This application is a national stage of International Application No. PCT/JP2016/053851 filed Feb. 9, 2016, which claims the benefit of Japanese Application No. 2015-045628, filed Mar. 9, 2015, in the Japanese Property Office, the disclosures of which are incorporated herein in their entireties by reference.
The present invention relates to a conveying roller unit for transporting a sheet, and a sheet feed device and an image forming apparatus each including the conveying roller unit.
Conventionally, a sheet feed device for feeding sheets, which is mounted in an image forming apparatus, is known. The sheet feed device includes a sheet tray and a conveying roller. The circumferential surface of the conveying roller contacts with the sheet placed on the sheet tray. Further, when the conveying roller rotates, the sheet is transported in a predetermined transport direction. Patent Document 1 discloses a technique in which the conveying roller can be removably mounted to a housing of the paper feeding device.
In the paper feeding device described in Patent Document 1, the conveying roller is removably mounted to a tip end part of the drive shaft axially supported by the housing. Inside the conveying roller, a coil spring and an adapter are mounted. A claw-like locking protruding part provided to the adapter is locked in a guide part hole of the conveying roller while compressing the coil spring, so that the adapter is fixed to the conveying roller, and the conveying roller is supported by the housing.
However, in the technique described above, the conveying roller is rotated in a state where the pressing force of the coil spring is continuously applied to the elastically deformed locking protruding part. As a result, there is a malfunction that the locking protruding part is plastically deformed so that the conveying roller is broken.
In view of the problem described above, it is an object of the present invention to provide a conveying roller unit that can be removably mounted to the housing and can prevent breakage of the conveying roller, and a sheet feed device and an image forming apparatus each including the conveying roller unit.
In order to achieve the object described above, a first structure of the present invention is a conveying roller unit including a first unit, a second unit, and a lock mechanism. The first unit includes a cylindrical roller section capable of abutting a sheet, and a hollow cylindrical holder section having an outer circumferential surface on which the roller section is mounted, a first connection section disposed on one end side in a rotation axis direction, and an opening on the other end side. The second unit includes a second connection section disposed on the other end side in the rotation axis direction, and a rod section to be inserted to the inside of the holder section along an insertion direction from the other end side to the one end side in the rotation axis direction, so as to be capable of being removably mounted to the first unit. The lock mechanism locks the second unit to the first unit in an integrally rotatable manner. The lock mechanism includes a first engagement section provided to protrude from an inner circumferential surface of the holder section of the first unit, a second engagement section provided to protrude from the outer circumferential surface of the rod section of the second unit, and an urging member disposed inside the holder section so as to press the second unit in the direction that the rod section moves out of the holder section. An urging force of the urging member maintains engagement between the first engagement section and the second engagement section, and positions of the second unit in the circumferential direction and in the rotation axis direction with respect to the first unit are restricted so that the second unit is locked to the first unit.
According to the first structure of the present invention, when the rod section of the second unit is positioned at a third position via a first position and a second position inside the holder section of the first unit, the second unit is locked to the first unit. As a result, the first unit and the second unit are prevented from being detached from each other by mistake, and the conveying roller unit can stably rotate. In addition, because the second unit is locked to the first unit by the engagement between the first protruding part and the second protruding part, plastic deformation of a lock member can be prevented compared with the case where the two units are locked to each other by the lock member that is elastically deformed like snap-fit. As a result, breakage of the conveying roller unit is prevented.
Hereinafter, with reference to the drawings, an embodiment of the present invention is described in detail.
<Description of Image Forming Apparatus>
The image forming apparatus 1 includes an apparatus main body 10 having a housing structure of a substantially rectangular solid shape, and an automatic document feeder (hereinafter referred to as an ADF) 20 disposed on the apparatus main body 10. Inside the apparatus main body 10, there are a reading unit (reader) 25 that optically reads a document image to be copied, an image forming unit 30 that forms a toner image on a sheet, a fixing unit 160 that fixes the toner image to the sheet, a paper feed unit 40 that stores fixed-size sheets to be transported to the image forming unit 30, and a transport path 150 for transporting the fixed-size sheet from the paper feed unit 40 or the manual paper feeder 46 to a sheet discharge outlet 10E via the image forming unit 30 and the fixing unit 160.
The ADF 20 is pivotably mounted on the upper surface of the apparatus main body 10. The ADF 20 automatically feeds document sheets to be copied to a predetermined document reading position in the apparatus main body 10. On the other hand, when a user manually places a document sheet at a predetermined document reading position, the ADF 20 is opened upward. The ADF 20 includes a document tray 21 on which the document sheets are placed, a document transport unit 22 that transports the document sheets through the document reading position, and a document discharge tray 23 on which the document sheets after reading are discharged.
