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    • 5. 发明申请
    • Oxygen-concentration detecting element and method of producing same
    • 氧浓度检测元件及其制造方法
    • US20050274613A1
    • 2005-12-15
    • US11148337
    • 2005-06-09
    • Shoichi SakaiFutoshi IchiyanagiJunji OnozukaYasuji Orimo
    • Shoichi SakaiFutoshi IchiyanagiJunji OnozukaYasuji Orimo
    • G01N27/407G01N27/26
    • G01N27/4071
    • The invention relates to an oxygen-concentration detecting element including (a) a base member of a first insulating material; (b) an electric heater layer formed on the base member to generate a heat when electrically energized; and (c) an oxygen-detecting laminated unit formed on the base member, the unit including a solid electrolyte layer and inner and outer electrodes interposing the solid electrolyte layer therebetween. The inner electrode may be constructed of a noble metal material and voids that are dispersed in the noble metal material and are derived from a void forming agent. The oxygen-concentration detecting element may include a penetration layer for allowing penetration of oxygen therethrough, between the outer surface of the base member and the oxygen-detecting laminated unit. The penetration layer is extended in the axial direction of the base member from the position of the unit.
    • 本发明涉及一种氧浓度检测元件,包括:(a)第一绝缘材料的基底部件; (b)形成在所述基底构件上以在被通电时产生热量的电加热器层; 和(c)形成在所述基底构件上的氧检测层压单元,所述单元包括固体电解质层和在其间插入固体电解质层的内电极和外电极。 内部电极可以由贵金属材料和分散在贵金属材料中而衍生自空隙形成剂的空隙构成。 氧浓度检测元件可以包括用于允许氧穿透的穿透层,在基底的外表面和氧气检测层压单元之间。 穿透层从单元的位置沿着基底构件的轴向方向延伸。
    • 6. 发明授权
    • Oxygen sensor
    • 氧传感器
    • US07704358B2
    • 2010-04-27
    • US11711775
    • 2007-02-28
    • Futoshi IchiyanagiAkira UchikawaShoichi SakaiGoji Matsumoto
    • Futoshi IchiyanagiAkira UchikawaShoichi SakaiGoji Matsumoto
    • G01N27/26
    • G01N27/4071Y10T29/532Y10T29/53204
    • An oxygen sensor includes a base body portion; and a plurality of function layers laminated on a surface of the base body portion. The function layers includes a solid electrolyte layer adapted to conduct oxygen ions; a reference electrode layer located on a base body portion side of the solid electrolyte layer; a sensing electrode layer located on the opposite side of the solid electrolyte layer to the reference electrode layer; a heater portion adapted to activate the solid electrolyte layer by heating; and a gas diffusion layer formed between the reference electrode layer and the base body portion, and adapted to diffuse a reference gas within the gas diffusion layer. The gas diffusion layer is formed to have a porosity indicating a limit current value ranging between 60 μA and 200 μA. The limit current value is a value of a current flowing between the reference electrode layer and the sensing electrode layer when the current flowing therebetween becomes substantially constant during the process of bringing a voltage applied therebetween higher.
