6, 7) which are so connected in series that the web (6.4) of the first planetary gear (6) is connected via a shift coupling (10) to the sun wheel (7.1) of the second planetary gear (7). The first drive motor (2) drives the sun wheel (6.1) and the second drive motor (3) drives the hollow wheel (6.3) of the first planetary gear (6). The first output pinion (4) is connected to the hollow wheel (7.3) and the second output pinion (5) is connected to the web (7.4) of the second planetary gear (7). The interposition of further gearwheel mechanisms (8.1-8.2, 9, 11.1-11.2, 12) ensures that the reduction ratio from the first drive motor (2) to the first output pinion (4) is equal to the reduction ratio from the second drive motor (3) to the second output pinion (5). The first planetary gear (6) acts as a summing gear for the two drive motors (2, 3) and the second planetary gear (7) acts as a differential gear for the two output pinions (4, 5). In this way, tolerance-related irregularities in drive and output are compensated and work can be carried out with very little play in the rotary connection.