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US Patent 10343330 Systems for additively manufacturing composite parts

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Contents

Is a
Patent
Patent
0

Patent attributes

Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
0
Patent Number
103433300
Patent Inventor Names
Samuel F. Harrison0
Hayden S. Osborn0
Nick S. Evans0
Ryan G. Ziegler0
Ciro J. Grijalva, III0
Faraón Torres0
Date of Patent
July 9, 2019
0
Patent Application Number
149315730
Date Filed
November 3, 2015
0
Patent Citations Received
‌
US Patent 12115583 Systems and methods for adhesive-based part retention features in additively manufactured structures
0
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US Patent 11479015 Custom formed panels for transport structures and methods for assembling same
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US Patent 11504912 Selective end effector modular attachment device
‌
US Patent 11420262 Systems and methods for co-casting of additively manufactured interface nodes
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US Patent 11421577 Exhaust headers with integrated heat shielding and thermal syphoning
‌
US Patent 11433557 Buffer block apparatuses and supporting apparatuses
‌
US Patent 11441586 Apparatus for injecting fluids in node based connections
‌
US Patent 11449021 Systems and methods for high accuracy fixtureless assembly
...
Patent Primary Examiner
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Joseph S Del Sole
0
Patent abstract

A system for additively manufacturing a composite part is disclosed. The system comprises a delivery guide, movable relative to a surface. The delivery guide is configured to deposit at least a segment of a continuous flexible line along a print path. The print path is stationary relative to the surface. The continuous flexible line comprises a non-resin component and a thermosetting-epoxy-resin component that is partially cured. The system also comprises a feed mechanism, configured to push the continuous flexible line through the delivery guide. The system further comprises a cooling system, configured to maintain the thermosetting-epoxy-resin component of the continuous flexible line below a threshold temperature prior to depositing the segment of the continuous flexible along the print path via the delivery guide.

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