Rotation flexure with temperature controlled modal frequency
A flexure bearing includes an inner race, an outer race, and a plurality of substantially planar radially extending blades coupled between the inner and outer race. The blades have a thickness that is thinner than a thickness of the inner and outer races. The inner race, outer race, and blades have substantially the same height. At least one heating element is coupled to the inner race and/or the outer race. The heating element is configured to apply heat to the race that it is coupled to in order to tune the flexure bearing.
1. A flexure bearing comprising:
a flexure bearing body, wherein the flexure bearing body comprises:
an inner circular race having a first diameter;
an outer circular race having a second diameter that is larger than the first diameter; and
flexure blades coupled between the inner circular race and the outer circular race; and
a heating or cooling mechanism coupled to one or more of the inner circular race or the outer circular race for tuning the frequency of the flexure bearing body, wherein the flexure blades change in shape or size due to the application of heating or cooling by the heating or cooling mechanism.
2. The bearing of claim 1 , wherein the flexure blades extend radially outwardly between the inner and outer members.
3. The bearing of claim 1 , wherein the heating or cooling mechanism is a flexible strip heater or a resistive heater; and the heating or cooling mechanism is adhesively coupled to the flexure bearing body.
4. The bearing of claim 1 , wherein the flexure blades have a thickness that is less than a thickness of the inner race and the outer race.
5. The bearing of claim 1 , wherein the flexure bearing body is a monolithic structure.
6. The bearing of claim 1 , wherein the flexure bearing body is tuned to a low frequency.
7. A method for modally tuning a flexure bearing comprising:
providing a flexure bearing having at least one of an inner surface or an outer surface;
coupling a heater or a cooler to at least one of the inner surface or the outer surface of the flexure bearing;
coupling the flexure bearing to another device that has a natural modal frequency; and
tuning the flexure bearing by applying heating or cooling to the flexure bearing, wherein the tuning of the flexure bearing step tunes the flexure bearing to a frequency that is different from the natural modal frequency of the other device.
8. A flexure bearing comprising:
a flexure bearing body, wherein the flexure bearing body comprises:
an inner circular race having a first diameter;
an outer circular race having a second diameter that is larger than the first diameter; and
flexure blades coupled between the inner circular race and the outer circular race; and
a heating or cooling mechanism coupled to the inner circular race and/or the outer circular race for tuning the frequency of the flexure bearing body, wherein the heating or cooling mechanism is a flexible strip heater or a resistive heater, and the heating or cooling mechanism is adhesively coupled to the flexure bearing body.
9. The bearing of claim 8 , wherein the flexure blades extend radially outwardly between the inner and outer members.
10. The bearing of claim 8 , wherein the flexure blades change in shape or size due to the application of heating or cooling by the heating or cooling mechanism.
11. The bearing of claim 8 , wherein the flexure blades have a thickness that is less than a thickness of the inner race and the outer race.
12. The bearing of claim 8 , wherein the flexure bearing body is a monolithic structure.
13. The bearing of claim 8 , wherein the flexure bearing body is tuned to a low frequency.