BEARING ASSEMBLIES AND APPARATUSES AND RELATED METHODS
Bearing apparatus and related methods may include superhard contact elements coupled to support rings where the superhard contact element define an arcuate or a planar surface.
1 . A bearing apparatus, comprising:
an inner bearing assembly comprising:
an inner support ring positioned circumferentially about an inner ring axis; and
a first plurality of superhard bearing elements coupled to the inner support ring, the first plurality of superhard bearing elements having superhard bearing surfaces, the superhard bearing surfaces of the first plurality of superhard bearing elements are positioned to collectively contact a generally arcuate reference surface substantially centered about the inner ring axis; and
an outer bearing assembly comprising:
an outer support ring positioned circumferentially about an outer ring axis; and
a second plurality of superhard bearing elements coupled to the outer support ring, the second plurality of superhard bearing elements having a superhard bearing surface;
wherein the superhard bearing surface of each of the second plurality of superhard bearing elements comprises a substantially planar surface opposing the inner bearing assembly.
2 . The bearing apparatus of claim 1 , wherein the superhard bearing surfaces of the first plurality of superhard bearing elements are positioned to collectively define an overall convex partially cylindrical shape or an overall convex partially ellipsoidal shape.
3 . The bearing apparatus of claim 1 , wherein each of the superhard bearing surfaces of the first plurality of superhard bearing elements comprise a convex surface.
4 . The bearing apparatus of claim 1 , wherein the substantially planar surface of the second plurality of superhard bearing elements are positioned to collectively define the generally arcuate reference surface.
5 . The bearing apparatus of claim 4 , wherein the substantially planar surface of the second plurality of superhard bearing elements are positioned to collectively lie within a polygonal curve.
6 . The bearing apparatus of claim 1 , wherein the inner support ring is configured to tilt relative to the outer support ring.
7 . The bearing apparatus of claim 6 , wherein the first plurality of superhard bearing elements is configured to remain in contact with the second plurality of superhard bearing elements when the inner support ring tilts relative to the outer support ring.
8 . The bearing apparatus of claim 1 , wherein the superhard bearing surfaces of the first plurality of superhard bearing elements and the second plurality of superhard bearing elements each comprise a polycrystalline diamond table bonded to a substrate.
9 . The bearing apparatus of claim 1 , wherein the superhard bearing surfaces the first plurality of superhard bearing elements and the second plurality of superhard bearing elements are formed using a laser process.
10 . The bearing apparatus of claim 1 , wherein the superhard bearing surfaces of the first plurality of superhard bearing elements comprise an at least partially arcuate shape.
11 . A bearing apparatus, comprising:
an inner bearing assembly comprising:
an inner support ring positioned circumferentially about an inner ring axis; and
a first plurality of superhard bearing elements coupled to the inner support ring, the first plurality of superhard bearing elements having a superhard bearing surface; and
an outer bearing assembly comprising:
an outer support ring positioned circumferentially about an outer ring axis; and
a second plurality of superhard bearing elements coupled to the outer support ring, the second plurality of superhard bearing elements having a superhard bearing surface;
wherein the superhard bearing surface of each of the second plurality of superhard bearing elements comprises a substantially planar surface opposing the inner bearing assembly; and
wherein the second plurality of superhard bearing elements are positioned to collectively define a generally arcuate reference surface substantially centered about the inner ring axis or the outer ring axis.
12 . The bearing apparatus of claim 11 , wherein the first plurality of superhard bearing elements is positioned to collectively contact the generally arcuate reference surface.
13 . The bearing apparatus of claim 12 , wherein the first plurality of superhard bearing elements collectively define a partially cylindrical outer surface.
14 . The bearing apparatus of claim 12 , wherein the first plurality of superhard bearing elements collectively define a partially spherical outer surface.
15 . The bearing apparatus of claim 11 , wherein the second plurality of superhard bearing elements each lie within a polygonal curve.
16 . A method of using a radial sliding bearing, the method comprising:
contacting a first plurality of superhard contact elements on an inner support ring with a second plurality of superhard contact elements on an outer support ring; and
positioning the first plurality of superhard contact elements on the inner support ring to collectively contact a generally arcuate reference surface defined by the second plurality of superhard contact elements.
17 . The method of claim 16 , further comprising defining each of the second plurality of superhard contact elements to comprises a substantially planar surface.
18 . The method of claim 17 , further comprising position in the substantially planar surface of each of the second plurality of superhard contact elements to be positioned within a polygonal curve.
19 . The method of claim 16 , further comprising tilting to the inner support ring relative to the outer support ring.
20 . The method of claim 19 , further comprising contacting the first plurality of superhard contact elements with the second plurality of superhard contact elements when the inner support ring tilts relative to the outer support ring.