Electrostatic image developing carrier, electrostatic image developing developer, electrostatic image developing developer cartridge, process cartridge, and image forming apparatus
View Patent ↗An electrostatic image developing carrier including at least a core material and a coating resin layer which coats the surface of the core material, the resin layer comprising a thermoplastic resin having an alicyclic group, a thermal reduction in accordance with the TGA method being in the range of 0.5 weight % to 5 weight % of the whole of the carrier in the range of 100° C. to 400° C., and further an endothermic quantity of the whole of the carrier in accordance with the DTA method is in the range of 7 mJ/g to 40 mJ/g in the range of 100° C. to 400° C.
1. An electrostatic image developing carrier comprising at least
a core material and
a coating resin layer which coats the surface of the core material, wherein
the resin layer comprises a thermoplastic resin having an alicyclic group,
a thermal reduction of the carrier in accordance with the TGA method is in the range of 0.5 weight % to 5 weight % of the whole of the carrier in the range of 100° C. to 400° C., and further
an endothermic quantity of the whole of the carrier in accordance with the DTA method is in the range of 7 mJ/g to 40 mJ/g in the range of 100° C. to 400° C., and
the thermoplastic resin having the alicyclic group is a copolymer made from a monomer having the alicyclic group and a nitrogen-containing acrylic monomer, and
the alicyclic group of the thermoplastic resin is oriented away from the surface of the core material.
2. The electrostatic image developing carrier of claim 1 , wherein the endothermic quantity is in the range of 7 mJ/g to 30 mJ/g.
3. The electrostatic image developing carrier of claim 1 , wherein the thermal reduction is in the range of 2.0 weight % to 4.0 weight % of the whole of the carrier.
4. The electrostatic image developing carrier of claim 1 , wherein a peel amount of the coating resin layer is 2,000 ppm or less.
5. The electrostatic image developing carrier of claim 4 , wherein the peel amount of the coating resin layer is 1,500 ppm or less.
6. The electrostatic image developing carrier of claim 1 , obtained by
forming the coating resin layer comprising a thermoplastic resin having the alicyclic group on the surface of the core material, and then
subjecting the resultant to thermal treatment at a temperature not lower than the glass transition temperature of the thermoplastic resin having the alicyclic group.
7. The electrostatic image developing carrier of claim 6 , wherein, in the case that the glass transition temperature of the thermoplastic resin having the alicyclic group is 100° C. or lower, the temperature for the thermal treatment is set to a temperature which is the glass transition temperature or higher and is 100° C. or lower.
8. The electrostatic image developing carrier of claim 1 , wherein the monomer having the alicyclic group is an acrylic monomer having the alicyclic group.
9. The electrostatic image developing carrier of claim 1 , wherein the coating resin layer comprises electroconductive powder.
10. An electrostatic image developing developer comprising a toner and a carrier, the carrier being the electrostatic image developing carrier of claim 1 .
11. The electrostatic image developing developer of claim 10 , further comprising a particulate additive, the volume-average particle diameter of the additive being in the range of 200 nm to 7 μm.
12. The electrostatic image developing carrier of claim 9 , wherein the electroconductive powder is made of carbon black.
13. The electrostatic image developing carrier of claim 1 , wherein after the surface of the core material is coated with the coating resin layer comprising a thermoplastic resin having an alicyclic group, the resultant carrier is subjected to thermal treatment at a temperature not lower than the glass transition temperature of the thermoplastic resin having the alicyclic group.