Image forming device
Patent Information
- Application Number
- JP2022168301
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2022-10-20
- Publication Date
- 2025-10-28
AI Technical Summary
In compact image forming apparatuses with double-sided conveyance paths, sheets can develop upwardly convex curls due to heat from the fixing process, which are not effectively corrected by existing curl correction systems, leading to potential jams and misalignment issues.
The apparatus includes a curl correction unit with a first correction part to correct downward convex curls and a second correction part to correct upward convex curls, where the second correction part is positioned downstream of the first correction part in the conveyance direction, ensuring that upward curls are not reintroduced by the first correction part.
This configuration effectively corrects both types of curls without causing further upward curls, ensuring smooth conveyance and proper alignment of sheets, reducing jamming and misalignment in the transfer and fixing sections.
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Abstract
Description
[Technical field]
[0001] The present invention relates to an image forming apparatus such as a printer, a copier, a facsimile, or a multifunction machine. [Background technology]
[0002] In an image forming apparatus, after a toner image is transferred to a sheet in a transfer section, the sheet is pinched and conveyed in a fixing section while applying heat and pressure to the sheet to fix the toner image to the sheet. During double-sided image formation in which a toner image is formed on both sides of a sheet, the toner image is fixed on the first side of the sheet, and then the conveying direction of the sheet is reversed so that the leading edge and trailing edge of the sheet are switched in the double-sided conveying path, and the sheet is conveyed toward the transfer section for the transfer of the toner image on the second side. The sheet that has passed through the fixing section is prone to temperature differences between the front and back sides due to heat generated during toner image fixing, and may curl. If the sheet conveyed on the double-sided conveying path is curled after the toner image on the first side is fixed, the sheet may jam in the transfer section or fixing section, or wrinkle after passing through the transfer section or fixing section.
[0003] In view of this, an image forming apparatus has been proposed in the past in which a curl correction unit that corrects curls in a sheet is provided in a double-sided conveying path (Patent Document 1). As in the apparatus described in Patent Document 1, the curl correction unit has an upper curl correction unit and a lower curl correction unit. The upper curl correction unit is provided to correct an upward convex curl by curling the sheet downward, and the lower curl correction unit is provided to correct a downward convex curl by curling the sheet upward. [Prior art documents] [Patent documents]
[0004] [Patent Document 1] JP 2020-187316 A Summary of the Invention [Problem to be solved by the invention]
[0005] However, with the recent miniaturization of image forming devices, the duplex conveying path is formed compactly and has multiple curved portions that are curved sharply with a small curvature. In this case, a strong load that causes an upward convex curl is applied to the sheet conveyed in a curved state along the curved portions, so that depending on the type of sheet, an upward convex curl may occur due to the curved portions, regardless of whether the sheet has been curled by the heat of the fixing unit.
[0006] However, in the device described in the above Patent Document 1, the upper curl correcting unit for correcting upward convex curls is disposed upstream of the lower curl correcting unit for correcting downward convex curls. Therefore, depending on the type of sheet, even if the upward convex curl is corrected by the upper curl correcting unit, an upward convex curl may occur in the sheet due to the upward curling by the lower curl correcting unit.
[0007] The present invention aims to provide an image forming apparatus capable of correcting an upward convex curl by an upper curl correcting section without causing an upward convex curl by a lower curl correcting section for a sheet transported on a double-sided transport path. [Means for solving the problem]
[0008] An image forming apparatus according to an embodiment of the present invention includes an image forming unit that forms a toner image on a sheet, a fixing unit that fixes the toner image to the sheet on which the toner image has been formed by the image forming unit, a discharge unit to which the sheet that has passed through the fixing unit is discharged, a discharge conveying path along which the sheet that has passed through the fixing unit is conveyed toward the discharge unit, and a reversing conveying path branched off from the discharge conveying path, and which reverses the sheet conveyed to the reversing conveying path in a first conveying direction in a second conveying direction opposite to the first conveying direction, and a reversing unit that branches off from the reversing conveying path and conveys a first side of the sheet and a second side opposite to the first side. During double-sided image formation in which a toner image is formed and fixed, the device comprises a re-conveying path along which, after the toner image on the first side is fixed, the sheet inverted in the reversing section is re-conveyed to the image forming section, and a curl correction section disposed on the re-conveying path and capable of correcting the curl of the sheet being transported along the re-conveying path, wherein the curl correction section has a first correction section which applies a force to curve the first side of the sheet transported along the re-conveying path convexly, and a second correction section which applies a force to curve the first side of the sheet concavely, and the second correction section is disposed downstream in the transport direction of the sheet from the first correction section. Effect of the Invention
[0009] According to the present invention, for a sheet transported along a double-sided transport path, the first straightening section does not cause a convex curl on the first side, and the second straightening section can straighten the convex curl on the first side. [Brief description of the drawings]
[0010] [Figure 1] 1 is a schematic diagram showing an image forming apparatus according to an embodiment of the present invention. [Diagram 2] FIG. [Diagram 3] FIG. 4 is an enlarged view showing the sponge rubber roller, the metal roller, and the backup roller. [Figure 4] FIG. [Diagram 5] FIG. 4 is a control block diagram of a curl correction control system. [Figure 6]11 is a flowchart showing a first half of curl correction control processing. [Figure 7] 11 is a flowchart showing a second half process subsequent to the first half process of curl correction control. [Figure 8] 5A and 5B are schematic diagrams illustrating a curled state of a sheet after passing through a fixing unit, in which (a) is an upward convex curl, and (b) is a downward convex curl. [Figure 9] 5A and 5B are schematic diagrams illustrating a state in which a sheet is abutted against a roller nip, in which (a) curl correction is not performed and (b) curl correction is performed. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0011] Hereinafter, an embodiment for carrying out the present invention will be described with reference to the drawings. Fig. 1 is a schematic diagram showing an image forming apparatus 1 of this embodiment. The image forming apparatus 1 shown in Fig. 1 is an electrophotographic full-color laser beam printer. The image forming apparatus 1 forms a toner image on a sheet S based on image data sent from a document reading device (not shown) connected to the main body of the apparatus or an external device (not shown) such as a personal computer connected to the main body of the apparatus so as to be capable of inputting and outputting data.
[0012] The image forming apparatus 1 of this embodiment has a first housing 1a that houses various units that supply sheet S and form an image on sheet S, a second housing 1b that houses various units that fix the toner image and cool sheet S, and a third housing 1c that is connected between the first housing 1a and the second housing 1b so that sheet S can be passed between them.
