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    • 5. 发明专利
    • Method of manufacturing ceramic laminate
    • 制造陶瓷层压板的方法
    • JP2007331965A
    • 2007-12-27
    • JP2006164238
    • 2006-06-14
    • Denso CorpNippon Soken Inc株式会社デンソー株式会社日本自動車部品総合研究所
    • YASUDA ETSUROKIHARA NORIAKIMUKAI HIROKATSUMAKINO TASUKE
    • C04B35/622B28B11/00
    • B32B18/00C04B35/632C04B35/64C04B35/645C04B2235/9607C04B2235/9615C04B2237/343
    • PROBLEM TO BE SOLVED: To provide a method of manufacturing a ceramic laminate suppressing warping, peeling, cracking or the like of ceramic sheets in laminating and firing a plurality of kinds of ceramic sheets into a body. SOLUTION: The method of manufacturing a ceramic laminate comprises a process S21 for measuring a shrinkage rate where the relationship between a volume ratio of an organic substance and a firing shrinkage rate is determined when each ceramic sheet is fired at a specified temperature, a process S22 for selecting a volume ratio of an organic substance where the volume ratio of an organic substance for each ceramic sheet is selected so that a required and almost the same firing shrinkage rate is obtained for all ceramic sheets from the relationships between the volume ratios of organic substances and the firing shrinkage rates obtained in the process S21 for measuring a shrinkage rate, a sheet forming process S41 where a plurality of kinds of ceramic sheets are formed based on the volume ratios of organic substances selected in the process S22 for selecting a volume ratio of an organic substance, and a firing process S42 where the plurality of kinds of ceramic sheets are laminated and fired to form a ceramic laminate. COPYRIGHT: (C)2008,JPO&INPIT
    • 待解决的问题:提供一种制造陶瓷层压体的方法,其抑制陶瓷片的翘曲,剥离,开裂等,以将多种陶瓷片层压并烧制到体内。 < P>解决方案:制造陶瓷层压体的方法包括用于测量在每个陶瓷片在特定温度下烧制时确定有机物的体积比与焙烧收缩率之间的关系的收缩率的工艺S21, 选择有机物的体积比的方法S22,其中选择每种陶瓷片的有机物质的体积比,从而从所有陶瓷片的体积比之间的关系获得所需的和几乎相同的烧制收缩率 的有机物质的烧制收缩率和在收缩率测定用过程S21中得到的烧成收缩率,基于在步骤S22中选择的有机物质的体积比来形成多种陶瓷片的片材形成处理S41 有机物的体积比,以及层叠多种陶瓷片的烧成工序S42 烧制以形成陶瓷层压板。 版权所有(C)2008,JPO&INPIT
    • 6. 发明专利
    • Manufacturing method for gas sensor element
    • 气体传感器元件制造方法
    • JP2007085946A
    • 2007-04-05
    • JP2005276645
    • 2005-09-22
    • Denso CorpNippon Soken Inc株式会社デンソー株式会社日本自動車部品総合研究所
    • YASUDA ETSUROKIHARA NORIAKIMAKINO TASUKEMUKAI HIROKATSU
    • G01N27/41G01N27/409
    • PROBLEM TO BE SOLVED: To provide a manufacturing method for a gas sensor element, capable of restraining trouble from being generated in a manufacturing process, and is capable of obtaining high quality. SOLUTION: This manufacturing method for the gas sensor element 1 has a sensor layer 2 having a solid electrolyte 21, a measured gas side electrode 22 and a reference gas side electrode 23, a cycle layer 11 formed between a reference gas chamber 110 and the sensor layer 2, a heater layer 3 comprising a heater base plate 31 provided with a heating body 32 on its surface, and a diffusion layer 12 for making a measured gas permeated, and is constituted by layering the diffusion layer 12, the sensor layer 2, the cycle layer 11 and the heater layer 3 in this order. In the method, at least the heater layer 3 is jointed preliminarily with the cycle layer 11 under condition of 10 MPa or higher pressure, the cycle layer 11 is jointed preliminarily with the sensor layer 2 under condition of 1 MPa or lower pressure, and a layered body 10 is baked finally, and the layered body is manufactured. COPYRIGHT: (C)2007,JPO&INPIT
    • 解决的问题:提供一种气体传感器元件的制造方法,其能够抑制在制造过程中产生的麻烦,并且能够获得高质量。 解决方案:这种气体传感器元件1的制造方法具有传感器层2,其具有固体电解质21,测量气体侧电极22和参考气体侧电极23,在参考气体室110之间形成的循环层11 传感器层2,包括在其表面上设置有加热体32的加热器基板31和用于使被测气体渗透的扩散层12的加热器层3,并且通过使扩散层12,传感器 层2,循环层11和加热层3。 在该方法中,在10MPa以上的条件下,至少将加热层3与循环层11预先接合,在1MPa以下的条件下,将循环层11预先与传感器层2接合, 最后烘烤层状体10,制造层叠体。 版权所有(C)2007,JPO&INPIT