Claims
- 1. An apparatus that adheres to a surface and comprises (a) a substrate, and (b) a plurality of fibrils attached to the substrate,
wherein one or more of the fibrils (c) are characterized by a value of P in Equation III in the range of about 102 to about 106, and (d) has a neutral axis, passing through the centroid of the cross-sectional area of the fibril, that has an orientation with the plane of the substrate, at the point of intersection of the axis with the plane of the substrate, in the range of greater than 75° to about 90°; wherein Equation III is P=c*E*(a/L)2, and wherein E is the Young's modulus of the material of the fibril as determined by ASTM D412-87, a is one-half of the characteristic width of the fibril, L is the length of the fibril, c is a dimensionless constant having a value in the range of about 0.1 to about 1.0, and * indicates multiplication.
- 2. An apparatus according to claim 1 wherein P has a value in the range of about 102 to about 105.
- 3. An apparatus according to claim 1 wherein each fibril characterized by a value of P in the range of about 102 to about 106 has a neutral axis, passing through the centroid of the cross-sectional area of the fibril, that has an orientation with the plane of the substrate, at the point of intersection of the axis with the plane of the substrate, in the range of about 80° to about 90°.
- 4. An apparatus according to claim 1 wherein at least about 25 percent of the fibrils are characterized by a value of P in the range of about 102 to about 106.
- 5. An apparatus according to claim 1 wherein E is in the range of about 105 to about 2×1012 Pa.
- 6. An apparatus according to claim 1 wherein a is in the range of about 2 nanometers to about 25 microns.
- 7. An apparatus according to claim 1 wherein L is in the range of about 50 nanometers to about 1000 microns.
- 8. An apparatus according to claim 1 fabricated in the form of a sealing or fastening device.
- 9. An apparatus that adheres to a surface and comprises (a) a substrate, and (b) a plurality of fibrils attached to the substrate,
wherein the minimum distance between the surface of a first fibril and the surface of a second adjacent fibril, at the plane of attachment of the fibrils to the substrate, is a distance 2 w where w is determined from Equation IV; wherein each of the first and second fibrils has a neutral axis, passing through the centroid of the cross-sectional area of the fibril, that has an orientation with the plane of the substrate, at the point of intersection of the axis with the plane of the substrate, in the range of greater than 75° to about 90°; wherein Equation IV is w>(g2*L2/4a)*(2γ/3Ea)1/2; and wherein E is the Young's modulus of the material of the first or second fibril as determined by ASTM D412-87, a is one-half of the characteristic width of the first or second fibril, L is the length of the first or second fibril, γ is the surface energy of the material of the first or second fibril as determined by ASTM D724-99, g is a dimensionless constant having a value in the range of about 0.05 to about 5.0, and * indicates multiplication.
- 10. An apparatus according to claim 9 wherein E is the Young's modulus of the material of the first fibril, a is one-half of the characteristic width of the first fibril, L is the length of the first fibril, and γ is the surface energy of the material of the first fibril.
- 11. An apparatus according to claim 9 wherein E is the Young's modulus of the material of the second fibril, a is one-half of the characteristic width of the second fibril, L is the length of the second fibril, and γ is the surface energy of the material of the second fibril.
- 12. An apparatus according to claim 9 wherein each of the first and second fibrils has a neutral axis, passing through the centroid of the cross-sectional area of the fibril, that has an orientation with the plane of the substrate, at the point of intersection of the axis with the plane of the substrate, in the range of about 80° to about 90°.
- 13. An apparatus according to claim 9 wherein 2 w is in the range of about 4 nanometers to about 50 microns.
- 14. An apparatus according to claim 9 wherein about 25 percent of the fibrils are a first fibril wherein the minimum distance between the surface of the first fibril and the surface of a second adjacent fibril, at the plane of attachment of the fibrils to the substrate, is a distance 2 w.
- 15. An apparatus according to claim 9 wherein E is in the range of about 105 to about 2×1012 Pa.
- 16. An apparatus according to claim 9 wherein a is in the range of about 2 nanometers to about 25 microns.
- 17. An apparatus according to claim 9 wherein L is in the range of about 50 nanometers to about 1000 microns.
- 18. An apparatus according to claim 9 wherein γ is in the range of about 0.01 J/m2 to about 2.0 J/m2.
- 19. An apparatus according to claim 9 fabricated in the form of a sealing or fastening device.
