CHARGING DEVICE, PROCESS CARTRIDGE, AND IMAGE FORMING APPARATUS
A charging device includes: a charging member that charges an electrophotographic photoconductor by a contact charging method and includes a conductive substrate, an elastic layer provided on the conductive substrate, and a surface layer that is provided on the elastic layer and contains irregularities-forming particles that have a number particle size distribution with two or more maximum values when observed, from a surface of the surface layer, and a voltage application unit that applies, to the charging member, an AC voltage superimposed on a DC voltage.
1 . A charging device comprising:
a charging member that charges an electrophotographic photoconductor by a contact charging method and includes a conductive substrate, an elastic layer provided on the conductive substrate, and a surface layer that is provided on the elastic layer and contains irregularities-forming particles that have a number particle size distribution with two or more maximum values when observed from a surface of the surface layer; and
a voltage application unit that applies, to the charging member, an AC voltage superimposed on a DC voltage.
2 . The charging device according to claim 1 , wherein
the two or more maximum values of the irregularities-forming particles include a maximum value P1 on a largest diameter side and a maximum value P2 on a second largest diameter side, and a difference (P1−P2) between the maximum values P1 and P2 is from 5 μm to 27 μm.
3 . The charging device according to claim 2 , wherein
the difference (P1−P2) between the P1 and P2 values is from 10 μm to 22 μm.
4 . The charging device according to claim 2 , wherein
the P1 value is from 10 μm to 32 μm and the P2 value is from 5 μm to 11 μm.
5 . A charging device comprising:
a charging member that charges an electrophotographic photoconductor by a contact charging method and includes a conductive substrate, an elastic layer provided on the conductive substrate, and a surface layer that is provided on the elastic layer and contains two or more types of irregularities-forming particles having different volume average particle diameters; and
a voltage application unit that applies, to the charging member, an AC voltage superimposed on a DC voltage.
6 . The charging device according to claim 5 , wherein
the two or more types of irregularities-forming particles having different volume average particle diameters include irregularities-forming particles having a largest volume average particle diameter R1 and irregularities-forming particles having a second largest volume average particle diameter R2, and a difference (R1−R2) between the volume average particle diameters R1 and R2 is from 5 μm to 25 μm.
7 . The charging device according to claim 6 , wherein
the difference (R1−R2) between the average particle diameters R1 and R2 is from 10 μm to 20 μm.
8 . The charging device according to claim 6 , wherein
the average particle diameter R1 is from 10 μm to 30 μm, and the average particle diameter R2 is from 5 μm to 10 μm.
9 . The charging device according to claim 1 , wherein
the irregularities-forming particles are polyamide particles.
10 . The charging device according to claim 1 , wherein
the surface layer has a total content of the irregularities-forming particles of 5 parts by weight to 30 parts by weight based on 100 parts by weight of a binder resin contained in the surface layer.
11 . A process cartridge comprising:
an electrophotographic photoconductor; and
the charging device according to claim 1 ,
the process cartridge being attachable to and detachable from an image forming apparatus.
12 . An image forming apparatus comprising:
an electrophotographic photoconductor;
the charging device according to claim 1 that charges a surface of the electrophotographic photoconductor;
a developing device'that forms an electrostatic image on the charged surface of the electrophotographic photoconductor;
a latent image forming device that forms a latent image on the charged surface of the electrophotographic photoconductor;
a developing device that develops the latent image formed on the surface of the electrophotographic photoconductor with a developer containing toner to form a toner image on the surface of the electrophotographic photoconductor, and
a transfer device that transfers the toner image formed on the surface of the electrophotographic photoconductor to a recording, medium.