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US Patent 11491750 Moldless vacuum infusion process

Patent 11491750 was granted and assigned to Varial Surf Technology on November, 2022 by the United States Patent and Trademark Office.

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Is a
Patent
Patent
0

Patent attributes

Patent Applicant
Varial Surf Technology
Varial Surf Technology
0
Current Assignee
Varial Surf Technology
Varial Surf Technology
0
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
114917500
Patent Inventor Names
Parker Borneman0
Edison Conner0
Date of Patent
November 8, 2022
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Patent Application Number
162415110
Date Filed
January 7, 2019
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Patent Citations
‌
US Patent 10167379 Hybrid fiber layup and fiber-reinforced polymeric composites produced therefrom
Patent Primary Examiner
‌
Niki Bakhtiari
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CPC Code
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B29C 70/443
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B29C 70/687
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B29C 70/865
0

A manufacturing method contemplates performing vacuum-assisted resin infusion to enclose an elongated core within a cured composite laminate without employing a mold. Not relying upon an external mold enables the process to be efficiently performed for core shapes that are manufactured in low volumes. Typical resin infusion processes utilize flow media that induces bag bridging during vacuum draw in order to provide gaps facilitating resin flow. However, popular flow media also tends to impart directional aggregate forces during vacuum draw, which forces can deform the core since no mold is being used. To avoid unequal and non-dispersed directional forces from deforming the elongated core, a flow media is employed that is configured to disperse and/or reduce such forces. Some such flow media may be knitted so as to allow overlapping strands to slide over one another. Other flow media may ensure that strands are interleaved so that no one strand or group of strands is disposed outwardly of other strands along a substantial length of the strands, thus dispersing bag bridging forces in several directions and avoiding directional aggregate forces. However, such flow media may have inhibited resin flow relative to popular high-flow flow media, and thus new strategies have been developed to ensure appropriate wetting of fibrous reinforcement. An adjustable brace can also be employed to restrain the elongated core from deflecting during application of vacuum and/or resin infusion.

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