    • 氧传感器包括基体部分; 以及层叠在所述基体部的表面上的多个功能层。 功能层包括适于导电氧离子的固体电解质层; 位于固体电解质层的基体部侧的参考电极层; 位于所述固体电解质层的与所述参考电极层相反的一侧的感测电极层; 适于通过加热活化固体电解质层的加热器部分; 以及气体扩散层,其形成在所述参考电极层和所述基体部分之间,并且适于在所述气体扩散层内扩散参考气体。 气体扩散层形成为具有表示60μA至200μA范围内的极限电流值的孔隙率。 极限电流值是当在其间施加较高电压的过程中流动的电流在参考电极层和感测电极层之间流动的电流变得基本恒定时的电流的值。
    • 7. 发明申请
    • Oxygen sensor
    • 氧传感器
    • US20070199820A1
    • 2007-08-30
    • US11711775
    • 2007-02-28
    • Futoshi IchiyanagiAkira UchikawaShoichi SakaiGoji Matsumoto
    • Futoshi IchiyanagiAkira UchikawaShoichi SakaiGoji Matsumoto
    • G01N27/26C25B11/00
    • G01N27/4071Y10T29/532Y10T29/53204
    • An oxygen sensor includes a base body portion; and a plurality of function layers laminated on a surface of the base body portion. The function layers includes a solid electrolyte layer adapted to conduct oxygen ions; a reference electrode layer located on a base body portion side of the solid electrolyte layer; a sensing electrode layer located on the opposite side of the solid electrolyte layer to the reference electrode layer; a heater portion adapted to activate the solid electrolyte layer by heating; and a gas diffusion layer formed between the reference electrode layer and the base body portion, and adapted to diffuse a reference gas within the gas diffusion layer. The gas diffusion layer is formed to have a porosity indicating a limit current value ranging between 60 μA and 200 μA. The limit current value is a value of a current flowing between the reference electrode layer and the sensing electrode layer when the current flowing therebetween becomes substantially constant during the process of bringing a voltage applied therebetween higher.
    • 氧传感器包括基体部分; 以及层叠在所述基体部的表面上的多个功能层。 功能层包括适于导电氧离子的固体电解质层; 位于固体电解质层的基体部侧的参考电极层; 位于所述固体电解质层的与所述参考电极层相反的一侧的感测电极层; 适于通过加热活化固体电解质层的加热器部分; 以及气体扩散层,其形成在所述参考电极层和所述基体部分之间,并且适于在所述气体扩散层内扩散参考气体。 气体扩散层形成为具有指示在60μA至200μA之间的极限电流值的孔隙率。 极限电流值是当在其间施加较高电压的过程中流动的电流在参考电极层和感测电极层之间流动的电流变得基本恒定时的电流的值。
    • 10. 发明申请
    • Oxygen-concentration detecting element and method of producing same
    • 氧浓度检测元件及其制造方法
    • US20050274614A1
    • 2005-12-15
    • US11148341
    • 2005-06-09
    • Shoichi SakaiFutoshi IchiyanagiJunji OnozukaYasuji Orimo
    • Shoichi SakaiFutoshi IchiyanagiJunji OnozukaYasuji Orimo
    • G01N27/409G01N27/407G01N27/26
    • G01N27/4071G01N27/4077
    • The invention relates to an oxygen-concentration detecting element including (a) a base member constructed of a first insulating material; (b) an electric heater layer formed on the base member to generate a heat when electrically energized; (c) an oxygen-detecting laminated unit formed on the base member, the unit including a solid electrolyte layer activated by the heat; (d) a printed protecting layer covering the base member, the electric heater layer and the oxygen-detecting laminated unit, being constructed of a mixture of a second insulating material and a solid electrolyte material, and having a porous structure provided with voids derived from a void forming agent contained in an amount of 10-80 volume %, based on a total volume of the second insulating material and the void forming agent, prior to a baking for producing the oxygen concentration detecting element; and (e) a porous protecting layer covering the printed protecting layer.
    • 本发明涉及一种氧浓度检测元件,包括:(a)由第一绝缘材料构成的基体; (b)形成在所述基底构件上以在被通电时产生热量的电加热器层; (c)形成在所述基底构件上的氧检测层压单元,所述单元包括由所述热激活的固体电解质层; (d)覆盖基材,电加热层和氧检测层压单元的印刷保护层,由第二绝缘材料和固体电解质材料的混合物构成,并且具有多孔结构,该多孔结构具有从 在制造氧浓度检测元件的焙烧之前,基于第二绝缘材料和空隙形成剂的总体积,含有10-80体积%的空隙形成剂; 和(e)覆盖印刷保护层的多孔保护层。