IP Library Granted Patent US 11,207,831
Granted Patent B2
US 11,207,831 · App. 16/466,106 · Granted Dec 28, 2021

3D printed core-shell filament and method of 3D printing a core-shell filament

Inventors: Jennifer A. Lewis (Cambridge, MA); Jochen Mueller (Dornhan, DE); Jordan R. Raney (Glenside, PA); Kristina Shea (Zurich, CH)
Assignees: PRESIDENT AND FELLOWS OF HARVARD COLLEGE; ETH ZURICH (SWISS FEDERAL INSTITUTE OF TECHNOLOGY)
B29C64/209B29C64/106B29C64/118B33Y10/00B33Y30/00B33Y70/00B33Y80/00
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Quick Facts
Patent No.
US 11,207,831
App. No.
16/466,106
Granted
Dec 28, 2021
Kind
B2
Abstract

A 3D printed core-shell filament comprises an elongated core radially surrounded by an outer shell with a barrier layer in between, where the elongated core comprises a ductile polymer and the outer shell comprises a stiff polymer having a Young's modulus higher than that of the ductile polymer. A lightweight lattice structure may comprise a plurality of the 3D printed core-shell filaments deposited in layers.

Claims (15)

1. A 3D printed core-shell filament comprising:

an elongated core radially surrounded by an outer shell with a barrier layer in between,

wherein the elongated core comprises a ductile polymer and the outer shell comprises a stiff polymer having a Young's modulus higher than that of the ductile polymer,

wherein the elongated core has a width or diameter d and the outer shell has a width or diameter D, and wherein a ratio d/D is in a range from about 0.8 to about 0.9.

2. The 3D printed core-shell filament of claim 1 , wherein the barrier layer has a thickness at least about 10 times smaller than a width or diameter D of the outer shell.

3. The 3D printed core-shell filament of claim 1 , wherein the stiff polymer comprises a Young's modulus of at least about 4 GPa.

4. The 3D printed core-shell filament of claim 1 , wherein the ductile polymer comprises a Young's modulus of about 2 GPa or less.

5. The 3D printed core-shell filament of claim 1 , wherein the stiff polymer is selected from the group consisting of: an epoxy, vinylester, polyester and polymethyl methacrylate.

6. The 3D printed core-shell filament of claim 1 , wherein the ductile polymer is selected from the group consisting of: an epoxy, polyurethane, thermoplastic polyurethane and polycarbonate.

7. The 3D printed core-shell filament of claim 1 , wherein one or both of the stiff and ductile polymers comprise an epoxy.

8. The 3D printed core-shell filament of claim 1 , wherein one or both of the stiff and ductile polymers include reinforcement particles dispersed therein.

9. The 3D printed core-shell filament of claim 1 , wherein the barrier layer comprises a barrier polymer having a coefficient of friction of at least about 1 with respect to each of the ductile and stiff polymers.

10. The 3D printed core-shell filament of claim 1 , wherein the barrier layer comprises a barrier polymer selected from the group consisting of: silicone and polytetrafluoroethylene.

11. The 3D printed core-shell filament of claim 1 , wherein the elongated core is hollow.

12. The 3D printed core-shell filament of claim 1 , further comprising a soft external layer on the outer shell, the soft external layer comprising a soft polymer having a lower Young's modulus than the stiff polymer.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 24, 2020
From: MUELLER, JOCHEN; RANEY, JORDAN R.; LEWIS, JENNIFER A.
To: PRESIDENT AND FELLOWS OF HARVARD COLLEGE
Reel/Frame 052214/0165 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 24, 2020
From: SHEA, KRISTINA
To: ETH ZURICH (SWISS FEDERAL INSTITUTE OF TECHNOLOGY)
Reel/Frame 052217/0539 →
Continuity (3)
Provisional Application 62431653 · Dec 8, 2016
Provisional Application 62431723 · Dec 8, 2016
Related Publication 20200070402A1 · Mar 5, 2020
Cited By (1)
US 12,504,238