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    • 6. 发明授权
    • Electrical contact arrangement for a coating process
    • 涂层工艺的电接触布置
    • US08535501B2
    • 2013-09-17
    • US13015626
    • 2011-01-28
    • Benjamin KabagambeJames W. McCamyDonald W. Boyd
    • Benjamin KabagambeJames W. McCamyDonald W. Boyd
    • C25D13/12
    • C25D13/22C25D13/12F16B2/10
    • A protective coating is applied to the electrically conductive surface of a reflective coating of a solar mirror by biasing a conductive member having a layer of a malleable electrically conductive material, e.g. a paste, against a portion of the conductive surface while moving an electrodepositable coating composition over the conductive surface. The moving of the electrodepositable coating composition over the conductive surface includes moving the solar mirror through a flow curtain of the electrodepositable coating composition and submerging the solar mirror in a pool of the electrodepositable coating composition. The use of the layer of a malleable electrically conductive material between the conductive member and the conductive surface compensates for irregularities in the conductive surface being contacted during the coating process thereby reducing the current density at the electrical contact area.
    • 通过偏置具有可延展导电材料层的导电构件(例如,导电构件),将保护涂层施加到太阳能反射镜的反射涂层的导电表面。 在导电表面上移动可电沉积涂料组合物时,将其粘贴到导电表面的一部分上。 可电沉积涂料组合物在导电表面上的移动包括通过可电沉积涂料组合物的流动幕移动太阳镜,并将太阳镜浸没在可电沉积涂料组合物的池中。 在导电构件和导电表面之间使用可延展的导电材料层补偿了在涂覆过程期间接触的导电表面中的不规则性,从而降低了电接触区域处的电流密度。