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    • 2. 发明申请
    • Hot Runner System having Active Material
    • 具有活性物质的热流道系统
    • US20110033572A1
    • 2011-02-10
    • US12988634
    • 2009-05-19
    • Edward Joseph JenkoJames Osborne Plumpton
    • Edward Joseph JenkoJames Osborne Plumpton
    • B29C45/23B29C45/76
    • B29C45/30B29C45/2806B29C2045/2761B29C2045/2769
    • According to an aspect, there is disclosed a hot runner system (100), comprising: a first surface (205) being elastically deformable; a second surface (210) forming, in cooperation with the first surface (205), a melt-leakage gap (215) being located between the first surface (205) and the second surface (210); and an active material (220) being: (i) coupled with the first surface (205), (ii) held normally stationary, (iii) configured to be operatively coupled with a signal source (225), and (iv) configured to elastically deform in response to receiving a signal from the signal source (225), upon elastic deformation of the active material (220), the first surface (205) becomes moved toward the second surface (210) such that a size (235) of the melt-leakage gap (215) becomes controlled.
    • 根据一方面,公开了一种热流道系统(100),包括:可弹性变形的第一表面(205) 与所述第一表面(205)协作地形成位于所述第一表面(205)和所述第二表面(210)之间的熔体泄漏间隙(215)的第二表面(210)。 并且活性材料(220)是:(i)与所述第一表面(205)耦合,(ii)保持正常静止,(iii)被配置为与信号源(225)可操作地耦合,以及(iv) 响应于从信号源(225)接收信号而弹性变形,在活性材料(220)弹性变形时,第一表面(205)朝向第二表面(210)移动,使得(235)的尺寸 熔体泄漏间隙(215)变得受控。
    • 3. 发明授权
    • Hot runner system having active material
    • 热流道系统具有活性物质
    • US08147237B2
    • 2012-04-03
    • US12988634
    • 2009-05-19
    • Edward Joseph JenkoJames Osborne Plumpton
    • Edward Joseph JenkoJames Osborne Plumpton
    • B29C45/20
    • B29C45/30B29C45/2806B29C2045/2761B29C2045/2769
    • According to an aspect, there is disclosed a hot runner system (100), comprising: a first surface (205) being elastically deformable; a second surface (210) forming, in cooperation with the first surface (205), a melt-leakage gap (215) being located between the first surface (205) and the second surface (210); and an active material (220) being: (i) coupled with the first surface (205), (ii) held normally stationary, (iii) configured to be operatively coupled with a signal source (225), and (iv) configured to elastically deform in response to receiving a signal from the signal source (225), upon elastic deformation of the active material (220), the first surface (205) becomes moved toward the second surface (210) such that a size (235) of the melt-leakage gap (215) becomes controlled.
    • 根据一方面,公开了一种热流道系统(100),包括:可弹性变形的第一表面(205) 与所述第一表面(205)协作地形成位于所述第一表面(205)和所述第二表面(210)之间的熔体泄漏间隙(215)的第二表面(210)。 并且活性材料(220)是:(i)与所述第一表面(205)耦合,(ii)保持正常静止,(iii)被配置为与信号源(225)可操作地耦合,以及(iv) 响应于从信号源(225)接收信号而弹性变形,在活性材料(220)弹性变形时,第一表面(205)朝向第二表面(210)移动,使得(235)的尺寸 熔体泄漏间隙(215)变得受控。
    • 6. 发明授权
    • Gate insert heating and cooling
    • 闸门加热和冷却
    • US07914271B2
    • 2011-03-29
    • US11946886
    • 2007-11-29
    • James Osborne Plumpton
    • James Osborne Plumpton
    • B29C45/74
    • B29C45/2737B29C45/2711B29C2045/2743
    • Disclosed, amongst other things, is a gate insert of an injection mold that includes a base member. The base member defines a nozzle interface for receiving, in use, a nozzle of a melt distribution system that is heated, in use, by a heater, and a gate, the gate configured to fluidly link, in use, a melt channel of the nozzle with a molding cavity. The gate insert further includes a thermal regulator associated with the base member, the thermal regulator includes a direct energy conversion device that is capable of heating and cooling, wherein the thermal regulator is controllably operable, in use, to control the temperature of the gate.
