Deformable molds and methods for their use in the manufacture of ophthalmic lenses
The present provides deformable molds and methods for manufacturing ophthalmic lenses using deformable molds. The molds of the invention may be used in the custom manufacture of ophthalmic lenses.
1. A mold for use in the manufacture of ophthalmic lenses, comprising:
a.) at least one mold half comprising a casting cup having (i) a non-molding surface having a plurality of pusher pins attached thereto, and (ii) a molding surface, wherein at least a portion of the molding surface is capable of being reversibly deformed; and
b.) adjustment means for reversibly deforming the deformable portion of the molding surface, the adjustment means comprising a plurality of micro-actuators wherein each of the micro-actuators has at one end thereof a mechanical lever capable of moving one of the plurality of pusher pins so that the pusher pin exerts a pressure on the non-molding surface.
2. The mold of claim 1 , wherein the mold is a contact lens mold.
3. The mold of claim 1 , wherein the entire molding surface is capable of being deformed.
4. The mold of claim 1 , wherein the micro-actuators are electro-resistive microactuators.
5. The mold of claim 4 , wherein the micro-actuators comprise a material selected from the group consisting of lead-magnesium-niobate, lead-magnesium-niobate-titanate, an electrorestrictive polymer and combinations thereof.
6. The mold of claim 1 , wherein the molding surface comprises a material selected from the group consisting of polystyrenebutadiene, polypropylene, poly(vinylidene fluoride), poly(vinyl chloride) and combinations thereof.
7. The mold of claim 6 , wherein the molding surface comprises a polystyrenebutadiene.
8. The mold of claim 1 , wherein the non-molding surface further comprises a plurality of pusher pads.
9. The mold of claim 1 , wherein the mechanical lever further comprises a micro-clamp.
10. A mold for use in the manufacture of contact lenses, comprising:
a.) at least one mold half comprising a casting cup having a non-molding surface having a plurality of pusher pins attached thereto, and
(ii) (ii) a molding surface, wherein at least a portion of the molding surface is capable of being reversibly deformed; and electro-resistive micro-actuators for reversibly deforming the deformable portion of the molding surface, each of the micro-actuators has at one end thereof a mechanical lever capable of moving one of the plurality of pusher pins so that the pusher pin exerts a pressure on the non-molding surface.
11. The mold of claim 10 , wherein the entire molding surface is capable of being deformed.
12. The mold of claim 10 , wherein the micro-actuators comprise a material selected from the group consisting of lead-magnesium-niobate, lead-magnesium-niobate-titanate, an electrorestrictive polymer and combinations thereof.
13. The mold of claim 10 , wherein the molding surface comprises a material selected from the group consisting of polystyrenebutadiene, polypropylene, poly(vinylidene fluoride), poly(vinyl chloride), and combinations thereof.
14. The mold of claim 12 , wherein the molding surface comprises a material selected from the group consisting of polystyrenebutadiene, polypropylene, poly(vinylidene fluoride), poly(vinyl chloride), and combinations thereof.
15. The mold of claim 10 , wherein the molding surface comprises a polystyrenebutadiene.
16. The mold of claim 12 , wherein the molding surface comprises a polystyrenebutadiene.
17. The mold of claim 10 , wherein the non-molding surface further comprises a plurality of pusher pads.
18. The mold of claim 16 , wherein the non-molding surface further comprises a plurality of pusher pads.