Developing device and image forming apparatus having a developing roller with a grooved sleeve
A developing device includes a developing roller and a blade. The developing roller includes: a developing sleeve which rotates while holding two-component developer composed of toner and magnetic carrier on the outer surface having a plurality of grooves extending in parallel to an axis of the rotation; and a magnetic member, provided inside the developing sleeve in such a manner as to be unrotatable, for attracting the two-component developer onto the outer surface of the developing sleeve. The blade is provided outside the rotating sleeve with a gap from the outer surface of the developing sleeve for scraping off a part of the two-component developer on the outer surface of the developing sleeve. Also, the magnetic member includes a magnet for controlling magnetic flux density in the gap to range from 70 mT to 150 mT. This allows preventing image degradation caused by generation of development memory.
1. A developing device comprising:
a developing roller, including:
a rotating sleeve which rotates while holding two-component developer composed of toner and magnetic carrier on an outer surface having a plurality of grooves that extend in a direction parallel to an axis of the rotation, wherein a pitch between adjacent grooves on the outer surface of the rotating sleeve ranges from 1.25 mm to 4 mm, wherein a width of each groove ranges from 0.2 mm to 0.35 mm, and wherein a depth of each of the grooves ranges from 0.08 mm to 5.00 mm, and
a magnetic member, provided inside the rotating sleeve in such a manner as to be unrotatable, for attracting the two-component developer onto the outer surface of the rotating sleeve; and
a blade, provided outside the rotating sleeve with a gap from the outer surface of the rotating sleeve, for scraping off a part of the two-component developer,
the magnetic member including a magnet for controlling a magnetic flux density in the gap to range from 85 mT to 150 mT.
2. The developing device as set forth in claim 1 , wherein:
each of the grooves has a rectangular shape in a cross section of the rotating sleeve when the rotating sleeve is cut by a plane perpendicular to the axis.
3. The developing device as set forth in claim 1 , wherein:
the magnet is provided between the axis and the blade.
4. The developing device as set forth in claim 3 , wherein:
the blade is made of a magnetic material.
5. The developing device as set forth in claim 1 , wherein:
a volume average particle size of the toner ranges from 4 μm to 7 μm.
6. The developing device as set forth in claim 1 , wherein:
a volume average particle size of the magnetic carrier ranges from 20 μm to 60 μm.
7. The developing device as set forth in claim 1 , wherein:
the magnetic carrier is obtained by coating ferrite-based core particles with thermosetting resin.
8. The developing device as set forth in claim 1 , wherein:
saturated magnetization of the magnetic carrier ranges from 30 emu/g to 70 emu/g.
9. The developing device as set forth in claim 1 , wherein the magnetic flux density in the gap ranges from 100 mT to 150 mT.
10. An image forming apparatus comprising a developing device including:
a developing roller that includes:
a rotating sleeve which rotates while holding two-component developer composed of toner and magnetic carrier on an outer surface having a plurality of grooves that extend in a direction parallel to an axis of the rotation, wherein a pitch between adjacent grooves on the outer surface of the rotating sleeve ranges from 1.25 mm to 4 mm, wherein a width of each groove ranges from 0.2 mm to 0.35 mm, and wherein a depth of each of the grooves ranges from 0.08 mm to 5.00 mm, and
a magnetic member, provided inside the rotating sleeve in such a manner as to be unrotatable, for attracting the two-component developer onto the outer surface of the rotating sleeve; and
a blade, provided outside the rotating sleeve with a gap from the outer surface of the rotating sleeve, for scraping off a part of the two-component developer,
the magnetic member including a magnet for controlling the magnetic flux density in the gap to range from 85 mT to 150 mT.
11. The image forming apparatus as set forth in claim 10 , wherein the magnetic flux density in the gap ranges from 100 mT to 150 mT.