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    • 2. 发明专利
    • Soft magnetic member, laminated body of soft magnetic members, and manufacturing method for those materials
    • 软磁性材料,软磁性材料的层压体以及这些材料的制造方法
    • JP2008159926A
    • 2008-07-10
    • JP2006348297
    • 2006-12-25
    • Denso Corp株式会社デンソー
    • NASHIKI MASAYUKISOKI TAKAHIROAOKI TETSUYATATSUMOTO HIROHIKO
    • H01F1/18H01F1/24H01F41/02
    • PROBLEM TO BE SOLVED: To provide a soft magnetic member which is excellent in practical utility as a soft magnetic member by achieving much lower eddy current loss compared with a conventional soft magnetic member made of a laminated electromagnetic steel plate at much lower cost than a conventional pressed powder core, as well as to provide a laminated body of the soft magnetic members and a manufacturing method for those materials.
      SOLUTION: A plate-like soft magnetic member 3 is composed in such a manner that many soft magnetic strips 2 are disposed to extend in the right-angled direction to its plate thickness direction and an opposing surface of each of the soft magnetic strips 2 is electrically isolated by an insulating film followed by bonding. This allows to configure the low-cost soft magnetic member with reduced eddy current loss.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种软磁性部件,其作为软磁性部件具有优异的实用性,与以较低成本的叠层电磁钢板制成的常规软磁体相比实现了更低的涡流损耗 比常规压制粉末芯,以及提供软磁性部件的层叠体以及这些材料的制造方法。 解决方案:板状软磁体3以这样的方式组成,使得许多软磁条2设置成沿其厚度方向的直角方向延伸,并且每个软磁体 条带2通过绝缘膜电隔离,接着粘合。 这允许配置具有降低的涡流损耗的低成本软磁构件。 版权所有(C)2008,JPO&INPIT
    • 7. 发明专利
    • Method of manufacturing soft magnetic member
    • 制造软磁性材料的方法
    • JP2009016701A
    • 2009-01-22
    • JP2007179356
    • 2007-07-09
    • Denso Corp株式会社デンソー
    • MURASE HIROSHISENOO TAKESHIWATANABE TEPPEITATSUMOTO HIROHIKO
    • H01F41/02B22F1/02B22F3/00C21D6/00H01F1/16H01F1/26
    • PROBLEM TO BE SOLVED: To provide a method of manufacturing a soft magnetic member, which can favorably reduce iron loss. SOLUTION: In an annealing process of a soft magnetic member, the soft magnetic member is retained at an annealing temperature of 550°C to 850°C only for an annealing time period of 0.5 to 20 minutes, and the total time period for which the soft magnetic member is retained at a temperature of 400°C or higher is set to 3 to 100 minutes. This method can substantially reduce the time period for which the soft magnetic member is retained at a high temperature in comparison with conventional methods, thereby substantially reducing heat deterioration of organic constituents of the soft magnetic member and preventing increase in eddy-current loss. Further, it is found that distortion stress of the soft magnetic member is reduced to a required level in spite of short-time retention at a high temperature, thereby allowing hysteresis loss to be reduced favorably. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供可以有利地减少铁损的软磁性部件的制造方法。 解决方案:在软磁性部件的退火处理中,软磁体仅在退火时间为0.5〜20分钟的条件下保持在退火温度为550℃〜850℃,总时间 将软磁性部件保持在400℃以上的温度下,设定为3〜100分钟。 与常规方法相比,该方法可以显着降低软磁体在高温下保持的时间,从而大大降低了软磁体的有机组分的热劣化,并防止了涡流损耗的增加。 此外,发现尽管在高温下保持短时间,但是软磁性构件的变形应力降低到所需水平,从而可以有利地降低磁滞损耗。 版权所有(C)2009,JPO&INPIT
    • 9. 发明专利
    • MANUFACTURING METHOD FOR GAS SENSOR ELEMENT
    • JP2002340842A
    • 2002-11-27
    • JP2001148303
    • 2001-05-17
    • DENSO CORP
    • ENMEI SHOICHIROTATSUMOTO HIROHIKO
    • G01N27/409
    • PROBLEM TO BE SOLVED: To provide a manufacturing method for a gas sensor element, hardly causing damage and failure due to mechanical stress or thermal stress and having good durability. SOLUTION: A raw sheet 53 for a solid electrolyte plate, a raw sheet 54 for a spacer plate, and a raw sheet 55 for a heater board are respectively prepared, the raw sheet 53 for the solid electrolyte plate is provided with a printing part 530 for forming an electrode, and the raw sheet for 55 the heater board is provided with a printing part 550 for a heating element, and grooving is performed for the raw sheet 54 for the spacer plate to thereby form a groove part 540 having a closed end and an open end forming a reference gas chamber. The raw sheet 54 for the spacer plate is stacked on the raw sheet 55 for the heater board, and further the raw sheet 53 for the solid electrolyte plate is stacked thereon, and stuck thereto by an adhesive agent to form an unburnt layered product. After that, the unburnt layered product is burnt.