Claims
- 1. Carrier particles for use in a two-component dry-type developer for developing latent electrostatic images to visible images, comprising a core material and a silicone resin layer coated on the surface of said core material, said silicone resin layer comprising a silicone resin and, as a fortifying agent against abrasion of said carrier particles, inorganic fortifying filler particles selected from the group consisting of silicon carbide and potassium titanate.
- 2. Carrier particles as claimed in claim 1, wherein the amount of said inorganic fortifying filler particles is in the range of 5 wt.% to 50 wt.% of the total weight of said silicone resin layer, and the average particle size of said inorganic fortifying filler is in the range of 0.1 .mu.m to 1.0 .mu.m.
- 3. Carrier particles as claimed in claim 1, wherein said core material is selected from the group consisting of particles of sand, cobalt, iron, iron oxide, copper, nickel, zinc, aluminum, brass and glass, having an average particle size ranging from 20 .mu.m to 1000 .mu.m.
- 4. Carrier particles as claimed in claim 1, wherein said silicone resin is a room-temperature-setting type silicone resin of the formula ##STR4## wherein R represents hydrogen, halogen, a hydroxy group, a methoxy group, a lower alkyl group with 1 to 4 carbon atoms, or a phenyl group.
- 5. A two-component developer for developing latent electrostatic images to visible images comprising toner particles and carrier particles coated with a silicone resin layer containing as a fortifying agent against abrasion inorganic fortifying filler particles selected from the group consisting of particles of silicon carbide and potassium titanate.
- 6. A two-component developer for developing latent electrostatic images to visible images comprising toner particles and carrier particles coated with a silicone resin layer containing as a fortifying agent against abrasion inorganic fortifying filler particles selected from the group consisting of particles of silicon carbide and potassium titanate, wherein said toner particles contain as a charge polarity control agent a monoazo metal complex dye of the following formula: ##STR5## wherein X, Y and Z independently represent hydrogen, halogen, carboxyl, hydroxyl, nitro, sulfo or sulfonamide; and A.sup.+ represents H.sup.+, K.sup.+, Na.sup.+ or an aliphatic ammonium cation.
- 7. Carrier particles for use in a developer for developing electrostatic latent images, said carrier particles being adapted to carry toner particles on the surfaces of said carrier particles, comprising core particles having an average particle size in the range of 20 to 1000 .mu.m selected from the group consisting of particles of sand, cobalt, iron, iron oxide, copper, nickel, zinc, aluminum, brass and glass, and a coating layer covering each of said core particles, said coating layer consisting essentially of a silicone resin containing dispersed therein filler particles of silicon carbide or potassium titanate, said coating layer having been prepared by coating said core particles with a liquid dispersion of said filler particles dispersed in a solvent solution of said silicone resin and then drying the coating, said filler particles being effective to prevent removal of said coating layer during use of said carrier particles.
- 8. Carrier particles as claimed in claim 7, wherein said silicone resin is a room-temperature-setting type silicone resin containing units of the formula ##STR6## wherein R represents hydrogen, halogen, hydroxy, methoxy, lower alkyl having 1 to 4 carbon atoms, or phenyl.
- 9. Carrier particles as claimed in claim 8, wherein said core particles have an average particle size range in the range of 50 to 500 .mu.m, and said coating layer is heated to a temperature in the range of 200.degree. C. to 300.degree. C. to harden said silicone resin.
- 10. A developer as claimed in claim 5, wherein said carrier particles consist essentially of core particles having an average particle size in the range of 20 to 1000 .mu.m selected from particles of sand, cobalt, iron, iron oxide, copper, nickel, zinc, aluminum, brass and glass, and said silicone resin layer consists essentially of a silicone resin containing not more than 30 wt.% of unhardened silicone resin, and from 5 to 50 wt.%, based on the total weight of said coating layer, of said filler particles made of silicon carbide or potassium titanate, said filler particles having an average particle size in the range of 0.1 .mu.m to 1.0 .mu.m and wherein said toner particles are mixed with said carrier particles and cover 30% to 90% of the silicone-coated surface of said carrier particles.
- 11. A developer as claimed in claim 6, wherein said toner particles consist essentially of a resin, a coloring agent, and said monoazo metal complex dye.
- 12. A developer as claimed in claim 11, wherein said resin is polystyrene and said coloring agent is carbon black.
- 13. A developer as claimed in claim 10, wherein said toner particles have 0.2 to 2.0 wt.% of a surface lubricating polymer on the surfaces of said toner particles.
Priority Claims (2)
| Number |
Date |
Country |
Kind |
| 57-57313 |
Apr 1982 |
JPX |
|
| 57-89877 |
May 1982 |
JPX |
|
Parent Case Info
This application is a continuation-in-part of U.S. Ser. No. 479 406, filed Mar. 28, 1983 now abandoned.
US Referenced Citations (1)
| Number |
Name |
Date |
Kind |
|
4245022 |
Sadamatsu et al. |
Jan 1981 |
|
Foreign Referenced Citations (2)
| Number |
Date |
Country |
| 46820 |
Apr 1977 |
JPX |
| 0191650 |
Nov 1982 |
JPX |
Continuation in Parts (1)
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Number |
Date |
Country |
| Parent |
479406 |
Mar 1983 |
|