IP Library Granted Patent US 12710709
Granted Patent B2
US 12710709 · App. 18/900,455 · Granted Aug 18, 2026

Developing apparatus including protruding portion overlapping discharge port

Inventor: Toshiya Ohata (Chiba, JP)
Assignee: CANON KABUSHIKI KAISHA
G03G15/0891G03G15/0898
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Quick Facts
Patent No.
US 12710709
App. No.
18/900,455
Granted
Aug 18, 2026
Kind
B2
Abstract

A developing apparatus includes a first conveyance screw including a first blade member and a second blade member, a discharge path, and a magnet. The first conveyance screw further includes a third blade member arranged in the discharge path, arranged downstream of the second blade member in a first direction, and configured to convey the developer in the first direction. A discharge port is arranged downstream of an upstream end of the third blade member in the first direction. The magnet is arranged downstream of an upstream end of the discharge port in the first direction. A protruding portion protruding in a radial direction of a rotation shaft of the first conveyance screw is provided on the rotation shaft in an area located downstream of the third blade member and upstream of the magnet in the first direction, the area overlapping the upstream end of the discharge port.

Claims (43)

1 . A developing apparatus comprising:

a developer bearing member configured to bear and convey developer containing toner and carrier to develop an electrostatic image formed on an image bearing member;

a developer container including a first chamber and a second chamber separated from the first chamber by a partition wall, the developer container being configured to contain the developer to be supplied to the developer bearing member;

a first conveyance screw arranged in the first chamber, the first conveyance screw including a rotation shaft, a first blade member helically formed on an outer circumference surface of the rotation shaft and configured to convey the developer in a first direction, and a second blade member arranged downstream of the first blade member in the first direction, helically formed on the outer circumference surface of the rotation shaft, and configured to convey the developer in a second direction being a direction opposite to the first direction and deliver the developer from the first chamber to the second chamber;

a second conveyance screw arranged in the second chamber and configured to convey the developer in the second direction;

a discharge path arranged downstream of the second blade member in the first direction to discharge the developer in the first direction, the discharge path being provided with a discharge port arranged to oppose the rotation shaft and configured to discharge part of the developer conveyed in the discharge path from the discharge path in a direction intersecting with the first direction; and

a magnet,

wherein the first conveyance screw further includes a third blade member arranged in the discharge path, arranged downstream of the second blade member in the first direction, helically formed on the outer circumference surface of the rotation shaft, and configured to convey the developer in the first direction,

wherein the discharge port is arranged downstream of an upstream end of the third blade member in the first direction,

wherein the magnet is arranged downstream of an upstream end of the discharge port in the first direction,

wherein a protruding portion protruding in a radial direction of the rotation shaft is provided on the rotation shaft in an area located downstream of the third blade member and upstream of the magnet in the first direction, the area overlapping the upstream end of the discharge port in the first direction, and

wherein the protruding portion overlaps the discharge port in the first direction and includes a push-out surface configured to convey the developer in the radial direction of the rotation shaft by rotation of the first conveyance screw, the push-out surface being inclined such that, with respect to a plane orthogonal to a rotation direction of the first conveyance screw, one end of the push-out surface near the rotation shaft is located upstream of another end of the push-out surface near a leading end of the protruding portion in the rotation direction.

2 . The developing apparatus according to claim 1 , wherein the protruding portion is continuously arranged at a downstream end of the third blade member in the first direction without a space between the downstream end of the third blade member and the protruding portion.

3 . The developing apparatus according to claim 1 , wherein an outer diameter of the protruding portion is same as an outer diameter of the third blade member.

4 . The developing apparatus according to claim 1 , wherein the magnet is fixedly arranged in the discharge path and arranged on a side of the discharge port with respect to the rotation shaft.

5 . The developing apparatus according to claim 4 , wherein the magnet is fixedly arranged to an inner wall surface of the discharge path.

6 . The developing apparatus according to claim 1 , wherein the magnet is arranged so as to overlap the discharge port in the first direction.

7 . The developing apparatus according to claim 1 , wherein the magnet is arranged in such a manner that an area, in which the developer is attracted to the magnet by a magnetic force of the magnet, reaches the upstream end of the discharge port in the first direction.

