IP Library › Granted Patent US 9,304,422
Granted Patent B2
US 9,304,422 · App. 14/571,167 · Granted Apr 5, 2016

Magnetic toner

Inventors: Takashi Matsui (Mishima, JP); Michihisa Magome (Mishima, JP); Kozue Uratani (Mishima, JP); Atsuhiko Ohmori (Suntou-gun, JP)
Assignee: CANON KABUSHIKI KAISHA
G03G9/083G03G9/0806G03G9/0819G03G9/0821G03G9/0825G03G9/08711G03G9/09725
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Quick Facts
Patent No.
US 9,304,422
App. No.
14/571,167
Granted
Apr 5, 2016
Kind
B2
Abstract

It is intended to provide magnetic toner that produces a stable image density in long-term use and can prevent ghosting under conditions of low-temperature and low-humidity. The present invention provides magnetic toner including magnetic toner particles each containing a binder resin, a magnetic material and a releasing agent, and silica fine particles, wherein the silica fine particles include silica fine particles A and B, the silica fine particles A have a number-average particle size of 5-20 nm as primary particles, the silica fine particles B are produced by a sol-gel method, and have a number-average particle size of 40-200 nm as primary particles, an abundance ratio of secondary particles of the silica fine particles B is 5-40% by number, and a coverage ratio X1 of the surface of the magnetic toner particles with the silica fine particles determined by ESCA is 40.0-75.0% by area.

Claims (16)

1. Magnetic toner comprising

magnetic toner particles each containing a binder resin, a magnetic material and a releasing agent, and

silica fine particles present on the surfaces of the magnetic toner particles, wherein

the silica fine particles comprise silica fine particles A and silica fine particles B,

the silica fine particles A have a number-average particle size (D1) of 5 nm or larger and 20 nm or smaller as primary particles,

the silica fine particles B are produced by a sol-gel method, and have a number-average particle size (D1) of 40 nm or larger and 200 nm or smaller as primary particles,

an abundance ratio of secondary particles of the silica fine particles B is 5% by number or more and 40% by number or less, and

a coverage ratio X1 of the surface of the magnetic toner particles with the silica fine particles determined by electron spectroscopy for chemical analysis (ESCA) is 40.0% by area or more and 75.0% by area or less.

2. The magnetic toner according to claim 1 , wherein when a theoretical coverage ratio of the surface of the magnetic toner with the silica fine particles is defined as X2, a diffusion index represented by the following Expression 1 satisfies the following Expression 2:

Diffusion index= X 1/ X 2  (Expression 1)

Diffusion index≧−0.0042× X 1+0.62.  (Expression 2)

3. The magnetic toner according to claim 1 , wherein with respect to 100 parts by mass of the magnetic toner particles,

a total amount of the silica fine particles is 0.6 parts by mass or larger and 2.0 parts by mass or smaller,

an amount of the silica fine particles A is 0.5 parts by mass or larger and 1.5 parts by mass or smaller, and

an amount of the silica fine particles B is 0.1 parts by mass or larger and 0.5 parts by mass or smaller.

4. The magnetic toner according to claim 1 , wherein the magnetic toner has a total energy of 280 mJ/(g/mL) or higher and 355 mJ/(g/mL) or lower.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 5, 2015
From: MATSUI, TAKASHI; MAGOME, MICHIHISA; URATANI, KOZUE; OHMORI, ATSUHIKO
To: CANON KABUSHIKI KAISHA
Reel/Frame 035791/0974 →
Priority Claims (1)
JP 2013-269544 · Dec 26, 2013 · national
Continuity (1)
Related Publication 20150185644A1 · Jul 2, 2015