IP Library Granted Patent US 8,233,836
Granted Patent B2
US 8,233,836 · App. 12/178,823 · Granted Jul 31, 2012

Drive transmitting device, and image forming apparatus provided with the same

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Quick Facts
Patent No.
US 8,233,836
App. No.
12/178,823
Granted
Jul 31, 2012
Kind
B2
Abstract

A drive transmitting device includes: a rotational shaft having peripheral surface with a cut-off surface extending along an axial direction of the rotational shaft; a bearing member for supporting the rotational shaft, the bearing member being in slide contact with the peripheral surface of the rotational shaft; and a spacer which is mounted in a clearance formed between an inner circumferential surface portion of the bearing member and the cut-off surface of the rotational shaft.

Claims (58)

1. An image forming apparatus, comprising:

a rotational member for performing an operation in connection with image forming;

a drive power source for generating a drive force for driving the rotational member; and

a drive transmitting device for transmitting the drive force of the drive power source to the rotational member, wherein

the drive transmitting device includes:

a rotational shaft whose peripheral surface having a cut-off surface extending along an axial direction, the cut-off surface defining a region of the rotational shaft having a lack of an outer circumferential surface;

a bearing member for supporting the rotational shaft, the bearing member having an inner circumferential surface portion in slide contact with the peripheral surface of the rotational shaft and facing the cut-off surface of the rotational shaft over the entire length of the bearing member in the axial direction of the rotational shaft; and

a spacer mounted in a clearance formed between the inner circumferential surface portion of the bearing member and the cut-off surface of the rotational shaft, the spacer having a surface filling the lack of an outer circumferential surface of the rotational shaft so that the spacer defines part of a substantially continuous outer circumferential surface facing the inner circumferential surface portion of the bearing member over substantially the entire length of the bearing member.

2. The image forming apparatus according to claim 1 , wherein the rotational member is at least one of a sheet feeding roller, a photoconductive drum, and a developing roller.

3. The image forming apparatus according to claim 1 , wherein the inner circumferential surface portion of the bearing member is in slide contact with the spacer.

4. The image forming apparatus according to claim 1 , wherein the spacer has at least one flat surface in contact with the cut-off surface of the rotational shaft and a curved surface opposite the flat surface and engaged with an inner circumferential surface of the bearing member.

5. The image forming apparatus according to claim 4 , wherein the spacer has an axial length parallel to the rotational shaft that is at least equal to an axial length of the bearing parallel to the rotational shaft.

6. The image forming apparatus according to claim 1 , wherein the bearing member has a substantially cylindrical inner circumferential surface, the spacer being inward of the substantially cylindrical inner circumferential surface of the bearing member.

7. A drive transmitting device, comprising:

a rotational shaft having peripheral surface with a cut-off surface extending along an axial direction of the rotational shaft, the cut-off surface defining a region of the rotational shaft having a lack of an outer circumferential surface;

a bearing member for supporting the rotational shaft, the bearing member having an inner circumferential surface portion in slide contact with the peripheral surface of the rotational shaft and facing the cut-off surface of the rotational shaft over the entire length of the bearing member in the axial direction of the rotational shaft; and

a spacer mounted in a clearance formed between the inner circumferential surface portion of the bearing member and the cut-off surface of the rotational shaft, the spacer having a surface filling the lack of an outer circumferential surface of the rotational shaft so that the spacer defines part of a substantially continuous outer circumferential surface facing the inner circumferential surface portion of the bearing member over substantially the entire length of the bearing member.

8. The drive transmitting device according to claim 7 , wherein the rotational shaft has a D-shaped cross-section taken along a direction perpendicular to the axial direction at a portion having the cut-off surface.

9. The drive transmitting device according to claim 7 , further comprising:

a flange portion provided on at least one end of the spacer in the axial direction and being engageable with one end of the bearing member in the axial direction.

10. The drive transmitting device according to claim 9 , wherein:

the spacer includes a curved piece having a curved surface along a shape of the inner circumferential surface portion of the bearing member, and

the flange portion includes:

a flexible portion defined by two slits formed in the spacer along an axial direction; and

a projecting portion provided at a leading end of the flexible portion.

11. The drive transmitting device according to claim 7 , further comprising:

a drive transmitting member connected to the rotational shaft, wherein

the spacer is fixed to the drive transmitting member.

12. The drive transmitting device according to claim 7 , further comprising: an engaging structure for engaging the spacer with respect to the cut-off surface.

13. The drive transmitting device according to claim 12 , wherein the engaging structure includes:

an engagement projection provided in the spacer on a side facing the cut-off surface and extending along the axial direction of the rotational shaft; and

an engagement groove provided in the cut-off surface and being engageable with the engagement projection.

14. The drive transmitting device according to claim 13 , further comprising:

a flange portion provided on at least one end of the spacer in the axial direction and being engageable with one end of the bearing member in the axial direction, wherein:

the spacer includes a curved piece having a curved surface along a shape of the inner circumferential surface portion of the bearing member, and

the flange portion includes:

a flexible portion defined by two slits formed in the spacer along an axial direction; and

a projecting portion provided at a leading end of the flexible portion, and

the first engagement projection is provided so as to project from a back side of the curved piece.

15. The drive transmitting device according to claim 12 , wherein

the engaging structure includes:

an engagement projection provided on the cut-off surface and extending along the axial direction of the rotational shaft; and

an engagement groove provided in the spacer on a side facing the cut-off surface and being engageable with the engagement projection.

16. The drive transmitting device according to claim 12 , wherein:

the engaging structure includes:

an engagement groove provided in the spacer on a side facing the cut-off surface and extending in the axial direction of the rotational shaft:

an engagement groove provided in the cut-off surface so as to face the engagement groove provided in the spacer; and

an engaging member engaged with the engagement groove provided in the spacer and the engagement groove provided in the cut-off surface.

17. The drive transmitting device according to claim 7 , wherein the spacer has an axial length parallel to the rotational shaft that is at least equal to an axial length of the bearing member parallel to the rotational shaft.

18. The drive transmitting device according to claim 17 , wherein the spacer has at least one flat surface in contact with the cut-off surface of the rotational shaft and a curved surface opposite the flat surface and engaged with an inner circumferential surface of the bearing member.

19. The drive transmitting device according to claim 17 , wherein the bearing member has a substantially cylindrical inner circumferential surface, the spacer being inward of the substantially cylindrical inner circumferential surface of the bearing member.

20. A drive transmitting device, comprising:

a rotational shaft having peripheral surface with a cut-off surface extending along an axial direction of the rotational shaft;

a bearing member for supporting the rotational shaft, the bearing member being in slide contact with the peripheral surface of the rotational shaft ; and

a spacer mounted in a clearance formed between an inner circumferential surface portion of the bearing member and the cut-off surface of the rotational shaft, the spacer including a curved piece having a curved surface along a shape of the inner circumferential surface portion of the bearing member; and

a flange portion provided on at least one end of the spacer in the axial direction and being engageable with one end of the bearing member in the axial direction the flange portion includes:

a flexible portion defined by two slits formed in the spacer along an axial direction; and

a projecting portion provided at a leading end of the flexible portion.

Assignments (2)
CHANGE OF NAME Recorded May 10, 2012
From: KYOCERA MITA CORPORATION
To: KYOCERA DOCUMENT SOLUTIONS INC.
Reel/Frame 028189/0802 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 24, 2008
From: MORIMOTO, KOUJI
To: KYOCERA MITA CORPORATION
Reel/Frame 021285/0373 →