[0013] The first housing 1a accommodates the feeding units 10a and 10b, the pulling units 20a and 20b, the registration unit 30, the image forming unit 90, the first double-sided conveying path 60, and the first pre-fixing conveying path 56. The second housing 1b accommodates the fixing unit 100, the cooling unit 110, the discharge conveying path 120, the reversing section 130, the second double-sided conveying path 150, the discharge decurl unit 170, and the discharge section 175. The third housing 1c accommodates the second pre-fixing conveying path 851, the third pre-fixing conveying path 852, the intermediate double-sided conveying path 860, and the double-sided decurl unit 870. In this embodiment, the inversion conveying path (130a, 130b) of the inversion section 130, the second double-sided conveying path 150, the intermediate double-sided conveying path 860, and the first double-sided conveying path 60 form a series of conveying paths for conveying the sheet S in order to form and fix a toner image on the second side after the first side during double-sided image formation in which a toner image is formed on both sides of the sheet S.
[0014] The third housing 1c is configured separately from the first housing 1a and the second housing 1b, and is disposed and connected between the first housing 1a and the second housing 1b as an optional unit that can be added later to expand the functions of the image forming apparatus 1. In this embodiment, the third housing 1c accommodates an intermediate double-sided conveying path 860, a double-sided decurl unit 870, and the like, and functions as a curl correction device that can correct curls in the sheet S conveyed along the intermediate double-sided conveying path 860.
[0015] The image forming apparatus 1 may be configured from a single housing. However, as described above, if the third housing 1c is a separate body that can be connected to the first housing 1a and the second housing 1b, this is preferable because it improves the maintainability of the image forming apparatus 1 and also makes it easier to install the image forming apparatus 1. Furthermore, this is preferable because it allows a curl correction device to be added as an optional unit to an existing image forming apparatus.
[0016] The image forming unit 90 includes four process cartridges 99Y, 99M, 99C, and 99K that form toner images of four colors, yellow (Y), magenta (M), cyan (C), and black (K), respectively, and exposure devices 93, 96, 97, and 98. The process cartridges 99Y, 99M, 99C, and 99K as image forming sections have the same configuration except that the colors of the toner images formed on the sheet S are different.
[0017] Below the image forming unit 90, there is disposed an intermediate transfer belt 50 which is rotated in the direction of arrow T by a drive roller 52, and the intermediate transfer belt 50 is wound around a tension roller 51, a drive roller 52, and a secondary transfer inner roller 53. On the inside of the intermediate transfer belt 50, there are disposed primary transfer rollers 55Y, 55M, 55C, and 55K, and on the outside of the intermediate transfer belt 50, there is disposed a secondary transfer outer roller 54 which faces the secondary transfer inner roller 53.
[0018] The feeding unit 10a has a lift plate 11a which moves up and down while stacking sheets S, a pickup roller 12a which feeds the sheets S stacked on the lift plate 11a, and a separation roller pair 13a which separates the fed sheets S one by one. Similarly, the feeding unit 10b has a lift plate 11b which moves up and down while stacking sheets S, a pickup roller 12b which feeds the sheets S stacked on the lift plate 11b, and a separation roller pair 13b which separates the fed sheets S one by one.
[0019] The registration unit 30 has a pair of pre-registration rollers 31 that transport the sheet S, a pair of registration rollers 32 that corrects skew of the sheet S, a registration sensor 33 that detects the position of the sheet S in the transport direction, and a contact image sensor 34 that detects the position of the sheet S in the width direction (direction intersecting the transport direction).
[0020] The fixing unit 100 as a fixing section includes a pair of fixing rollers 101 for fixing a toner image onto a sheet S, and the pair of fixing rollers 101 includes a heating roller 102 and a pressure roller 103. The heating roller 102 includes a halogen heater 104 as a heat source therein, and is heated by the halogen heater 104. The pressure roller 103 is pressed toward the heating roller 102 by a driving source (not shown) and contacts the outer peripheral surface of the heating roller 102 to form a fixing nip portion. The fixing unit 100 fixes the toner image onto the sheet S by applying heat and pressure to the sheet S while nipping and conveying the sheet S on which the toner image has been formed in the fixing nip portion formed by the heating roller 102 and the pressure roller 103. Note that the heating roller 102 and the pressure roller 103 are not limited to cylindrical roller members, and may be endless belt members.
[0021] The cooling unit 110 has an upper cooling belt 111a rotated in the direction of the arrow U by an upper cooling drive roller 112a, and a lower cooling belt 111b rotated in the direction of the arrow U by a lower cooling drive roller 112b. The cooling unit 110 also has a heat sink 113 for cooling the sheet S via the upper cooling belt 111a, and the heat sink 113 is disposed so as to abut against the inner circumferential surface of the upper cooling belt 111a. The upper cooling belt 111a and the lower cooling drive roller 112b abut against each other to form a cooling nip portion that pinches and conveys the sheet S after it has passed through the fixing unit 100 to cool it.
[0022] Next, the image forming operation of the image forming apparatus 1 will be described. In the process cartridge 99Y, the photosensitive drum 91, which is formed by coating an organic photoconductive layer on the outer periphery of an aluminum cylinder, is rotated by a drive motor (not shown), and the surface is uniformly charged to a predetermined polarity and potential by a charging roller 95. When an image signal is input from an external device such as a personal computer (not shown), a laser beam corresponding to the image signal is emitted from an exposure device 93, and the emitted laser beam irradiates the surface of the photosensitive drum 91 via a mirror 94. An electrostatic latent image is formed on the surface of the photosensitive drum 91 by irradiating the laser beam. The electrostatic latent image formed on the photosensitive drum 91 is developed by a developer 92 using a developer, and a yellow (Y) toner image is formed on the photosensitive drum 91. In the same manner, magenta (M), cyan (C) and black (K) toner images are formed on the photosensitive drums of the process cartridges 99M, 99C and 99K.
[0023] The toner images of each color formed on each photosensitive drum are primarily transferred to the intermediate transfer belt 50 by the primary transfer rollers 55Y, 55M, 55C, and 55K. The toner images primarily transferred to the intermediate transfer belt 50 are conveyed to a secondary transfer nip T2 formed by a secondary transfer inner roller 53 and a secondary transfer outer roller 54 as the intermediate transfer belt 50 is rotated by a drive roller 52. The image forming process of each color described above is performed at a timing to overlap the toner image primarily transferred onto the intermediate transfer belt 50 upstream in the rotation direction of the intermediate transfer belt 50. Note that the toner remaining on the photosensitive drum after the primary transfer is collected by a cleaner (not shown).
