This application is based on and claims priority under 35 USC 119 from Japanese Patent Application No. 2010-073087 filed Mar. 26, 2010.
The invention relates to a fixing device, a single-sided image forming apparatus, and a double-sided image forming apparatus.
According to an aspect of the invention, there is provided a fixing device including: a fixing device body that is adapted to attach to and detach from an apparatus body of a double-sided image forming apparatus which includes a return passage through which a recording medium is returned to an image forming position in order to form an image on both sides of the recording medium, and of a single-sided image forming apparatus which does not include the return passage; a fixing member that is provided in the fixing device body and that fixes an image to the recording medium; and a first attachment section that is provided at a return passage side in the fixing device body and that is adapted to have a passage surface member, which includes a passage surface of an introduction passage through which a fixed recording medium on which an image has been fixed by the fixing member is introduced into the return passage, attached thereto.
Exemplary embodiments of the present invention will be described in detail based on the following figures, wherein:
Hereinafter, an example of an exemplary embodiment of the invention will be described based on the drawings.
(Constitution of Double-Sided Image Forming Apparatus 10 According to the Exemplary Embodiment)
First, a constitution of a double-sided image forming apparatus 10 according the exemplary embodiment will be described.
The double-sided image forming apparatus 10 according to the exemplary embodiment is an image forming apparatus for double-sided image formation, which may form an image on both front and rear sides of a recording medium P. As shown in
The image forming apparatus body 11 includes an accommodating section 12 which accommodates the recording media P such as sheets, an image forming section 14 which forms an image on the recording medium P, a conveying section 16 which conveys the recording medium P from the accommodating section 12 to the image forming section 14, and a control section 20 which controls the operation of each section of the double-sided image forming apparatus 10. The image forming apparatus body 11 has in its upper portion an ejecting section 18 to which the recording medium P formed with an image by the image forming section 14 is ejected.
The image forming section 14 is provided with image forming units 22Y, 22M, 22C, and 22K (hereinafter shown as 22Y to 22K) forming a toner image of each color of yellow (Y), magenta (M), cyan (C), and black (K), an intermediate transfer belt 24 to which toner images formed by the image forming units 22Y to 22K are transferred, a first transfer roll 26 transferring the toner images formed by the image forming units 22Y to 22K to the intermediate transfer belt 24, and a second transfer roll 28 transferring the toner images, which is transferred to the intermediate transfer belt 24 by the first transfer roll 26, to the recording medium P. The image forming section 14 may have a different constitution than the above as long as an image is formed on the recording medium P.
The image forming units 22Y to 22K are arranged at the center in the vertical direction of the image forming apparatus body 11 while tilted in the horizontal direction. The image forming units 22Y to 22K each have a photoreceptor 32 rotating in a predetermined direction (for example, in a clockwise direction in
Around each photoreceptor 32, there are sequentially disposed from the upstream side in the rotating direction of the photoreceptor 32: a charging roll 23 as an example of a charging device charging the photoreceptor 32; an exposure device 36 which exposes the photoreceptor 32 charged by the charging roll 23 to form an electrostatic latent image on the photoreceptor 32; a developing device 38 which develops the electrostatic latent image, formed on the photoreceptor 32 by the exposure device 36, to form a toner image; and a removing member 40 which is in contact with the photoreceptor 32 to remove a toner remaining on the photoreceptor 32.
The exposure device 36 forms an electrostatic latent image based on an image signal transmitted from the control section 20. As an example of the image signal transmitted from the control section 20, there is an image signal obtained from an external apparatus by the control section 20.
The developing device 38 is provided with a developer supply body 38A supplying a developer to the photoreceptor 32 and plural conveying members 38B conveying the developer applied to the developer supply body 38A while agitating the developer.
The intermediate transfer belt 24 is formed into an annular shape and is disposed at the upper sides of the image forming units 22Y to 22K. The intermediate transfer belt 24 has at its inner peripheral side winding rolls 42 and 44 around which the intermediate transfer belt 24 is wound. Any one of the winding rolls 42 and 44 is rotated and driven, whereby the intermediate transfer belt 24 circulates and moves (rotates) in a predetermined direction (for example, in a counterclockwise direction in
The first transfer roll 26 faces the photoreceptor 32 with the intermediate transfer belt 24 provided between the first transfer roll 26 and the photoreceptor 32. A position between the first transfer roll 26 and the photoreceptor 32 is a first transfer position where a toner image formed on the photoreceptor 32 is transferred to the intermediate transfer belt 24.
