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    • 5. 发明申请
    • Heated transfer pipe
    • 加热输送管
    • US20080142510A1
    • 2008-06-19
    • US11639070
    • 2006-12-14
    • Kyle B. ClarkValery Kagan
    • Kyle B. ClarkValery Kagan
    • H05B6/10
    • H05B6/36H05B6/34H05B2206/024
    • Apparatus and method for inductive heating of a transfer pipe having a bore for transporting a flowable material. A heating coil assembly is disposed along an exterior length of the pipe for generating a magnetic flux for inductively heating the pipe and/or a material flowing in the bore. The coil configuration comprises a continuous coil having spaced-apart coil groups along the pipe length, with adjacent coil turns in each group. In various applications, such as for transporting molten metals from a furnace to a casting assembly, this coil configuration can provide one or more benefits including: reduced energy consumption by reducing thermal losses in the pipe and thus reducing the required temperature at which the molten material is delivered to the pipe; tighter temperature control; improved consistency of the molten material; increased heating efficiency, and/or greater thermal uniformity of the pipe and/or the molten material in the pipe.
    • 具有用于输送可流动材料的孔的输送管的感应加热的装置和方法。 沿着管的外部长度设置加热线圈组件,以产生用于感应加热管道和/或在孔中流动的材料的磁通量。 线圈构造包括具有沿着管道长度的间隔开的线圈组的连续线圈,每组具有相邻的线圈匝数。 在诸如用于将熔融金属从炉子输送到铸造组件的各种应用中,该线圈构造可以提供一个或多个益处,包括:通过减少管道中的热损失从而降低熔融材料的所需温度来降低能量消耗 被运送到管道; 更严格的温度控制 提高熔融材料的一致性; 管道和/或管道中的熔融材料的加热效率提高和/或更高的热均匀性。
    • 7. 发明授权
    • Apparatus and method for inductive heating of a material in a channel
    • 用于感应加热通道中的材料的装置和方法
    • US07718935B2
    • 2010-05-18
    • US11505059
    • 2006-08-16
    • Stefan von BurenKyle B. Clark
    • Stefan von BurenKyle B. Clark
    • H05B6/10
    • H05B6/38H05B6/105H05B2206/024
    • Apparatus and method for inductive heating of a material located in a channel. In one embodiment, the heating assembly comprises an interior coil, an exterior sheath inductively coupled to the coil, a dielectric material disposed between the coil and sheath, and a conductor for supplying a signal to the coil to generate the magnetic flux for inductive heating of the sheath. The heating assembly is disposed in the material in the channel, and the magnetic flux generated by the coil may also inductively couple to the material in the channel. The material may be heated from a nonflowable to a flowable state, such as heating a metal or polymer plug formed in a melt channel of a molding apparatus.
    • 用于感应加热位于通道中的材料的装置和方法。 在一个实施例中,加热组件包括内部线圈,电感耦合到线圈的外部护套,设置在线圈和护套之间的电介质材料,以及用于向线圈提供信号以产生用于感应加热的磁通的导体 护套。 加热组件设置在通道中的材料中,并且由线圈产生的磁通量也可以感应地耦合到通道中的材料。 材料可以从不可流动的状态被加热,例如加热形成在模制设备的熔体通道中的金属或聚合物塞子。
    • 8. 发明申请
    • COMPOSITE INDUCTIVE HEATING ASSEMBLY AND METHOD OF HEATING AND MANUFACTURE
    • 复合感应加热装置及加热和制造方法
    • US20100025391A1
    • 2010-02-04
    • US12183797
    • 2008-07-31
    • John PalombiniKyle B. ClarkStefan von Buren
    • John PalombiniKyle B. ClarkStefan von Buren
    • H05B6/36
    • B29C45/2737B29C2045/2743
    • A composite inductive heating assembly capable of providing in various embodiments, one or more of a variable or higher power density, tighter temperature control, reduced power consumption, longer operating life, and lower manufacturing costs, particularly in a compact design. A composite inductive heating assembly includes an inner layer of dielectric material, a multi-turn coil disposed over the inner layer, and an outer self-supporting body of moldable flux concentrator material rendering the inner layer, coil and flux concentrator into a self-supporting assembly. Select embodiments of the composite heating assembly include a nozzle heater and a manifold heater. A method of manufacturing the composite heater in a mold, with application of heat and pressure, is described.
