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US Patent 8235096 Hydrophilic particle enhanced phase change-based heat exchange

Patent 8235096 was granted and assigned to University of Central Florida on August, 2012 by the United States Patent and Trademark Office.

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Patent
Patent

Patent attributes

Current Assignee
University of Central Florida
University of Central Florida
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
8235096
Patent Inventor Names
Louis Chow0
Ming Su0
Edward T. Mahefkey0
Date of Patent
August 7, 2012
Patent Application Number
12755797
Date Filed
April 7, 2010
Patent Citations Received
‌
US Patent 12103051 Apparatus and methods employing liquid-impregnated surfaces
0
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US Patent 11684705 Medical devices and implements with liquid-impregnated surfaces
0
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US Patent 11933551 Liquid-impregnated surfaces, methods of making, and devices incorporating the same
0
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US Patent 11971220 Evaporative cooling for transducer array
0
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US Patent 12005161 Medical devices and implements with liquid-impregnated surfaces
0
Patent Primary Examiner
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Cheryl J. Tyler
Patent abstract

A heat pipe includes a sealed thermally conductive casing having a length that has a first end for coupling to a heat source to be cooled and a second end for coupling to a heat sink opposite the first end. The casing has an inside surface that defines a thermal control volume above. The thermal control volume includes (i) a plurality of hydrophilic particles or clusters of hydrophilic particles in a size range from nano size to micron size attached as a hydrophilic film to the inside surface or to a wick on the inside surface, wherein the plurality of hydrophilic particles occupy only a portion of an area of the inside surface or an internal pore space of the wick or a surface area of the wick, (ii) a vapor cavity above the hydrophilic film or the wick, and (iii) a heat transfer working fluid contained as a liquid on the hydrophilic film or the wick, and as a vapor in the vapor cavity. The plurality of hydrophilic particles or clusters of hydrophilic particles provide a solid-liquid contact angle for the working fluid when in a liquid state of <30 degrees, typically <10 degrees.

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