Discrete active seal assemblies
Active seal assemblies employing active materials that can be controlled and remotely changed to alter the seal effectiveness, wherein the active seal assemblies actively change modulus properties such as stiffness, shape orientation, and the like. In this manner, in seal applications such as a vehicle door application, door opening and closing efforts can be minimized yet seal effectiveness can be maximized.
1. An active seal assembly, comprising:
at least one seal body formed of an elastic material integrated with a seal base to define at least one finger projection;
a selected one of a wire and a strip partially embedded within the seal body having an end that exits the seal body, wherein the partially embedded selected one of the wire and the strip is positioned within the seal body such that a shape of the seal body changes in response to a force exerted on the selected one of the wire and the strip;
an active material in operative communication with the end of the selected one of the wire and the strip, wherein the active material is effective to undergo a change in at least one attribute in response to an activation signal, wherein the change in the at least one attribute exerts the force on the selected one of the wire and the strip;
an activation device in operative communication with the active material adapted to provide the activation signal; and
a controller in operative communication with the activation device.
2. The active seal assembly of claim 1 , wherein the active material comprises shape memory alloys, ferromagnetic shape memory alloys, shape memory polymers, electroactive polymers, magnetorheological elastomers, piezoelectric materials, composites of one or more of the foregoing materials with non-active materials, and combinations comprising at least one of the foregoing materials.
3. The active seal assembly of claim 1 , further comprising a hollow interior channel extending along a length of the seal base.
4. The active seal assembly of claim 3 , wherein the channel is a frictionless channel.
5. The active seal assembly of claim 1 , further comprising a channel in the seal base for receiving the end of the selected one of the wire and the strip that exits the seal body.
6. The active seal assembly of claim 1 , wherein the selected one of the wire and the strip is the active material, and wherein the active material is selected to be a bimorph.
7. The active seal assembly of claim 1 , further comprising a pulley in operative communication with the end of the selected one of the wire and the strip that exits the seal body and the active material.
8. The active seal assembly of claim 1 , further comprising a channel in the seal base for receiving the end of the selected one of the wire and the strip that exits the seal body.