On/off reversible adhesive
View Patent ↗An on/off reversible adhesive mechanism, and method for fabricating same. The adhesive mechanism is a hierarchical system comprised of a micro-scale compliant surface having one or more nano-structures thereon, wherein the compliant surface is moved by applying a magnetic field either to engage the nano-structures with an adhering surface or to remove the nano-structures from the adhering surface.
1. An adhesive, comprising:
a compliant surface having one or more nano-structures thereon, wherein the compliant surface is moved by applying a magnetic field either to engage the nano-structures with an adhering surface or to remove the nano-structures from the adhering surface.
2. The adhesive of claim 1 , wherein the compliant surface is a paddle situated at one end of a cantilevered beam.
3. The adhesive of claim 1 , wherein the compliant surface is a platform supported by a pillar.
4. The adhesive of claim 1 , wherein the compliant surface is moved in order to control an amount of the compliant surface's area that is available for adhesion.
5. The adhesive of claim 1 , wherein adhesion of the adhesive is enhanced or decreased by moving the compliant surface.
6. The adhesive of claim 1 , wherein the compliant surface changes shape to control adhesion.
7. The adhesive of claim 1 , wherein the nano-structures are polymer nanorods.
8. The adhesive of claim 1 , further comprising an array of compliant surfaces having nano-structures thereon.
9. The adhesive of claim 8 , wherein the array of the compliant surfaces comprises a microelectromechanical system (MEMS) device.
10. A method for fabricating an adhesive, comprising:
fabricating one or more nano-structures on a compliant surface, such that the nano-structures are positioned to an adhering surface or the nano-structures are removed from the adhering surface, when the compliant surface is moved by applying a magnetic field.
11. A synthetic reversible adhesive having a surface that changes shape by applying a magnetic field to control adhesion, wherein the surface includes one or more nano-structures thereon that perform an adhesive function, and the surface changes shape either to engage the nano-structures to an adhering surface or to dis-engage the nano-structures from the adhering surface.