IP Library Granted Patent US 7,229,685
Granted Patent B2
US 7,229,685 · App. 10/655,271 · Granted Jun 12, 2007

Adhesive microstructure and method of forming same

Assignee: The Regents of the University of California
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Quick Facts
Patent No.
US 7,229,685
App. No.
10/655,271
Granted
Jun 12, 2007
Kind
B2
Abstract

A method of forming an adhesive force includes removing a seta from a living specimen, attaching the seta to a substrate, and applying the seta to a surface so as to establish an adhesive force between the substrate and the surface. The seta is applied to the surface with a force perpendicular to the surface. The seta is then pulled with a force parallel to the surface so as to preload the adhesive force of the seta.

Claims (39)

1. A fabricated microstructure comprising:

a shaft, the shaft having a diameter of between 0.01 and 0.1 times the length of the shaft; and

a protrusion at an end of the shaft, the protrusion capable of providing a substantially normal adhesive force at a surface of between about 20 and 8,000 nano-Newtons by intermolecular forces.

2. The fabricated microstructure of claim 1 wherein the shaft is flexible.

3. The fabricated microstructure of claim 1 wherein the shaft has a diameter of about 0.05 times the length of the shaft.

4. The fabricated microstructure of claim 1 wherein the shaft has a length of between about 10 and 100 microns.

5. The fabricated microstructure of claim 1 , wherein the length of the shaft is 500 micrometers or less.

6. The fabricated microstructure of claim 5 , wherein the length of the shaft is between 1 and 500 micrometers.

7. The fabricated microstructure of claim 6 , wherein the length of the shaft is between 10 and 100 micrometers.

8. A fabricated microstructure comprising:

a shaft; and

a plurality of protrusions disposed at the end of the shaft each protrusion capable of providing an adhesive force at a surface of between about 1.00 and 200 nano-Newtons.

9. The fabricated microstructure of claim 8 , wherein the shaft has a diameter of between 0.01 and 0.1 times the length of the shaft, and wherein the length of the shaft is 500 micrometers or less.

10. The fabricated microstructure of claim 9 , wherein the length of the shaft is between 1 and 500 micrometers.

11. The fabricated microstructure of claim 10 , wherein the length of the shaft is between 10 and 100 micrometers.

12. The fabricated microstructure of claim 8 , wherein the shaft has a diameter that is approximately 0.05 times the length of the shaft.

13. A fabricated microstructure comprising:

a shaft; and

a plurality of protrusions disposed at the of the shaft, each protrusion capable of providing a shear force at a surface of between about 5.00 and 2,000 nano-Newtons.

14. The fabricated microstructure of claim 13 , wherein the shaft has a diameter of between 0.01 and 0.1 times the length of the shaft, and wherein the length of the shaft is 500 micrometers or less.

15. The fabricated microstructure of claim 14 , wherein the length of the shaft is between 1 and 500 micrometers.

16. The fabricated microstructure of claim 15 , wherein the length of the shaft is between 10 and 100 micrometers.

17. The fabricated microstructure of claim 13 , wherein the shaft has a diameter that is approximately 0.05 times the length of the shaft.

18. A fabricated microstructure comprising:

a shaft; and

a plurality of protrusions disposed at the end of the shaft, each protrusion capable of providing a substantially normal adhesive force at a surface of between about 20 and 8,000 nano-Newtons.

19. The fabricated microstructure of claim 18 wherein the adhesive force is at least about 12 times a preload force.

20. The fabricated microstructure of claim 18 wherein the adhesive force is engaged by a probed force.

21. The fabricated microstructure of claim 18 wherein the adhesive force is engaged by a shear displacement.

22. The fabricated microstructure of claim 18 wherein the adhesive force is engaged by a shear displacement in a first direction, and not engaged by a shear displacement substantially opposite to the first direction.

23. The fabricated microstructure of claim 18 wherein the adhesive force is engaged by a shear displacement in a first direction, and subsequently released by a shear displacement in the opposite direction.

24. The fabricated microstructure of claim 18 , wherein the shaft has a diameter of between 0.01 and 0.1 times the length of the shaft, and wherein the length of the shaft is 500 micrometers or less.

25. The fabricated microstructure of claim 24 , wherein the length of the shaft is between 1 and 500 micrometers.

26. The fabricated microstructure of claim 25 , wherein the length of the shaft is between 10 and 100 micrometers.

27. The fabricated microstructure of claim 18 , wherein the shaft has a diameter that is approximately 0.05 times the length of the shaft.

28. A fabricated microstructure comprising:

a shaft, the shaft having a diameter of between 0.01 and 0.1 times the length of the shaft; and

a protrusion at an end of the shaft, the protrusion capable of providing a substantially parallel adhesive force at a surface of between about 5.00 and 2,000 nano-Newtons.

29. The fabricated microstructure of claim 28 , wherein the diameter of the shaft is approximately 0.05 times the length of the shaft.

Assignments (1)
CONFIRMATORY LICENSE Recorded Dec 30, 2009
From: STANFORD UNIVERSITY
To: NATIONAL SCIENCE FOUNDATION
Reel/Frame 023715/0939 →
Continuity (3)
Continuation 0964493600 · Aug 23, 2000
Provisional Application 6017273100 · Dec 20, 1999
Related Publication 20050072509A1 · Apr 7, 2005