IP Library › Granted Patent US 11,845,219
Granted Patent B2
US 11,845,219 · App. 16/864,522 · Granted Dec 19, 2023

3-d printed devices formed with magnetic inks and methods of making graded index structures

Inventors: Theodore H. Fedynyshyn (Sudbury, MA); Jennifer A. Lewis (Cambridge, MA); Bradley P. Duncan (Andover, MA)
Assignees: Massachusetts Institute of Technology; President and Fellows of Harvard College
B29C64/165B05D5/083B29C64/209C09D5/24G03G5/05G03G5/07H01B1/00H01L23/49883H01M4/663H01M10/653H05K1/092B29K2023/06B29K2023/12B29K2025/06B29K2105/251B29K2995/0006B29K2995/0008B29K2995/0088B29K2995/0093B29K2995/0094B29L2031/3456B33Y10/00B33Y30/00B33Y70/00B33Y80/00G01N2033/0095H05K2201/015H05K2201/03
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Quick Facts
Patent No.
US 11,845,219
App. No.
16/864,522
Granted
Dec 19, 2023
Kind
B2
Abstract

A 3-D printed device comprising one or more structures, the structures comprising a plurality of magnetically responsive particles and one or more diblock or triblock copolymers; the diblock or triblock copolymers having an A-B, A-B-A, or A-B-C block-type structure in which the A-blocks and C-blocks are an aromatic-based polymer or an acrylate-based polymer and the B-blocks are an aliphatic-based polymer. These 3-D printed devices may be formed using a method that comprises providing a magnetic ink composition; applying the magnetic ink composition to a substrate in a 3-D solvent cast printing process to form one or more structures; and drying the one or more structures formed from the magnetic ink composition. The dried structures can exhibit one or more regions of magnetic permeability greater than 1.3×10 −6 H/m.

Claims (11)

1. A 3-D printed device, comprising a structure formed by a plurality of magnetically responsive particles and one or more diblock or triblock copolymers; the diblock or triblock copolymers having an A-B, A-B-A, or A-B-C block-type structure in which the A-blocks and C-blocks are an aromatic-based polymer or an acrylate-based polymer and the B-blocks are an aliphatic-based polymer; wherein at least a portion of the structure exhibits a magnetic permeability greater than about 1.3×10-6 H/m; wherein a concentration of the magnetically responsive particles varies in different portions of the structure; wherein at least a portion of the 3-D printed device comprises a structure in which the concentration of magnetically responsive particles varies according to a gradient; wherein the 3D printed device is a radio frequency (RF) antenna.

2. The 3-D printed device of claim 1 , wherein the 3-D printed device is a graded index device.

3. The 3-D printed device of claim 1 , wherein the 3-D printed device is a lens for coupling to an RF antenna or RF horn antenna.

4. The 3-D printed device of claim 1 , wherein the structure is formed by a magnetic ink composition, the magnetic ink composition comprising a plurality of magnetically responsive particles and one or more diblock or triblock copolymers; the diblock or triblock copolymers having an A-B, A-B-A, or A-B-C block-type structure in which the A-blocks and C-blocks are an aromatic-based polymer or an acrylate-based polymer and the B-blocks are an aliphatic-based polymer; wherein the magnetic particles comprise 0.5 wt. % to 40 wt. % of at least a portion of the structure based on the dry weight of the magnetic ink composition; wherein at least a portion of the structure exhibits a magnetic permeability greater than about 1.3×10 −6 H/m.

5. The 3-D printed device of claim 1 , wherein the 3-D printed device is a graded index device, wherein the structure exhibits different variations in the concentration of the magnetically responsive particles.

6. The 3-D printed device of claim 1 , wherein the magnetically responsive particles have a surface that is modified.

7. The 3-D printed device of claim 6 , wherein the wherein the surface is modified with one or more of: a surfactant; a hydrophobic moiety; a polyvinylpyrrolidone; an amine-containing compound; or a silane coupling agent.

8. The 3-D printed device of claim 1 , wherein the structure further comprises dielectric particles having an electrical permittivity different from an electrical permittivity of the magnetically responsive particles.

9. The 3-D printed device of claim 8 , wherein a concentration of the dielectric particles varies in different portions of the structure.

10. The 3-D printed device of claim 8 , wherein a concentration of the dielectric particles and a concentration of the magnetically responsive particles vary in different parts of the structure.

11. The 3-D printed device of claim 8 , wherein the 3-D printed device is a graded index device, wherein the structure exhibits different ratios of the concentration of dielectric particles and the concentration of magnetically responsive particles.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 10, 2020
From: FEDYNYSHYN, THEODORE H.; DUNCAN, BRADLEY P.
To: MASSACHUSETTS INSTITUTE OF TECHNOLOGY
Reel/Frame 053735/0886 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 10, 2020
From: LEWIS, JENNIFER A.
To: PRESIDENT AND FELLOWS OF HARVARD COLLEGE
Reel/Frame 053735/0908 →
Continuity (2)
Provisional Application 62843935 · May 6, 2019
Related Publication 20200353682A1 · Nov 12, 2020