Methodology and mechanisms for enhancing high ambient temperature performance in shape memory alloy applications
View Patent ↗An actuator comprising an SMA element and a thermally responsive element that adjusts bias stress improves high ambient temperature operation.
1. An actuator comprising a shape memory alloy (SMA) element and a thermally responsive element that adjusts bias stress, the thermally responsive element comprising a first bias element, a second bias element, and a thermally activated connector disposed between the first bias element and the second bias element that serves to engage and disengage the first bias element from the second bias element based on temperature changes.
2. An actuator according to claim 1 , wherein the thermally activated connector comprises a member selected from the group consisting of active materials having a high coefficient of thermal expansion, shape-memory alloys, and bimetallic elements.
3. An actuator according to claim 1 , wherein the thermally activated connector comprises a shape memory alloy (SMA) wire.
4. An actuator according to claim 1 , wherein the thermally activated connector comprises a thermally activated phase change material.
5. An actuator according to claim 1 , wherein the thermally activated connector comprises a thermally activated material and a piston.
6. An actuator according to claim 1 , wherein the thermally activated connector comprises a bimetallic element.
7. An actuator according to claim 6 , wherein the bimetallic element comprises a Belleville washer or a snap-through-type bimetallic actuator.
8. An actuator comprising:
a shape memory alloy (SMA) element;
a nominal bias element that applies bias stress to the SMA element; and
a thermally responsive element capable of adjusting bias stress applied to the SMA element based on temperature, the thermally responsive element comprising a first bias element, a second bias element, and a thermally activated connector disposed between the first bias element and the second bias element that serves to engage and disengage the first bias element from the second bias element based on temperature changes.