ELASTICALLY MODIFIABLE ORTHODONTIC APPLIANCES
An orthodontic appliance having a transitory flexural modulus, which lowers when applied to an environmental condition, such as heat. The lowered flexural modulus causes the appliance to become more flexible and therefore have less initial discomfort. As the appliance is worn, it cools to gradually increase the flexural modulus and apply greater orthodontic force to teeth.
1 . An orthodontic appliance comprising shells shaped to receive teeth, the shells being stacked and comprising an anchoring shell and a mutable shell, wherein the mutable shell is configured to significantly decrease in elastic modulus by exposure to an environmental condition, and wherein the anchoring shell is configured to not significantly decrease in elastic modulus by exposure to the environmental condition.
2 . The orthodontic appliance of claim 1 , wherein the mutable shell is configured to plastically soften when heating the shells, and wherein the anchoring shell is configured to remold the mutable shell into a pre-softened state after heating the shells ceases.
3 . The orthodontic appliance of claim 1 , wherein the mutable shell is configured to significantly increase in flexibility from exposure to the environmental condition, and wherein the anchoring shell is configured to provide structural form to the mutable shell after cessation of the environmental condition.
4 . The orthodontic appliance of claim 1 , wherein the shells have a working flexural modulus configured to therapeutically move teeth, and wherein the mutable shell comprises a material that is configured to cause the orthodontic appliance to have a transitory flexural modulus that is reduced from the working flexural modulus when the material is exposed to the environmental condition.
5 . The orthodontic appliance of claim 1 , wherein the an anchor shell comprises a first polymer material with a first glass transition temperature, wherein the mutable shell comprises a second polymer material with a second glass transition temperature, wherein the second polymer material transitions to a substantially liquid state at a temperature where the first polymer material is in a substantially solid state.
6 . The orthodontic appliance of claim 5 , wherein the first polymer material comprises a polycarbonate material, and the second polymer material comprises a thermoplastic polyurethane material.
7 . A method comprising:
obtaining an orthodontic appliance comprising shells shaped to receive teeth, the shells being stacked and comprising an anchoring shell and a mutable shell, wherein the mutable shell is configured to significantly decrease in elastic modulus by exposure to an environmental condition, and wherein the anchoring shell is configured to not significantly decrease in elastic modulus by exposure to the environmental condition; and
exposing the orthodontic appliance to the environmental condition to reduce the flexural modulus of the orthodontic appliance.
8 . The method of claim 7 , wherein exposing the orthodontic appliance to the environmental condition comprises warming the orthodontic appliance to a temperature between 60 and 100° C.
9 . The method of claim 8 , further comprising cooling surfaces of the orthodontic appliance to a temperature less than 45° C.