    • 复合感应加热组件能够在各种实施例中提供一个或多个可变或更高功率密度,更严格的温度控制,降低的功耗,更长的使用寿命和更低的制造成本,特别是在紧凑的设计中。 复合感应加热组件包括介电材料的内层,设置在内层上的多匝线圈和可模制的集流器材料的外部自支撑体,使内层,线圈和集流器成为自支撑 部件。 复合加热组件的选择实施例包括喷嘴加热器和歧管加热器。 描述了在施加热和压力的情况下在模具中制造复合加热器的方法。
    • 9. 发明申请
    • Apparatus and method for inductive heating of a material in a channel
    • 用于感应加热通道中的材料的装置和方法
    • US20080217325A1
    • 2008-09-11
    • US11505059
    • 2006-08-16
    • Stefan von BurenKyle B. Clark
    • Stefan von BurenKyle B. Clark
    • H05B6/10H05B6/42
    • H05B6/38H05B6/105H05B2206/024
    • Apparatus and method for inductive heating of a material located in a channel. In one embodiment, the heating assembly comprises an interior coil, an exterior sheath inductively coupled to the coil, a dielectric material disposed between the coil and sheath, and a conductor for supplying a signal to the coil to generate the magnetic flux for inductive heating of the sheath. The heating assembly is disposed in the material in the channel, and the magnetic flux generated by the coil may also inductively couple to the material in the channel. The material may be heated from a nonflowable to a flowable state, such as heating a metal or polymer plug formed in a melt channel of a molding apparatus.
    • 用于感应加热位于通道中的材料的装置和方法。 在一个实施例中,加热组件包括内部线圈,电感耦合到线圈的外部护套,设置在线圈和护套之间的电介质材料,以及用于向线圈提供信号以产生用于感应加热的磁通的导体 护套。 加热组件设置在通道中的材料中,并且由线圈产生的磁通量也可以感应地耦合到通道中的材料。 材料可以从不可流动的状态被加热,例如加热形成在模制设备的熔体通道中的金属或聚合物塞子。
    • 10. 发明授权
    • Method for temperature cycling with inductive heating
    • 用感应加热进行温度循环的方法
    • US07723653B2
    • 2010-05-25
    • US11505032
    • 2006-08-16
    • Kyle B. ClarkStefan von Buren
    • Kyle B. ClarkStefan von Buren
    • H05B6/38
    • H05B6/105H05B6/38H05B2206/024
    • Apparatus and method for inductive heating of a material located in a channel, to modify the state of the material between flowable and nonflowable states. An internal inductive heating assembly is disposed in the material in the channel, and a signal is supplied to the assembly to generate a magnetic flux in at least one of the assembly and the material, the magnetic flux generating inductive heating of the assembly and/or the material. The signal is adjusted to produce a desired rate of temperature cycling of the material in the channel which includes modifying the state of the material between flowable and nonflowable states. In one embodiment, the heating assembly includes an interior coil, an exterior sheath inductively coupled to the coil, a dielectric material disposed between the coil and sheath, a flux concentrator, and a conductor for supplying a signal to the coil to generate the magnetic flux. The materials and/or Curie temperatures of the coil, sheath and/or flux concentrator may be selected to provide a desired rate of inductive heating of the sheath and/or the material.
    • 用于感应加热位于通道中的材料的装置和方法,以改变材料在可流动状态和不可流动状态之间的状态。 内部感应加热组件设置在通道中的材料中,并且向组件供应信号以在组件和材料中的至少一个中产生磁通量,产生组件的磁通量感应加热和/或 材料。 信号被调整以产生通道中材料的期望温度循环速率,其包括改变材料在可流动状态和不可流动状态之间的状态。 在一个实施例中,加热组件包括内部线圈,电感耦合到线圈的外部护套,设置在线圈和护套之间的电介质材料,集流器和用于向线圈提供信号以产生磁通量的导体 。 可以选择线圈,护套和/或通量集中器的材料和/或居里温度以提供护套和/或材料的感应加热的期望速率。