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Additive for electronic photographic toner, electronic photographic toner and electronic photographic developer

A technology of electrophotography and additives, which is applied in the directions of developer, electrography, transportation and packaging, etc. It can solve the problems that are not mentioned, cannot meet the requirements of hydrophobic characteristics, and cannot know the mixing state, so as to prevent cutting and wear.

Inactive Publication Date: 2002-10-16
RICOH KK
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the definition of its hydrophobicity (below) does not meet the requirements of hydrophobicity
The publication also does not mention: how to treat the inorganic particles, so that the silicone oil adhered after the treatment, or the composition or structure that can play the same function as the silicone oil is effective
Furthermore, from this publication, there is no information about the mixing state of the above-mentioned silicone oil etc. with these inorganic particles having functional components and structures.

Method used

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  • Additive for electronic photographic toner, electronic photographic toner and electronic photographic developer
  • Additive for electronic photographic toner, electronic photographic toner and electronic photographic developer
  • Additive for electronic photographic toner, electronic photographic toner and electronic photographic developer

Examples

Experimental program
Comparison scheme
Effect test

manufacture example

[0144] 3.0 parts of polydimethylsiloxane (manufactured by Shin-Etsu Chemical Co., Ltd.) with a viscosity of 350 cs was dissolved in 100 parts of toluene, and 30 parts by weight of silicon dioxide OX-50 (manufactured by Japan Aerosil Co., Ltd. diameter of 40 nm) and dispersed therein by ultrasonic irradiation. After visually confirming that there were no aggregates, toluene was distilled off using a rotary evaporator. The obtained solid was dried to a constant weight in a decompression drier at a set temperature of 50°C. Further, heat treatment was performed at 200° C. for 2 hours in an electric furnace under nitrogen flow. The resulting powder was pulverized by a jet mill and collected by a bag filter. Based on the Py-GCMS analysis of the residual components obtained from the chloroform treatment of the additive, the hydrophobization treatment dispersion conditions, heat treatment conditions, etc. were adjusted so as to contain a polyorganosiloxane structure.

[0145] Manuf...

Embodiment 2

[0185] In Example 1, the evaluation was performed as in Example 1, except that the hydrophobizing treatment conditions were adjusted so that the chloroform-treated residual component of the fluidizing agent contained at least an organopolysiloxane structure (the above general formula A).

Embodiment 3

[0187] In Example 1, in addition to adjusting the type of hydrophobizing treatment agent, mixing conditions, heat treatment conditions, etc., so that the thermally decomposed components of the chloroform-treated residual components of the fluidizing agent contain at least a cyclic organopolysiloxane structure (the above general Formula B, but 3≤n), the others are evaluated as in Example 1. The Py-GCMS chromatogram of the thermally decomposed components of the chloroform treatment residue of this fluidizing agent is shown in figure 1 .

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PUM

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Abstract

The invention provides a developer and an additive used therein. The use of the developer does not cause the charging device, the developing device, the photoreceptor, and the intermediate transfer body to be contaminated by the developer, and high-quality images can be obtained. Especially after repeated use many times, the correct image density can still be maintained, and base staining rarely occurs. The above-mentioned additive for electrophotographic toner is characterized in that the additive is composed of inorganic particles having an average particle diameter of 100 nm or less after hydrophobization treatment, and contains at least an organopolysiloxane structure in the solvent-treated residual component. .

Description

technical field [0001] The present invention relates to a toner for electrophotography used as a developer for electrostatic image development in electrophotography, electrostatic recording, electrostatic printing, etc., an additive used for the electrophotographic toner, and an electrophotographic developing device using the toner . More specifically, the present invention relates to an additive for electrophotographic toner, a toner for electrophotography, an electrophotographic Use developer and electrophotographic developing device. Also, the present invention relates to an additive for electrophotographic toner, an electrophotographic toner for use in a color copier, a color laser printer, and a machine such as a color plain paper facsimile machine using electrophotographic multi-color image development directly or indirectly. Dispenser, developer for electrophotography, and developing device for electrophotography. Background technique [0...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C09C1/30C09C1/36C09C1/40C09C3/12G03G9/097
CPCB82Y30/00C01P2002/89C01P2004/61C01P2004/64C01P2006/12C01P2006/60C09C1/3081C09C1/3684C09C1/407C09C3/12G03G9/09716G03G9/09725Y10T428/2982Y10T428/2995G03G9/08
Inventor 杉浦英树近藤富美雄
Owner RICOH KK