IP Library Granted Patent US 10,875,247
Granted Patent B2
US 10,875,247 · App. 15/651,861 · Granted Dec 29, 2020

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 Securitv. 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 10,875,247
App. No.
15/651,861
Granted
Dec 29, 2020
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 (20)

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

a bath containing a photosensitive resin;

a light source for producing a light beam;

a spatial light modulator (SLM) adapted to impress an image onto the light beam so as to produce a modulated light beam; and

projection optics adapted 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 to optically transport the at least two sub-image beams independently of each other into the bath containing the photosensitive resin so as to project the 2D intensity profiles of the at least two sub-image beams 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 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 system of claim 1 ,

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

wherein the projection optics are adapted 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,

dividing a cross-section of the intensity-modulated light beam into the at least two sub-image beams.

3. The multi-beam resin curing system 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 an intensity-modulated light beam; and

wherein the projection optics are 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 system of claim 1 ,

wherein the projection optics are adapted to project the at least two sub-image beams to intersect substantially orthogonal to each other.

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

a bath containing a photosensitive resin;

a single mode laser source for producing a laser beam;

a spatial light modulator (SLM) adapted to impress a phase profile of an image onto the laser beam so as to produce a phase-modulated laser beam; and

projection optics adapted to deconvolve the phase-modulated laser beam into an intensity-modulated laser beam, 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 to optically transport the at least two sub-image beams independently of each other into the bath containing the photosensitive resin so as to project the 2D intensity profiles of the at least two sub-image beams 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 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; BROWER, ALLISON E.; HENDRIKSSON, JOHANNES; PANAS, ROBERT MATTHEW; SPADACCINI, CHRISTOPHER; SHUSTEFF, MAXIM
To: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC.
Reel/Frame 057383/0528 →
CONFIRMATORY LICENSE Recorded Apr 6, 2020
From: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC
To: U.S. DEPARTMENT OF ENERGY
Reel/Frame 052324/0445 →
Continuity (2)
Provisional Application 62363078 · Jul 15, 2016
Related Publication 20180015672A1 · Jan 18, 2018