[0024] In parallel with the image forming process, the sheets S are fed one by one from either of the feeding units 10a and 10b, and the fed sheets S are conveyed toward the registration unit 30 by either of the drawing units 20a and 20b. The sheet S is subjected to positional deviation correction and skew correction by the registration unit 30, and is conveyed toward the secondary transfer nip portion T2 at a predetermined conveying timing. The secondary transfer nip portion T2 is a transfer portion formed by the secondary transfer inner roller 53 and the secondary transfer outer roller 54. The toner image on the intermediate transfer belt 50 is secondarily transferred to the sheet S in response to the application of a secondary transfer voltage to the secondary transfer outer roller 54. The toner remaining on the intermediate transfer belt 50 after the secondary transfer is collected by the belt cleaner 151.
[0025] The sheet S onto which the toner image has been secondarily transferred is conveyed toward the fixing unit 100 through the first pre-fixing conveyance path 56, the second pre-fixing conveyance path 851, and the third pre-fixing conveyance path 852. Then, heat and pressure are applied to the sheet S in the fixing nip of the fixing unit 100, and the toner is fixed onto the sheet S. The sheet S that has passed through the fixing unit 100 is conveyed to the cooling unit 110. Then, in the cooling unit 110, the upper cooling belt 111a cooled by the heat sink 113 removes heat from the sheet S, thereby cooling the sheet S. For example, when the temperature of the sheet S after passing through the fixing unit 100 and fixing the toner image is about "80 to 90°C", the cooling unit 110 can cool the sheet S to about "60 to 70°C".
[0026] If the temperature of the sheet S remains high when the sheet S is discharged onto a discharge tray (not shown), the sheets S will stick together due to the toner depending on how they are stacked on the discharge tray. To prevent this, it is preferable to lower the temperature of the sheet S to 45 to 55°C or lower before discharging the sheet S onto the discharge tray. However, if the temperature of the sheet S is lowered to 45 to 55°C or lower, it becomes difficult to straighten the curl of the sheet S using the discharge decurl unit 170 or the double-sided decurl unit 870, which will be described later. Therefore, the cooling unit 110 lowers the temperature of the sheet S to 60 to 70°C, at which the discharge decurl unit 170 or the double-sided decurl unit 870 can easily achieve the curl straightening effect.
[0027] The image forming apparatus 1 is capable of printing on both sides of a sheet S. During single-sided image formation in which a toner image is formed on one side of the sheet S, the sheet S with the toner image fixed on one side is conveyed from the discharge conveying path 120 toward the discharge section 175 and discharged to a discharge tray (not shown). In the discharge section 175, the sheet S is conveyed with the side on which the toner image was just formed (for convenience, referred to as the image forming side) facing upward. In this embodiment, even if the sheet S curls due to heat when the toner image is fixed, the curl of the sheet S is corrected by the discharge decurling unit 170 disposed in the discharge section 175.
[0028] On the other hand, during double-sided image formation in which toner images are formed on both sides of the sheet S, the sheet S with the toner image fixed on one side is transported from the discharge transport path 120 to the inversion unit 130. In the discharge transport path 120, a flapper 160 switches the branch of the transport path to either transport the sheet S to the discharge unit 175 or transport the sheet S to the inversion unit 130.
[0029] The reversing section 130 has a first reversing conveying path 130a that conveys the sheet sent from the fixing unit 100 in the direction of the arrow U in a first conveying direction (a direction intersecting the direction of the arrow U) and then reverses and conveys the sheet in a second conveying direction opposite to the first conveying direction. In the case of this embodiment, the first reversing conveying path 130a performs a switchback operation that reverses the conveying direction of the sheet S from a vertical downward direction to an upward direction so that the leading end and trailing end of the sheet S are switched.
[0030] The reversing unit 130 also has a second reversing conveying path 130b that guides the sheet sent out from the first reversing conveying path 130a in the direction opposite to the direction of the arrow U. The second reversing conveying path 130b is an evacuation unit for temporarily evacuating the sheet S when the sheet S is switched back.
[0031] The sheet S switched back at the first reversing conveying path 130a is conveyed to the second double-sided conveying path 150. Thereafter, the sheet S is conveyed to the registration unit 30 through the intermediate double-sided conveying path 860 and the first double-sided conveying path 60. At the second double-sided conveying path 150, the intermediate double-sided conveying path 860, and the first double-sided conveying path 60, the sheet S is conveyed with the image forming surface (first surface) facing upward. Then, at the registration unit 30, the sheet S is conveyed toward the secondary transfer nip portion T2 with the image forming surface (first surface) facing downward, in other words, with the second surface on which a toner image is not formed facing the intermediate transfer belt 50 side.
[0032] At the secondary transfer nip T2, the toner image formed on the intermediate transfer belt 50 is secondarily transferred to the second side of the sheet S. Thereafter, the toner image is fixed to the sheet S by the fixing unit 100, and the sheet S is discharged to a discharge tray (not shown) via the discharge conveying path 120 and the discharge section 175.
[0033] <Double-sided decal unit> Next, the double-sided decurl unit 870 disposed on the intermediate double-sided conveying path 860 as a re-conveying path will be described with reference to Fig. 1 and Fig. 2 and Fig. 3. In Fig. 2 and Fig. 3, the X direction in the drawings indicates the conveying direction of the sheet S conveyed on the intermediate double-sided conveying path 860.
[0034] As shown in Figure 2, the double-sided decurl unit 870 as a curl correction section has a first straightening section 400 for straightening downward convex curls that occur in the sheet S, and a second straightening section 500 for straightening upward convex curls that occur in the sheet S.
[0035] The first straightening unit 400 has a metal roller 402, which is a hard sheet conveying rotating body made of, for example, stainless steel, and a sponge rubber roller 401. The metal roller 402 is rotatably supported by bearings fixed at both ends of a rotating shaft to a frame (not shown) of the image forming apparatus 1 in a width direction intersecting with the conveying direction of the sheet S. The metal roller 402 rotates by transmitting the rotational driving force of a motor (not shown) to the rotating shaft via a gear train (not shown).
