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US Patent 11420382 Apparatus for fiber reinforced additive manufacturing

Patent 11420382 was granted and assigned to Markforged on August, 2022 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
Markforged
Markforged
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Current Assignee
Markforged
Markforged
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
114203820
Patent Inventor Names
Antoni S. Gozdz0
Gregory Thomas Mark0
Date of Patent
August 23, 2022
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Patent Application Number
168408680
Date Filed
April 6, 2020
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Patent Citations
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US Patent 10061301 Toolpath planning process for conductive materials
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US Patent 10076876 Three dimensional printing
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US Patent 10118375 Extruded deposition of polymers having continuous carbon nanotube reinforcements
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US Patent 10131088 Additive manufacturing method for discharging interlocking continuous reinforcement
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US Patent 10254499 Additive manufacturing of active devices using dielectric, conductive and magnetic materials
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US Patent 10160193 Additive manufacturing techniques and systems to form composite materials
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US Patent 10611082 Apparatus for fiber reinforced additive manufacturing
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US Patent 10414147 Electromagnetic wave-induced localized heating of CNT filled polymer composites for enhanced inter-bead diffusive bonding of fused filament fabricated parts
...
Patent Citations Received
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US Patent 11577469 3D printer
Patent Primary Examiner
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Jerzi H Moreno Hernandez
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CPC Code
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B29C 64/209
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B29C 64/393
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B33Y 30/00
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B33Y 50/02
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B33Y 70/00
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B29C 64/321
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B29C 64/118
0

Methods for additive manufacturing using a three-dimensional printer including at least one linear feed mechanism and a print head positioned proximate a build platen are disclosed. The methods include a step of providing and/or feeding an unmelted fiber reinforced composite filament at a feed rate by the at least one linear feed mechanism. The methods include heating the filament to a temperature at which a matrix material therein flows within at least one rounded outlet of the print head. The methods include moving the print head and the build platen relative to one another at a printing rate. The methods include applying a spreading force to the filament between the at least one rounded outlet of the print head and the build platen. The methods include a step of controlling a differential in the feed rate and printing rate using the at least one linear feed mechanism so that the feed rate and the printing rate are substantially the same.

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