- 20. An apparatus that adheres to a surface and comprises (a) a substrate, and (b) a plurality of fibrils attached to the substrate,
wherein one or more of the fibrils (c) are characterized by a value of a, one-half of the characteristic width of the fibril, determined from Equation VI, and (d) has a neutral axis, passing through the centroid of the cross-sectional area of the fibril, that has an orientation with the plane of the substrate, at the point of intersection of the axis with the plane of the substrate, in the range of greater than 75° to about 90°; wherein Equation VI is a<d*Γ0*E/s2, wherein E is the Young's modulus of the material of the fibril as determined by ASTM D412-87, Γ0 is interfacial fracture energy of the of the material of the fibril as determined by ASTM D3433-99, s is the interfacial strength of the material of the fibril as determined by ASTM D2094-69, d is a dimensionless constant having a value in the range of about 0.05 to about 5.0, and * indicates multiplication.
- 21. An apparatus according to claim 20 wherein a has a value in the range of about 2 nanometers to about 25 microns.
- 22. An apparatus according to claim 20 wherein each fibril characterized by a value of a as set forth by Equation VI has a neutral axis, passing through the centroid of the cross-sectional area of the fibril, that has an orientation with the plane of the substrate, at the point of intersection of the axis with the plane of the substrate, in the range of about 80° to about 90°.
- 23. An apparatus according to claim 20 wherein at least about 25 percent of the fibrils are characterized by a value of a as set forth by Equation VI.
- 24. An apparatus according to claim 20 wherein E is in the range of about 105 to about 2×1012 Pa.
- 25. An apparatus according to claim 20 wherein L is in the range of about 50 nanometers to about 1000 microns.
- 26. An apparatus according to claim 20 wherein s is in the range of about 105 to about 109 Pa.
- 27. An apparatus according to claim 20 wherein Γ0 is in the range of about 0.01 J/m2 to about 1000.0 J/m2.
- 28. An apparatus according to claim 20 fabricated in the form of a sealing or fastening device.
- 29. An apparatus that adheres to a surface and comprises (a) a substrate, and (b) a plurality of fibrils attached to the substrate,
wherein one or more of the fibrils (c) adheres to the surface with a work of adhesion of Γ in the range of about 0.1 J/m2 to about 104 J/m2, where Γ is determined according to Equation VII, and (d) has a neutral axis, passing through the centroid of the cross-sectional area of the fibril, that has an orientation with the plane of the substrate, at the point of intersection of the axis with the plane of the substrate, in the range of greater than 75° to about 90°; wherein Equation VII is Γ=Γ0+f*s2*L/2E; wherein Γ0 is interfacial fracture energy of the of the material of the fibril as determined by ASTM D3433-99, s is the interfacial strength of the material of the fibril as determined by ASTM D2094-69, E is the Young's modulus of the material of the fibril as determined by ASTM D412-87, L is the length of the fibril, f is a dimensionless constant having a value in the range of about 0.01 to about 5.0, and * indicates multiplication.
- 30. An apparatus according to claim 29 wherein each fibril characterized by a value of Γ as set forth by Equation VII has a neutral axis, passing through the centroid of the cross-sectional area of the fibril, that has an orientation with the plane of the substrate, at the point of intersection of the axis with the plane of the substrate, in the range of about 80° to about 90°.
- 31. An apparatus according to claim 29 wherein each fibril characterized by a value of Γ as set forth by Equation VII has a characteristic width of 2 a where a is has a value in the range of about 2 nanometers to about 25 microns.
- 32. An apparatus according to claim 29 wherein at least about 25 percent of the fibrils are characterized by a value of Γ as set forth by Equation VII.
- 33. An apparatus according to claim 29 wherein E is in the range of about 105 to about 2×1012 Pa.
- 34. An apparatus according to claim 29 wherein L is in the range of about 50 nanometers to about 1000 microns.
- 35. An apparatus according to claim 29 wherein s is in the range of about 105 to about 109 Pa.
- 36. An apparatus according to claim 29 wherein Γ0 is in the range of about 0.01 J/m2 to about 1000.0 J/m2.
- 37. An apparatus according to claim 29 fabricated in the form of a sealing or fastening device.
Parent Case Info
[0001] This application claims the benefit of U.S. Provisional Application No. 60/383,814, filed on May 29, 2002, which is incorporated in its entirety as a part hereof for all purposes.
Provisional Applications (1)
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Number |
Date |
Country |
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60383814 |
May 2002 |
US |