IP Library › Granted Patent US 11,117,319
Granted Patent B2
US 11,117,319 · App. 16/380,390 · Granted Sep 14, 2021

Printing machine for fabricating 3D integrated composite structures and having a multiple extruder module

Inventors: Eric G. Barnes (Rancho Palos Verdes, CA); Pedro A. Gonzalez (Palmdale, CA); Todd L. Szallay (Long Beach, CA); Steven J. Floyd (Monterey Park, CA); Sung S. Park (Rancho Palos Verdes, CA); Brett G. Morham (Manhattan Beach, CA); Cody J. Brown (Edmonds, WA); Reese R. Allen (Bothell, WA); Ryan L. Bischoff (Seattle, WA)
Assignee: NORTHROP GRUMMAN SYSTEMS CORPORATION
B29C64/209B29C64/118B29C64/20B33Y10/00B33Y30/00
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Quick Facts
Patent No.
US 11,117,319
App. No.
16/380,390
Granted
Sep 14, 2021
Kind
B2
Abstract

A printing machine for fabricating high performance 3D integrated composite structures, where the machine includes a robot having a base portion, a robot arm and an end joint secured to the arm opposite to the base portion, a plurality of sources of extrudable material, and an end-effector mounted to the end joint. The end-effector includes a multiple-extruder module having a first extruder and a second extruder each including a separate nozzle assembly, wherein the first extruder receives one extrudable material and the second extruder receives another extrudable material.

Claims (17)

1. A 3D printing machine for fabricating a composite part, said machine comprising:

a robot including a base portion, a robot arm and an end joint secured to the robot arm opposite to the base portion;

a plurality of sources of extrudable material; and

an end-effector comprising an outer housing with an obliquely-angled corner wall, the end-effector being mounted to the end joint via a rotatable connector secured to the obliquely-angled corner wall, said end-effector including a multiple-extruder module inside the outer housing having a first extruder and a second extruder each including a separate nozzle assembly selectively extendable from the outer housing, wherein the first extruder receives one extrudable material and the second extruder receives another extrudable material, wherein the multiple-extruder module is arranged in the outer housing such that an axis of rotation of the rotatable connector is slanted with respect to a plane in which extrusion axes of the nozzle assemblies lie on, and wherein a rotation of the end-effector at the rotatable connector is configured to change an orientation angle of the extrusion axes of the nozzle assemblies relative to a horizontal plane without changing a pose of the robot.

2. The machine according to claim 1 wherein the first extruder includes a first actuator for retracting and extending its nozzle assembly into and out of the outer housing and the second extruder includes a second actuator for retracting and extending its nozzle assembly into and out of the outer housing.

3. The machine according to claim 1 wherein the end-effector further includes a rotary assembly inside the outer housing, said multiple-extruder module being mounted to the rotary assembly, said rotary assembly being rotatable so as to rotate the nozzle assemblies relative to the composite part without rotating the end-effector.

4. The machine according to claim 1 further comprising a table positioned relative to the end-effector, said composite part being fabricated on the table and said table being rotatable.

5. The machine according to claim 4 further comprising a riser being positioned on the table, wherein the composite part is fabricated on the riser so that it is spaced from the table.

6. The machine according to claim 5 wherein the table includes a heat source for heating the table and the riser.

7. The machine according to claim 1 wherein the end-effector further includes a laser that generates a laser beam for heating the extruded material and an area in an immediate vicinity of the nozzle assemblies.

8. The machine according to claim 7 wherein the end-effector further includes a camera or a pyrometer that measures the temperature of the area heated by the laser beam.

9. A 3D printing machine for fabricating a composite part, said machine comprising:

a robot including a base portion, a robot arm and an end joint secured to the robot arm opposite to the base portion; and

an end-effector comprising an outer housing with an obliquely-angled corner wall, the end-effector being mounted to the end joint via a rotatable connector secured to the obliquely-angled corner wall, said end-effector including a plurality of spools inside the outer housing each holding a different wound filament of extrudable material and a multiple-extruder module inside the outer housing having a first extruder and a second extruder each including a separate nozzle assembly selectively extendable from the outer housing, wherein the first extruder receives one extrudable material and the second extruder receives another extrudable material, wherein the multiple-extruder module is arranged in the outer housing such that an axis of rotation of the rotatable connector is slanted with respect to a plane in which extrusion axes of the nozzle assemblies lie on, and wherein a rotation of the end-effector at the rotatable connector is configured to change an orientation angle of the extrusion axes of the nozzle assemblies relative to a horizontal plane without changing a pose of the robot.

10. The machine according to claim 9 wherein the first extruder includes a first actuator for retracting and extending its nozzle assembly into and out of the outer housing and the second extruder includes a second actuator for retracting and extending its nozzle assembly into and out of the outer housing.

11. The machine according to claim 9 wherein the end-effector further includes a rotary assembly inside the outer housing, said multiple-extruder module being mounted to the rotary assembly, said rotary assembly being rotatable so as to rotate the nozzle assemblies relative to the composite part without rotating the end-effector.

12. The machine according to claim 9 further comprising a table positioned relative to the end-effector and a riser positioned on the table, said composite part being fabricated on the riser so that it is spaced from the table and said table being rotatable, wherein the table includes a heat source for heating the table and the riser.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 10, 2019
From: BARNES, ERIC G.; GONZALEZ, PEDRO A.; SZALLAY, TODD L.; FLOYD, STEVEN J.; PARK, SUNG S.; MORHAM, BRETT G.; BROWN, CODY J.; ALLEN, REESE R.; BISCHOFF, RYAN L.
To: NORTHROP GRUMMAN SYSTEMS CORPORATION
Reel/Frame 048848/0802 →
Continuity (1)
Related Publication 20200324473A1 · Oct 15, 2020
Cited By (2)
US 12,391,010 US 12,404,216