Claims
- 1. A development apparatus for developing latent electrostatic images to visible images comprising:
- a developer holding means for holding a developer comprising a one-component non-magnetic toner;
- a development member for developing electrostatic latent images to visible images, comprising:
- a support,
- a first coating layer, formed on said support, having a volume resistivity of 10.sup.6 to 10.sup.11 .OMEGA..multidot.cm and comprising an elastic material which comprises as a base material a material selected from the group consisting of (i) nitrile rubber, (ii) epichlorohydrin rubber, (iii) a mixture of nitrile rubber and epichlorohydrin rubber, (iv) urethane resin, (v) silicone resin, and (vi) fluoroplastic, and
- a second coating layer, formed on said first coating layer, having a volume resistivity of 10.sup.6 to 10.sup.11 .OMEGA..multidot.cm and an elongation ratio of 10% to 50% , and comprising a flexible resin;
- a developer supplying means for supplying said developer to said development member; and
- a developer layer regulating means for regulating the thickness of a layer of said developer on said development member.
- 2. The development apparatus for developing electrostatic latent images as claimed in claim 1, wherein said second coating layer further comprises an electroconductive material which is dispersed in said flexible resin.
- 3. The development apparatus for developing electrostatic latent images as claimed in claim 2, wherein said electroconductive material is carbon black.
- 4. The development apparatus for developing electrostatic latent images as claimed in claim 2, wherein said flexible resin is a resin prepared from a solvent-type curable material.
- 5. The development apparatus for developing electrostatic latent images as claimed in claim 1, wherein said second coating layer further comprises an electroconductive material and said flexible resin is a solvent-soluble type fluoroplastic.
- 6. The development apparatus for developing latent electrostatic images as claimed in claim 1, wherein said second coating layer further comprises an electroconductive material and said flexible resin i a resin prepared by cross-linking a fluorine-contained copolymer comprising a fluoro-olefin and a hydroxyl-group containing vinyl ether through a polyfunctional isocyanate.
- 7. The development apparatus for developing latent electrostatic images as claimed in claim 6, wherein said fluorine-contained copolymer contains 25 wt. % to 32 wt. % of fluorine, and has a specific gravity of 1.4 to 1.5, an OH value of 40 to 150 mgKOH/g-resin, an acid value of 0 to 30 mgKOH/g-resin, a number-average molecular weight of 0.4.times.10.sup.4 to 10.times.10.sup.4, a weight-average molecular weight of 0.8.times.10.sup.4 to 20.times.10.sup.4, a glass transition temperature of 0.degree. C. to 70.degree. C., a heat decomposition starting temperature of 240.degree. C. to 250.degree. C., and a solubility parameter of 8 to 9.
- 8. The development apparatus for developing latent electrostatic images as claimed in claim 1, wherein said second coating layer has a thickness of 5 .mu.m to 70 .mu.m.
Priority Claims (2)
Number |
Date |
Country |
Kind |
62-133438 |
May 1987 |
JPX |
|
62-283855 |
Nov 1987 |
JPX |
|
Parent Case Info
This is a division of application Ser. No. 07/199,868, filed on May 27, 1988.
US Referenced Citations (7)
Divisions (1)
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Number |
Date |
Country |
Parent |
199868 |
May 1988 |
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