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    • 2. 发明授权
    • Press
    • US09533436B2
    • 2017-01-03
    • US14404556
    • 2013-05-29
    • FETTE COMPACTING GMBH
    • Thomas PannewitzStephan Mallon
    • B29C43/02B30B1/18B30B11/04B30B15/04B29L31/00
    • B29C43/02B29C2043/029B29L2031/772B30B1/18B30B11/04B30B15/044
    • A press for producing a pellet from powdered material comprises a press frame and a pressing unit arranged therein, at least one upper press punch and/or at least one lower press punch, as well as at least one receptacle for powdered material. At least one upper drive unit has at least one upper drive motor for moving the upper press punch and/or at least one lower drive unit having at least one lower drive motor for moving the lower press punch and/or the receptacle. The at least one upper drive unit acts laterally offset on the at least one upper press punch via an upper force transmission element and/or the at least one lower drive unit acts laterally offset on the at least one lower press punch and/or the receptacle via a lower force transmission element. At least one upper spring element is arranged between the upper force transmission element and the at least one upper drive unit and/or at least one lower spring element is arranged between the lower force transmission element and the at least one lower drive unit.
    • 用于由粉末材料制造颗粒的压制机包括压机框架和布置在其中的压制单元,至少一个上冲压机和/或至少一个下冲压冲头以及用于粉末材料的至少一个容器。 至少一个上部驱动单元具有至少一个用于移动上部冲压机的上部驱动马达和/或具有至少一个下部驱动马达的至少一个下部驱动单元的上部驱动马达,用于移动下部冲压机和/或该容器。 所述至少一个上部驱动单元经由上部力传递元件在所述至少一个上部冲压冲头上横向偏移地执行和/或所述至少一个下部驱动单元在所述至少一个下部冲压机和/或所述容器 经由较低的力传递元件。 至少一个上弹簧元件布置在上力传递元件和至少一个上驱动单元之间,和/或至少一个下弹簧元件布置在下力传递元件和至少一个下驱动单元之间。
    • 4. 发明申请
    • Rotary high speed low compression thermoplastic molding method and apparatus
    • 旋转式高速低压缩热塑性成型方法及装置
    • US20110204547A1
    • 2011-08-25
    • US12925589
    • 2010-10-25
    • Matt James Lofgren
    • Matt James Lofgren
    • B28B5/10
    • B29C43/04B29C43/021B29C43/027B29C43/08B29C43/34B29C43/36B29C43/52B29C43/54B29C2043/029B29C2043/3433B29C2043/3444B29C2043/3689B29K2101/12B29L2031/7544
    • A molding apparatus includes a plurality of deep-draw compression molds. Each of the molds includes a mold cavity and an associated mold core. A rotating support structure operatively supports the mold cavities and the mold cores relative to each other. The molds open and close as they travel around a closed path defined by the support structure. A mold material discharge mechanism deposits a predetermined amount of mold material in each of the molds. A heat source superheats the molds, and a mold closing mechanism closes the superheated molds, compressing the mold material between the mold cavities and the mold cores to form a deep-draw component A coolant source rapidly and actively cools the molds, and a mold opening mechanism opens the cooled molds. An ejector is disposed to eject the deep draw components from the molds. A method of molding deep-draw components is also disclosed. The system and method of the present invention facilitate compression molding of deep-draw components.
    • 成型设备包括多个深拉压模。 每个模具包括模腔和相关的模芯。 旋转的支撑结构相对于彼此可操作地支撑模腔和模芯。 当模具围绕由支撑结构限定的封闭路径行进时,模具打开和关闭。 模具材料排出机构在每个模具中沉积预定量的模具材料。 热源使模具过热,并且模具关闭机构关闭过热模具,在模具腔和模具芯之间压缩模具材料,以形成深拉成分A冷却剂源快速且主动地冷却模具,并且模具开口 机构打开冷却模具。 喷射器被设置成从模具中喷出深拉伸部件。 还公开了一种成型深拉成分的方法。 本发明的系统和方法有利于深拉成分的压塑。