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    • 2. 发明专利
    • Heat generation and heat storage material for electromagnetic induction
    • 用于电磁感应的热生成和热存储材料
    • JP2012113914A
    • 2012-06-14
    • JP2010260915
    • 2010-11-24
    • Motai Takeji甕 武治
    • TSUKADA KAZUO
    • H05B6/10H05B3/14
    • PROBLEM TO BE SOLVED: To provide a material being effective for a heat generation and heat storage material for electromagnetic induction generating heat by electromagnetic induction and storing the heat, and having advantages of improving a heat generation action, making a heat storage action better, saving a power because a power supply of a heating device can be turned off arbitrarily, spreading the heat generated from a heating material in a cube container evenly in the container, and the like.SOLUTION: A heat generation and heat storage material for electromagnetic induction generates heat by electromagnetic induction, and stores the heat. The heat generation and heat storage material contains silicon dioxide, titanium oxide and/or elemental silicon. The heat generation and heat storage material is used in combination with an electromagnetic induction heat generation material, such as ferrite, aluminum or carbon or the like, and is incorporated in a cube container when used.
    • 解决的问题:提供一种对通过电磁感应产生电磁感应产生的热产生和储热材料有效的材料并储存热量,并且具有改善发热作用的优点,从而形成蓄热作用 更好地节省电力,因为可以任意地切断加热装置的电源,将从立方体容器中的加热材料产生的热量均匀地分散在容器中等。 解决方案:用于电磁感应的发热和储热材料通过电磁感应产生热量并储存热量。 发热和储热材料含有二氧化硅,氧化钛和/或元素硅。 发热和蓄热材料与铁素体,铝或碳等的电磁感应发热材料组合使用,并且在使用时并入立方体容器中。 版权所有(C)2012,JPO&INPIT
    • 5. 发明专利
    • Method for converting woody material to board
    • 将木材转化成板的方法
    • JP2005288956A
    • 2005-10-20
    • JP2004109699
    • 2004-04-02
    • Takeji MotaiMasakatsu Oba征勝 大庭甕 武治
    • MOTAI TAKEJIOBA MASAKATSU
    • B27K3/52B27K5/00
    • PROBLEM TO BE SOLVED: To provide a method for converting a woody material such as sawmill product, veneer or chip to nonflammable woody boards such as bonded wood, plywood, LVL and particle board through processes to impregnate the woody material with a fireproofing liquid of borate and adhesively bind the woody material using an adhesive represented by a phenol resin as a crosslinking agent after drying and thus, obtain a fireproof architectural board which is effectively applicable to wide, long and thin design/laying.
      SOLUTION: The method for converting a woody material to boards comprises the following processes: the process to impregnate the woody material with a borate and dry it; the process to apply the adhesive such as a phenol resin to the upper surface of the dried woody material; and the process to prepare a silane coupling agent through reacting a silicone resin, an epoxy rein, an amino group, a methyl group or the like, then obtain a solution undergoing hydrolytic reaction by mixing boric acid(H
      3 BO
      3 ) solution with the silane coupling agent or a solution by mixing an alcoholic solvent such as isopyl alcohol or ethanol with the silane coupling agent, and apply the agent, as a primer, to the woody material adhering surface to which the adhesive is applied and further, prevent the borate with which the woody material is impregnated from leaching.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种将锯木厂产品,单板或芯片等木质材料转化为不燃性木质板如粘合木,胶合板,LVL和刨花板的方法,以通过具有防火性的方法浸渍木质材料 硼酸盐的液体,并且使用由酚醛树脂代表的粘合剂作为交联剂在干燥后粘结木质材料,从而获得有效适用于宽,长和薄设计/铺设的防火建筑板。 解决方案:将木质材料转化为板的方法包括以下过程:用硼酸盐浸渍木质材料并干燥的方法; 将诸如酚醛树脂的粘合剂施加到干燥的木质材料的上表面的方法; 以及通过使有机硅树脂,环氧树脂,氨基,甲基等反应制备硅烷偶联剂的方法,然后通过混合硼酸(H 3
    • 6. 发明专利
    • Electromagnetic induction heating device, and heating and hot-water supply device using the same
    • 电磁感应加热装置及使用其的加热和热水供应装置
    • JP2011238449A
    • 2011-11-24
    • JP2010108400
    • 2010-05-10
    • Kame Takeharu甕 武治
    • TSUKADA KAZUO
    • H05B6/10F24D3/00F24H1/18H05B11/00
    • PROBLEM TO BE SOLVED: To provide an electromagnetic induction heating device hardly producing heat dissipation, obtaining high temperature in a short time and being easy to make germs and viruses extinct.SOLUTION: The electromagnetic induction heating device includes: an internal first heating element 1; a second heating element 2 located outside the first heating element 1; a first flow path F1 disposed outside the second heating element 2; and a second flow path F2 disposed between the first heating element 1 and the second heating element 2. A non-heating medium introduced in the first flow path F1 flows in the first flow path F1 and the second flow path F2, without contacting to the second heating element 2 and the first heating element 1. The second heating element 2 generates heat by the application of alternating power to the second heating element 2, and also, the first heating element 1 generates heat by an electromagnetic induction function between the second heating element 2 and the first heating element 1. The non-heating medium introduced in the first flow path F1 is heated by the second heating element 2 in the first flow path F1 and by the first heating element 1 and the second heating element 2 in the second flow path F2.
    • 要解决的问题:提供几乎不产生散热的电磁感应加热装置,在短时间内获得高温并且容易使细菌和病毒灭绝。 电磁感应加热装置包括:内部第一加热元件1; 位于第一加热元件1外部的第二加热元件2; 布置在第二加热元件2外部的第一流路F1; 以及设置在第一加热元件1和第二加热元件2之间的第二流路F.引入第一流路F1的非加热介质在第一流路F1和第二流路F2中流动,而不与 第二加热元件2和第一加热元件1.第二加热元件2通过向第二加热元件2施加交流电而产生热量,并且第一加热元件1通过第二加热元件2之间的电磁感应功能产生热量 元件2和第一加热元件1.引入到第一流路F1中的非加热介质在第一流路F1中由第二加热元件2和第一加热元件2和第二加热元件2在第 第二流路F2。 版权所有(C)2012,JPO&INPIT