The second transfer roll 28 faces the winding roll 42 with the intermediate transfer belt 24 provided between the second transfer roll 28 and the winding roll 42. A position between the second transfer roll 28 and the winding roll 42 is a second transfer position where the toner image transferred to the intermediate transfer belt 24 is transferred to the recording medium P.
The conveying section 16 is provided with a feed roll 46 feeding the recording medium P accommodated in the accommodating section 12, a conveyance passage 48 through which the recording medium P fed by the feed roll 46 is conveyed, plural conveying rolls 50 disposed along the conveyance passage 48 and conveying the recording medium P, fed by the feed roll 46, to the second transfer position.
In the image forming apparatus body 11, a fixing device 60 fixing the toner image, transferred to the recording medium P by the second transfer roll 28, to the recording medium P is provided at the downstream side in the conveying direction from the second transfer position. The fixing device 60 may be removed in the manufacturing process, and a user cannot remove the fixing device 60. The fixing device 60 is provided with an ejection roll 52 ejecting the recording medium P fixed with the toner image to the ejecting section 18. In the double-sided image forming apparatus 10, the fixing device 60 is mounted in such a state that a passage surface member 80 to be described later is attached to a fixing device body 62. A specific constitution of the fixing device 60 will be described later.
The image forming apparatus body 11 has a return passage 49A through which a recording medium formed with an image on one side is returned to a transfer position (an image forming position) in order to form an image on both sides of the recording medium P. A conveying roll 47 conveying the recording medium P is disposed in the return passage 49A.
The fixing device 60 is provided with an introduction passage 49B through which the fixed recording medium P fixed with an image is introduced into the return passage 49A. Specifically, the introduction passage 49B introduces the fixed recording medium P, returned by reverse rotation of the ejection roll 52, to the return passage 49A.
As described above, in the double-sided image forming apparatus 10, the return passage 49A and the introduction passage 49B constitute a reversing passage 49 through which the recording medium P fixed with an image on one side is reversed to be returned to the conveyance passage 48.
Next, an image forming operation for forming an image on the recording medium P in the double-sided image forming apparatus 10 according to the exemplary embodiment will be described.
In the double-sided image forming apparatus 10 according to the exemplary embodiment, the recording medium P fed by the feed roll 46 from the accommodating section 12 is fed into the second transfer position by the plural conveying rolls 50.
Meanwhile, in the image forming units 22Y to 22K, the photoreceptor 32 charged by the charging roll 23 is exposed by the exposure device 36, and an electrostatic latent image is formed on the photoreceptor 32. The electrostatic latent image is developed by the developing device 38 to form a toner image on the photoreceptor 32. The toner image of each color formed in each of the image forming units 22Y to 22K is overlapped on the intermediate transfer belt 24 at the first transfer position to form a color image. The color image formed on the intermediate transfer belt 24 is then transferred to the recording medium P at the second transfer position.
The recording medium P transferred with the toner image is conveyed to the fixing device 60, and the transferred toner image is fixed by the fixing device 60. When an image is formed on only one side of the recording medium P, after a toner image is fixed, the recording medium P is ejected to the ejecting section 18 by the ejection roll 52.
When an image is formed on both sides of the recording medium P, after formation of an image on one side, the recording medium P is reversed by reverse rotation of the ejection roll 52 to be fed into the reversing passage 49. The recording medium P is further fed from the reversing passage 49 into the conveyance passage 48, and an image is formed on the other side in a similar manner to the above, whereby an image is formed on both sides of the recording medium P. As described above, a series of image forming operations are performed.
(Constitution of Single-Sided Image Forming Apparatus 100 According to the Exemplary Embodiment)
Next, a constitution of a single-sided image forming apparatus 100 according to the exemplary embodiment will be described.
The single-sided image forming apparatus 100 according to the exemplary embodiment is an image forming apparatus for single-sided image formation, which forms an image on one side of the recording medium P. As shown in
The image forming apparatus body 111 includes: an accommodating section 12 which accommodates the recording media P such as sheets; an image forming section 14 which forms an image on the recording medium P; a conveying section 16 which conveys the recording medium P from the accommodating section 12 to the image forming section 14; and a control section 20 which controls the operation of each section of the single-sided image forming apparatus 100. The image forming apparatus body 111 has in its upper portion an ejecting section 18 to which the recording medium P formed with an image by the image forming section 14 is ejected.
