IP Library Granted Patent US 9,835,995
Granted Patent B2
US 9,835,995 · App. 15/238,396 · Granted Dec 5, 2017

Fuser device and image forming apparatus

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Quick Facts
Patent No.
US 9,835,995
App. No.
15/238,396
Granted
Dec 5, 2017
Kind
B2
Abstract

A fuser device fusing a developer image on a medium includes a stable first unit, a movable second unit, and a movement mechanism moving the second unit between first and second positions. The first unit includes an endless first belt and a rotatably fuser member about a rotation shaft inside the first belt, the second unit includes an endless second belt, a pressure application member rotatably held about another rotation shaft displaceable inside the second belt, and a first bias member that biases the pressure application member toward the fuser member, and the pressure application member at the first position presses the fuser member such that a nip part is formed between the pressure application member and the fuser member, and at the second position, is detached from the fuser member so that the nip part is eliminated.

Claims (112)

1. A fuser device that fuses a developer image on a recording medium that is carried along a carrying path, comprising:

a first unit that is stable to the fuser device;

a second unit that is linearly movably arranged with respect to the first unit, the carrying path intervening between the first unit and the second unit; and

a movement mechanism that linearly moves the second unit between a first position and a second position with respect to the first unit, at least one of the first unit and the second unit providing heat on the recording medium, wherein

the first unit includes

an endless first belt, and

a fuser member that is rotatably held about a rotation shaft positioned on an inner side of the first belt,

the second unit includes

an endless second belt,

a pressure application member that is rotatably held about another rotation shaft displaceable on an inner side of the second belt, and

a first bias member that biases the pressure application member toward the fuser member, and

the pressure application member, at the first position, presses the fuser member via the first belt and the second belt using the first bias member such that a nip part, where the developer image is fused on the recording medium, is formed between the pressure application member and the fuser member, and at the second position, is detached from the fuser member so that the nip part is eliminated.

2. The fuser device according to claim 1 , wherein

the first bias member is a compression spring, and

a bias force of the first bias member at the second position is smaller than that of the first bias member at the first position.

3. The fuser device according to claim 2 , wherein

the second unit includes an arm that is held to rotate around a revolving shaft, and

the arm rotatably

holds the pressure application member about a rotation shaft that is parallel to the revolving shaft of the arm and

receives the bias force by the first bias member on an opposite side from the revolving shaft via the rotation shaft.

4. The fuser device according to claim 3 ,

the movement mechanism includes

a first cam shaft and a second cam shaft that are arranged in parallel each other and rotatably held,

a first cam and a second cam that are respectively fixed to the first cam shaft and a second cam shaft, and

a drive transmission system that transmits a driving force to the first cam shaft and the second cam shaft so that the first cam and the second cam rotate,

the second unit includes

a first engagement part that is engaged with a circumferential surface of the first cam and a second engagement part that is engaged with a circumferential surface of the second cam, and

a first guide groove along which the first cam shaft is guided and a second guide groove in which the second cam shaft is guided, and

in a direction that is parallel to a plane including the first cam shaft and the second cam shaft and is orthogonal to the first cam shaft, the rotation shaft of the pressure application member at the first position is positioned between the first cam shaft and the second cam shaft.

5. The fuser device according to claim 3 ,

the movement mechanism includes

a first cam shaft and a second cam shaft that are arranged in parallel each other and rotatably held,

a first cam and a second cam that are respectively fixed to the first cam shaft and a second cam shaft, and

a drive transmission system that transmits a driving force to the first cam shaft and the second cam shaft so that the first cam and the second cam rotate,

the second unit includes

a first engagement part that is engaged with a circumferential surface of the first cam and a second engagement part that is engaged with a circumferential surface of the second cam, and

a first guide groove along which the first cam shaft is guided and a second guide groove in which the second cam shaft is guided, and

in a direction perpendicular to a plane including the first cam shaft and the second cam shaft, the first engagement part is positioned between the rotation shaft of the pressure application member at the first position and the first guide groove, and the second engagement part is positioned between the rotation shaft of the pressure application member at the first position and the second guide groove.

6. The fuser device according to claim 1 , wherein

the fuser member is one of a roller and a pad, and

the pressure application member is one of a roller and a pad.

7. An image forming apparatus, comprising:

the fuser device according to claim 1 ; and

an image forming part that forms a developer image;

an image transfer part that transfers the developer image to the recording medium;

a drive control part that controls a movement of the second unit, wherein

the image forming part, the image transfer part and the fuser device are arranged in this order along the carrying path toward its downstream, and

the drive control part moves the second unit to the second position from the first position when the image forming part does not form the developer image.