On the upper surface of the apparatus main body 10, there is disposed a contact glass for reading the document sheet fed automatically from the ADF 20, and a contact glass for reading the manually placed document sheet (not shown). The reading unit 25 optically reads an image of the document sheet via the contact glass. Note that the automatic document feeder (ADF) 20 and the reading unit 25 described above constitute an image reading device 2.
The image forming unit 30 generates a toner image based on a known electrophotographic method so as to form the toner image on the sheet. Note that another image forming method such an inkjet method may be adopted in another embodiment. The image forming unit 30 includes a photosensitive drum 321, and a charging unit, an exposing unit, a developing device, a cleaning device, and the like, which are disposed around the photosensitive drum 321 but are not shown.
The photosensitive drum 321 rotates about its axis so that an electrostatic latent image and a toner image are formed on the circumferential surface thereof. The charging unit charges the surface of the photosensitive drum 321 uniformly. The exposing unit includes a laser light source and optical system elements such as a mirror and a lens, and irradiates the circumferential surface of the photosensitive drum 321 with light based on the image data of the document image, so as to form the electrostatic latent image. The developing device supplies toner to the outer circumferential surface of the photosensitive drum 321 so as to develop the electrostatic latent image formed on the photosensitive drum 321. The cleaning device includes a cleaning roller or the like so as to clean toner remaining on the outer circumferential surface of the photosensitive drum 321 after the toner image is transferred. A transfer roller 35 is disposed to face the photosensitive drum 321. At a transfer nip portion between the photosensitive drum 321 and the transfer roller 35, the toner image on the photosensitive drum 321 is transferred to the sheet. The transfer roller 35 is applied with a secondary transfer bias having a polarity opposite to that of the toner.
The paper feed unit 40 includes two cassettes, i.e., a first paper feed cassette 40A and a second paper feed cassette 40B, which store fixed-size sheets among sheets on which the image forming process is performed. These paper feed cassettes 40A and 40B can be drawn out frontward from the front of the apparatus main body 10.
The first paper feed cassette 40A includes a sheet storing portion 41 for storing a bunch of sheets, which is a stack of fixed-size sheets, and a lift plate 42 that lifts up the bunch of sheets for feeding the sheets. On the upper part of the right end side of the paper feed cassette 40A, there are disposed a pickup roller that is not shown and a roller pair of a paper feed roller 44 and a retard roller 45. When the pickup roller and the paper feed roller 44 are driven, the sheets in the paper feed cassette 40A are fed one by one from the top sheet and are transported to the upstream end of the transport path 150. Note that the second paper feed cassette 40B has the same structure as the first paper feed cassette 40A.
The manual paper feeder 46 (sheet feed device) is disposed on a right side surface 10R of the apparatus main body 10. The manual paper feeder 46 transports the sheet to the image forming unit 30. The manual paper feeder 46 includes a manual feed tray 46A for manual paper feeding and a paper feed roller 461 (conveying roller unit). Sheets are placed on the manual feed tray 46A. The manual feed tray 46A is mounted in a manner of being capable of opening and closing about a pivot point 46A1 positioned at a lower end part thereof with respect to the apparatus main body 10. When performing the manual paper feeding, the user opens the manual feed tray 46A as illustrated in the diagram and places the sheets thereon. When the paper feed roller 461 is driven, the sheet placed on the manual feed tray 46A is transported to a manual sheet transport path 460 (sheet transport path) extending from the manual feed tray 46A for transporting the sheet in a predetermined sheet transport direction. The sheet transported in the sheet transport direction is transported from the manual sheet transport path 460 to the transport path 150. The paper feed roller 461 is driven to rotate in a predetermined rotation direction so as to transport the sheet in the sheet transport direction. The paper feed roller 461 is disposed to face the sheet transport direction downstream side of the manual feed tray 46A.
The transport path 150 extends from the paper feed unit 40 to the sheet discharge outlet 10E via the image forming unit 30 and the fixing unit 160. A registration roller pair 151 is disposed on the upstream side of the transfer nip portion in the transport path 150. The sheet is temporarily stopped by the registration roller pair 151 in a standstill state, and a skew thereof is corrected. After that, the registration roller pair 151 is driven to rotate by a drive unit (not shown) at a predetermined timing for image transfer, and hence the sheet is transported to the transfer nip portion.
