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    • 5. 发明授权
    • Reversible flow electrohydrodynamic fluid accelerator
    • 可逆流动电动液加速器
    • US08411407B2
    • 2013-04-02
    • US12615909
    • 2009-11-10
    • Nels Jewell-LarsenKenneth A. HonerMatt SchwiebertHongyu RanPiyush SavaliaYan Zhang
    • Nels Jewell-LarsenKenneth A. HonerMatt SchwiebertHongyu RanPiyush SavaliaYan Zhang
    • H01J27/00
    • H02N11/006F04B19/006F28F2250/08G06F1/203
    • Reversible flow may be provided in certain EHD device configurations that selectively energize corona discharge electrodes arranged to motivate flows in generally opposing directions. In some embodiments, a first set of one or more corona discharge electrodes is positioned, relative to a first array of collector electrode surfaces, to when energized, motivate flow in a first direction, while second set of one or more corona discharge electrodes is positioned, relative to a second array of collector electrode surfaces, to when energized, motivate flow in a second direction that opposes the first. In some embodiments, the first and second arrays of collector electrode surfaces are opposing surfaces of individual collector electrodes. In some embodiments, the first and second arrays of collector electrode surfaces are opposing surfaces of respective collector electrodes.
    • 可以在某些EHD器件配置中提供可逆流动,其选择性地激励布置成在大致相反的方向上激励流动的电晕放电电极。 在一些实施例中,相对于集电极表面的第一阵列,第一组一个或多个电晕放电电极被定位成当被激励时,在第一方向上激励流动,同时定位第二组一个或多个电晕放电电极 相对于集电极表面的第二阵列,当被激励时,在与第一方向相反的第二方向上激励流动。 在一些实施例中,集电极表面的第一和第二阵列是各个集电极的相对表面。 在一些实施例中,集电极表面的第一和第二阵列是各个集电极的相对表面。
    • 10. 发明授权
    • Electrode conditioning in an electrohydrodynamic fluid accelerator device
    • 电动液体加速装置中的电极调理
    • US08482898B2
    • 2013-07-09
    • US12771967
    • 2010-04-30
    • Ken HonerGuilian GaoNels Jewell-Larsen
    • Ken HonerGuilian GaoNels Jewell-Larsen
    • H05F3/00
    • B03C3/743B03C3/41B03C2201/04
    • Conditioning an electrode is performed with a cleaning device for removing detrimental material from forming electrode surfaces of an electrohydrodynamic device or other ion flow generating device. A conditioning material is deposited on the electrode to at least partially mitigate erosion, corrosion, oxidations, dendrite formation on the electrode or ozone production. The conditioning material can be deposited by a wearable portion of one or more cleaning blocks or wipers. The cleaning blocks may have a composition selected to be hard enough to remove detrimental material under a selected pressure, while soft enough to be wearable to deposit a conditioning layer on the electrode surface. The conditioning material can be applied as a solid or liquid. The applied conditioning material can include at least one of silver, palladium, platinum, manganese, nickel, zirconium, titanium, tungsten, aluminum, oxides or alloys thereof, carbon, and organometallic materials that decompose under plasma conditions.
    • 使用用于去除有害材料的清洁装置来形成电极,以形成电动液压装置或其它离子流产生装置的电极表面。 调节材料沉积在电极上以至少部分地减轻电极上的侵蚀,腐蚀,氧化,枝晶形成或臭氧产生。 调理材料可以由一个或多个清洁块或擦拭器的可穿戴部分沉积。 清洁块可以具有选择为足够硬的组合以在选定的压力下去除有害材料,同时足够柔软以便在电极表面上沉积调理层。 调理材料可以作为固体或液体使用。 所施加的调理材料可以包括在等离子体条件下分解的银,钯,铂,锰,镍,锆,钛,钨,铝,氧化物或其合金,碳和有机金属材料中的至少一种。