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US Patent 12115716 Multilayer parameter-varying fusion and deposition strategies for additive manufacturing

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Is a
Patent
Patent
0

Patent attributes

Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
121157160
Patent Inventor Names
Salvatore Torquato0
Adam Bayne Hopkins0
Brandon Beberwyck0
Date of Patent
October 15, 2024
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Patent Application Number
176670480
Date Filed
February 8, 2022
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Patent Citations
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US Patent 7569174 Controlled densification of fusible powders in laser sintering
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US Patent 11279078 Multilayer parameter-varying fusion and deposition strategies for additive manufacturing
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Patent Primary Examiner
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Stella K Yi
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CPC Code
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B29C 64/194
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B29C 64/205
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B33Y 10/00
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B33Y 50/02
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B29C 64/188
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B29C 64/171
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B29C 64/153
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B29C 64/10
0
Patent abstract

The invention encompasses compositions and methods for designing or producing three-dimensional articles layer-by-layer, whereby the specific approach to build-up a region of a single layer by fusion, deposition of material, or other path-based process or non-path process that creates track-like geometries requires either differing track or track-like geometry, or track or track-like geometry printing parameters, within a region of a single layer or within adjoining regions of multiple layers, is disclosed. Employing this method, single layer or multilayer parameter-varying fusing and deposition strategies can be generated that reduce article fabrication time and improve article physical properties, in part by targeting a distribution of scan paths that satisfy covering problem overlap and/or dense packing criteria. Additionally, methods and compositions for designing or producing three-dimensional articles by altering the thickness of a material layer deposited during a print relative to the slice thickness or net displacement of a stage or of a material and/or energy-depositing print head, are disclosed. Employing this method can result in the reduction of article fabrication time and/or the improvement of printed article physical properties, where these results advantageous to printing are dependent on the print process, material properties, and feedstock properties employed during the print.

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