A paper discharge roller 153 is disposed at the most downstream end of the transport path 150. The paper discharge roller 153 discharges the sheet from the sheet discharge outlet 10E. The sheets discharged from the sheet discharge outlet 10E are discharged and piled on a paper discharge part 10U.
The fixing unit 160 performs a fixing process for fixing the toner image to the sheet. A pressure roller is pressed to contact with the fixing roller that is not shown, so that a fixing nip portion is formed. When the sheet passes through the fixing nip portion, the transferred toner image on the sheet is fixed to the sheet.
<Manual Paper Feeder>
Next, with reference to
With reference to
The main body unit 100 is a casing disposed on the right side surface 1 OR of the apparatus main body 10 (
The manual feed tray 46A described above is a plate-like member that can be opened and closed with respect to the main body unit 100. The manual feed tray 46A can turn about the pivot point 46A1 (
The manual feed lift plate 46B forms a part of an upper surface part of the manual feed tray 46A and is disposed on the left side (transport direction downstream side) of the manual feed tray 46A. The left end part (transport direction downstream side end part) of the manual feed lift plate 46B can be moved up and down by a drive mechanism that is not shown. When the manual feed lift plate 46B is moved up and down, a front end part of the bunch of sheets placed on the manual feed tray 46A is moved upward. As a result, the front end part of the sheet contacts with the paper feed roller 461.
The widthwise guides 46C are disposed on the manual feed lift plate 46B. A pair of the widthwise guides 46C are disposed in the front and back direction so as to regulate the position of the sheet in the width direction. The widthwise guides 46C can move in the front and back direction along guide grooves 46B1 formed in the manual feed lift plate 46B via a rack and pinion gear that is not shown.
The housing 46H has a box-like shape extending in the front and back direction. The housing 46H is disposed above the main body unit 100. A lower end part of the housing 46H defines an upper part of the manual sheet transport path 460. In other words, a part of the manual sheet transport path 460 is formed between the housing 46H and the main body unit 100. The housing 46H includes a mounting part 46S for supporting the paper feed roller 461 in a rotatable manner in the middle part in the front and back direction.
The mounting part 46S has a shape in which the middle part in the front and back direction of the housing 46H partially protrudes rightward. Inside the mounting part 46S, there is formed a space for housing the paper feed roller 461. The mounting part 46S is opened upward and downward. The paper feed roller 461 is mounted in the mounting part 46S from above.
The drive shaft 462 is supported by the housing 46H in a rotatable manner on the rear side of the mounting part 46S. The drive shaft 462 is connected to a motor (drive unit) that is not shown. When the motor is driven, the drive shaft 462 is rotated so that the rotation drive force is transmitted to the paper feed roller 461. The drive shaft 462 has a first tip end part 462S. The first tip end part 462S is a front end part of the drive shaft 462. The first tip end part 462S is exposed to the mounting part 46S. The first tip end part 462S is equipped with a coupling claw that is not shown. The first tip end part 462S is connected to an engaging piece 523T described later of the paper feed roller 461.
The support shaft 463 is supported by the housing 46H on the front side of the mounting part 46S. The support shaft 463 has the same axis as the drive shaft 462 and is disposed on the opposite side to the drive shaft 462 with respect to the mounting part 46S. The support shaft 463 axially supports the paper feed roller 461 in a rotatable manner. The support shaft 463 has a second tip end part 463S. The second tip end part 463S is a rear end part of the support shaft 463. The second tip end part 463S is exposed to the mounting part 46S. The second tip end part 463S is equipped with a cylindrical bearing part that is not shown. The bearing part of the second tip end part 463S is connected to (axially supported by) an axially supported part 624 described later of the paper feed roller 461. Note that the support shaft 463 may be one that rotates integrally to the paper feed roller 461 in another embodiment.
