Charging roll for electrophotographic device and method for manufacturing charging roll for electrophotographic device
The charging roll 10 for an electrophotographic device includes a shaft 12 , an elastic layer 14 formed on the outer peripheral surface of the shaft 12 , and a top layer 16 formed on the outer peripheral surface of the elastic layer 14 . The elastic layer 14 is constituted of a high-resistance first phase 14 a in which the surface resistance value is 1.6×10 14 Ω·cm to 8.8×10 15 Ω·cm (inclusive), and a low-resistance second phase 14 b in which the surface resistance value is 1.3×10 2 Ω·cm to 4.9×10 3 Ω·cm (inclusive). The second phase 14 b contains two types of carbon black: carbon black A, of which the amount of DBP absorption is 115 cm 3 /100 g to 160 cm 3 /100 g (inclusive); and carbon black B, of which the amount of DBP absorption is 70 cm 3 /100 g to 110 cm 3 /100 g (inclusive).
1 . A charging roll for an electrophotographic device comprising:
a shaft;
an elastic layer formed on an outer peripheral surface of the shaft; and
a top layer formed on an outer peripheral surface of the elastic layer,
wherein the elastic layer is constituted of a high-resistance first phase in which a surface resistance value is 1.6×10 14 Ω·cm or more and 8.8×10 15 Ω·cm or less and a low-resistance second phase in which a surface resistance value is 1.3×10 2 Ω·cm or more and 4.9×10 3 Ω·cm or less, and
the second phase contains two types of carbon black: carbon black A, of which an amount of dibutyl phthalate (DBP) absorption is 115 cm 3 /100 g or more and 160 cm 3 /100 g or less; and carbon black B, of which an amount of DBP absorption is 70 cm 3 /100 g or more and 110 cm 3 /100 g or less.
2 . The charging roll for an electrophotographic device according to claim 1 ,
wherein, in the elastic layer, the first phase constitutes a sea phase, and the second phase constitutes an island phase.
3 . The charging roll for an electrophotographic device according to claim 1 ,
wherein a content ratio of the carbon black A to the carbon black B in the second phase is 3.0 or more and 10.0 or less in terms of mass ratio.
4 . The charging roll for an electrophotographic device according to claim 1 ,
wherein the carbon black A has a specific surface area of 25 m 2 /g or more and 75 m 2 /g or less, and the carbon black B has a specific surface area of 140 m 2 /g or more and 180 m 2 /g or less.
5 . The charging roll for an electrophotographic device according to claim 1 ,
wherein the carbon black A has an average particle diameter of 35 nm or more and 75 nm or less, and the carbon black B has an average particle diameter of 20 nm or more and 30 nm or less.
6 . The charging roll for an electrophotographic device according to claim 1 ,
wherein, relative to 100 parts by mass of a polymer component in the elastic layer, a content of the carbon black A is 5 parts by mass or more and 75 parts by mass or less, and a content of the carbon black B is 1.5 parts by mass or more and 20 parts by mass or less.
7 . The charging roll for an electrophotographic device according to claim 1 ,
wherein the first phase contains a non-polar polymer, and the second phase contains a polar polymer.
8 . The charging roll for an electrophotographic device according to claim 7 ,
wherein the non-polar polymer is isoprene rubber or natural rubber, and the polar polymer is nitrile rubber or hydrin rubber.
9 . The charging roll for an electrophotographic device according to claim 1 ,
wherein, in an arbitrary 5 μm×5 μm range of the elastic layer, an abundance ratio of the first phase to the second phase is 0.3 or more and 20 or less in terms of area ratio.
10 . The charging roll for an electrophotographic device according to claim 1 ,
wherein the first phase is interposed between the second phase and the top layer.
11 . A method for manufacturing the charging roll for an electrophotographic device according to claim 1 ,
wherein, with respect to a polymer component constituting the second phase, the two types of carbon black: the carbon black A and the carbon black B are kneaded together, and then a polymer component constituting the first phase is kneaded in.