IP Library › Granted Patent US 9,033,582
Granted Patent B2
US 9,033,582 · App. 14/340,251 · Granted May 19, 2015

Rolling bearing device

Inventors: Yuushi Onda (Kuwana, JP); Mamoru Mizutani (Kuwana, JP)
Assignee: NTN CORPORATION
F16C33/6659B23Q11/123F16C33/6685F16C33/76F16C19/163F16C19/541F16C33/583F16C2300/22
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Quick Facts
Patent No.
US 9,033,582
App. No.
14/340,251
Granted
May 19, 2015
Kind
B2
Abstract

A rolling bearing device which may include: a pair of raceway rings including an inner ring and an outer ring, a plurality of rolling elements interposed between respective raceway surfaces of the inner and outer rings, a retainer to retain the rolling elements; an oil supply and discharge mechanism to supply a lubricant oil, which concurrently serves as a bearing cooling medium, into the inside of the bearing device and to discharge the lubricant oil to the outside of the bearing device; and a ring shaped shake-off collar portion disposed in the vicinity of an end portion of an outer diametric surface of the inner ring so as to protrude radially outwardly, wherein the lubricant oil supplied from the oil supply and discharge mechanism and provided for lubrication within the bearing device is, after being received by the shake-off collar portion, shaken-off in a direction radially outwardly by the effect of a centrifugal force developed as a result of an inner ring rotation.

Claims (27)

1. A rolling bearing device which comprises:

a pair of raceway rings including an inner ring and an outer ring,

a plurality of rolling elements interposed between respective raceway surfaces of the inner and outer rings,

a retainer to retain the rolling elements;

an oil supply and discharge mechanism to supply a lubricant oil, which concurrently serves as a bearing cooling medium, into the inside of the bearing device and to discharge the lubricant oil to the outside of the bearing device; and

a ring shaped shake-off collar portion disposed in the vicinity of an end portion of an outer diametric surface of the inner ring so as to protrude radially outwardly,

wherein the lubricant oil supplied from the oil supply and discharge mechanism and provided for lubrication within the bearing device is, after being received by the shake-off collar portion, shaken-off in a direction radially outwardly by the effect of a centrifugal force developed as a result of an inner ring rotation.

2. The rolling bearing device as claimed in claim 1 , wherein an axially extending raceway ring extension portion is provided in the inner ring and the outer ring is provided with a spacer facing the raceway ring extension portion, the oil supply and discharge mechanism being provided over the raceway ring extension portion and the spacer.

3. The rolling bearing device as claimed in claim 1 , wherein a cutout portion to discharge the lubricant oil, which has been supplied for lubrication within the bearing device, to the outside of the bearing device is provided in an outer ring end face of the outer ring positioned radially outwardly of the shake-off collar portion.

4. The rolling bearing device as claimed in claim 3 , wherein a depth C from the outer ring end face in the cutout portion and an axial thickness D of the shake-off collar portion have such a relationship expressed by C >D.

5. The rolling bearing device as claimed in claim 3 , wherein a bottom face of the cutout portion is formed in the form of an inclined sectional shape inclined axially outwardly towards a radially outward direction.

6. The rolling bearing device as claimed in claim 1 , wherein in the shake-off collar portion, an inner side face confronting on a bearing interior side is formed in the form of an inclined sectional shape inclined axially outwardly towards a radially outward direction.

7. The rolling bearing device as claimed in claim 1 , wherein a corner portion between an outer ring end face of the outer ring, which is positioned radially outwardly of the shake-off collar portion, and an outer ring inner diametric surface continued to the outer ring end face is formed with an inclined face formed to have an inclined sectional shape inclined axially outwardly towards a radially outwards direction.

8. The rolling bearing device as claimed in claim 1 , wherein a circumferential groove is provided in the vicinity of an end portion of an outer diametric surface of the inner ring and the shake-off collar portion of a split shape having a split at one circumferential location is mounted in the circumferential groove.

9. The rolling bearing device as claimed in claim 8 , wherein the shake-off collar portion has end faces forming the split that are parallel to each other and represent a tapered face inclined relative to a circumferential direction of the shake-off collar portion in the split, with a gap in the split being a negative gap or zero.

10. The rolling bearing device as claimed in claim 8 , wherein the shake-off collar portion is made of a material having a coefficient of linear expansion smaller than that of the inner ring.

11. The rolling bearing device as claimed in claim 1 , which is used for supporting a machine tool main shaft.

12. A rolling bearing device system comprising:

a plurality of rolling bearing devices combined together; and

a lubricant oil leakage preventing mechanism for avoiding a leakage of lubricant oil, which has been supplied for lubrication within any one of the rolling bearing devices from leaking into the neighboring rolling bearing device,

wherein at least one of the rolling bearing devices of the plurality of rolling bearing devices comprises

a pair of raceway rings including an inner ring and an outer ring,

a plurality of rolling elements interposed between respective raceway surfaces of the inner and outer rings,

a retainer to retain the rolling elements;

an oil supply and discharge mechanism to supply lubricant oil, which concurrently serves as a bearing cooling medium, into the inside of the bearing device and to discharge the lubricant oil to the outside of the bearing device; and

a ring shaped shake-off collar portion disposed in the vicinity of an end portion of an outer diametric surface of the inner ring so as to protrude radially outwardly,

wherein the lubricant oil supplied from the oil supply and discharge mechanism and provided for lubrication within the bearing device is, after being received by the shake-off collar portion, shaken-off in a direction radially outwardly by the effect of a centrifugal force developed as a result of an inner ring rotation.

Priority Claims (3)
JP 2010-234576 · Oct 19, 2010 · national
JP 2011-130003 · Jun 10, 2011 · national
JP 2011-132870 · Jun 15, 2011 · national
Continuity (2)
Division 13879718
Related Publication 20140334757A1 · Nov 13, 2014