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    • 3. 发明授权
    • Oxygen sensor
    • 氧传感器
    • US5186810A
    • 1993-02-16
    • US651853
    • 1991-02-07
    • Takeshi NagaiKunihiro Tsuruda
    • Takeshi NagaiKunihiro Tsuruda
    • G01N27/41G01N27/406G01N27/407G01N27/409
    • G01N27/407G01N27/4065G01N27/4078
    • An oxygen ion conductive solid-electrolyte plate (1) has first and second opposite surfaces. A plurality of negative electrodes (21b, 22b) and positive electrodes (21a, 22a) are formed on the first and second surfaces of the solid-electrolyte plate (1), respectively, and each of the plurality of negative electrodes (21b, 22b) is opposed to each of the plurality of positive electrodes (21a, 22a). A spacer (5 or 7) is hermetically secured to the first surface of the electrolyte plate (1) and at the same time surrounds each of the plurality of negative electrodes (21b, 22b). A sealing plate (3) is also hermetically secured to the spacer (5 or 7). A plurality of closed spaces (61, 62) are thus defined as spaces surrounded by the solid-electrolyte plate (1), spacer (5 or 7) and sealing plate (3). A plurality of windows (41, 42) are provided in the sealing plate. Each of the plurality of closed spaces (61, 62) embraces one negative electrode of the plurality of negative electrodes (21b, 22b) and one window of the plurality of windows (41, 42). Each of the plurality of closed spaces (61, 62) communicates with the external space through one of the plurality of windows (41, 42). Each of the plurality of windows (41, 42) allows oxygen molecules to diffusely flow from the environment into each of the plurality of closed spaces (61, 62) through each of the plurality of windows (41, 42).
    • 氧离子传导固体电解质板(1)具有第一和第二相对表面。 在固体电解质板(1)的第一表面和第二表面上分别形成有多个负极(21b,22b)和正极(21a,22a),并且,多个负极(21b,22b) )与多个正极(21a,22a)中的每一个相对。 间隔件(5或7)气密地固定在电解质板(1)的第一表面上,同时围绕多个负极(21b,22b)中的每一个。 密封板(3)也气密地固定到间隔件(5或7)上。 因此,多个封闭空间(61,62)被定义为由固体电解质板(1),间隔件(5或7)和密封板(3)包围的空间。 多个窗口(41,42)设置在密封板中。 多个封闭空间(61,62)中的每一个包围多个负极(21b,22b)中的一个负电极和多个窗口(41,42)中的一个窗口。 多个封闭空间(61,62)中的每一个通过多个窗口(41,42)之一与外部空间连通。 多个窗口(41,42)中的每一个允许氧分子通过多个窗口(41,42)中的每一个从环境扩散到多个封闭空间(61,62)中的每一个。