[0036] The sponge rubber roller 401 as the second rotating body is a sheet conveying rotating body having a metallic rotating shaft portion made of stainless steel or the like and a foamed urethane foam or the like with a resin-coated surface. The sponge rubber roller 401 has a rotating shaft portion rotatably supported by bearing portions fixed to both ends of a roller holding plate 401a in the width direction. The roller holding plate 401a is attached to a frame (not shown) of the image forming apparatus 1 so as to be freely swingable. The roller holding plate 401a is erected upward from the intermediate double-sided conveying path 860 side toward the third pre-fixing conveying path 852 side, and the double-sided first decurl cam 404 is in contact with the upper end side close to the third pre-fixing conveying path 852.
[0037] The sponge rubber roller 401 presses the metal roller 402 as a first rotating body in response to the roller holding plate 401a being swung by the action of the double-sided first decal cam 404. The double-sided first decal cam 404 can move the sponge rubber roller 401 relative to the metal roller 402 by being rotated by a double-sided first cam drive motor M1 (see FIG. 5) described later. The sponge rubber roller 401 rotates following the metal roller 402 by the frictional force generated between the sponge rubber roller 401 and the rotating metal roller 402. The sponge rubber roller 401 is not limited to one using a urethane foam foam, but may be one using a non-foam elastic rubber. The outer diameter of the metal roller 402 is, for example, "8 mm", and the outer diameter of the sponge rubber roller 401 is, for example, "20 mm" which is larger than that of the metal roller 402. The sponge rubber roller 401 is not limited to being moved relative to the metal roller 402, but may be moved relative to the sponge rubber roller 401.
[0038] 3, metal roller 402 and sponge rubber roller 401 convey sheet S in the X direction in the figure while correcting curls in sheet S. Sponge rubber roller 401 is an elastic roller that can be elastically deformed, and since it presses against metal roller 402, the surface of sponge rubber roller 401 is elastically deformed into a concave shape. In the case of first correcting section 400, sponge rubber roller 401 is disposed above metal roller 402, so sponge rubber roller 401 is concave upward. In this way, first nip portion 400a is formed between metal roller 402 and sponge rubber roller 401.
[0039] In this embodiment, a metallic backup roller 403 abuts against metal roller 402 on the side opposite to sponge rubber roller 401. Backup roller 403 is rotatably supported by bearings fixed at both ends of rotation shaft 405 in the width direction to a frame (not shown) of image forming apparatus 1. Backup roller 403 prevents metal roller 402 from being bent and deformed by the pressing force of sponge rubber roller 401 in order to properly form first nip portion 400a.
[0040] In the first nip section 400a, a force is applied to the sheet S transported through the intermediate double-sided transport path 860, which causes the first surface side (the upper surface side in FIG. 2) of the sheet S to be curved convexly. That is, when the sheet S passes through the first nip section 400a, it is transported while being wrapped around the circumferential surface of the metal roller 402, and thus the sheet S is curled upward. Therefore, the first straightening section 400 straightens out the downward convex curl.
[0041] The second straightening unit 500 has the same configuration as the above-mentioned first straightening unit 400. That is, as shown in Fig. 2, the second straightening unit 500 has a metal roller 502 as a third rotating body, a sponge rubber roller 501 as a fourth rotating body, and a backup roller 503. However, the second straightening unit 500 is disposed in the intermediate double-sided conveying path 860 so that the second straightening unit 500 and the first straightening unit 400 are oriented upside down in the opposite direction.
[0042] A second nip portion 500a is formed between the metal roller 502 and the sponge rubber roller 501. In the second nip portion 500a, a force is applied to the sheet S conveyed through the intermediate double-sided conveying path 860, causing the first surface side (upper surface side) of the sheet S to be curved concavely. That is, in the second straightening portion 500, when the sheet S passes through the second nip portion 500a, the sheet S is conveyed while being wrapped around the circumferential surface of the metal roller 502, causing the sheet S to be curled downward. Therefore, the second straightening portion 500 straightens out the upward convex curl. Note that it is sufficient that either the sponge rubber roller 501 or the metal roller 502 can move relative to the other.
[0043] In this embodiment, the second straightening unit 500 is disposed downstream of the first straightening unit 400 in the conveying direction (arrow X direction) of the sheet S in the intermediate double-sided conveying path 860. That is, the metal roller 502 is disposed downstream of the sponge rubber roller 401 in the conveying direction of the sheet S, and the sponge rubber roller 501 is disposed downstream of the metal roller 402 in the conveying direction of the sheet S.
[0044] <Decal ejection unit> The discharge decurl unit 170 disposed in the discharge section 175 may have the same arrangement of the first straightening section 400 and the second straightening section 500 as the double-sided decurl unit 870 described above, or the arrangement may be reversed. Fig. 4 shows a discharge decurl unit 170 in which the arrangement of the first straightening section 400 and the second straightening section 500 is reversed. In Fig. 4, the first straightening section 400 and the second straightening section 500 have the same configuration, so they are denoted by the same reference numerals and their description will be omitted.
[0045] In the discharge / decurl unit 170, the first straightening section 400 for straightening downward convex curls is disposed downstream of the second straightening section 500 for straightening upward convex curls in the conveying direction (X direction) of the sheet S. This is because the sheet S is conveyed without passing through a curved section, which is curved to a degree that may cause curling of the sheet S, as described below. That is, since the conveying path from the fixing unit 100 to the discharge section 175 does not have a curved section that may cause curling of the sheet S, the sheet S conveyed toward the discharge section 175 does not have an upward convex curl or a downward convex curl due to the curved section. Therefore, in the discharge / decurl unit 170, it is sufficient that the first straightening section 400 and the second straightening section 500 can straighten curls caused by heat during toner image fixing. Therefore, the first straightening section 400 and the second straightening section 500 may be disposed on either the upstream side or the downstream side.
[0046] <Control Unit> In this embodiment, the image forming apparatus 1 includes a control unit 190. The control unit 190 will be described using FIG. 5 with reference to FIG. 1 and FIG. 2, mainly with regard to a curl correction control system capable of controlling the double-sided decurl unit 870 and the discharge decurl unit 170. In addition to those shown in the figure, the control unit 190 is connected to various devices such as each unit constituting the image forming apparatus 1 and a drive source (motor, power supply, etc.) for operating each unit. However, since this is not the main point of the invention, illustration and description of these will be omitted here.
[0047] The control unit 190 controls various operations related to image formation, and is composed of, for example, a CPU 901 (Central Processing Unit), a ROM 902 (Read Only Memory), and a RAM 903 (Random Access Memory). The ROM 902 and RAM 903 store various programs such as image formation processing (not shown) and "curl correction processing" (see Figs. 6 and 7), image data for forming a toner image, and various data such as the pressure amount according to the type of sheet S. The RAM 903 can also temporarily store the results of calculation processing associated with the execution of various programs.
