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US Patent 11919238 Methods of printing 3D parts with localized thermal cycling

Patent 11919238 was granted and assigned to Stratasys on March, 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
Stratasys
Stratasys
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Current Assignee
Stratasys
Stratasys
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
119192380
Patent Inventor Names
Jason Robert Nixon0
Clint Newell0
Timothy Diekmann0
Date of Patent
March 5, 2024
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Patent Application Number
163271990
Date Filed
August 22, 2017
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Patent Citations
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US Patent 8439665 Ribbon liquefier for use in extrusion-based digital manufacturing systems
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US Patent 8721947 System and method for producing customized items
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US Patent 8801990 Method for building three-dimensional models in extrusion-based additive manufacturing systems using core-shell semi-crystalline consumable filaments
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US Patent 8920697 Method for building three-dimensional objects in extrusion-based additive manufacturing systems using core-shell consumable filaments
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US Patent 8926484 Head tool changer for use with deposition-based digital manufacturing systems
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US Patent 8955558 Hopper valve for extrusion-based additive manufacturing systems, and methods of use thereof
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US Patent 8974715 Seam concealment for three-dimensional models
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US Patent 9085109 Three-dimensional printer tool systems
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...
Patent Primary Examiner
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Matthew J Daniels
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CPC Code
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B29C 64/30
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B29C 64/118
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B33Y 10/00
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Patent abstract

A method of printing a 3D part with an additive manufacturing system includes printing a first portion of the part and pre-heating the first portion of the part along an upcoming tool path to a temperature at or above a material-specific bonding temperature and below a degradation temperature of the material. Material is extruding material onto the first portion along the pre-heated tool path while the temperature along the part surface remains at or above a material-specific bonding temperature and below the degradation temperature of the material thereby forming a newly extruded road. The method includes cooling the newly extruded road along the pre-heated tool path to remove heat imparted by the preheating step such that a thermally stable temperature is reached, wherein the preheating, extruding and cooling is performed in less than ten seconds.

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