In the image forming apparatus body 111, a fixing device 60 fixing the toner image, which is transferred to the recording medium P by a second transfer roll 28 of the image forming section 14, to the recording medium P is provided at the downstream side in the conveying direction from a second transfer position. The fixing device 60 is provided with an ejection roll 52 which ejects the recording medium P fixed with the toner image to the ejecting section 18. In the single-sided image forming apparatus 100, the fixing device 60 is mounted in a manufacturing process in such a state that a passage surface member 80 to be described later is not attached to a fixing device body 62. A specific constitution of the fixing device 60 will be described later.
The image forming apparatus body 111 includes a cover 112 as an example of a closing member closing an opening 62A, which is formed in the fixing device body 62 by the fact that the passage surface member 80 to be described later is not mounted to the fixing device body 62. The image forming apparatus body 111 does not have a return passage 49A in the double-sided image forming apparatus 10.
Next, an image forming operation for forming an image on the recording medium P in the single-sided image forming apparatus 100 according to the exemplary embodiment will be described.
In the single-sided image forming apparatus 100 according to the exemplary embodiment, the recording medium P fed by the feed roll 46 from the accommodating section 12 is fed into the second transfer position by the plural conveying rolls 50.
Meanwhile, in the image forming units 22Y to 22K, the photoreceptor 32 charged by the charging roll 23 is exposed by the exposure device 36, and an electrostatic latent image is formed on the photoreceptor 32. The electrostatic latent image is developed by the developing device 38 to form a toner image on the photoreceptor 32. The toner image of each color formed in each of the image forming units 22Y to 22K is overlapped on the intermediate transfer belt 24 at the first transfer position to form a color image. The color image formed on the intermediate transfer belt 24 is then transferred to the recording medium P at the second transfer position.
The recording medium P transferred with the toner image is conveyed to the fixing device 60, and the transferred toner image is fixed by the fixing device 60. The recording medium P fixed with the toner image is ejected to the ejecting section 18 by the ejection roll 52. As described above, a series of image forming operations are performed.
(Constitution of Fixing Device 60 According to Exemplary Embodiment)
Next, a constitution of the fixing device 60 according to exemplary embodiment will be described.
As shown in
The heat roll 64 is configured to have a cylindrical-shaped cylindrical member 64A rotatably supported by the fixing device body 62 and a heat source 64B such as a halogen lamp provided in an internal space of the cylindrical member 64A. The pressure belt 66 is formed into an annular shape and is rotatably supported by the fixing device body 62 at a position facing the heating roll 64.
The heating roll 64 and the pressure belt 66 rotate in the width direction (hereinafter referred to as a recording medium width direction) as a rotation axis direction perpendicular to the conveying direction of the recording medium P (hereinafter referred to as a recording medium conveying direction), and the heating roll 64 and the pressure belt 66 have a length along the recording medium width direction.
In the heating roll 64 and the pressure belt 66, the heating roll 64 is rotated and driven and the pressure belt 66 is rotated in accordance with the heating roll 64, whereby the recording medium P transferred with a toner image is conveyed while being held between the heating roll 64 and the pressure belt 66. In the recording medium P being conveyed while being held between the heating roll 64 and the pressure belt 66, the heating roll 64 applies heat to toner and the pressure belt 66 applies pressure to the toner, whereby an image is fixed.
The fixing device body 62 is provided with a pair of ejection rolls 52 which ejects the recording medium P, which is fixed with a toner image by the heating roll 64 and the pressure belt 66, from the fixing device body 62 to the ejecting section 18. The pair of ejection rolls 52 is constituted of a driven roll 52A and a driving roll 52B disposed under the driven roll 52A.
The pair of ejection rolls 52 is not provided in the fixing device body 62, but may be provided in the image forming apparatus body 11 of the double-sided image forming apparatus 10 and the image forming apparatus body 111 of the single-sided image forming apparatus 100.
The fixing device body 62 is provided with an ejection passage 70 which introduces the recording medium P conveyed in the conveyance passage 48 provided in the image forming apparatus body 11 and the image forming apparatus body 111, to the ejecting section 18. In the ejection passage 70, a first guide member 71 guiding the recording medium P conveyed in the ejection passage 70, the heating roll 64, the pressure belt 66, the pair of ejection rolls 52, and a second guide member 72 guiding the recording medium P conveyed in the ejection passage 70 are disposed in this order along the recording medium conveying direction.