8 . The developing apparatus according to claim 1 , wherein a magnetic flux density of the magnet is 50 mT or more and 60 mT or less.

9 . The developing apparatus according to claim 1 , wherein a bottom surface of the discharge path is located vertically above a bottom surface of the first chamber.

10 . The developing apparatus according to claim 1 , wherein an outer diameter of the third blade member is smaller than an outer diameter of the first blade member.

11 . A developing apparatus comprising:

a developer bearing member configured to bear and convey developer containing toner and carrier to develop an electrostatic image formed on an image bearing member;

a developer container including a first chamber and a second chamber separated from the first chamber by a partition wall, the developer container being configured to contain the developer to be supplied to the developer bearing member;

a first conveyance screw arranged in the first chamber, the first conveyance screw including a rotation shaft, a first blade member helically formed on an outer circumference surface of the rotation shaft and configured to convey the developer in a first direction, and a second blade member helically formed on the outer circumference surface of the rotation shaft and configured to convey the developer in a second direction being a direction opposite to the first direction;

a second conveyance screw arranged in the second chamber, and configured to convey the developer in the second direction;

a discharge path arranged outside a circulation path in which the developer circulates between the first chamber and the second chamber and connected to the first chamber to discharge the developer, the discharge path being provided with a discharge port arranged to oppose the rotation shaft and configured to discharge part of the developer conveyed in the discharge path from the discharge path in a direction intersecting with an axial direction of the rotation shaft; and

a magnet,

wherein the first conveyance screw further includes a third blade member arranged in the discharge path, helically formed on the outer circumference surface of the rotation shaft, and configured to convey the developer toward the discharge port,

wherein the second blade member is provided between the first blade member and the third blade member in the axial direction of the rotation shaft,

wherein the discharge port is arranged downstream of an upstream end of the third blade member in a developer conveyance direction of the third blade member,

wherein the magnet is arranged downstream of an upstream end of the discharge port in the developer conveyance direction of the third blade member,

wherein a protruding portion protruding in a radial direction of the rotation shaft is provided on the rotation shaft in an area located downstream of the third blade member and upstream of the magnet in the developer conveyance direction of the third blade member, the area overlapping the upstream end of the discharge port in the developer conveyance direction of the third blade member, and

wherein the protruding portion overlaps the discharge port in the developer conveyance direction of the third blade member and includes a push-out surface configured to convey the developer in the radial direction of the rotation shaft by rotation of the first conveyance screw, the push-out surface being inclined such that, with respect to a plane orthogonal to a rotation direction of the first conveyance screw, one end of the push-out surface near the rotation shaft is located upstream of another end of the push-out surface near a leading end of the protruding portion in the rotation direction.

12 . The developing apparatus according to claim 11 , wherein the protruding portion is continuously arranged at a downstream end of the third blade member in the developer conveyance direction without a space between the downstream end of the third blade member and the protruding portion.

13 . The developing apparatus according to claim 11 , wherein an outer diameter of the protruding portion is same as an outer diameter of the third blade member.

14 . The developing apparatus according to claim 11 , wherein the magnet is fixedly arranged in the discharge path and arranged on a side of the discharge port with respect to the rotation shaft.

15 . The developing apparatus according to claim 14 , wherein the magnet is fixedly arranged to an inner wall surface of the discharge path.

16 . The developing apparatus according to claim 11 , wherein the magnet is arranged so as to overlap the discharge port in the developer conveyance direction of the third blade member.

17 . The developing apparatus according to claim 11 , wherein the magnet is arranged in such a manner that an area, in which the developer is attracted to the magnet by a magnetic force of the magnet, reaches the upstream end of the discharge port in the developer conveyance direction of the third blade member.

18 . The developing apparatus according to claim 11 , wherein a magnetic flux density of the magnet is 50 mT or more and 60 mT or less.

19 . The developing apparatus according to claim 11 , wherein a bottom surface of the discharge path is located vertically above a bottom surface of the first chamber.

20 . The developing apparatus according to claim 11 , wherein an outer diameter of the third blade member is smaller than an outer diameter of the first blade member.