IP Library › Granted Patent US 11,701,827
Granted Patent B2
US 11,701,827 · App. 17/133,244 · Granted Jul 18, 2023

Multi-beam resin curing system and method for whole-volume additive manufacturing

Inventors: Maxim Shusteff (Livermore, CA); Christopher M. Spadaccini (Livermore, CA); Nicholas Fang (Livermore, CA); Robert Matthew Panas (Livermore, CA); Johannes Henriksson (Livermore, CA); Brett Kelly (Livermore, CA); Allison E. Browar (Livermore, CA)
Assignee: Lawrence Livermore National Security, LLC
B29C64/282B29C64/124B29C64/264B29C64/268B29C64/286B33Y10/00B33Y30/00G03H1/0005G03H1/2205G03H1/2294G03H2001/0094G03H2001/0491G03H2001/221G03H2001/2207G03H2210/30G03H2210/33G03H2225/22G03H2225/32G03H2225/52
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Quick Facts
Patent No.
US 11,701,827
App. No.
17/133,244
Granted
Jul 18, 2023
Kind
B2
Abstract

A multi-beam volumetric resin curing system and method for whole-volume additive manufacturing of an object includes a bath containing a photosensitive resin, a light source for producing a light beam, and a spatial light modulator which produces a phase- or intensity-modulated light beam by impressing a phase profile or intensity profile of an image onto a light beam received from the light source. The system and method also include projection optics which then produces multiple sub-image beams from the modulated light beam which are projected to intersect each other in the photosensitive resin to cure select volumetric regions of the resin in a whole-volume three-dimensional pattern representing the object.

Claims (16)

1. A multi-beam resin curing method for whole-volume additive manufacturing of an object, comprising:

illuminating a spatial light modulator (SLM) with a light beam from a light source;

controlling the SLM to impress an image onto the light beam so as to produce a modulated light beam; and

using projection optics to produce at least two sub-image beams from the modulated light beam with each sub-image beam having a 2D intensity profile corresponding to a section of the image, and optically transporting the at least two sub-image beams independently of each other into a bath containing a photosensitive resin so as to project the 2D intensity profile of the at least two each sub-image beam to pass through a volume of the photosensitive resin so that the projected 2D intensity profiles transversely intersect each other in the volume of the photosensitive resin bath to form a 3D pattern which simultaneously cures select volumetric regions of the volume of the photosensitive resin and thereby forms the object.

2. The multi-beam resin curing method of claim 1 ,

wherein the SLM is controlled to impress a phase profile of the image onto the light beam so as to produce the modulated light beam as a phase-modulated light beam; and

wherein the projection optics is used to produce the at least two sub-image beams by deconvolving the phase-modulated light beam into an intensity-modulated light beam having an intensity profile corresponding to all sections of the image and dividing a cross-section of the intensity-modulated light beam.

3. The multi-beam resin curing method of claim 1 ,

wherein the SLM is adapted to impress an intensity profile corresponding to all subsections of the image onto the light beam so as to produce the modulated light beam as an intensity-modulated light beam; and

wherein the projection optics is adapted to produce the at least two sub-image beams by dividing a cross-section of the intensity-modulated light beam into the at least two sub-image beams.

4. The multi-beam resin curing method of claim 1 ,

wherein the 2D intensity profiles of the at least two sub-image beams are projected to intersect substantially orthogonal to each other.

5. A multi-beam resin curing method for whole-volume additive manufacturing of an object, comprising:

illuminating a spatial light modulator (SLM) with a laser beam from a single mode laser source;

controlling the SLM to impress a phase profile of an image onto the laser beam so as to produce a phase-modulated laser beam; and

using projection optics to deconvolve the phase-modulated laser beam into an intensity-modulated laser beam, and to produce at least two sub-image beams from the intensity-modulated laser beam with each sub-image beam having a 2D intensity profile corresponding to a section of the image, and optically transporting the at least two sub-image beams independently of each other into a bath containing a photosensitive resin so as to project the 2D intensity profile of each sub-image beam to pass through a volume of the photosensitive resin so that the projected 2D intensity profiles transversely intersect each other in the volume of the photosensitive resin bath to form a 3D pattern which simultaneously cures select volumetric regions of the volume of the photosensitive resin and thereby forms the object.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 3, 2021
From: KELLY, BRETT; BROWAR, ALLISON E.; HENRIKSSON, JOHANNES; PANAS, ROBERT MATTHEW; SPADACCINI, CHRISTOPHER M; SHUSTEFF, MAXIM
To: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC.
Reel/Frame 057385/0645 →
CONFIRMATORY LICENSE (SEE DOCUMENT FOR DETAILS) Recorded Jan 15, 2021
From: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC
To: U.S. DEPARTMENT OF ENERGY
Reel/Frame 055009/0753 →
Continuity (3)
Division 15651861 · Jul 17, 2017
Provisional Application 62363078 · Jul 15, 2016
Related Publication 20210146619A1 · May 20, 2021