[0048] The control unit 190 is connected to the operation unit 180. The operation unit 180 has a display unit such as a liquid crystal panel that displays information to the user, and an input device such as physical keys or a touch panel function unit of a liquid crystal panel that allows the user to input commands and data to the control unit 190. By operating the operation unit 180, the user can set, for example, the type of sheet to be used in the current image forming job, whether it is thin paper with a basis weight less than a threshold value or thick paper with a basis weight equal to or greater than a threshold value. When performing curl correction processing, the control unit 190 controls the double-sided decurl unit 870 and the discharge decurl unit 170 based on various information received from the operation unit 180.
[0049] Further, the control unit 190 is connected to the double-sided first cam drive motor M1, the double-sided second cam drive motor M2, the discharge first cam drive motor M3, and the discharge second cam drive motor M4 through the respective drivers B01, B02, B03, and B04. The double-sided first cam drive motor M1 as the first drive unit and the double-sided second cam drive motor M2 as the second drive unit respectively rotate and drive the double-sided first decall cam 404 and the double-sided second decall cam 504 of the double-sided decall unit 870. The discharge first cam drive motor M3 and the discharge second cam drive motor M4 respectively rotate and drive the discharge first decall cam 404 and the discharge second decall cam 504 of the discharge decall unit 170. This allows the sponge rubber roller 401 to move relative to the metal roller 402, and the sponge rubber roller 501 to move relative to the metal roller 502. The respective drivers B01, B02, B03, and B04 transmit drive signals to the respective motors (M1 to M4) based on control signals received from the control unit 190.
[0050] <Curl correction treatment> In this embodiment, when the sheet S is discharged, the curl of the sheet S is corrected by the discharge decurl unit 170. Furthermore, during double-sided image formation in which toner images are formed on both sides of the sheet S, the curl of the first side of the sheet S is corrected by the double-sided decurl unit 870, and the curl of the second side of the sheet S is corrected by the discharge decurl unit 170.
[0051] The "curl correction process" for controlling the discharge decurl unit 170 and the double-sided decurl unit 870 will be described below with reference to Figs. 1, 2, 4, and 5, as well as Figs. 6 to 9(b). The "curl correction process" is repeatedly executed by the control unit 190 from the start to the end of an "image forming job". For convenience of illustration, Figs. 6 and 7 show a series of "curl correction control" steps divided into a first half process and a second half process. For ease of understanding, the curl correction of the sheet S during double-sided image formation will be described.
[0052] As shown in FIG. 6, the control unit 190 acquires various information input by the user from the operation unit 180, such as the type of sheet S, formed image information, and whether the job is a single-sided image formation job or a double-sided image formation job (S10). The control unit 190 passes the sheet S with the toner image formed on the first side through the fixing unit 100 (S11). Based on the various information received from the operation unit 180, the control unit 190 determines the curl state of the sheet S after the toner image on the first side is fixed due to heat (S12, S13). As the curl state of the sheet S, the control unit 190 determines whether the sheet S is prone to curl (S12) and whether the sheet S is prone to have a convex first side (S13). Then, the control unit 190 controls the double-sided decurl unit 870 according to the curl state of the sheet S on the first side (S14 to S17).
[0053] For example, when the sheet S is thin paper, as shown in Fig. 8(a), the sheet S with a toner image fixed on one side is likely to curl in an upward convex shape with the first side (image forming side) curved convexly. That is, in the case of a thin sheet S with a toner image formed on one side, when the sheet S is heated by the heating roller 102 while passing through the fixing unit 100, both ends of the sheet S in the transport direction may curl in a direction away from the heating roller 102.
[0054] 9A, if the upward convex curl is not corrected, the leading edge of the sheet S will not easily abut against the roller nip portion T3 of the registration roller pair 32. If the leading edge of the sheet S does not properly abut against the roller nip portion T3, there is a risk that the registration roller pair 32 will not properly correct the positional deviation and skew of the sheet S.
[0055] Therefore, when the control unit 190 determines that the sheet S is likely to curl (YES in S12) and that the first side is likely to become convex (YES in S13) based on various information received from the operation unit 180, it rotates the double-sided second decurl cam 504 (S14). That is, in the double-sided decurl unit 870, the control unit 190 drives the double-sided second cam drive motor M2 to rotate the double-sided second decurl cam 504 of the second correction unit 500.
[0056] At this time, the control unit 190 makes the pressing amount between the metal roller 502 and the sponge rubber roller 501 larger than the pressing amount between the metal roller 402 and the sponge rubber roller 401 of the first straightening unit 400 (S15). As an example, when the sheet S is thin paper, the sponge rubber roller 501 presses the metal roller 502 so that the pressing amount between the metal roller 502 and the sponge rubber roller 501 is "2 mm". The reference value of the pressing amount between the metal roller 502 and the sponge rubber roller 501 and the reference value of the pressing amount between the metal roller 402 and the sponge rubber roller 401 are, for example, "1.0 mm". In this way, when the sheet S is thin paper, the effect of correcting the curl of the upward convex shape by the double-sided decurl unit 870 can be easily obtained. After that, the control unit 190 passes the sheet S from the double-sided decurl unit 870 (S18).
[0057] When the sheet S curled in an upward convex shape passes through the second straightening section 500, the sheet S is transported through the second nip section 500a with the sponge rubber roller 501 while being wrapped around the metal roller 502. At this time, the curl of the sheet S curled in an upward convex shape is straightened. When the upward convex curl is properly straightened, as shown in FIG. 9B, the leading edge of the sheet S properly abuts against the roller nip section T3 of the registration roller pair 32, so that the positional deviation correction and skew correction of the sheet S are properly performed by the registration roller pair 32.
[0058] On the other hand, when the sheet is thick paper, as shown in Fig. 8(b), the sheet S with a toner image fixed on one side is likely to curl in a downward convex shape with the first side (image forming side) curved concavely, in other words, the second side curved convexly. That is, in the case of a thick paper sheet S with a toner image formed on one side, when the toner is heated by the heating roller 102 while passing through the fixing unit 100, the toner may subsequently contract and curl both ends of the sheet S in the conveying direction toward the heating roller 102.
[0059] Therefore, when the control unit 190 determines that the sheet S is likely to curl (YES in S12) and that the second side is likely to become convex (NO in S13) based on various information received from the operation unit 180, it rotates the double-sided first decurl cam 404 (S16). That is, in the double-sided decurl unit 870, the control unit 190 drives the double-sided first cam drive motor M1 to rotate the double-sided first decurl cam 404 of the first correction unit 400.