The paper feed roller 461 (conveying roller unit) described above is disposed above the manual sheet transport path 460 so as to face the manual feed tray 46A. The paper feed roller 461 can be removably mounted to the mounting part 46S of the housing 46H. The paper feed roller 461 is connected to the first tip end part 462S of the drive shaft 462 and the second tip end part 463S of the support shaft 463, so as to be supported by the drive shaft 462 and the support shaft 463 in a rotatable manner. Then, the rotation drive force is transmitted from the first tip end part 462S to the paper feed roller 461, and hence the paper feed roller 461 rotates to transport the sheet. Note that when the paper feed roller 461 is removed from the mounting part 46S in
Next, with reference to
The first unit 50 is disposed on the rear end side of the paper feed roller 461. The first unit 50 includes a roller section 51 and a holder section 52. The roller section 51 is a cylindrical member made of an elastic material and is mounted to the holder section 52. The roller section 51 has a circumferential surface 51A (
The holder section 52 supports the roller section 51. The holder section 52 (
The connecting wall 524 is the wall part that connects the rear end side of the first cylindrical part 521 and the front end side of the second cylindrical part 522. The connecting wall 524 extends to expand in a rotation radial direction of the paper feed roller 461. In other words, the connecting wall 524 is a wall part provided to protrude inward in the radial direction from the inner circumferential surface of the first cylindrical part 521. Note that the rear end part of the first cylindrical part 521 extends further from the connecting wall 524 to the rear side as illustrated in
The first engagement section 525 is a protruding part provided to protrude inward in the radial direction from the inner circumferential surface of the holder section 52 of the first unit 50. The first engagement section 525 has a U-shaped hook shape with an opened tip end side in the insertion direction (rear side). Specifically, the first engagement section 525 includes a first ridge part 525A, a second ridge part 525B, and a third ridge part 525C. The first ridge part 525A extends along the insertion direction. Note that the rear end part of the first ridge part 525A is connected to the connecting wall 524 (
Further, the first cylindrical part 521 includes a first flange 5211. The first flange 521T is a flange part formed over the entire circumferential direction by expanding the outer diameter of the rear end part of the first cylindrical part 521. As illustrated in
Further, the third cylindrical part 523 includes the engaging piece 523T (first connection section) inside. The engaging piece 523T is disposed on one end side in the axis direction of the paper feed roller 461 (the rear end side of the paper feed roller 461). The engaging piece 523T can connect to the first tip end part 462S of the drive shaft 462 (see
The second unit 60 is disposed on the front end side of the paper feed roller 461 and can be removably mounted to the first unit 50. The second unit 60 includes the insertion cylindrical part 61 (rod section) and a prism part 62. The insertion cylindrical part 61 is a cylindrical part disposed on the front end side in the insertion direction (arrow DA direction in
The engaging claw 611 is a claw part formed in the tip end part of the insertion cylindrical part 61 along the circumferential surface. As illustrated in
The second engagement section 612 is a protruding part provided to protrude outward in the radial direction from the outer circumferential surface of the insertion cylindrical part 61 of the second unit 60. The first engagement section 525 has a U-shaped hook shape with an opened rear end in the insertion direction. Note that in this embodiment, a pair of the second engagement sections 612 are disposed at axially symmetric positions on the outer circumferential surface of the insertion cylindrical part 61. In
The second engagement section 612 includes a fourth ridge part 612A, a fifth ridge part 612B, and a sixth ridge part 612C. The fourth ridge part 612A extends along the insertion direction. The front end side of the fourth ridge part 612A is connected to a second flange 621 described later (
The prism part 62 is disposed on the insertion direction rear end side of the second unit 60 (arrow DA direction in
The axially supported part 624 (
Note that the first engagement section 525 of the first unit 50, the second engagement section 612 of the second unit 60, and the spring 70 constitute the lock mechanism in this embodiment. The lock mechanism has a function of locking the first unit 50 and the second unit 60 in an integrally rotatable manner.
The spring 70 (
Next, with reference to
With reference to
When the paper feed roller 461 is mounted to the mounting part 46S of the housing 46H, the second unit 60 is first mounted to the first unit 50. In advance, in the state where the spring 70 is engaged around the insertion cylindrical part 61 of the second unit 60, the insertion cylindrical part 61 of the second unit 60 is inserted into the unit inside space 52S of the first unit 50 (arrow DA in
Note that, when the insertion cylindrical part 61 of the second unit 60 is inserted to the first position in
Note that the first engagement section 525 of the first unit 50 and the second engagement section 612 of the second unit 60 are disposed on circles having the same radius from the same rotation center of the paper feed roller 461. For this reason, when the insertion cylindrical part 61 of the second unit 60 is inserted in the unit inside space 52S, there may be a case where the fifth ridge part 612B of the second engagement section 612 abuts the second ridge part 525B of the first engagement section 525 so that the insertion cylindrical part 61 is prevented from entering. In this case, the operator rotates the second unit 60 in the circumferential direction, and hence the position in the circumferential direction of the first engagement section 525 is shifted from that of the second engagement section 612. As a result, the insertion cylindrical part 61 can be inserted to the first position as described above.