The first guide member 71 is configured to be in contact with the recording medium P, which is conveyed in the ejection passage 70, at the upper side of the ejection passage 70 and guides the recording medium P to a fixing position between the heating roll 64 and the pressure belt 66. The second guide member 72 is provided with a rib 72A which is formed along the recording medium conveying direction of the ejection passage 70. In the second guide member 72, the rib 72A is in contact with the recording medium P, which is conveyed in the ejection passage 70, at the lower side of the ejection passage 70, and the recording medium P is guided to an ejection position between the pair of the ejection rolls 52.
The fixing device body 62 has a space S as the introduction passage 49B in such a state that the fixing device body 62 is mounted to the image forming apparatus body 11 of the double-sided image forming apparatus 10 (hereinafter referred to as a double-sided mounted state).
As shown in
The second rib 68D of the base substrate 68B is operated as a guide section which guides the recoding medium P which is conveyed in the introduction passage 49B on the upper side of the introduction passage 49B in the double-sided mounted state.
In the upper cover 68, as shown in
The detecting member 67 is provided with a contact piece 67A as a contact member whose top end side is in contact with the recoding medium P conveyed in the ejection passage 70 and a rotation shaft 67B fixing the rear end side of the contact piece 67A and rotatably supported by the upper cover 68.
As shown in
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In the double-sided mounted state, the contact piece 67A guides the fixed recording medium P, which is conveyed in the introduction passage 49B by reverse rotation of the ejection roll 52, to the passage surface member 80. At this time, the contact piece 67A guides the recording medium P on the upper surface at the contact position. The contact piece 67A may be constituted so as to return to the original contact position by its own weight.
As shown in
In the fixing device body 62, a light-emitting section 74A and a light-receiving section 74B detecting whether or not the arm section 67C is disposed between the light-emitting section 74A and the light-receiving section 74B are arranged so as to face each other with a predetermined interval.
Thus, in such a state that the recording medium P does not push up the contact piece 67A, the contact piece 67A is disposed between the light-emitting section 74A and the light-receiving section 74B, and it is detected that the recording medium P does not pass (is not passing) between the fixing position and the ejection position.
When the recording medium P pushes up the contact piece 67A, the arm section 67C moves upward to retract from between the light-emitting section 74A and the light-receiving section 74B, and it is detected that the recording medium P passes (is passing) between the fixing position and the ejection position.
As described above, in the double-sided mounted state, based on a detection result obtained by detecting that the recording medium P passes (is passing) between the fixing position and the ejection position, the timing of reversing the recording medium P, that is, the timing of reversing the rotation of the ejection roll 52 is controlled.
For example, in such a state that the fixing device body 62 is mounted to the image forming apparatus body 11 of the single-sided image forming apparatus 100 (hereinafter referred to as a single-sided mounted state) and in the double-sided mounted state, as described above, it is detected that the recording medium P does not pass (is not passing) between the fixing position and the ejection position, whereby the occurrence of jamming of the recording medium P in the conveyance passage 48 is detected.
As the detection section detecting the recording medium P, a detecting member 167 (see,
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The upper wall 80A has its upper surface plural ribs 80E provided along the recoding medium conveying direction. Namely, in the double-sided mounted state, the upper surface of the upper wall 80A constitutes the passage surface of the introduction passage 49B through which the fixed recoding medium fixed with an image is introduced into the return passage 49A.
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The second insertion hole 92 is opened upward, and the second claw section 82 may be inserted through the second insertion hole 92 from above. The first claw section 81 may be inserted through the first insertion hole 91 in the thickness direction of the first insertion hole 91, and the first insertion hole 91 has a size capable of vertically moving and sliding the first claw section 81 which is inserted through the first insertion hole 91.
The first claw section 81 hooks onto the edge of the first insertion hole 91 in a state of being inserted through the first insertion hole 91. The second claw section 82 hooks onto the edge of the second insertion hole 92 in a state of being inserted through the second insertion hole 92.
As shown in
The upper cover 68 is further provided with regulation sections 85B and 85C which, in the attached state of the passage surface member 80 to the attachment section 90, are in contact respectively with an end surface 83B at the downstream side in the recording medium conveying direction in the third claw section 83 and an end surface 83C at the upstream side in the recording medium conveying direction in the third claw section 83 to regulate the inclination of the upper portion of the passage surface member 80 toward the upstream side in the recording medium conveying direction or the downstream side in the recording medium conveying direction. Namely, a recess is provided by the regulation sections 85A, 85B and 85C, and the third claw section 83 is fitted into the recess.
