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    • 4. 发明授权
    • Electrode self-cleaning mechanism for electro-kinetic air transporter conditioner devices
    • 电动空气输送器调节装置的电极自清洁机构
    • US06709484B2
    • 2004-03-23
    • US09924600
    • 2001-08-08
    • Shek Fai LauJimmy Luther LeeAndrew J. Parker
    • Shek Fai LauJimmy Luther LeeAndrew J. Parker
    • B03C374
    • B01D53/323B01D53/32B01D2251/104B03C3/08B03C3/12B03C3/32B03C3/68B03C3/743B03C2201/08B03C2201/14C01B13/11C01B13/115C01B2201/12C01B2201/20C01B2201/22C01B2201/62F24F2003/1682F24F2003/1685H01T23/00Y10T428/24322
    • An electro-kinetic electro-static air conditioner includes a mechanism to clean the wire-like electrodes in the first electrode array. A length of flexible Mylar type sheet material projects from the base of the second electrode array towards and beyond the first electrode array. The distal end of each sheet includes a slit that engages a corresponding wire-like electrode. As a user moves the second electrode array up or down within the conditioner housing, friction between slit edges and the wire-like electrode cleans the electrode surface. The sheet material may be biasedly pivotably attached to the base of the second electrode array, and may be urged away from and parallel to the wire-like electrodes when the conditioner is in use. Another embodiment includes a bead-like member having a through opening or channel, through which the wire-like electrode passes. As the conditioner is turned upside down and rightside up, friction between the opening in the bead-like member and wire-like electrode cleans the electrode surface. The bead-like member may be made of ceramic, glass, or even metal. The through channel may be symmetrically formed in the bead-like member, but preferably will be asymmetrical to create a mechanical moment and increased friction with the surface of the wire-like electrode being cleaned.
    • 电动静电空调器包括清洁第一电极阵列中的线状电极的机构。 一段长度的柔性聚酯薄片材料从第二电极阵列的底部突出到第一电极阵列之外。 每个片的远端包括与相应的线状电极接合的狭缝。 当使用者在调节器壳体内向上或向下移动第二电极阵列时,狭缝边缘和线状电极之间的摩擦清洁电极表面。 片状材料可以偏置地可枢转地附接到第二电极阵列的基部,并且当调节器在使用时可以将片材推动离开并平行于线状电极。 另一个实施例包括具有通孔或通道的珠状构件,线状电极通过该通孔。 当调节器上下颠倒时,珠状部件和线状电极之间的开口的摩擦力清除电极表面。 珠状构件可以由陶瓷,玻璃或甚至金属制成。 通道可以对称地形成在珠状构件中,但是优选地将是不对称的,以产生机械力矩并且与要清洁的线状电极的表面的摩擦力增加。