When the operator rotates the second unit 60 from the first position shown in
In addition, when the insertion cylindrical part 61 reaches the second position, the claw tip end part 611S of the engaging claw 611 protrudes to the guide groove 522P of the first unit 50, and the claw tip end part 611S engages with the second end edge 522B (
When the operator decreases grip force for the second unit 60 in the state where the insertion cylindrical part 61 of the second unit 60 has reached the second position of
Note that, when the second unit 60 reaches the third position of
In the state illustrated in
Note that, in this embodiment, when the insertion cylindrical part 61 is moved to the insertion direction front end side farther than the second position (
When the operator decreases grip force for the paper feed roller 461 in the state illustrated in
Note that, when the insertion cylindrical part 61 moves between the third position illustrated in
As described above, according to this embodiment, when the insertion cylindrical part 61 of the second unit 60 reaches the third position via the first position and the second position in the unit inside space 52S of the first unit 50, the first unit 50 and the second unit 60 can be locked. As a result, the first unit 50 and the second unit 60 are prevented from being detached from each other by mistake, and the paper feed roller 461 can stably rotate in the mounting part 46S. In addition, because the first unit 50 and the second unit 60 are locked to each other by engagement between the first engagement section 525 and the second engagement section 612, plastic deformation of a lock member can be prevented compared with the case where the two units are locked to each other by the lock member that is elastically deformed like snap-fit. Note that, in this embodiment too, elastic deformation occurs when the paper feed roller 461 is mounted in the mounting part 46S, because the engaging claw 611 has a snap-fit structure. However, as described above, when the paper feed roller 461 is used in the manual paper feeder 46, because the claw tip end part 611S protrudes to the guide groove 522P, the elastically deformed engaging claw 611 restores the original shape by the restoring force. In addition, in the state where the first engagement section 525 and the second engagement section 612 are engaged with each other, the pressing force of the spring 70 does not act on the engaging claw 611 in the axis direction. In this way, plastic deformation or breakage of the engaging claw 611 is prevented.
In addition, in this embodiment, rotation of the second unit 60 in the second rotation direction is restricted at the second position (
Although the manual paper feeder 46 according to the embodiment of the present invention and the image forming apparatus 1 including the manual paper feeder 46 are described above, the present invention is not limited to this. For example, it is possible to adopt the following modified embodiments.
(1) In the embodiment described above, the manual paper feeder 46 is described as the paper feeding device, but the present invention is not limited to this structure. The present invention may be applied to the automatic document feeder 20 (paper feeding device) as the paper feeding device for transporting sheets as a document. In this case, the reading unit 25 (reader) and the automatic document feeder 20 both described above constitute the image reading device 2. The reading unit is disposed to face the sheet transport path extending from the document tray 21. Further, the paper feed roller 461 is removably mounted to the automatic document feeder 20, and hence breakage of the paper feed roller 461 is prevented so that the documents sheets can be stably transported to the reading unit 25. In this case too, breakage of the paper feed roller 461 is prevented, and images of the document sheets can be stably read.
(2) In the embodiment described above, the first engagement section 525 and the second engagement section 612 have the U-shaped hook shape, but the present invention is not limited to this structure. The first engagement section 525 and the second engagement section 612 may have a V-shaped hook shape or may be other protruding parts that engage with each other.
(3) In the embodiment described above, in the paper feed roller 461, the first unit 50 is connected to the drive shaft 462, while the second unit 60 is connected to the support shaft 463, but the present invention is not limited to this structure. It is possible to adopt a structure in which the first unit 50 is connected to the support shaft 463, while the second unit 60 is connected to the drive shaft 462. In this case, the second unit 60 and the first unit 50 should have shapes of the engaging piece 523T and the axially supported part 624, respectively.
According to the present invention, it is possible to provide the sheet feed device in which the conveying roller unit that can be removably mounted to the housing is prevented from being broken, so that the sheets can be stably transported, and to provide the image forming apparatus including the sheet feed device.
Number | Date | Country | Kind |
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2015-045628 | Mar 2015 | JP | national |
Filing Document | Filing Date | Country | Kind |
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PCT/JP2016/053851 | 2/9/2016 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2016/143452 | 9/15/2016 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
7913996 | Nishikata | Mar 2011 | B2 |
8196918 | Arimura | Jun 2012 | B2 |
8500115 | Yamomoto | Aug 2013 | B2 |
8783676 | Yamamoto | Jul 2014 | B2 |
9079716 | Kawashima | Jul 2015 | B2 |
20170153590 | Yamasaki | Jun 2017 | A1 |
Number | Date | Country |
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2005-206312 | Aug 2005 | JP |
Number | Date | Country | |
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20170368851 A1 | Dec 2017 | US |