[0060] At this time, the control unit 190 makes the amount of pressure between the metal roller 402 and the sponge rubber roller 401 greater than the amount of pressure between the metal roller 502 and the sponge rubber roller 501 of the second straightening unit 500 (S17). As an example, when the sheet S is thick paper, the sponge rubber roller 401 presses the metal roller 402 so that the amount of pressure between the metal roller 402 and the sponge rubber roller 401 is "2 mm". In this way, when the sheet S is thick paper, it becomes easier to obtain the effect of correcting the downward convex curl by the double-sided decurl unit 870. Thereafter, the control unit 190 passes the sheet S from the double-sided decurl unit 870 (S18).
[0061] When the sheet S curled in a downward convex shape passes through the first straightening section 400, the sheet S is transported through the first nip section 400a with the sponge rubber roller 401 while being wrapped around the metal roller 402. At this time, the curl of the sheet S curled in a downward convex shape is straightened. When the downward convex curl is properly straightened, as shown in FIG. 9B, the leading edge of the sheet S properly abuts against the roller nip section T3 of the registration roller pair 32, and the positional deviation correction and skew correction of the sheet S are properly performed by the registration roller pair 32.
[0062] After the toner image on the second side is fixed, the control unit 190 passes the sheet S with the toner image formed on the second side through the fixing unit 100 (S19) as shown in FIG. 7. The control unit 190 determines the curl state of the sheet S caused by heat after the toner image on the second side is fixed based on the above-mentioned various information received from the operation unit 180 (S20, S21). The control unit 190 determines whether the sheet S is prone to curl (S20) and whether the sheet S is prone to have a convex second side (S21). Then, the control unit 190 controls the discharge decurl unit 170 according to the curl state of the sheet S on the second side (S22 to S25). Even after the toner image on the second side is fixed, the sheet S may have a convex upward curl or a convex downward curl. Therefore, in this embodiment, the discharge decurl unit 170 (see FIG. 4) is configured to correct the curl of the sheet S after the toner image on the second side is fixed.
[0063] For example, when the sheet S is thin paper, the second side may curl in an upward convex shape as well as the first side. Therefore, the control unit 190 rotates the discharge second decurl cam 504 in the discharge decurl unit 170 (S22). That is, in the discharge decurl unit 170, the control unit 190 drives the discharge second cam drive motor M4 to rotate the discharge second decurl cam 504 of the second straightening unit 500. At this time, the control unit 190 makes the pressing amount between the metal roller 502 and the sponge rubber roller 501 larger than the pressing amount between the metal roller 402 and the sponge rubber roller 401 of the first straightening unit 400 (S23). When the sheet S curled in an upward convex shape passes through the second straightening unit 500, the sheet S is transported through the nip portion with the sponge rubber roller 501 while being wrapped around the metal roller 502. At this time, the curl of the sheet S curled in an upward convex shape is straightened. Thereafter, the control section 190 causes the sheet S to pass through the discharge decurl unit 170 (S26) and to be discharged from the discharge section 175 to the outside of the apparatus (S27).
[0064] On the other hand, when the sheet S is thick paper, a downward convex curl may occur on the second side as well as on the first side. Therefore, the control unit 190 rotates the discharge first decurl cam 404 in the discharge decurl unit 170 (S24). That is, in the discharge decurl unit 170, the control unit 190 drives the discharge first cam drive motor M3 to rotate the discharge first decurl cam 404 of the first straightening section 400. At this time, the control unit 190 makes the pressing amount between the metal roller 402 and the sponge rubber roller 401 larger than the pressing amount between the metal roller 502 and the sponge rubber roller 501 of the second straightening section 500 (S25). When the sheet S curled in a downward convex shape passes through the first straightening section 400, the sheet S is transported through the nip portion with the sponge rubber roller 401 while being wrapped around the metal roller 402. At this time, the curl of the sheet S curled in a downward convex shape is straightened. Thereafter, the control section 190 causes the sheet S to pass through the discharge decurl unit 170 (S26) and to be discharged from the discharge section 175 to the outside of the apparatus (S27).
[0065] Returning to FIG. 1, in this embodiment, the first pre-fixing conveying path 56, the second pre-fixing conveying path 851, the third pre-fixing conveying path 852, the second double-sided conveying path 150, the intermediate double-sided conveying path 860, and the first double-sided conveying path 60 all extend in a substantially horizontal direction. In the second housing 1b, in the vertical direction, the second double-sided conveying path 150 is provided below the fixing unit 100 and the cooling unit 110, and the second reversing conveying path 130b is provided below the second double-sided conveying path 150. That is, the fixing unit 100 and the cooling unit 110 located above the second reversing conveying path 130b are both at least partially overlapped with the reversing section 130 when viewed in the vertical direction. In addition, the second reversing conveying path 130b and the feeding units 10a and 10b are arranged side by side in the horizontal direction, and their occupied ranges in the vertical direction overlap.
[0066] The above-mentioned arrangement is effective in suppressing the size of the image forming apparatus 1 from being increased due to the arrangement of the second reversal conveying path 130b. However, the second reversal conveying path 130b has a plurality of curved portions 1301 each having a small curvature and a sharp curve. As shown in FIG. 1, the curved portions 1301 are formed inwardly curved. Therefore, when the sheet S is conveyed through the second reversal conveying path 130b, the curved portions 1301 apply a strong load to the sheet S, causing the sheet S to curl in an upward convex shape. Therefore, depending on the type of sheet S, the curved portions 1301 may cause the sheet S to curl in an upward convex shape, regardless of whether or not the sheet S has curled due to heat generated during toner image fixing.
[0067] Although not shown in the drawings, consider a comparative example in which the second straightening unit 500 for straightening upward convex curls is arranged upstream of the first straightening unit 400 for straightening downward convex curls in the double-sided decurl unit 870, as opposed to the present embodiment (see FIG. 2). Even in this comparative example, the second straightening unit 500 can straighten upward convex curls.
[0068] However, in the comparative example, even though the second straightening section 500 has corrected the upward convex curl, when the sheet S subsequently passes through the first straightening section 400, the first straightening section 400 may cause an upward convex curl in the sheet S. As a result, the registration unit 30 may not properly correct the positional deviation or skew of the sheet S, the sheet S may get stuck in the secondary transfer nip section T2 or the fixing nip section, or wrinkles may occur in the sheet S.
