IP Library › Granted Patent US 11,835,878
Granted Patent B2
US 11,835,878 · App. 18/188,567 · Granted Dec 5, 2023

Electrophotographic roller, process cartridge and electrophotographic image forming apparatus

Inventors: Katsuya Kodama (Kanagawa, JP); Toshiro Suzuki (Shizuoka, JP); Kenichi Yazawa (Shizuoka, JP); Atsushi Uematsu (Shizuoka, JP)
Assignee: CANON KABUSHIKI KAISHA
G03G15/0216G03G15/1685G03G21/1814G03G15/0233G03G2215/00135G03G2215/2051
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Quick Facts
Patent No.
US 11,835,878
App. No.
18/188,567
Granted
Dec 5, 2023
Kind
B2
Abstract

An electrophotographic roller includes: a mandrel and an elastic layer on the mandrel, and having a crown shape in which a diameter decreases from a central position O in a longitudinal direction of the mandrel toward an end portion. When a position of the end portion in the longitudinal direction of the elastic layer is defined as X2, a position between the O and the X2 is defined as Xl, a distance between the O and the X1 is defined as L1, and a distance between the X1 and the X2 is defined as L2, L1=0.6×(L1+L2). When outer diameters of the electrophotographic roller at O, X1 and X2 are defined as Do, DX1 and DX2, respectively, and Z1=(Do−DX1)/2 and Z2=(DX1−DX2)/2 are defined, Z1, Z2, L1 and L2 satisfy (Z2/L2)<1.931×(Z1/L1).

Claims (42)

1. An electrophotographic roller comprising a mandrel and an elastic layer on the mandrel, wherein

when defining a central position in a longitudinal direction of the mandrel as a central position O, and defining a position of the end portion of the elastic layer in a longitudinal direction of the elastic layer is defined as an end position X2, the elastic layer has a crown shape in which a diameter of the elastic layer decreases from the central position O to the end position X2,

when

a position between the central position O and the position X2 is defined as X1,

a distance between the central position O and the position X1 is defined as L1, and

a distance between the position X1 and the end position X2 is defined as L2, L1=0.6×(L1+L2), and

when

outer diameters of the electrophotographic roller at the central position O,

the position X1 and the end position X2 are defined as Do, DX1 and DX2, respectively, and Z1 and Z2 are defined as follows:

Z 1=( Do−DX 1)/2, and

Z 2=( DX 1− DX 2)/2,

Z1, Z2, L1 and L2 satisfy a relationship of 1.000<[(Z2/L2)/(Z1/L1)]<1.931, and wherein

when a range from the central position O to the position X1 is defined as central region, and a range from the position X1 to the end position X2 is defined as an end region, a curvature of the elastic layer in the end region is smaller than a curvature of the elastic layer in the central region.

2. The electrophotographic roller according to claim 1 , wherein (Do−DX2)/2 is 0.01 mm or larger and 0.26 mm or smaller.

3. The electrophotographic roller according to claim 1 , wherein an elastic deformation power of the elastic layer is 56% or larger.

4. The electrophotographic roller according to claim 3 , wherein the elastic deformation power of the elastic layer is 65% or larger.

5. The electrophotographic roller according to claim 1 , wherein the elastic layer contains at least one selected from the group consisting of natural rubber, butadiene rubber, styrene-butadiene rubber (SBR), nitrile rubber, ethylene propylene rubber (EPDM), chloroprene rubber (CR), acrylonitrile butadiene rubber (NBR), epichlorohydrin rubber, butyl rubber, silicone rubber, urethane rubber, fluorine rubber and chlorine rubber.

6. The electrophotographic roller according to claim 1 , wherein the elastic layer contains acrylonitrile butadiene rubber.

7. The electrophotographic roller according to claim 1 , wherein the elastic layer contains an electroconductive particle.

8. The electrophotographic roller according to claim 7 , wherein the electroconductive particle includes an electroconductive carbon.

9. The electrophotographic roller according to claim 1 , wherein the elastic layer has an Asker C hardness of 10 degrees or higher and 70 degrees or lower.

10. The electrophotographic roller according to claim 1 , wherein the mandrel contains a metal selected from the group consisting of iron, copper, stainless steel, aluminum, nickel and an alloy thereof.

11. The electrophotographic roller according to claim 1 , wherein a length of the elastic layer in the longitudinal direction is 220 mm or longer and 340 mm or shorter.

12. The electrophotographic roller according to claim 1 , being a charging roller.

13. An electrophotographic image forming apparatus comprising:

an electrophotographic photosensitive member; and an electrophotographic roller in contact with the electrophotographic photosensitive member, wherein

the electrophotographic roller comprises a mandrel and an elastic layer on the mandrel, wherein

when defining a central position in a longitudinal direction of the mandrel as a central position O, and defining a position of the end portion of the elastic layer in a longitudinal direction of the elastic layer is defined as an end position X2, the elastic layer has a crown shape in which a diameter of the elastic layer decreases from the central position O to the end position X2,

when

a position between the central position O and the end position X2 is defined as X1,

a distance between the central position O and the position X1 is defined as L1, and

a distance between the position X1 and the end position X2 is defined as L2, L1=0.6×(L1+L2), and

when

outer diameters of the electrophotographic roller at the central position O,

the position X1 and the end position X2 are defined as Do, DX1 and DX2, respectively, and Z1 and Z2 are defined as follows:

Z 1=( Do−DX 1)/2, and

Z 2=( DX 1− DX 2)/2,

Z1, Z2, L1 and L2 satisfy a relationship of 1.000<[(Z2/L2)/(Z1/L1)]<1.931, and wherein

when a range from the central position O to the position X1 is defined as central region, and a range from the position X1 to the end position X2 is defined as an end region, a curvature of the elastic layer in the end region is smaller than a curvature of the elastic layer in the central region.

14. The electrophotographic image forming apparatus according to claim 13 , wherein the electrophotographic roller is a charging roller that electrically charges the electrophotographic photosensitive member.

15. The electrophotographic image forming apparatus according to claim 14 , wherein the electrophotographic photosensitive member is driven, and the charging roller rotates following the rotation of the electrophotographic photosensitive member.

16. The electrophotographic image forming apparatus according to claim 13 , wherein a pressure of 200 to 500 g is applied to both ends of the mandrel of the electrophotographic roller.

Priority Claims (2)
JP 2021-093293 · Jun 2, 2021 · national
JP 2022-076789 · May 6, 2022 · national
Continuity (2)
Division 17664895 · May 25, 2022
Related Publication 20230221660A1 · Jul 13, 2023
Cited By (4)
US 12,493,251 US 12,498,646 US 12,687,798 US 12,724,358