Robotic system for forming features in orthodontic aligners
View Patent ↗A robotic system for forming features in orthodontic aligners includes a control system, a platen for three-dimensional positioning of the aligner, a heating station for selectively heating a small region of the aligner, and a thermoforming station for manipulating the heated region to form a desired feature in the aligner. Optionally, a laser cutting and trimming station can also be included to trim excess material from the aligner or to cut features into the aligner. The control system can include a processor with CAD software to enable a user to design features for aligners.
1. A robotic system for forming features in an orthodontic aligner having a thin polymeric shell, said robotic system comprising:
a control system including a virtual model of the aligner;
a platen controlled by the control system for three-dimensional positioning of the aligner;
a heating station controlled by the control system selectively heating a small region of the aligner on the platen with a localized flow of heated air; and
a thermoforming station controlled by the control system for manipulating the heated region of the aligner on the platen to form a desired feature in the aligner.
2. The robotic system of claim 1 wherein the control system further comprises CAD software for designing features in the aligner.
3. The robotic system of claim 1 wherein the heating station comprises a small hot air source.
4. The robotic system of claim 1 further comprising a laser cutting and trimming station controlled by the control system.
5. The robotic system of claim 1 wherein the thermoforming station further comprises multiple interchangeable tools for selectively forming any of a variety of features in the aligner.
6. A robotic system for forming features in an orthodontic aligner having a thin polymeric shell, said robotic system comprising:
a control system including a virtual model of the aligner and CAD software enabling a user to design a feature in the aligner;
a platen controlled by the control system for three-dimensional positioning of the aligner;
a heating station controlled by the control system selectively heating a small region of the aligner on the platen with a localized flow of heated air for a feature; and
a thermoforming station controlled by the control system for manipulating the heated region of the aligner on the platen to form the feature in the aligner.
7. The robotic system of claim 6 wherein the heating station comprises a small hot air source.
8. The robotic system of claim 6 further comprising a laser cutting and trimming station controlled by the control system.
9. The robotic system of claim 6 wherein the thermoforming station further comprises multiple interchangeable tools for selectively forming any of a variety of features in the aligner.
10. A robotic system for forming features in an orthodontic aligner having a thin polymeric shell, said robotic system comprising:
a control system including a virtual model of the aligner;
a platen controlled by the control system for three-dimensional positioning of the aligner; and
a plurality of robotic stations arranged about the platen for performing actions to form a feature on the aligner on the platen under the control of the control system, said robotic stations including:
(a) a heating station controlled by the control system selectively heating a small region of the aligner on the platen with a localized flow of heated air; and
(b) a thermoforming station controlled by the control system for manipulating the heated region of the aligner on the platen to form a desired feature in the aligner.
11. The robotic system of claim 10 wherein the control system further comprises CAD software for designing features in the aligner.
12. The robotic system of claim 10 wherein the heating station comprises a small hot air source.
13. The robotic system of claim 10 further comprising a laser cutting and trimming station controlled by the control system.
14. The robotic system of claim 10 wherein the thermoforming station further comprises multiple interchangeable tools for selectively forming any of a variety of features in the aligner.