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US Patent 12064917 Method for printing three-dimensional parts with cyrstallization kinetics control

Patent 12064917 was granted and assigned to Stratasys on August, 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
120649170
Patent Inventor Names
Vittorio L. Jaker0
Luke M. B. Rodgers0
Date of Patent
August 20, 2024
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Patent Application Number
174748270
Date Filed
September 14, 2021
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Patent Citations
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US Patent 7122246 High-precision modeling filament
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US Patent 6869559 Material and method for three-dimensional modeling
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US Patent 6923634 Filament loading system in an extrusion apparatus
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US Patent 7077638 Selective deposition modeling method and apparatus for forming three-dimensional objects and supports
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US Patent 8236227 Method for building three-dimensional models in extrusion-based digital manufacturing systems using tracked filaments
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US Patent 8246888 Support material for digital manufacturing systems
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US Patent 9527242 Method for printing three-dimensional parts wtih crystallization kinetics control
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US Patent 9592530 Additive manufacturing with polyamide consumable materials
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...
Patent Primary Examiner
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Leo B. Tentoni
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CPC Code
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B29K 2081/06
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B29K 2071/00
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B33Y 10/00
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B29C 64/118
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B29C 71/0063
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Patent abstract

A method for printing a three-dimensional part with an additive manufacturing system, which includes providing a part material that compositionally has one or more semi-crystalline polymers and one or more secondary materials that are configured to retard crystallization of the one or more semi-crystalline polymers, where the one or more secondary materials are substantially miscible with the one or more semi-crystalline polymers. The method also includes melting the part material in the additive manufacturing system, forming at least a portion of a layer of the three-dimensional part from the melted part material in a build environment, and maintaining the build environment at an annealing temperature that is between a glass transition temperature of the part material and a cold crystallization temperature of the part material.

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