IP Library Granted Patent US 9,235,180
Granted Patent B2
US 9,235,180 · App. 13/658,455 · Granted Jan 12, 2016

Image forming apparatus

Inventors: Takuya Ishigai (Hino, JP); Naoki Yamamoto (Toyohashi, JP)
Assignee: KONICA MINOLTA, INC.
G03G15/55G03G15/2057
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Quick Facts
Patent No.
US 9,235,180
App. No.
13/658,455
Granted
Jan 12, 2016
Kind
B2
Abstract

A fixing device thermally fixes an unfixed toner image onto a recording sheet and includes: a rotatable heating element that is endless and includes a resistive heating layer that generates heat upon application of voltage; a power source for placing voltage across the resistive heating layer; an ammeter for measuring the electric current flowing through the resistive heating layer, and a controller for determining whether the resistive heating layer has a scratch by monitoring an amount of change between a value of electric current that flows through the resistive heating in absence of a scratch and a value of electric current actually measured by the ammeter. The resistive heating layer exhibits resistivity anisotropy satisfying R1<R2, where R1 and R2 denote a volume resistivity of the resistive heating layer in a direction of voltage application and that in a direction perpendicular to the direction of voltage application, respectively.

Claims (29)

1. A fixing device for thermally fixing an unfixed toner image onto a recording sheet, the fixing device comprising:

a heating belt that is endless and includes a resistive heating layer configured to generate heat to fuse the unfixed toner image onto the recording sheet;

an electrifier that applies voltage across the resistive heating layer in a circumferential direction of the heating belt, to heat the resistive heating layer;

a detector that measures a value of electric current flowing through the resistive heating layer along the direction of voltage application for heating the resistive heating layer; and

a determiner that determines whether or not the resistive heating layer has a scratch by monitoring an amount of change between a reference value predetermined for an electric current flowing through the resistive heating layer having no scratch and an actual value of the electric current measured by the detector,

wherein the resistive heating layer exhibits resistivity anisotropy satisfying R1<R2, where R1 denotes a volume resistivity of the resistive heating layer in the direction of voltage application, and R2 denotes a volume resistivity of the resistive heating layer in a direction perpendicular to the direction of voltage application.

2. The fixing device according to claim 1 , wherein the resistive heating layer is configured so that an amount of change between the reference value and a value of electric current flowing in presence of a scratch extending perpendicular to the direction of the voltage application exceeds a lower limit for the determiner to make the determination.

3. The fixing device according to claim 1 , wherein the resistive heating layer includes:

a heat-resistant resin; and

conductive filler particles dispersed in the heat-resistant resin so as to be oriented in the direction of the voltage application.

4. The fixing device according to claim 1 , wherein the resistive heating layer is configured to exhibit a value of R2/R1 equal to 4 or greater.

5. An image forming apparatus comprising:

a fixing device configured to thermally fix an unfixed image on a recording sheet, wherein the fixing device includes:

a heating belt that is endless and includes a resistive heating layer configured to generate heat to fuse the unfixed image on the recording sheet;

an electrifier that applies voltage across the resistive heating layer in a circumferential direction of the heating belt, to heat the resistive heating layer;

a detector that measures a value of electric current flowing through the resistive heating layer along the direction of voltage application for heating the resistive heating layer; and

a determiner that determines whether or not the resistive heating layer has a scratch by monitoring an amount of change between a reference value predetermined for an electric current flowing through the resistive heating layer having no scratch and an actual value of the electric current measured by the detector,

wherein the resistive heating layer exhibits resistivity anisotropy satisfying R1<R2, where R1 denotes a volume resistivity of the resistive heating layer in the direction of voltage application, and R2 denotes a volume resistivity of the resistive heating layer in a direction perpendicular to the direction of voltage application.

6. The image forming apparatus according to claim 5 , wherein the resistive heating layer is configured so that an amount of change between the reference value and a value of electric current flowing in presence of a scratch extending perpendicular to the direction of the voltage application exceeds a lower limit for the determiner to make the determination.

7. The image forming apparatus according to claim 5 , wherein the resistive heating layer includes:

a heat-resistant resin; and

conductive filler particles dispersed in the heat-resistant resin so as to be oriented in the direction of the voltage application.

8. The image forming apparatus according to claim 5 , wherein the resistive heating layer is configured to exhibit a value of R2/R1 equal to 4 or greater.

9. A scratch detection method of a fixing device that thermally fixes an unfixed image on a recording sheet and that includes a heating belt including a resistive heating layer configured to generate heat upon being electrified, the scratch detection method comprising:

applying voltage across the resistive heating layer in a circumferential direction of the heating belt, to heat the resistive heating layer;

measuring a value of electric current flowing through the resistive heating layer along the direction of voltage application for heating the resistive heating layer;

determining whether or not the resistive heating layer has a scratch, by monitoring an amount of change between a reference value predetermined for an electric current flowing through the resistive heating layer having no scratch and an actual value of the measured electric current;

wherein the resistive heating layer exhibits resistivity anisotropy satisfying R1<R2, where R1 denotes a volume resistivity of the resistive heating layer in the direction of voltage application, and R2 denotes a volume resistivity of the resistive heating layer in a direction perpendicular to the direction of voltage application.

10. The scratch detection method according to claim 9 , wherein the resistive heating layer is configured so that an amount of change between the reference value and a value of electric current flowing in presence of a scratch extending perpendicular to the direction of the voltage application exceeds a lower limit for the determiner to make the determination.

Assignments (2)
MERGER Recorded Mar 5, 2014
From: KONICA MINOLTA BUSINESS TECHNOLOGIES, INC.
To: KONICA MINOLTA, INC.
Reel/Frame 032390/0362 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 12, 2012
From: ISHIGAI, TAKUYA; YAMAMOTO, NAOKI
To: KONICA MINOLTA BUSINESS TECHNOLOGIES, INC.
Reel/Frame 029277/0906 →
Priority Claims (1)
JP 2011-233131 · Oct 24, 2011 · national
Continuity (1)
Related Publication 20130101302A1 · Apr 25, 2013