Outboard flexure bearing assembly
Solar trackers that may be advantageously employed on sloped and/or variable terrain to rotate solar panels to track motion of the sun across the sky include bearing assemblies and other mechanical features configured to address mechanical challenges posed by the sloped and/or variable terrain that might otherwise prevent or complicate use of solar trackers on such terrain.
1. An outboard flexure bearing assembly comprising:
one or more bearings;
an integral piece comprising:
a shaft extending through the one or more bearings and comprising a first end and a second end opposite the first end;
a first flex plate directly attached to the first end of the shaft;
a second flex plate coupled to the first flex plate so that the first flex plate is in between the second flex plate and the shaft, the second flex plate disposed not to be in direct contact with the shaft; and
a first solar module mounting structure coupler coupled to the second flex plate and coupled to the first end of the shaft.
2. The outboard flexure bearing assembly of claim 1 , wherein the second flex plate is attached to the first solar module mounting structure coupler.
3. The outboard flexure bearing assembly of claim 1 , wherein the second flex plate is integral with the first solar module mounting structure coupler.
4. The outboard flexure bearing assembly of claim 3 , wherein the first solar module mounting structure coupler comprises a first back area and wings extending out of opposing sides of the first back area, the second flex plate comprising the wings.
5. The outboard flexure bearing assembly of claim 1 , wherein first flex plate has a rectangular shape.
6. The outboard flexure bearing assembly of claim 1 , wherein the first flex plate and the second flex plate are not in direct contact.
7. The outboard flexure bearing assembly of claim 1 , wherein the first flex plate and second flex plate are each configured to flex around a first axis between the first and second flex plate and parallel to a plane of the first flex plate.
8. The outboard flexure bearing assembly of claim 7 , wherein the first flex plate and second flex plate are configured to flex around a second axis between the first and second flex plate, parallel to a plane of the first flex plate, and perpendicular to the first axis.
9. The outboard flexure bearing assembly of claim 1 , further comprising a second module mounting structure coupler coupled to the second end of the shaft.
10. The outboard flexure bearing assembly of claim 9 , further comprising:
a third flex plate attached to the second end of the shaft, and
a fourth flex plate coupled to the third flex plate and the second module mounting structure coupler.
11. The outboard flexure bearing assembly of claim 1 , further comprising bearing straps securing the one or more bearings to the shaft,
wherein the one or more bearings consist of two bearings.
12. The outboard flexure bearing assembly of claim 1 , further comprising a bearing support supporting the one or more bearings comprising at least one bearing support panel and side panels extending from the at least one bearing support panel.
13. The outboard flexure bearing assembly of claim 12 , wherein the shaft extends along a first axis, the at least one bearing support panel comprising pivot slots arranged to allow the one or more bearing to move such that the shaft is rotated around a second axis perpendicular to the first axis.
14. The outboard flexure bearing assembly of claim 12 , wherein the side panels comprise adjustment slots arranged to allow tilting the bearing assembly on a foundation supporting the bearing support.
15. The outboard flexure bearing assembly of claim 10 , further comprising a middle flex plate between the first flex plate and the third flex plate.
16. The outboard flexure bearing assembly of claim 15 , wherein each of the first flex plate and third flex plate have a length that is a respectively longest side, the length of the first flex plate and a length of the second flex plate being perpendicular to each other.
17. The outboard flexure bearing assembly of claim 15 , wherein the middle flex plate is an octagon.
18. An outboard flexure bearing assembly comprising:
a plurality of bearings;
a shaft extending through the plurality of bearings and comprising a first end and a second end opposite the first end, the shaft having cross sections in an axial direction of the shaft of a same shape throughout an entirety of the shaft, the cross sections comprising a largest cross section of the shaft;
a first flex plate directly attached to the first end of the shaft and having a second cross section in the axial direction of the shaft that is greater in size than the largest cross section of the shaft;
a second flex plate coupled to the first flex plate without being in direct contact with the first flex plate, the first flex plate being in between the second flex plate and the shaft;
a third flex plate directly attached to the second end of the shaft and having a third cross section in the axial direction of the shaft that is greater in size than the largest cross section of the shaft, the shaft extending continuously between the third flex plate and the first flex plate;
a fourth flex plate coupled to the third flex plate without being in direct contact with the third flex plate, the first flex plate being in between the second flex plate and the shaft;
a first solar module mounting structure coupler coupled to the second flex plate and coupled to the first end of the shaft; and
a second solar module mounting structure coupler coupled to the third flex plate and coupled to the second end of the shaft.
19. The outboard flexure bearing assembly of claim 18 , wherein the same shape is a circle.
20. The outboard flexure bearing assembly of claim 18 , wherein the second cross section of the first flex plate is rectangular.