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    • 3. 发明授权
    • Method of manufacturing an electrical slip ring assembly
    • 制造电气滑环组件的方法
    • US5054189A
    • 1991-10-08
    • US603155
    • 1990-10-25
    • Anthony L. BowmanNorris E. LewisJerry T. PerdueJames M. WrightMichael J. Day
    • Anthony L. BowmanNorris E. LewisJerry T. PerdueJames M. WrightMichael J. Day
    • H01R43/10
    • H01R43/10Y10T29/49011Y10T29/49945Y10T29/53148
    • A method of manufacturing an annular base portion of an electrical slip ring assembly having a plurality of conductive rings formed in the outer circumferential surface thereof is described. The slip ring base is molded, and grooves are machined into the outer circumferential surface thereof. Conductive strips are cut into a series of lengths forming conductive rings to be placed about the outer circumference of the annular base member. The individual lengths of conductive material are anchored to the outer circumferential surface of the slip ring base and a rolling pressure is exerted on them about the circumference of the base to cause the rings to be press fit into the grooves previously formed on the base. When the complete circumference of the ring has been press fit into its respective groove, the other end of the conductive ring is then secured to the base. An appropriate fixture is provided for exerting the lateral and a rolling pressure on each conductive ring to properly press fit it into a groove on the annular base member.
    • 描述了一种制造具有形成在其外圆周表面中的多个导电环的电滑环组件的环形基部的方法。 模制滑环底座,并将凹槽加工成其外圆周表面。 导电条被切割成一系列长度形成导电环的长度,以围绕环形基部件的外圆周放置。 导电材料的单独长度被锚固到滑环基座的外圆周表面上,并且围绕基座的圆周施加滚动压力,以使环压配合到预先形成在基座上的凹槽中。 当环的整个圆周已经压配合到其相应的凹槽中时,导电环的另一端然后固定到基座。 提供适当的夹具,用于在每个导电环上施加横向和滚动压力,以适当地将其压配合到环形基座构件上的凹槽中。
    • 7. 发明申请
    • AMPEROMETRIC ELECTROCHEMICAL CELLS AND SENSORS
    • 放大电化学电池和传感器
    • US20120055789A1
    • 2012-03-08
    • US12875407
    • 2010-09-03
    • Scott L. SwartzMatthew M. SeabaughLora B. ThrunPaul H. MatterMichael J. DayWilliam J. DawsonBuddy E. McCormick
    • Scott L. SwartzMatthew M. SeabaughLora B. ThrunPaul H. MatterMichael J. DayWilliam J. DawsonBuddy E. McCormick
    • G01N27/407
    • G01N33/0054G01N27/403G01N27/4074G01N33/0037
    • Amperometric ceramic electrochemical cells comprise, in one embodiment, an electrolyte layer, a sensing electrode layer comprising a ceramic phase and a metallic phase, and a counter electrode layer, wherein the cell is operable in an oxidizing atmosphere and under an applied bias to exhibit enhanced reduction of oxygen molecules at the sensing electrode in the presence of one or more target gases such as nitrogen oxides (NOX) or NH3 and a resulting increase in oxygen ion flux through the cell. In another embodiment, amperometric ceramic electrochemical cells comprise an electrolyte layer comprising a continuous network of a first material which is ionically conducting at an operating temperature of about 200 to 550° C.; a counter electrode layer comprising a continuous network of a second material which is electrically conductive at an operating temperature of about 200 to 550° C.; and a sensing electrode layer comprising a continuous network of a ceramic phase and a metallic phase which is electrically conductive at an operating temperature of about 200 to 550° C., which sensing electrode is operable to exhibit increased charge transfer in the presence of one or more target gas species. These electrochemical cells and additional electrochemical cell embodiments are suitable for use in gas sensors and methods of sensing or detecting one or more target gases.
    • 电化学陶瓷电化学电池在一个实施方案中包括电解质层,包含陶瓷相和金属相的感测电极层和对电极层,其中电池在氧化气氛中和施加的偏压下可操作以显示增强的 在一种或多种目标气体如氮氧化物(NOX)或NH 3存在下,在感测电极处还原氧分子,并导致通过电池的氧离子通量的增加。 在另一个实施方案中,电流分析陶瓷电化学电池包括电解质层,其包含第一材料的连续网络,其在约200至550℃的操作温度下离子导电; 对电极层,包括在约200至550℃的操作温度下导电的第二材料的连续网络; 以及感测电极层,其包含在约200至550℃的操作温度下导电的陶瓷相和金属相的连续网络,所述感测电极可操作以在存在一个或多个的情况下表现出增加的电荷转移 更多的目标气体种类。 这些电化学电池和附加的电化学电池实施例适用于气体传感器和感测或检测一种或多种目标气体的方法。