IP Library Granted Patent US 11,760,906
Granted Patent B2
US 11,760,906 · App. 16/454,896 · Granted Sep 19, 2023

Composite dry adhesive and methods of making and using a composite dry adhesive

Inventors: Seok Kim (Champaign, IL); Jeffrey D. Eisenhaure (Champaign, IL)
Assignee: THE BOARD OF TRUSTEES OF THE UNIVERSITY OF ILLINOIS
C09J7/20C09J9/02C09J11/08H05B3/06H05B3/145H05B3/267H05B3/38C08L2201/12C09J2431/00C09J2463/00C09J2475/00H05B2203/013H05B2214/04Y10T428/28Y10T428/287
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Quick Facts
Patent No.
US 11,760,906
App. No.
16/454,896
Granted
Sep 19, 2023
Kind
B2
Abstract

A composite dry adhesive includes (a) an adhesive layer comprising a shape memory polymer and (b) a resistive heating layer comprising a shape memory polymer composite on the adhesive layer. The shape memory polymer composite includes conductive particles dispersed in a shape memory polymer matrix, where the conductive particles have a concentration sufficient to form a conductive path through the resistive heating layer.

Claims (27)

1. A composite dry adhesive system comprising:

a composite dry adhesive consisting of:

an adhesive layer comprising a shape memory polymer; and

a resistive heating element including a resistive heating layer comprising a shape memory polymer composite on the adhesive layer, the shape memory polymer composite including conductive particles dispersed in a shape memory polymer matrix, wherein the conductive particles have a concentration sufficient to form a conductive path through the resistive heating layer; and

an object for reversible attachment to the composite dry adhesive,

wherein the composite dry adhesive has an adhesion strength in a range from 10 N/cm 2 to 500 N/cm 2 .

2. The composite dry adhesive system of claim 1 , wherein the conductive particles comprise an electrically conductive material selected from the group consisting of a metal and carbon.

3. The composite dry adhesive system of claim 1 , and further comprising electrical contacts in contact with the composite dry adhesive for supplying current to the resistive heating element.

4. The composite dry adhesive system of claim 3 , wherein the electrical contacts comprise conductive tape.

5. The composite dry adhesive system of claim 1 , wherein the resistive heating element is configured to generate a power per unit area in a range from about 0.5 W/cm 2 to about 5 W/cm 2 .

6. The composite dry adhesive system of claim 1 , further comprising a computer-controlled micropositioner for translating and/or rotating the composite dry adhesive while reversibly attached to the object.

7. The composite dry adhesive system of claim 1 , wherein the adhesion strength of the composite dry adhesive is in a range from 300 N/cm 2 to 500 N/cm 2 .

8. The composite dry adhesive system of claim 1 , wherein the shape memory polymer has a glass transition temperature in a range from about 30° C. to about 70° C.

9. A composite dry adhesive system comprising:

a composite dry adhesive consisting of:

an adhesive layer comprising a shape memory polymer; and

a resistive heating element attached to or embedded within the shape memory polymer;

an object for reversible attachment to the composite dry adhesive; and

a computer-controlled micropositioner for translating and/or rotating the composite dry adhesive while reversibly attached to the object.

10. The composite dry adhesive system of claim 9 , wherein the resistive heating element is selected from the group consisting of a metal, an alloy, carbon, and a conductive oxide.

11. The composite dry adhesive system of claim 9 , wherein the resistive heating element comprises a transparent conductive layer.

12. The composite dry adhesive system of claim 9 , wherein the resistive heating element comprises a nickel-chromium wire.

13. The composite dry adhesive system of claim 9 , wherein the resistive heating element comprises a resistive heating layer comprising a shape memory polymer composite on the adhesive layer, the shape memory polymer composite including conductive particles dispersed in a shape memory polymer matrix, wherein the conductive particles have a concentration sufficient to form a conductive path through the resistive heating layer.

14. The composite dry adhesive system of claim 9 , and further comprising electrical contacts in contact with the composite dry adhesive for supplying current to the resistive heating element.

15. The composite dry adhesive system of claim 9 , wherein the resistive heating element is configured to generate a power per unit area in a range from about 0.5 W/cm 2 to about 5 W/cm 2 .

16. The composite dry adhesive system of claim 9 , wherein the composite dry adhesive has an adhesion strength in a range from 10 N/cm 2 to 500 N/cm 2 .

17. The composite dry adhesive system of claim 9 , wherein the shape memory polymer has a glass transition temperature in a range from about 30° C. to about 70° C.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 19, 2023
From: KIM, SEOK; EISENHAURE, JEFFREY D.
To: THE BOARD OF TRUSTEES OF THE UNIVERSITY OF ILLINOIS
Reel/Frame 063704/0233 →
CONFIRMATORY LICENSE Recorded Nov 16, 2020
From: UNIVERSITY OF ILLINOIS, URBANA-CHAMPAIGN
To: NATIONAL SCIENCE FOUNDATION
Reel/Frame 054439/0113 →
Continuity (6)
Continuation 14831058 · Aug 20, 2015
Continuation In Part 14732143 · Jun 5, 2015
Provisional Application 62039743 · Aug 20, 2014
Provisional Application 62039743 · Aug 20, 2014
Provisional Application 62008773 · Jun 6, 2014
Related Publication 20190316007A1 · Oct 17, 2019