IP Library › Granted Patent US 10,895,816
Granted Patent B2
US 10,895,816 · App. 16/569,279 · Granted Jan 19, 2021

Image forming apparatus and toner set

Inventors: Minoru Masuda (Shizuoka, JP); Hiroshi Yamashita (Shizuoka, JP); Ryota Inoue (Shizuoka, JP); Yuka Mizoguchi (Shizuoka, JP); Daichi Hisakuni (Shizuoka, JP); Tomomi Harashima (Shizuoka, JP)
Assignee: Ricoh Company, Ltd.
G03G9/0926G03G9/0823G03G9/08755G03G9/08782G03G9/09G03G9/091G03G9/0902G03G9/0904G03G9/0906G03G9/0918G03G15/0126G03G15/0131
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Quick Facts
Patent No.
US 10,895,816
App. No.
16/569,279
Granted
Jan 19, 2021
Kind
B2
Abstract

An image forming apparatus is provided that includes: first and second electrostatic latent image bearers; first and second electrostatic latent image forming devices; first and second developing devices configured to develop first and second electrostatic latent images with a colored toner and a special-color toner to form a colored toner image and a special-color toner image, respectively; a primary transfer device configured to transfer the colored toner image and the special-color toner image onto an intermediate image bearer in an overlapping manner to form a composite toner image; a secondary transfer device configured to transfer the composite toner image onto a recording medium; and a fixing device configured to fix the composite toner image thereon. The special-color toner comprises plate-like and/or film-like pigments. An absolute difference in volume resistivity between the special-color toner and the colored toner is 0.30 log Ω cm or less.

Claims (35)

1. An image forming apparatus comprising:

a first electrostatic latent image bearer configured to bear a colored toner image;

a first electrostatic latent image forming device configured to form a first electrostatic latent image on the first electrostatic latent image bearer;

a first developing device containing a colored toner, configured to develop the first electrostatic latent image formed on the first electrostatic latent image bearer with the colored toner to form the colored toner image;

a second electrostatic latent image bearer configured to bear a special-color toner image;

a second electrostatic latent image forming device configured to form a second electrostatic latent image on the second electrostatic latent image bearer;

a second developing device containing a special-color toner, configured to develop the second electrostatic latent image formed on the second electrostatic latent image bearer with the special-color toner to form the special-color toner image;

a primary transfer device configured to transfer the colored toner image and the special-color toner image onto a surface of an intermediate image bearer in an overlapping manner to form a composite toner image;

a secondary transfer device configured to transfer the composite toner image from the intermediate image bearer onto a surface of a recording medium; and

a fixing device configured to fix the composite toner image on the surface of the recording medium,

wherein the colored toner comprises a carbon black,

wherein the special-color toner comprises a metallic pigment, and

wherein an absolute difference in volume resistivity between the special-color toner and the colored toner is 0.30 log Ω cm or less.

2. The image forming apparatus according to claim 1 , wherein the absolute difference in volume resistivity between the special-color toner and the colored toner is 0.20 log Ω cm or less.

3. The image forming apparatus according to claim 1 , wherein the metallic pigment has an average thickness of from 15 to 300 nm.

4. The image forming apparatus according to claim 3 , wherein the metallic pigment has an average thickness of from 25 to 100 nm.

5. The image forming apparatus according to claim 1 ,

wherein, in a cross-section of the special-color toner, an average distance H between adjacent particles among multiple particles of the metallic pigment is 0.5 μm or more.

6. The image forming apparatus according to claim 1 ,

wherein, in a cross-section of the special-color toner, 30% by number or more of multiple particles of the special-color toner have a deviation angle of 20 degrees or more, where the deviation angle is an angle formed between a first particle of the metallic pigment having a longest length in one toner particle and a second particle of the metallic pigment forming a largest angle with the first particle in the one toner particle.

7. The image forming apparatus according to claim 1 , wherein a proportion of metal in the special-color toner is 50% by mass or more.

8. The image forming apparatus according to claim 1 , wherein a volume resistivity of the special-color toner is in a range from 10.5 log Ω cm to 11.5 log Ω cm.

9. A toner set comprising:

a colored toner comprising a carbon black; and

a special-color toner comprising a metallic pigment,

wherein an absolute difference in volume resistivity between the special-color toner and the colored toner is 0.30 log Ω cm or less.

10. The toner set according to claim 9 , wherein the absolute difference in volume resistivity between the special-color toner and the colored toner is 0.20 log Ω cm or less.

11. The toner set according to claim 9 , wherein the metallic pigment has an average thickness of from 15 to 300 nm.

12. The toner set according to claim 11 , wherein the metallic pigment has an average thickness of from 25 to 100 nm.

13. The toner set according to claim 9 ,

wherein, in a cross-section of the special-color toner, an average distance H between adjacent particles among multiple particles of the metallic pigment is 0.5 μm or more.

14. The toner set according to claim 9 ,

wherein, in a cross-section of the special-color toner, 30% by number or more of multiple particles of the special-color toner have a deviation angle of 20 degrees or more, where the deviation angle is an angle formed between a first particle of the metallic pigment having a longest length in one toner particle and a second particle of the metallic pigment forming a largest angle with the first particle in the one toner particle.

15. The toner set according to claim 9 , wherein a proportion of metal in the special-color toner is 50% by mass or more.

16. The toner set according to claim 9 , wherein a volume resistivity of the special-color toner is in a range from 10.5 log Ω cm to 11.5 log Ω cm.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 12, 2019
From: MASUDA, MINORU; YAMASHITA, HIROSHI; INOUE, RYOTA; MIZOGUCHI, YUKA; HISAKUNI, DAICHI; HARASHIMA, TOMOMI
To: RICOH COMPANY, LTD.
Reel/Frame 050361/0873 →
Priority Claims (2)
JP 2018-171446 · Sep 13, 2018 · national
JP 2019-128984 · Jul 11, 2019 · national
Continuity (1)
Related Publication 20200089140A1 · Mar 19, 2020