IP Library Granted Patent US 10,207,317
Granted Patent B2
US 10,207,317 · App. 15/001,491 · Granted Feb 19, 2019

Additive manufacturing of semi-solid metal alloys using ultrasonic agitation

Inventors: Andrew J. Pascall (Livermore, CA); Eric B. Duoss (Dublin, CA); Ryan M. Hunt (Aix-en-Provence, FR); Joshua Kuntz (Livermore, CA); Christopher M. Spadaccini (Oakland, CA); John Vericella (Oakland, CA)
Assignee: Lawrence Livermore National Security, LLC
B22D11/114B22D11/01B22F3/1055B33Y10/00B33Y30/00
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,207,317
App. No.
15/001,491
Granted
Feb 19, 2019
Kind
B2
Abstract

Apparatus, systems, and methods that ultrasonically agitate a semisolid metal slurry to prevent dendrite formation that can lead to clogging of a nozzle during direct metal writing.

Claims (35)

1. An additive manufacturing apparatus for producing a product, comprising:

an additive manufacturing print head, said additive manufacturing print head having a length;

a metal build material;

a port in said additive manufacturing print head for allowing said build material to flow through said additive manufacturing print head;

a nozzle in said additive manufacturing print head, said nozzle adapted to receive said metal build material and adapted for extruding said metal build material;

a wall adjacent said nozzle;

a fluid gap between said wall and said nozzle, wherein said fluid gap receives said metal build material from said port;

a heater system adjacent said nozzle for heating said metal build material;

an ultrasonic agitation system for agitating said metal build material in said fluid gap, wherein said ultrasonic agitation system does not extend said length of said additive manufacturing print head;

a substrate; and

a system for producing relative movement between said additive manufacturing print head and said substrate to form the product.

2. The additive manufacturing apparatus for producing a product of claim 1 wherein said system for producing relative movement between said additive manufacturing print head and said substrate to form the product is a computer controller containing instructions for producing the product.

3. The additive manufacturing apparatus for producing a product of claim 1 wherein said metal build material in said additive manufacturing print head includes powdered metal particles.

4. The additive manufacturing apparatus for producing a product of claim 1 wherein said metal build material in said additive manufacturing print head includes metal chunks.

5. The additive manufacturing apparatus for producing a product of claim 1 wherein said metal build material in said additive manufacturing print head includes wire.

6. The additive manufacturing apparatus for producing a product of claim 1 wherein said ultrasonic agitation system for agitating said metal build material includes a sonic horn and wherein said sonic horn extends out of said additive manufacturing print head.

7. The additive manufacturing apparatus for producing a product of claim 1 wherein said ultrasonic agitation system for agitating said metal build material includes a sonic horn and a transducer, wherein said sonic horn extends out of said additive manufacturing print head and wherein said transducer is entirely outside of said additive manufacturing print head.

8. The additive manufacturing apparatus for producing a product of claim 1 further comprising a system for heating said substrate.

9. The additive manufacturing apparatus for producing a product of claim 1 further comprising additional additive manufacturing print heads.

10. An additive manufacturing method for producing a product, comprising the steps of:

providing an additive manufacturing print head that has a length;

providing a metal build material;

providing a port in said additive manufacturing print head allowing said build material to flow through said additive manufacturing print head;

providing a nozzle in said additive manufacturing print head that receives said metal build material and that extrudes said metal build material;

providing a wall adjacent said nozzle;

providing a fluid gap between said wall and said nozzle, wherein said fluid gap receives said metal build material from said port;

providing a heater system adjacent said nozzle for heating said metal build material;

providing an agitation system in said fluid gap, wherein said agitation system does not extend said length of said additive manufacturing print head and wherein said agitation system is used for agitating said metal build material;

providing a substrate; and

providing a system for producing relative movement between said additive manufacturing print head and said substrate to form the product.

11. The additive manufacturing method for producing a product of claim 10 wherein said step of providing a system for producing relative movement between said additive manufacturing print head and said substrate to form the product comprises providing a computer controller containing instructions for producing the product.

12. The additive manufacturing method for producing a product of claim 10 wherein said step of providing an agitation system for agitating said metal build material comprises providing an ultrasonic agitation system with a sonic horn that extends out of said additive manufacturing print head and providing a transducer connected to said sonic horn wherein said transducer is entirely outside of said additive manufacturing print head.

13. The additive manufacturing method for producing a product of claim 10 wherein said step of providing a metal build material in said additive manufacturing print head comprises providing a metal build material in said additive manufacturing print head having a semi-solid consistency.

14. The additive manufacturing method for producing a product of claim 10 wherein said step of providing a metal build material in said additive manufacturing print head comprises providing a metal build material in said additive manufacturing print head having the consistency of a viscoelastic fluid.

15. The additive manufacturing method for producing a product of claim 10 wherein further comprising the step of heating said substrate.

Assignments (2)
CONFIRMATORY LICENSE Recorded Mar 15, 2016
From: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC
To: U.S. DEPARTMENT OF ENERGY
Reel/Frame 037973/0885 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 20, 2016
From: PASCALL, ANDREW J.; DUOSS, ERIC B.; HUNT, RYAN M.; KUNTZ, JOSHUA; SPADACCINI, CHRISTOPHER M.; VERICELLA, JOHN
To: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC
Reel/Frame 037532/0316 →
Continuity (1)
Related Publication 20170203357A1 · Jul 20, 2017