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    • 1. 发明授权
    • Induction heating device
    • 感应加热装置
    • US06812440B2
    • 2004-11-02
    • US10483791
    • 2004-05-17
    • Izuo HirotaAtsushi FujitaTakahiro MiyauchiYuji FujiiAkira KataokaKoji Niiyama
    • Izuo HirotaAtsushi FujitaTakahiro MiyauchiYuji FujiiAkira KataokaKoji Niiyama
    • H05B606
    • H05B6/062H05B6/04
    • An induction heating device prevents an object to be heated from being displaced and buoyed from a mounting surface due to an mutual action of repulsive forces between the object to be heated and an induction heating coil. The induction heating device includes a source-current detector for detecting a source current input to a high-frequency inverter including the induction heating coil and an inverter circuit, a source-current change detector for measuring a change against time of a magnitude of the source current to detect a displacement and buoying of the object to be heated, such as a cooking pot, and a change examining unit. The controller controls an output of the high-frequency inverter in response to a detection result of the change examining unit. The induction heating device prevents the cooking pot from being displaced and buoyed even if the pot is not touched by a user at startup of heating or during the heating operation, and is inexpensive and safe.
    • 感应加热装置由于被加热物和感应加热线圈之间的排斥力的相互作用,防止被加热物从安装面移位和浮起。 感应加热装置包括:源电流检测器,用于检测输入到包括感应加热线圈和反相器电路的高频逆变器的源电流;源电流变化检测器,用于测量源的幅度随时间的变化; 用于检测待烹饪物体的位移和浮动的电流,例如烹饪锅和变化检查单元。 控制器响应于变化检查单元的检测结果控制高频逆变器的输出。 感应加热装置即使在启动加热或加热操作期间用户没有接触到锅并且便宜且安全的情况下,烹饪锅也不会移动和浮起。
    • 7. 发明授权
    • Induction heating system
    • 感应加热系统
    • US06359267B1
    • 2002-03-19
    • US09625835
    • 2000-07-26
    • Dale WilcoxGirish Dahake
    • Dale WilcoxGirish Dahake
    • H05B606
    • B23K1/002
    • An induction heating system that can be used to braze metals and that overcomes many of the disadvantages of conventional brazing systems. The induction heating system improves quality and lowers production cost for many brazing requirements. The system is designed to quickly, accurately and cost effectively heat individual parts, and to replace flame brazing procedures and batch vacuum furnaces. Because the system can braze parts in an inert atmosphere or in no atmosphere (e.g., in a vacuum), no flux or acid cleaning bath is necessary and oxidation on the part is eliminated. Further, by including a gas quenching feature, the system prevents the annealing of parts and produces high quality brazed parts that meet desired hardness specifications. In one embodiment, the induction heating system includes a vacuum chamber; a support surface located within the chamber for providing a surface onto which a part to be heated is placed; moving means connected to the support surface for moving the support surface within the chamber; a vacuum system connected to the chamber for exhausting gases from the chamber; an electrically conductive coil located inside of the chamber or located adjacent to the chamber; an induction heating unit, coupled to the coil, for providing an alternating current to the coil; a temperature sensing means for sensing the temperature of the part; an operator interface for displaying a user interface comprising one or more selectable push button icons and for receiving input from an operator; and a controller interfaced to the operator interface, the vacuum system, the induction heating unit, the moving means, and the temperature sensing means.
    • 一种感应加热系统,可用于钎焊金属,克服了传统钎焊系统的许多缺点。 感应加热系统提高了质量,降低了许多钎焊要求的生产成本。 该系统旨在快速,准确和经济地加热各个零件,并替代火焰钎焊工艺和批量真空炉。 因为该系统可以在惰性气氛或无气氛(例如真空)中钎焊部件,所以不需要焊剂或酸性清洗浴,并且消除了部件上的氧化。 此外,通过包括气体淬火特征,系统防止部件退火并产生满足所需硬度规格的高质量钎焊部件。 在一个实施例中,感应加热系统包括真空室; 位于所述室内的支撑表面,用于提供放置待加热部件的表面; 连接到支撑表面的移动装置,用于移动所述腔室内的支撑表面; 连接到所述室的真空系统,用于从所述室排出气体; 位于所述腔室内部或位于所述腔室附近的导电线圈; 耦合到线圈的感应加热单元,用于向线圈提供交流电; 温度检测装置,用于检测部件的温度; 用于显示包括一个或多个可选按钮图标并用于从操作者接收输入的用户界面的操作者界面; 以及与操作者接口连接的控制器,真空系统,感应加热单元,移动装置和温度检测装置。
    • 8. 发明授权
    • Energization cycle counter for induction heating tool
    • 感应加热工具的通电循环计数器
    • US06815650B1
    • 2004-11-09
    • US10750640
    • 2004-01-02
    • Kathleen M. Bartz
    • Kathleen M. Bartz
    • H05B606
    • H05B6/06
    • An induction heat treating process with a sensor for counting the amount of cycles attributable to an inductor coil. The sensor is preferably a counting mechanism attached to or embedded within the induction coil and is preferably triggered by and responds to the change in voltage generated as the coil is energized. Alternative means of measuring a cycle may be implemented. The output data from the sensor provides useful information for determining the lifespan of an induction coil. Predicting the lifespan of a coil optimizes production by anticipating failure and replacement of a coil during a predetermined down time, limiting on-site inventory, and revolutionizing the billing cycle based on a per cycle cost while decreasing overall production costs and improving inductor coil quality.
    • 一种感应热处理工艺,其具有用于对归因于电感线圈的循环量进行计数的传感器。 传感器优选地是附接到或嵌入在感应线圈内的计数机构,并且优选地由线圈被通电而产生的电压的变化触发并作出响应。 可以实现测量循环的替代手段。 来自传感器的输出数据提供了确定感应线圈寿命的有用信息。 通过预测线圈的寿命来预测线圈的寿命,通过在预定的停机期间预测线圈的故障和更换来优化生产,限制现场库存,并且基于每周期成本改变计费周期,同时降低整体生产成本并提高电感线圈质量。
    • 10. 发明授权
    • Billet induction heating
    • 坯料感应加热
    • US06635856B2
    • 2003-10-21
    • US10346413
    • 2003-01-17
    • Oleg S. Fishman
    • Oleg S. Fishman
    • H05B606
    • H05B6/101
    • A plurality of billets are inductively heated in a staged process wherein the output current of a power supply is repeatedly time shared among a plurality of induction coils within which the plurality of billets have been placed. The time periods of the applied current to each coil become sequentially shorter over the total heating time of a billet to allow magnetically induced heat to conduct to the center of the billet during the dwell periods between applied electrical current periods. This maximizes the efficiency of the output of the power supply while melting of the outer regions of a billet is avoided in a process wherein the billets do not have to be moved during the overall billet total heating time.
    • 多个坯料在分段处理中进行感应加热,其中电源的输出电流在其中放置了多个坯料的多个感应线圈之间重复地共享。 对于每个线圈施加的电流的时间段在坯料的总加热时间内相应地变短,以使得在施加的电流周期之间的停留时间期间磁力感应的热量传导到坯料的中心。 这使得在整个坯料总加热时间内不需要移动钢坯的过程中,避免了钢坯的外部区域的熔化,从而使电源的输出效率最大化。