[0069] In contrast, in the present embodiment, as described above, in the double-sided decurl unit 870, the second straightening section 500 for straightening an upward convex curl is disposed downstream of the first straightening section 400 for straightening a downward convex curl. By disposing the second straightening section 500 downstream of the first straightening section 400, the sheet S passes through the first straightening section 400 first, and then passes through the second straightening section 500. Therefore, even if an upward convex curl occurs in the sheet S due to the curved section 1301 having a small curvature rate in addition to the curl caused by heat, the upward convex curl can be straightened by the second straightening section 500 without the first straightening section 400 causing the upward convex curl.
[0070] The present technology can also be configured as follows. (1) an image forming unit that forms a toner image on a sheet; a fixing unit that fixes the toner image onto the sheet on which the toner image has been formed by the image forming unit; a discharge section to which the sheet that has passed through the fixing section is discharged; a discharge conveying path along which the sheet that has passed through the fixing unit is conveyed toward the discharge unit; a reversing unit having a reversing conveying path branched off from the discharge conveying path, and reversing the sheet conveyed to the reversing conveying path in a first conveying direction in a second conveying direction opposite to the first conveying direction; a re-conveying path that branches off from the reversing conveying path, and through which the sheet that has been reversed by the reversing section is re-conveyed to the image forming section after the toner image on the first side is fixed during double-sided image formation in which a toner image is formed and fixed on one side of a sheet and a second side opposite to the first side; a curl correction unit that is disposed in the re-conveyance path and is capable of correcting curls of the sheet being conveyed along the re-conveyance path, the curl straightening unit includes a first straightening unit that applies a force to the sheet conveyed through the re-conveying path to curve the first side of the sheet in a convex shape, and a second straightening unit that applies a force to the sheet in a concave shape to the first side of the sheet, The second correction unit is disposed downstream of the first correction unit in a conveying direction of the sheet. 1. An image forming apparatus comprising: (2) the first correcting unit includes a first rotating body and a second rotating body that contacts the first rotating body to form a first nip portion between the first rotating body and the sheet, the first surface side of the sheet being nipped and conveyed so as to be curved convexly; The second correcting unit includes a third rotating body and a fourth rotating body that contacts the third rotating body to form a second nip portion between the third rotating body and the sheet, and nip and conveys the sheet so that the first surface side of the sheet is curved concavely. 4. The image forming apparatus according to claim 1, (3) the first rotating body and the third rotating body are metal rollers, the second rotating body and the fourth rotating body are elastic rollers that are in contact with the metal roller and are elastically deformable. 3. The image forming apparatus according to claim 2, (4) a first drive unit capable of moving one of the first rotating body and the second rotating body relative to the other; a second drive unit capable of moving one of the third rotating body and the fourth rotating body relative to the other; A control unit capable of controlling the first drive unit and the second drive unit, the control unit, when the basis weight of the sheet is equal to or greater than a threshold value, causes a pressing amount applied between the first rotating body and the second rotating body to be greater than a pressing amount applied between the third rotating body and the fourth rotating body; When the basis weight of the sheet is smaller than the threshold value, a pressing amount applied between the third rotating body and the fourth rotating body is made larger than a pressing amount applied between the first rotating body and the second rotating body. 4. The image forming apparatus according to claim 2, wherein the first and second electrodes are arranged in a first direction. (5) the reverse conveying path has a curved portion that guides the sheet, which is conveyed from the fixing unit and has a toner image on one side fixed thereon, while curving the sheet so that the first side becomes convex. 5. The image forming apparatus according to claim 1, wherein the image forming apparatus comprises: (6) The image forming unit is accommodated in a first housing, The fixing unit is accommodated in a second housing, the curl correction unit is accommodated in a third housing disposed between the first housing and the second housing. 6. The image forming apparatus according to claim 1, wherein the image forming apparatus comprises: [Explanation of symbols]
[0071] 1...image forming apparatus, 1a...first housing, 1b...second housing, 1c...third housing, 99Y, 99M, 99C, 99K...image forming section (process cartridge), 100...fixing section (fixing unit), 120...discharge conveying path, 130...reversing section, 130a (130b)...reversing conveying path (first reversing conveying path, second reversing conveying path), 175...discharge section, 190...control section, 400...first correction section, 400a...first nip section, 401...second rotating body (elastic roller, spot 402...first rotating body (metal roller), 500...second straightening section, 500a...second nip section, 501...fourth rotating body (elastic roller, sponge rubber roller), 502...third rotating body (metal roller), 860...re-conveying path (intermediate double-sided conveying path), 870...curl straightening section (double-sided decurl unit), 1301...curving section, M1...first driving section (double-sided first cam driving motor), M2...second driving section (double-sided second cam driving motor), S...sheet
Claims
1. an image forming unit that forms a toner image on a sheet; a fixing unit that fixes the toner image on the sheet on which the toner image has been formed by the image forming unit; a discharge section to which the sheet that has passed through the fixing section is discharged; a discharge conveyance path along which the sheet that has passed through the fixing unit is conveyed toward the discharge unit; a reversing unit having a reversing conveying path branched from the discharge conveying path, and reversing the sheet conveyed to the reversing conveying path in a first conveying direction in a second conveying direction opposite to the first conveying direction; a re-conveyance path branching from the reversing conveyance path, for re-conveying the sheet reversed by the reversing unit to the image forming unit after the toner image on the first side is fixed during double-sided image formation in which toner images are formed and fixed on one side of the sheet and a second side opposite to the first side; a curl correction unit that is disposed in the re-conveyance path and that can correct curls of the sheet being conveyed through the re-conveyance path, the curl correction unit includes a first correction unit including a first elastic roller in contact with the first side and a first metal roller in contact with the second side of the sheet conveyed through the re-conveyance path, and a second correction unit including a second metal roller in contact with the first side and a second elastic roller in contact with the second side of the sheet, the first elastic roller and the first metal roller form a first nip portion that nip and transport a sheet, and the first metal roller corrects curls in the sheet by deforming the first elastic roller; the second metal roller and the second elastic roller form a second nip portion that nip and transport a sheet, and the second metal roller corrects curls in the sheet by deforming the second elastic roller; the second correction unit is disposed downstream of the first correction unit in a conveyance direction of the sheet; An image forming apparatus characterized by:
2. The reversing conveying path has a curved portion that curves and guides the sheet.
2. The image forming apparatus according to claim 1, wherein the image forming apparatus is a recording medium.
3. The outer diameter of the first elastic roller is larger than the outer diameter of the first metal roller, The outer diameter of the second elastic roller is larger than the outer diameter of the second metal roller.
