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    • 5. 发明申请
    • APPARATUS FOR PRODUCING AT LEAST ONE CONTAINER, IN PARTICULAR IN AMPULE FORM, MADE OF THERMOPLASTIC MATERIAL
    • 用于生产至少一个集装箱的装置,特别是用于制造热塑性材料的装置
    • US20130189388A1
    • 2013-07-25
    • US13261626
    • 2011-11-10
    • Bernd Hansen
    • Bernd Hansen
    • B29D22/00
    • B29D22/003B29C49/4236B29C49/4273B29C49/76B29C2049/4869B29C2049/503B29C2049/701B29C2791/006B29C2791/007B29C2793/0027B29C2793/009B29L2031/7158
    • An apparatus for producing at least one container, in particular in ampoule form, made of thermoplastic material, comprising a mould (13) with mould components (15, 17) and with a first calibrating mandrel (19) and a second calibrating mandrel (23), which can move coaxially in relation to the longitudinal direction (21) of the container (1) and in relation to one another, wherein the first calibrating mandrel (19) and the second calibrating mandrel (23) can move in relation to one another, the first calibrating mandrel (19) through the container (1) located in the mould (13) and the second calibrating mandrel (23) from the outer side of the container (1), into a shaping position in which they calibrate a bottom area which forms at least part of a container bottom between the mandrel ends thereof, and comprising a severing device, which has a movable cutting or punching surface (37), in order to sever excess plastic material which forms during the shaping process in interaction with a cutting or bearing edge on the mould components (17) assigned to the bottom region, is characterized in that the severing device has a cutting device (35), which is guided in an axially displaceable manner on the second calibrating mandrel (23), forms the cutting or punching surface (37) and can move between the withdrawn position and the punching position independently of the movement of the respective calibrating mandrel (23).
    • 一种用于生产由热塑性材料制成的至少一个容器,特别是安瓿形式的装置,包括具有模具部件(15,17)的模具(13)和具有第一校准芯棒(19)和第二校准芯棒(23)的装置 ),其可以相对于容器(1)的纵向方向(21)并且相对于彼此同轴地移动,其中第一校准心轴(19)和第二校准心轴(23)可相对于一个 另一个,通过位于模具(13)中的容器(1)的第一校准心轴(19)和从容器(1)的外侧的第二校准心轴(23)进入到其中校准一个 底部区域,其在其心轴端部之间形成容器底部的至少一部分,并且包括切割装置,该切割装置具有可移动的切割或冲压表面(37),以便在相互作用的成形过程期间形成多余的塑料材料 与ac 其特征在于,切断装置具有在第二校准心轴(23)上以可轴向移动的方式被引导的切割装置(35),形成 切割或冲压表面(37),并且可以在取出位置和冲压位置之间移动,而与各自的校准心轴(23)的移动无关。
    • 6. 发明申请
    • PREFORM NECK CRYSTALLIZATION METHOD
    • 预处理结晶方法
    • US20130087943A1
    • 2013-04-11
    • US13685472
    • 2012-11-26
    • YOICHI TSUCHIYA
    • YOICHI TSUCHIYA
    • B29D22/00
    • B29C49/76B29C35/0266B29C49/6409B29C71/0063B29C71/02B29D22/003B29K2105/258B29K2995/0041B65D1/023B65D1/0246
    • A neck crystallization method includes inserting a core into the neck, heating the neck using a heater group disposed along a transfer direction while rotating the preform on its axis, and transferring the preform along the transfer direction in a state in which the core is inserted into the neck, and cooling the neck of the preform in a state in which the core is inserted into the neck. The heating of the neck includes a first step that drives first heaters positioned on the upstream side in the transfer direction at a first power, and a second step that drives second heaters positioned on the downstream side of the first heaters at a second power that is lower than the first power until the temperature of the neck reaches a crystallization temperature zone.
    • 颈部结晶方法包括将芯插入颈部中,使用沿着传送方向设置的加热器组加热颈部,同时使预成型件在其轴线上旋转,并且在芯插入的状态下沿着传送方向传送预成型件 颈部,并且在核心插入颈部的状态下冷却预成型件的颈部。 颈部的加热包括第一步骤,以第一功率驱动位于传送方向的上游侧的第一加热器,第二步骤以第二功率驱动位于第一加热器下游侧的第二加热器, 低于第一功率,直到颈部的温度达到结晶温度区。