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    • 5. 发明申请
    • INDUCTION FURNACE WITH IMPROVED EFFICIENCY COIL SYSTEM
    • 具有改进的效率线圈系统的感应炉
    • WO02054831A3
    • 2002-10-03
    • PCT/US0200236
    • 2002-01-07
    • INDUCTOTHERM CORP
    • FISHMAN OLEG SNADOT VLADIMIR VPEYSAKHOVICH VITALY AMORTIMER JOHN H
    • F27B14/06F27B14/14F27D11/06F27D99/00H05B6/24H05B6/06
    • F27B14/061F27B14/14F27D11/06F27D99/0006F27D2099/0015H05B6/24Y02P10/253
    • An induction furnace system has an active induction coil surrounding a crucible. A passive induction coil also surrounds the crucible. The passive induction coil is connected in parallel with a capacitor to form an L-C tank circuit. A source of ac current is provided to the active induction coil to produce a magnetic field that inductively heats and melts an electrically conductive material in the crucible. The magnetic field also magnetically couples with the passive induction coil to induce a current in the passive induction coil. This induced current generates a magnetic field that inductively heats and melts the material. The resistance of the L-C tank circuit is reflected back into the circuit of the active induction coil to improve the overall efficiency of the induction furnace system. The crucible may be open-ended to allow the passage of the electrically conductive material through the crucible during the heating process.
    • 感应炉系统具有围绕坩埚的有源感应线圈。 无源感应线圈也包围坩埚。 无源感应线圈与电容器并联连接,形成L-C储能电路。 交流电流源被提供给有源感应线圈以产生感应加热并熔化坩埚中的导电材料的磁场。 磁场还与无源感应线圈磁耦合,以在无源感应线圈中感应出电流。 该感应电流产生感应加热和熔化材料的磁场。 L-C储能电路的电阻被反射回有源感应线圈的电路中,以提高感应炉系统的整体效率。 坩埚可以是开放式的,以允许导电材料在加热过程期间通过坩埚。
    • 7. 发明申请
    • INDUCTION HEATING DEVICE AND PROCESS FOR CONTROLLING TEMPERATURE DISTRIBUTION
    • 感应加热装置和控制温度分布的方法
    • WO0028787A9
    • 2000-09-28
    • PCT/US9924980
    • 1999-10-25
    • INDUCTOTHERM CORP
    • FISHMAN OLEG SLAMPI RUDOLPH KMORTIMER JOHN HPEYSAKHOVICH VITALY A
    • H05B6/40H05B6/02H05B6/06H05B6/04
    • H05B6/105H05B6/06H05B6/067H05B6/101
    • An induction heating device (10) for controlling the temperature distribution in an electrically conductive material, or susceptor (60), when heated by induced eddy currents in the material. A non-electrically conductive material can be heated in a controlled manner by placing the material near to the susceptor. Variable power is applied to multiple induction coil sections (40) wound around the length of the susceptor from a power source by one or more switching circuits (30). The coil sections can be overlapped (80) or counter-wound (121) between adjacent coil sections, or provided power in a cascaded manner, to achieve desired temperature distributions in the susceptor. A control circuit (50) is used to control the power applied to each coil section and the output of the power source. By placing a non-electrically conduction material near to the susceptor the material can be heated in a controlled manner.
    • 一种感应加热装置(10),用于当由材料中的感应涡流加热时控制导电材料或基座(60)中的温度分布。 通过将材料放置在靠近基座的位置,可以以受控的方式加热非导电材料。 通过一个或多个开关电路(30)将可变功率从电源施加到围绕感受器长度缠绕的多个感应线圈部分(40)。 线圈部分可以在相邻线圈部分之间重叠(80)或反缠绕(121),或者以级联的方式提供电力,以在基座中实现期望的温度分布。 控制电路(50)用于控制施加到每个线圈部分的功率和电源的输出。 通过在感受器附近放置非导电材料,可以以受控的方式加热材料。