2. The image forming apparatus according to claim 1, wherein the image forming apparatus is a recording medium.
4. a first driving unit that can change the amount of pressure between the first elastic roller and the first metal roller by moving one of the first elastic roller and the first metal roller relative to the other; a second driving unit that can change the amount of pressure between the second elastic roller and the second metal roller by moving one of the second elastic roller and the second metal roller relative to the other; a control unit capable of controlling the first drive unit and the second drive unit, The control unit When the basis weight of the sheet is equal to or greater than a threshold value, the pressing amount between the first elastic roller and the first metal roller is made larger than the pressing amount between the second elastic roller and the second metal roller; When the basis weight of the sheet is smaller than the threshold value, the pressing amount between the second elastic roller and the second metal roller is made larger than the pressing amount between the first elastic roller and the first metal roller.
2. The image forming apparatus according to claim 1, wherein the image forming apparatus is a recording medium.
5. The image forming unit is housed in a first housing, the fixing unit is housed in a second housing, the curl correction unit is accommodated in a third housing disposed between the first housing and the second housing.
2. The image forming apparatus according to claim 1, wherein the image forming apparatus is a recording medium.
6. An image forming unit that forms a toner image on a sheet; a fixing unit that fixes the toner image on the sheet on which the toner image has been formed by the image forming unit; a discharge section to which the sheet that has passed through the fixing section is discharged; a discharge conveyance path along which the sheet that has passed through the fixing unit is conveyed toward the discharge unit; a reversing unit having a reversing conveying path branched from the discharge conveying path, and reversing the sheet conveyed to the reversing conveying path in a first conveying direction in a second conveying direction opposite to the first conveying direction; a re-conveyance path branching from the reversing conveyance path, for re-conveying the sheet reversed by the reversing unit to the image forming unit after the toner image on the first side is fixed during double-sided image formation in which toner images are formed and fixed on one side of the sheet and a second side opposite to the first side; a curl correction unit that is disposed on the re-conveyance path and that can correct curls in the sheet being conveyed on the re-conveyance path, the curl correction unit including a first correcting unit that includes a first rotating body that contacts the first side and a second rotating body that contacts the second side of the sheet being conveyed on the re-conveyance path, and a second correcting unit that includes a third rotating body that contacts the first side and a fourth rotating body that contacts the second side of the sheet being conveyed on the re-conveyance path; a first drive unit that can change the amount of pressure applied to the first rotating body and the second rotating body by moving one of the first rotating body and the second rotating body relative to the other; a second drive unit that can change the amount of pressure applied to the third rotating body and the fourth rotating body by moving one of the third rotating body and the fourth rotating body relative to the other; a control unit capable of controlling the first drive unit and the second drive unit, the first rotating body and the second rotating body form a first nip portion that nips and conveys a sheet, and the second rotating body corrects curls in the sheet by deforming the first rotating body; the third rotating body and the fourth rotating body form a second nip portion that nips and conveys a sheet, and the third rotating body corrects curls in the sheet by deforming the fourth rotating body; The control unit When the basis weight of the sheet is equal to or greater than a threshold value, the pressing amount of the first rotating body and the second rotating body is made larger than the pressing amount of the third rotating body and the fourth rotating body; When the basis weight of the sheet is smaller than the threshold value, the pressing amount of the third rotating body and the fourth rotating body is made larger than the pressing amount of the first rotating body and the second rotating body. An image forming apparatus characterized by:
7. The reversing conveying path has a curved portion that curves and guides the sheet.
7. The image forming apparatus according to claim 6, wherein the image forming apparatus is a recording medium.
8. The outer diameter of the first rotating body is larger than the outer diameter of the second rotating body, The outer diameter of the fourth rotating body is larger than the outer diameter of the third rotating body.
7. The image forming apparatus according to claim 6, wherein the image forming apparatus is a recording medium.
9. The second correction unit is arranged downstream of the first correction unit in the conveying direction of the sheet.
7. The image forming apparatus according to claim 6, wherein the image forming apparatus is a recording medium.
10. The first drive unit moves the first rotating body relative to the second rotating body, The second drive unit moves the fourth rotating body relative to the third rotating body.
7. The image forming apparatus according to claim 6, wherein the image forming apparatus is a recording medium.
11. The second rotating body and the third rotating body are metal rollers, the first rotating body and the fourth rotating body are elastic rollers that are in contact with the metal roller and are elastically deformable; 7. The image forming apparatus according to claim 6, wherein the image forming apparatus is a recording medium.
12. The image forming unit is housed in a first housing, the fixing unit is housed in a second housing, the curl correction unit is accommodated in a third housing disposed between the first housing and the second housing.
7. The image forming apparatus according to claim 6, wherein the image forming apparatus is a recording medium.
13. An image forming unit that forms a toner image on a sheet; a fixing unit that fixes the toner image on the sheet on which the toner image has been formed by the image forming unit; a discharge section to which the sheet that has passed through the fixing section is discharged; a discharge conveyance path along which the sheet that has passed through the fixing unit is conveyed toward the discharge unit; a reversing unit having a reversing conveying path branched from the discharge conveying path, and reversing the sheet conveyed to the reversing conveying path in a first conveying direction in a second conveying direction opposite to the first conveying direction; a re-conveyance path branching from the reversing conveyance path, for re-conveying the sheet reversed by the reversing unit to the image forming unit after the toner image on the first side is fixed during double-sided image formation in which toner images are formed and fixed on one side of the sheet and a second side opposite to the first side; a curl correction unit that is disposed in the re-conveyance path and that can correct curls of the sheet being conveyed through the re-conveyance path, the curl correction unit includes a first correction unit including a first rotating body that contacts the first side and a second rotating body that contacts the second side of the sheet transported through the re-transport path, and a second correction unit including a third rotating body that contacts the first side and a fourth rotating body that contacts the second side of the sheet, the first rotating body and the second rotating body form a first nip portion that nips and conveys a sheet, and the second rotating body corrects curls in the sheet by deforming the first rotating body; the third rotating body and the fourth rotating body form a second nip portion that nips and conveys a sheet, and the third rotating body corrects curls in the sheet by deforming the fourth rotating body; the image forming unit is housed in a first housing, the fixing unit is housed in a second housing, the curl correction unit is accommodated in a third housing disposed between the first housing and the second housing. An image forming apparatus characterized by:
14. The second correction unit is disposed downstream of the first correction unit in the conveying direction of the sheet.
14. The image forming apparatus according to claim 13.