IP Library Granted Patent US 12668024
Granted Patent B2
US 12668024 · App. 18/108,335 · Granted Jun 30, 2026

Additive manufacturing using foaming radiation-curable resin

Inventor: Matthew Noah Pearlson (Wales, WI)
Assignee: Intrnls, Inc.
B29C64/314B29C44/022B29C64/135B33Y10/00B33Y70/00B33Y80/00B29K2105/24
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Quick Facts
Patent No.
US 12668024
App. No.
18/108,335
Granted
Jun 30, 2026
Kind
B2
Abstract

SLA-based additive manufacturing using radiation-curable foams enables the production by 3D printing of lightweight parts having desirable physical and functional attributes. A representative method of manufacturing such items includes processing a radiation-curable resin in liquid form to produce a stable, non-aqueous radiation-curable foam, on-demand deposition of the foam at a build layer of a build surface within a 3D printer, and then curing the non-aqueous radiation-curable foam to produce a layer of a 3D build item. Processing the resin typically includes agitation, mixing, shaking, gas injection, ultrasonic stimulation, or combinations thereof. 3D articles of manufacture made by the above-described manufacturing process are also provided.

Claims (17)

1 . A method of additive manufacturing in which a three-dimensional (3D) object is built in a layer-by-layer fashion upon a build platform, comprising:

receiving, at a build layer, a photo-curable foam, the photo-curable foam having been produced by mixing a particle solid into a photo-curable liquid resin;

depositing the photo-curable foam at the build layer to create a layer of the 3D object, the layer having a thickness up to 500 μm, the thickness being a maximum cure depth; and

with the particle solid present in the deposited photo-curable foam, irradiating the deposited photo-curable foam to create the layer.

2 . The method as described in claim 1 further including producing the photo-curable foam.

3 . The method as described in claim 2 wherein the photo-curable foam is produced on-demand or in advance of the additive manufacturing.

4 . The method as described in claim 2 wherein, during production of the photo-curable foam, the particle solid acts as a foaming agent that promotes formation and stabilization of spherical bubbles in the photo-curable foam.

5 . The method as described in claim 1 wherein the build platform has a build tray that reciprocates vertically within a tank of photo-curable liquid resin, the method further including:

in lieu of dipping the build tray into the tank, dropping the build platform by just one layer so as to selectively position a last built layer of the 3D build item just below a next build layer; and

with the build platform so positioned, delivering the photo-curable foam at the next build layer; and

wherein the irradiating occurs at the next build layer.

6 . The method as described in claim 1 wherein the photo-curable foam is 90-99% by weight of a radiation-cured resin, and 0.5-10% by weight particle solid.

7 . A method of improving an additive manufacturing process in which a three-dimensional (3D) object is built at least in part by curing a non-foamed photo-curable liquid resin, the improvement comprising:

receiving, at a build layer of a build platform, a photo-curable foam, the photo-curable foam having been produced by mixing a particle solid into a photo-curable liquid resin; and

depositing the photo-curable foam at the build layer to create a layer of the 3D object, the layer having a thickness up to 500 μm, the thickness being a maximum cure depth; and

with the particle solid present in the deposited photo-curable foam, irradiating the deposited photo-curable foam to create the layer;

wherein inclusion of the particle solid in the photo-curable foam increases a cure rate of the deposited photo-curable foam as compared to the cure rate of the non-foamed photo-curable liquid resin.