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US Patent 11857894 Perforated layer coalescer

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Is a
Patent
Patent
0

Patent attributes

Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
0
Patent Number
118578940
Patent Inventor Names
Mark T. Wieczorek0
Joshua Ryan Hendrixson0
Barry Mark Verdegan0
Date of Patent
January 2, 2024
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Patent Application Number
175902830
Date Filed
February 1, 2022
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Patent Citations
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US Patent 7323106 Multi-element filter with multiple pleat channel height
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US Patent 7087207 Method for forming an array of single-wall carbon nanotubes in an electric field and compositions thereof
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US Patent 7105596 Methods for producing composites of single-wall carbon nanotubes and compositions thereof
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US Patent 7108841 Method for forming a patterned array of single-wall carbon nanotubes
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US Patent 7115150 Mist filtration arrangement utilizing fine fiber layer in contact with media having a pleated construction and floor filter method
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US Patent 7189335 Conformal coverings for electronic devices
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US Patent 7198718 Coalescer
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US Patent 7205069 Membrane comprising an array of single-wall carbon nanotubes
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...
Patent Primary Examiner
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Joseph W Drodge
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CPC Code
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B01D 2201/32
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B01D 2201/325
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B01D 2257/702
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B01D 2257/704
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B01D 39/2017
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C02F 1/00
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C02F 1/001
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C02F 1/004
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...
Patent abstract

This disclosure generally relates to perforated filter media and coalescing filter elements utilizing perforated filter media. One example coalescing filter element is structured to separate a dispersed phase from a continuous phase of a mixture. The filter media includes a first coalescing layer. The first coalescing layer includes a first filter media. The first filter media has a plurality of pores and a first perforation. Each of the plurality of pores is smaller than the first perforation. The first perforation is formed in the first filter media and extends through the first filter media. The plurality of pores are structured to capture a portion of the dispersed phase. The first perforation is structured to facilitate the transmission of coalesced drops of the dispersed phase through the first coalescing layer such that the coalesced drops of the dispersed phase are separated from the portion of the dispersed phase captured in the first coalescing layer.

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