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    • 2. 发明授权
    • Collector-radiator structure for an electrohydrodynamic cooling system
    • 电动冷却系统的集热器 - 散热器结构
    • US08624503B2
    • 2014-01-07
    • US12772008
    • 2010-04-30
    • Nels Jewell-LarsenYan ZhangMatt SchwiebertKen Honer
    • Nels Jewell-LarsenYan ZhangMatt SchwiebertKen Honer
    • H01J7/24
    • F28F13/16F28D2021/0029F28F2250/08
    • An electrohydrodynamic fluid accelerator includes an emitter electrode and leading surfaces of a collector electrode that are substantially exposed to ion bombardment. Heat transfer surfaces downstream of the emitter electrode along a fluid flow path include a first portion not substantially exposed to the ion bombardment that is conditioned with a first ozone reducing material. The leading surfaces of the collector electrode are not conditioned with the first ozone reducing material, but may include a different surface conditioning. The downstream heat transfer surfaces and the leading surfaces can be separately formed and joined to form the unitary structure or can be integrally formed. The electrohydrodynamic fluid accelerator can be used in a thermal management assembly of an electronic device with a heat dissipating device thermally coupled to the conditioned heat transfer surfaces.
    • 电动力学流体加速器包括基本上暴露于离子轰击的发射电极和集电极的前表面。 沿着流体流动路径的发射电极下游的传热表面包括基本不暴露于用第一臭氧还原材料调节的离子轰击的第一部分。 集电极的前表面不用第一臭氧还原材料调节,但可包括不同的表面调节。 下游传热面和前表面可以分开地形成和接合以形成整体结构或者可以一体形成。 电动液体流体加速器可以用于具有热耦合到调节的传热表面的散热装置的电子装置的热管理组件中。