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US Patent 12091815 Methods, processes, and apparatuses for producing welded substrates

Patent 12091815 was granted and assigned to Natural Fiber Welding on September, 2024 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent
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Patent attributes

Patent Applicant
Natural Fiber Welding
Natural Fiber Welding
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Current Assignee
Natural Fiber Welding
Natural Fiber Welding
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
120918150
Patent Inventor Names
Michael Molter0
Aaron Kenneth Amstutz0
Jonglak Choi0
Xiling Tang0
Luke Michael Haverhals0
Spencer Jacob Null0
Date of Patent
September 17, 2024
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Patent Application Number
172347560
Date Filed
April 19, 2021
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Patent Citations
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US Patent 7549281 Fiber yarn and cloth using the same
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US Patent 7550520 Method of preparing high orientation nanoparticle-containing sheets or films using ionic liquids, and the sheets or films produced thereby
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US Patent 7671178 Solubilization and reconstitution of silk using ionic liquids
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US Patent 7731762 Dye composition and dyeing method
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US Patent 7754002 Solubility of cellulose in ionic liquids with addition of amino bases
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US Patent 7908894 Device and process for indigo dyeing
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US Patent 7913524 Apparatus for dyeing textile substrates with foamed dye
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US Patent 6997962 Method for dyeing cotton with indigo
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...
Patent Primary Examiner
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Scott W Dodds
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CPC Code
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D06M 15/715
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B29C 65/4895
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D06M 7/00
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D06M 13/52
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D06M 13/522
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D06M 13/525
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D06M 23/10
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D06M 11/84
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Patent abstract

A welding process may be configured to convert a substrate into a welded substrate by applying a process solvent to the substrate, wherein the process solvent interrupts one or more intermolecular force between one or more component in the substrate. The substrate may be configured as a natural fiber, such as cellulose, hemicelluloses, and silk. The process solvent may be configured as an ionic-liquid based solvent and the welded substrate may be a congealed network after the process solvent has been adequately swollen and/or mobilized the substrate. A welding process may be configured such that individual fibers of a substrate are not fully dissolved such that material in the fiber core may be left in the native state by controlling process variables. The welding process fibers may have a tenacity 10% or 20% greater or a diameter 25% less than that of a cellulosic-based yarn substrate.

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