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    • 1. 发明公开
    • HOT RUNNER PROCESS CONTROLLER
    • US20230294345A1
    • 2023-09-21
    • US18202441
    • 2023-05-26
    • Incoe Corporation
    • Christian StriegelAnton JoergScott GrebThomas Braun
    • B29C45/84B29C45/27B29C45/28B29C45/77B29C45/78
    • B29C45/84B29C45/2737B29C45/281B29C45/77B29C45/78B29C2045/7606
    • A hot runner process controller configured to monitor the status and operation of a hot runner system to autonomously generate information to improve the quality of injection molding process of a hot runner system having an inlet nozzle, one or more manifolds and one or more nozzles with actuator or without actuator, and one or more heating elements, the hot runner process controller is self-operating, and independent from the injection molding machine, includes: one or more sensors located on, in or at the hot runner system to detect the status and/or the operation of the hot runner system, and a processing unit and a memory. The processing unit is connected to the one or more sensors, wherein the memory stores data and program codes. The processing unit is configured to load and execute the program code to compare sensor information with the stored data and to determine if the hot runner system is in an operable status, and in case the hot runner system is in an operable status, configured to generate status information to activate the one or more heating elements and/or the one or more actuators enabling a production operation of the injection molding machine. In case the hot runner system is not in an operable status, configured to generate status information to deactivate the one or more heating elements and/or close or deactivate the one or more actuators disabling a production operation of the injection molding machine.
    • 5. 发明申请
    • HOT RUNNER PROCESS CONTROLLER
    • WO2022132940A1
    • 2022-06-23
    • PCT/US2021/063571
    • 2021-12-15
    • INCOE CORPORATION
    • STRIEGEL, ChristianJOERG, AntonGREB, ScottBRAUN, Thomas
    • B29C45/76B29C45/27
    • A hot runner process controller configured to monitor the status and operation of a hot runner system to autonomously generate information to improve the quality of injection molding process of a hot runner system having an inlet nozzle, one or more manifolds and one or more nozzles with actuator or without actuator, and one or more heating elements, the hot runner process controller is self-operating, and independent from the injection molding machine, includes: one or more sensors located on, in or at the hot runner system to detect the status and/or the operation of the hot runner system, and a processing unit and a memory. The processing unit is connected to the one or more sensors, wherein the memory stores data and program codes. The processing unit is configured to load and execute the program code to compare sensor information with the stored data and to determine if the hot runner system is in an operable status, and in case the hot runner system is in an operable status, configured to generate status information to activate the one or more heating elements and/or the one or more actuators enabling a production operation of the injection molding machine. In case the hot runner system is not in an operable status, configured to generate status information to deactivate the one or more heating elements and/or close or deactivate the one or more actuators disabling a production operation of the injection molding machine.
    • 8. 发明申请
    • COOLING DEVICE FOR THE DRIVE FOR ADJUSTING THE NEEDLE OF A NEEDLE VALVE NOZZLE IN HOT RUNNER SYSTEMS FOR INJECTION MOLDING MACHINES
    • 用于调整注射成型机的热流道系统中针阀喷嘴针的驱动装置
    • US20130302466A1
    • 2013-11-14
    • US13891880
    • 2013-05-10
    • Incoe Corporation
    • Anton Joerg
    • B29C45/74
    • B29C45/74B29C45/281B29C2045/277
    • Cooling device for the drive for the adjustment of the needle (5) of a needle valve nozzle (3) in hot runner systems for injection molding machines, wherein the drive is mounted on the hot runner manifold (1) of the injection molding machine and wherein the drive housing (10), in which the drive is accommodated, is connected, on the side facing the hot runner manifold (1), with a heat sink (20) of the cooling device, which heat sink is formed as a separate part. According to the invention, the heat sink (20) of the cooling device is mounted on the side of the drive housing facing the hot runner manifold (1) without bearing the weight of the drive housing (10). The heat sink (20) is provided with through-holes, through which the supports (12), which are directly or indirectly connected to the hot runner manifold (1), can extend freely, to which supports the drive housing (10) is attached (FIG. 1).
    • 用于在注射成型机的热流道系统中用于调节针阀喷嘴(3)的针(5)的驱动器的冷却装置,其中驱动器安装在注射成型机的热流道歧管(1)上, 其中所述驱动器容纳的所述驱动壳体(10)在与所述热流道歧管(1)相对的一侧上与所述冷却装置的散热器(20)连接,所述散热器(20)形成为单独的 部分。 根据本发明,冷却装置的散热器(20)安装在面向热流道歧管(1)的驱动壳体的侧面上,而不承受驱动壳体(10)的重量。 散热器(20)设置有通孔,直接或间接地连接到热流道歧管(1)的支撑件(12)可以自由延伸,驱动壳体(10)支撑在该通孔上 附着(图1)。
    • 9. 发明申请
    • Fluid compression of injection molded plastic materials
    • 注射成型塑料材料的流体压缩
    • US20020163106A1
    • 2002-11-07
    • US10177438
    • 2002-06-21
    • Incoe Corporation
    • James W. Hendry
    • B29C045/00
    • B29C45/174B29C2043/566
    • An injection mold apparatus having two halves, a core portion and a cavity portion. One or more gas injection devices, such as porous metal devices, are located in either of the two portions of the mold. Once a charge of hot melted plastic is injected into the mold cavity, gas is injected through gas injection devices forcing the hot plastic against the opposite mold half and into any recesses and grooves. Gas seals are formed by the plastic to prevent gas in the mold cavity from reaching the exterior surface of the molded part during shrinkage of the plastic. The centers of mass of the plastic at rib intersections are optimally positioned to eliminate sink marks on the external finished surfaces of the molded parts.
    • 具有两个半部,芯部和空腔部的注射模具装置。 一个或多个气体注入装置,例如多孔金属装置,位于模具的两个部分中的任一个中。 一旦将热熔融塑料的电荷注入模腔中,则通过气体注入装置注入气体,迫使热塑料抵靠相对的半模并进入任何凹槽和沟槽。 气体密封由塑料形成,以防止模具腔中的气体在塑料收缩期间到达模制部件的外表面。 肋骨交叉处的塑料质量中心最佳地定位,以消除模制件的外部成品表面上的凹痕。