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    • 1. 发明专利
    • Temperature control method for electromagnetic induction heating instrument
    • 电磁感应加热仪的温度控制方法
    • JP2003332033A
    • 2003-11-21
    • JP2002140819
    • 2002-05-15
    • Fuji Electric Co LtdIto Koki Kk伊藤工機株式会社富士電機株式会社
    • ITOU DAIZOUMATSUNAGA TETSUO
    • H05B6/12A47J27/00A47J36/02
    • PROBLEM TO BE SOLVED: To provide a temperature control method for an electromagnetic induction heating instrument such as a pot, a plate, or the like for cooking that can accurately regulate a control temperature determined by the Curie point of a magnetic shunt alloy material, in a wide range while preventing the damage of an electromagnetic induction heater. SOLUTION: In this method, a magnetic or nonmagnetic metal material 12 is provided on the face side, facing an electromagnetic induction heating coil 2, of a clad material 11 comprising a base material 111 and a magnetic shunt alloy material 112. The control temperature determined by the Curie point of the magnetic shunt alloy material 112 can be accurately regulated in a wide range by suitably changing the material, thickness, area, and the like of the metal material 12. It is preferable to provide a fixing means 3 such as a screw or a bolt for fixing the metal material 12 to the magnetic shunt alloy material 112 and to transmit the heat generation of the metal material to the base material 111 side through the fixing means 3. COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供一种用于烹饪用的锅,板等的电磁感应加热装置的温度控制方法,其可以精确地调节由磁分流合金的居里点确定的控制温度 材料,在广泛的范围内,同时防止电磁感应加热器的损坏。 解决方案:在该方法中,在包括基材111和磁分流合金材料112的复合材料11的表面上设置磁性或非磁性金属材料12,面对电磁感应加热线圈2。 通过适当地改变金属材料12的材料,厚度,面积等可以在磁分流合金材料112的居里点确定的控制温度在宽范围内被精确地调节。优选地,提供固定装置3 例如用于将金属材料12固定到磁分路合金材料112的螺钉或螺栓,并且通过固定装置3将金属材料的发热传递到基材111侧。(C) 2004年,JPO
    • 2. 发明专利
    • Electromagnetic induction heating device
    • 电磁感应加热装置
    • JP2004150644A
    • 2004-05-27
    • JP2002313127
    • 2002-10-28
    • Fuji Electric Holdings Co LtdIto Koki Kk伊藤工機株式会社富士電機ホールディングス株式会社
    • ITOU DAIZOUMATSUNAGA TETSUO
    • H05B6/10A47J36/02F24C1/00
    • PROBLEM TO BE SOLVED: To provide an electromagnetic induction heating device that is compact and light capable of simultaneously exerting a plurality of different functions.
      SOLUTION: This device is provided with a flat electromagnetic induction coil 21, a first heated body (roasting plate 4) heated by the coil and disposed on the surface side of the coil, and a second heated body (steam generating plate 5) heated by the coil and disposed on the coil reverse side. When the first and the second heated bodies are heated by the coil, the first and the second heated body achieve different functions (baking function and stream generating function) from each other. Both the first and the second heated bodies comprise clad members 7 and 8 composed of temperature compensation alloy materials 71 and 81 and non-magnetic materials 72 and 82 laminated in the surface-reverse direction.
      COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供一种紧凑且轻便的同时施加多种不同功能的电磁感应加热装置。 解决方案:该装置设置有扁平电磁感应线圈21,由线圈加热并设置在线圈表面侧的第一加热体(焙烧板4)和第二加热体(蒸汽发生板5 )由线圈加热并设置在线圈反面上。 当第一和第二加热体被线圈加热时,第一和第二加热体彼此实现不同的功能(烘烤功能和流产生功能)。 第一和第二加热体都包括由温度补偿合金材料71和81以及在表面 - 反向上层压的非磁性材料72和82组成的包层部件7和8。 版权所有(C)2004,JPO
    • 7. 发明专利
    • TOP PLATE FOR INDUCTION HEATING COOKER AND ITS MANUFACTURE
    • JPH10335055A
    • 1998-12-18
    • JP9175798
    • 1998-04-03
    • FUJI ELECTRIC CO LTDNIKKO KASEI KK
    • MATSUNAGA TETSUONAKAI MASARUYAMAKAWA HIROTOSHIKADOGAKI TAKANOBUTOSHIKURA KAZUAKIYAMAMOTO SHINICHIICHIJI MASANORI
    • H05B6/12
    • PROBLEM TO BE SOLVED: To accurately adjust temperature by forming a device formed of a top surface part, which is obtained by laminating non-magnetic and non-conductive sheet materials and modulating the surface, an intermediate part, which is formed of a non-magnetic and non- conductive sheet material or a felt-like sheet with built-in heat fusing fiber, and a lower surface part, which is obtained by laminating non-magnetic and non-conductive sheet materials, and embedding a temperature sensor between the top surface part and the lower surface part. SOLUTION: This device is formed of a compound plate of three layers of a top surface part 1, an intermediate part 2 and a lower surface part 3, and a temperature sensor 4 for detecting temperature of a material to be heated is embedded between the top surface part 1 and the intermediate part 2. Heat resistant adhesive agent 5 is filled between the top surface part 1 and the intermediate part 2 and between the intermediate part 2 and the lower surface part 3 for strong adhesion. Single bubble is left in the intermediate part 2 over the whole thereof so as to obtain the cotton condition at a low density, and heat conductivity is reduced, and mechanical impact resistance is improved so as to protect the temperature sensor 4, and even in the case where a crack is generated, continuity is eliminated, and even in the case where the device is wet by the splashed water, insulating performance is maintained. With this structure, heat capacity and residual heat are reduced, and insulating performance is maintained even in the case of breakdown so as to previously prevent the generation of electric shock accident.
    • 8. 发明专利
    • HIGH FREQUENCY ELECTROMAGNETIC INDUCTION HEATER
    • JPH0729673A
    • 1995-01-31
    • JP17324893
    • 1993-07-13
    • FUJI ELECTRIC CO LTD
    • MATSUNAGA TETSUOSHIRAISHI HIROTAKA
    • H05B6/10H05B6/36
    • PURPOSE:To conduct a highly efficient heating and a precise temperature control at high speed by providing a work coil for carrying a high frequency electromagnetic induction current on the inside, arranging a heating element on the outside, and submerging it in a liquid to heat the liquid. CONSTITUTION:A high frequency electromagnetic induction heater is formed of a work coil 2 for carrying a high frequency electromagnetic induction current and a metallic cylindrical electromagnetic induction heating element 3, a coil support 21 is provided in the coil 2, and the coil 2 is wound along it. The coil 2 and the heating element 3 are integrated together by a highly heat conducting insulating resin 22 consisting of an amide resin impermeable to electricity but permeable to heat. The heating element 3 is submerged in a liquid tank 4 filled with oil or water to heat the liquid. The limitation to form is eliminated because no iron core is present, and the generated loss heat from the coil 2 is efficiently transmitted to the oil or water. Thus, a highly precise temperature control can be performed at high speed.