    • 公开了一种注射模具的门插入件,其包括基座构件。 基座构件限定了喷嘴接口,用于在使用中接收在使用中通过加热器和浇口加热的熔体分配系统的喷嘴,所述浇口构造成在使用中流体连接熔融物通道 喷嘴带有模腔。 门插入件还包括与基座构件相关联的热调节器,热调节器包括能够加热和冷却的直接能量转换装置,其中热调节器在使用中可控制地操作以控制门的温度。
    • 7. 发明申请
    • Gate Insert
    • 门插入
    • US20090140465A1
    • 2009-06-04
    • US11946886
    • 2007-11-29
    • James Osborne PLUMPTON
    • James Osborne PLUMPTON
    • B29C45/78B29C45/72
    • B29C45/2737B29C45/2711B29C2045/2743
    • Disclosed, amongst other things, is a gate insert of an injection mold that includes a base member. The base member defines a nozzle interface for receiving, in use, a nozzle of a melt distribution system that is heated, in use, by a heater, and a gate, the gate configured to fluidly link, in use, a melt channel of the nozzle with a molding cavity. The gate insert further includes a thermal regulator associated with the base member, the thermal regulator includes a direct energy conversion device that is capable of heating and cooling, wherein the thermal regulator is controllably operable, in use, to control the temperature of the gate.
    • 公开了一种注射模具的门插入件,其包括基座构件。 基座构件限定了喷嘴接口,用于在使用中接收在使用中通过加热器和浇口加热的熔体分配系统的喷嘴,所述浇口构造成在使用中流体连接熔融物通道 喷嘴带有模腔。 门插入件还包括与基座构件相关联的热调节器,热调节器包括能够加热和冷却的直接能量转换装置,其中热调节器在使用中可控制地操作以控制门的温度。
    • 8. 发明申请
    • Thermal Analysis of Apparatus having Multiple Thermal Control Zones
    • 具有多个热控区的设备的热分析
    • US20080099569A1
    • 2008-05-01
    • US11554899
    • 2006-10-31
    • James Osborne PLUMPTONZakiul HAQUE
    • James Osborne PLUMPTONZakiul HAQUE
    • F24D19/10
    • B29C45/78B29C33/3835B29C45/2725B29C45/7693B29C2945/7604B29C2945/7628
    • Systems and methods for conducting thermal analysis in materials and devices having multiple thermal control zones are provided. Modem apparatuses, such as manifolds, generally have several thermal devices that introduce or remove heat at different rates from several different regions. Previous attempts to determine a thermal profile required constant guessing and an unknown number of simulations to arrive at an acceptable result. Further, since the number of simulations required is not known from the onset of the operation, the duration is unknown, which is often unsatisfactory to manufacturing personnel. Disclosed embodiments include the use of FEA to aid in designing and/or evaluating manifold systems. In one embodiment, finite element analysis is conducted to determine the heat flux caused upon other control zone by a thermal device in a specified control zone.
    • 提供了具有多个热控制区域的材料和设备中进行热分析的系统和方法。 调制解调器装置,例如歧管,通常具有几个热装置,其以不同的速率从几个不同的区域引入或去除热量。 以前尝试确定热分布需要不断的猜测和未知数量的模拟以获得可接受的结果。 此外,由于从操作开始不知道所需的模拟数量,所以持续时间是未知的,这对于制造人员来说经常是不能令人满意的。 公开的实施例包括使用FEA来帮助设计和/或评估歧管系统。 在一个实施例中,进行有限元分析以确定由特定控制区中的热装置在其它控制区上产生的热通量。