8. A fuser device that fuses a developer image on a recording medium that is carried along a carrying path, comprising:

a first unit that is stable to the fuser device;

a second unit that is movably arranged with respect to the first unit, the carrying path intervening between the first unit and the second unit; and

a movement mechanism that moves the second unit between a first position and a second position with respect to the first unit, at least one of the first unit and the second unit providing heat on the recording medium, wherein

the first unit includes

an endless first belt, and

a fuser member that is rotatably held about a rotation shaft positioned on an inner side of the first belt,

the second unit includes

an endless second belt,

a pressure application member that is rotatably held about another rotation shaft displaceable on an inner side of the second belt, and

a first bias member that biases the pressure application member toward the fuser member,

the pressure application member, at the first position, presses the fuser member via the first belt and the second belt using the first bias member such that a nip part, where the developer image is fused on the recording medium, is formed between the pressure application member and the fuser member, and at the second position, is detached from the fuser member so that the nip part is eliminated,

the movement mechanism includes

a first cam shaft and a second cam shaft that are arranged in parallel each other and rotatably held,

a first cam and a second cam that are respectively fixed to the first cam shaft and a second cam shaft, and

a drive transmission system that transmits a driving force to the first cam shaft and the second cam shaft so that the first cam and the second cam rotate, and

the second unit includes

a first engagement part that is engaged with a circumferential surface of the first cam and a second engagement part that is engaged with a circumferential surface of the second cam, and

a first guide groove along which the first cam shaft is guided and a second guide groove in which the second cam shaft is guided.

9. A fuser device that fuses a developer image on a recording medium that is carried along a carrying path, comprising:

a first unit that is stable to the fuser device;

a second unit that is movably arranged with respect to the first unit, the carrying path intervening between the first unit and the second unit, and

a movement mechanism that moves the second unit between a first position and a second position with respect to the first unit, at least one of the first unit and the second unit providing heat on the recording medium, wherein

the first unit includes

an endless first belt, and

a fuser member that is rotatably held about a rotation shaft positioned on an inner side of the first belt,

the second unit includes

an endless second belt,

a pressure application member that is rotatably held about another rotation shaft displaceable on an inner side of the second belt, and

a first bias member that biases the pressure application member toward the fuser member,

the pressure application member, at the first position, presses the fuser member via the first belt and the second belt using the first bias member such that a nip part, where the developer image is fused on the recording medium, is formed between the pressure application member and the fuser member, and at the second position, is detached from the fuser member so that the nip part is eliminated,

the first unit includes a first pad fixed to an inner side of the first belt,

the second unit includes

a second pad that is movable on an inner side of the second belt, and

a second bias member that biases the second pad toward the first pad, and

the second pad, at the first position, is contacted and pressed to the first pad via the first belt and the second belt using the second bias member and, at the second position, is detached from the first pad.

10. The fuser device according to claim 7 , wherein

the second bias member is a compression spring, and

a bias force of the second bias member at the second position is smaller than that of the second bias member at the first position.

11. The fuser device according to claim 10 , wherein

the second unit further includes

a supporting member that supports the pressure application member such that the pressure application member moves toward the first unit, and

a regulation member that regulates a positional change of the supporting member in a direction toward the first unit,

the first bias member is arranged to bias the support member toward the regulation member,

when the second unit is at the first position, the supporting member is detached from the regulation member, and the pressure application member presses the fuser member via the first belt and the second belt using a bias force by the first bias member, and

when the second unit is at the second position, the supporting member is detached from the fuser member, and the supporting member is in contact with the regulation member using the bias force by the first bias member.

12. A fuser device that fuses a developer image on a recording medium that is carried along a carrying path, comprising:

a first unit that is stable to the fuser device;

a second unit that is movably arranged with respect to the first unit, the carrying path intervening between the first unit and the second unit, and

a movement mechanism that moves the second unit between a first position and a second position with respect to the first unit, at least one of the first unit and the second unit providing heat on the recording medium, wherein

the first unit includes

an endless first belt, and

a fuser member that is rotatably held about a rotation shaft positioned on an inner side of the first belt,

the second unit includes

an endless second belt,

a pressure application member that is rotatably held about another rotation shaft displaceable on an inner side of the second belt, and

a first bias member that biases the pressure application member toward the fuser member,

the pressure application member, at the first position, presses the fuser member via the first belt and the second belt using the first bias member such that a nip part, where the developer image is fused on the recording medium, is formed between the pressure application member and the fuser member, and at the second position, is detached from the fuser member so that the nip part is eliminated,

the second unit further includes

a supporting member that supports the pressure application member such that the pressure application member moves toward the first unit, and

a regulation member that regulates a positional change of the supporting member in a direction toward the first unit,

the first bias member is arranged to bias the support member toward the regulation member,

when the second unit is at the first position, the supporting member is detached from the regulation member, and the pressure application member presses the fuser member via the first belt and the second belt using a bias force by the first bias member, and

when the second unit is at the second position, the supporting member is detached from the fuser member, and the supporting member is in contact with the regulation member using the bias force by the first bias member.

Assignments (2)
MERGER Recorded Mar 14, 2022
From: OKI DATA CORPORATION
To: OKI ELECTRIC INDUSTRY CO., LTD.
Reel/Frame 059365/0145 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 16, 2016
From: FURUSAWA, YASUNORI
To: OKI DATA CORPORATION
Reel/Frame 039458/0133 →