IP Library Granted Patent US 11,314,180
Granted Patent B2
US 11,314,180 · App. 17/035,683 · Granted Apr 26, 2022

Charging roller

Inventor: Manami Morioka (Tokyo, JP)
Assignee: BRIDGESTONE CORPORATION
G03G15/0233C08G18/10C08G18/246C08G18/4812C08G18/4829C08G18/61C08G18/7621C08J9/0066C08J9/365C08G2110/005C08J2375/08
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Quick Facts
Patent No.
US 11,314,180
App. No.
17/035,683
Granted
Apr 26, 2022
Kind
B2
Abstract

Provided are a charging roller excellent in charging characteristics (charging property/charge imparting property), elasticity/flexibility, durability, and filming resistance, and an image forming apparatus using the charging roller. The charging roller includes a shaft, and at least a base layer and a surface layer on an outer peripheral portion of the shaft in a radial direction, where the surface layer contains large-particle size particles and small-particle size particles having different average particle sizes and further contains hydrophilic particles; the water contact angle of the hydrophilic particles measured with a sessile drop technique is preferably more than 0 degree and 90 degrees or less and more preferably 50 degrees or more and 90 degrees or less; the large-particle size particles are large-particle size acrylic resin particles; the small-particle size particles are small-particle size acrylic resin particles; and the hydrophilic particles are hydrophilic silica particles.

Claims (21)

1. A charging roller comprising a shaft, and at least a base layer and a surface layer on an outer peripheral portion of the shaft in a radial direction, wherein

the surface layer contains large-particle size particles and small-particle size particles having different average particle sizes and further contains hydrophilic particles.

2. The charging roller according to claim 1 , wherein a water contact angle of the hydrophilic particles measured with a sessile drop technique is more than 0 degree and 90 degrees or less.

3. The charging roller according to claim 2 , wherein the large-particle size particles are large-particle size acrylic resin particles.

4. The charging roller according to claim 2 , wherein the small-particle size particles are small-particle size acrylic resin particles.

5. The charging roller according to claim 2 , wherein the hydrophilic particles are hydrophilic silica particles.

6. The charging roller according to claim 2 , wherein the large-particle size particles are large-particle size particles having an average particle size of 10 μm or more and 20 μm or less, and the small-particle size particles are small-particle size particles having an average particle size of 2 μm or more and less than 10 μm.

7. The charging roller according to claim 2 , wherein the hydrophilic particles are hydrophilic particles having an average particle size of 2 nm or more and 10 μm or less.

8. The charging roller according to claim 2 , wherein the surface layer contains a urethane resin, and the surface layer contains 5 parts by mass or more and 30 parts by mass or less of the large-particle size particles with respect to 100 parts by mass of the urethane resin.

9. The charging roller according to claim 2 , wherein the surface layer contains a urethane resin, and the surface layer contains 15 parts by mass or more and 75 parts by mass or less of the small-particle size particles with respect to 100 parts by mass of the urethane resin.

10. The charging roller according to claim 2 , wherein the surface layer contains a urethane resin, and the surface layer contains 2 parts by mass or more and 15 parts by mass or less of the hydrophilic particles with respect to 100 parts by mass of the urethane resin.

11. The charging roller according to claim 1 , wherein a water contact angle of the hydrophilic particles measured with a sessile drop technique is 50 degrees or more and 90 degrees or less.

12. The charging roller according to claim 1 , wherein the large-particle size particles are large-particle size acrylic resin particles.

13. The charging roller according to claim 1 , wherein the small-particle size particles are small-particle size acrylic resin particles.

14. The charging roller according to claim 1 , wherein the hydrophilic particles are hydrophilic silica particles.

15. The charging roller according to claim 1 , wherein the large-particle size particles are large-particle size particles having an average particle size of 10 μm or more and 20 μm or less, and the small-particle size particles are small-particle size particles having an average particle size of 2 μm or more and less than 10 μm.

16. The charging roller according to claim 1 , wherein the hydrophilic particles are hydrophilic particles having an average particle size of 2 nm or more and 10 μm or less.

17. The charging roller according to claim 1 , wherein the surface layer contains a urethane resin, and the surface layer contains 5 parts by mass or more and 30 parts by mass or less of the large-particle size particles with respect to 100 parts by mass of the urethane resin.

18. The charging roller according to claim 1 , wherein the surface layer contains a urethane resin, and the surface layer contains 15 parts by mass or more and 75 parts by mass or less of the small-particle size particles with respect to 100 parts by mass of the urethane resin.

19. The charging roller according to claim 1 , wherein the surface layer contains a urethane resin, and the surface layer contains 2 parts by mass or more and 15 parts by mass or less of the hydrophilic particles with respect to 100 parts by mass of the urethane resin.

20. An image forming apparatus using the charging roller according to claim 1 .

Assignments (2)
ABSORPTION-TYPE COMPANY SPLIT Recorded Aug 26, 2022
From: BRIDGESTONE CORPORATION
To: ARCHEM INC.
Reel/Frame 061328/0297 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 29, 2020
From: MORIOKA, MANAMI
To: BRIDGESTONE CORPORATION
Reel/Frame 053909/0864 →
Priority Claims (1)
JP JP2019-182446 · Oct 2, 2019 · national
Continuity (1)
Related Publication 20210103228A1 · Apr 8, 2021