The passage surface member 80 is attached to the attachment section 90 of the fixing device body 62 in such a state that the upper cover 68 is removed from the fixing device body 62. The upper cover 68 is attached to the fixing device body 62 in such a state that the passage surface member 80 is attached to the attachment section 90 of the fixing device body 62, whereby the upper cover 68 regulates the movement and inclination of the passage surface member 80.
(Operation According to the Exemplary Embodiment)
Next, the operation according to the exemplary embodiment will be described. First, the case where the fixing device 60 is mounted to the double-sided image forming apparatus 10 will be described.
In the case where the fixing device 60 is mounted to the double-sided image forming apparatus 10, with respect to the fixing device body 62 in such a state that the upper cover 68 is removed from the fixing device body 62 as shown in
When the passage surface member 80 is attached to the attachment section 90, the first claw section 81 is first inserted through the first insertion hole 91. Thereafter, the passage surface member 80 is slid and moved downward, whereby the second claw section 82 is inserted through the second insertion hole 92. According to this constitution, the passage surface member 80 is attached to the attachment section 90 (see,
The first claw section 81 hooks onto the edge of the first insertion hole 91 in a state of being inserted through the first insertion hole 91, and the second claw section 82 hooks onto the edge of the second insertion hole 92 in a state of being inserted through the second insertion hole 92. According to this constitution, the movement of the passage surface member 80 toward the return passage 49A side (toward the downstream side in the conveying direction) in the introduction passage 49B is regulated (see,
Then, the upper cover 68 is attached to the fixing device body 62 (see,
The detecting member 67 detects the recording medium P in the double-sided mounted state and has a function of guiding the recording medium P, which is conveyed in the introduction passage 49B, to the return passage 49A, and therefore, it is not necessary to exchange the detecting member 67. The detecting member 267 dedicated for the double-sided mounted state may be used, and, in this case, the detecting member 267 is attached to a pair of the side walls 68E and 68F of the upper cover 68 (see,
The fixing device 60 in such a state that the passage surface member 80 is attached to the attachment section 90 is mounted to the image forming apparatus body 11 of the double-sided image forming apparatus 10 (see,
When the passage surface member 80 is detached from the attachment section 90, the second claw section 82 is first removed from the second insertion hole 92 while sliding and moving the passage surface member 80 upward. Finally, the first claw section 81 is removed from the first insertion hole 91. According to this constitution, the passage surface member 80 is detached from the attachment section 90. Then, as shown in
Next, the case where the fixing device 60 is mounted to the single-sided image forming apparatus 100 will be described.
When the fixing device 60 is mounted to the single-sided image forming apparatus 100, the upper cover 68 is attached to the fixing device body 62 in such a state that the passage surface member 80 is detached from the attachment section 90 of the fixing device body 62, as shown in
Since the detecting member 67 has a function of guiding the recording medium P in the single-sided mounted state, it is not necessary to exchange the detecting member 67. The detecting member 167 dedicated for the single-sided mounted state may be used, and, in this case, the detecting member 167 is attached to a pair of the side walls 68E and 68F of the upper cover 68 (see,
The fixing device 60 in such a state that the passage surface member 80 is detached from the attachment section 90 is mounted to the image forming apparatus body 111 of the single-sided image forming apparatus 100 (see,
As described above, in the fixing device 60 according to the exemplary embodiment, the passage surface member 80 is attached to and removed from the attachment section 90 of the fixing device body 62, whereby the fixing device 60 is used commonly in the single-sided image forming apparatus 100 and the double-sided image forming apparatus 10.
The invention is not limited to the above exemplary embodiment and may be variously modified, changed, and improved. For example, the fixing device 60 may be exchanged by a user, and the user may exchange the single-sided image forming apparatus for the double-sided image forming apparatus.
The foregoing description of the embodiments of the present invention has been provided for the purpose of illustration and description. It is not intended to be exhaustive or to limit the invention to the precise forms disclosed. Obviously, many modifications and variations will be apparent to practitioners skilled in the art. The embodiments were chosen and described in order to best explain the principles of the invention and its practical applications, thereby enabling others skilled in the art to be suited to the particular use contemplated. It is intended that the scope of the invention be defined by the following claims and their equivalents.
Number | Date | Country | Kind |
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2010-073087 | Mar 2010 | JP | national |