Field of the Invention
The present invention relates to an image forming apparatus such as a copying machine or a laser printer, and more particularly, to a method of conveying a jammed sheet when a sheet jam occurs in the vicinity of a fixing device.
Description of the Related Art
A phenomenon or a state in which a recording material is not smoothly conveyed to cause clogging, or is retained in a conveyance path in an image forming apparatus is referred to as a jam. For example, after a recording material passes through a fixing nip portion between a fixing roller and a pressure roller of a fixing device, if a leading edge of the recording material stops for some reason and the fixing roller continues to rotate, the recording material is jammed to the leading edge side into the shape of accordion pleats, and is retained. Further, if the fixing roller still continues to rotate, there may be cases in which the recording material bends midway to be wound around the fixing roller (this state is hereinafter referred to as winding jam). If a recording material is wound around the fixing roller, it is difficult to remove the wound recording material. Therefore, when a jam is detected, control is hitherto performed so that the conveyance of the recording material may be stopped as promptly as possible.
For example, in Japanese Patent Application Laid-Open No. 2004-253177, there is disclosed an externally heating type fixing device of an image forming apparatus, which is configured to bring a heating member into contact with a surface of a fixing roller to externally heat the fixing roller, and heat an unfixed toner image on a recording material by the heated fixing roller. In such an externally heating type fixing device, if the conveyance of the recording material is immediately stopped when a winding jam occurs, the bent recording material is not wound around the fixing roller, and is conveyed separately from the fixing roller in a state of being bent midway. Further, for example, in Japanese Patent Application Laid-Open No. 2011-64802, there is disclosed a technology in which, in order to solve a jam by removing a jammed sheet with ease, when a jam occurs, the conveyance is immediately stopped except for a load in the vicinity of an entrance of a post-processing device into which the recording material is introduced, and the conveyance of the load in the vicinity of the entrance of the post-processing device is stopped after a predetermined time period elapses.
In the externally heating type fixing device described above, if the conveyance is immediately stopped except for the load in the vicinity of the entrance of the device when a winding jam occurs, a user who opens a cover of the image forming apparatus in order to remove the jammed sheet visually recognizes the jammed sheet in the following state. Specifically, the user visually recognizes both a bent tip of the recording material that is conveyed separately from the fixing roller, and a trailing edge of the recording material. It is likely that, when the user opens the cover, the user grabs an end portion of the recording material that is visually recognized sooner to remove the recording material. When the grabbed end portion is the trailing edge of the recording material, if the user pulls the end portion in order to remove the recording material, the fixing roller rotates in a direction opposite to a normal direction of recording material conveyance. At that time, the recording material may be torn and the torn piece of the recording material may remain in the image forming apparatus to adversely affect the image forming apparatus. Therefore, in an image forming apparatus having an externally heating type fixing device, it has been desired to allow a user to remove a jammed sheet with ease when a winding jam occurs.
The present invention has been made in view of the above-mentioned circumstances, and an object of the present invention is to improve usability when a winding jam in a fixing device is solved.
In order to attain the object described above, the present invention has been introduced as follows.
It is provided that, an image forming apparatus including a detection unit configured to detect a recording material, a fixing unit configured to nip the recording material and fix an image on the recording material, a driving unit configured to drive the fixing unit, and a control unit configured to control the driving unit, wherein the fixing unit includes a rotation member, a pressure member configured to form a first nip portion with the rotation member and press the rotation member, and a heating member configured to form a second nip portion with the rotation member and heat the rotation member, the fixing unit fixing the image on the recording material by nipping the recording material at the first nip portion, and wherein the control unit controls the driving unit so that the driving unit continues to drive the fixing unit in a case that the control unit determines that the recording material is wound around the fixing unit based on a detection result of the detection unit.
Further features of the present invention will become apparent from the following description of exemplary embodiments with reference to the attached drawings.
Embodiments of the present invention are described in detail below with reference to the attached drawings.
[Structure of Image Forming Apparatus]
As an image forming apparatus according to a first embodiment of the present invention, a color laser printer configured to form a color image using toner of a plurality of colors is described.
An intermediate transfer belt 10 is stretched by stretch members (a driving roller 11, an opposing roller 12, a tension roller 13, and an auxiliary roller 18), and is driven to rotate clockwise at a circumferential velocity that is substantially the same as that of the photosensitive drum 1. The toner image formed on the photosensitive drum 1 is transferred onto the intermediate transfer belt 10 through application of a primary transfer voltage to a primary transfer roller 14 when the toner image passes through a portion at which the photosensitive drum 1 and the intermediate transfer belt 10 are in contact with each other. Toner that is not transferred onto the intermediate transfer belt 10 and remains on the photosensitive drum 1 is removed by a cleaning device 5. In this way, toner images in the plurality of colors are superimposed on the intermediate transfer belt 10 to form a toner image corresponding to a full-color image.
Force to drive a pickup roller 50 is supplied from a sheet feed motor (not shown) as a drive source through drive of a pickup solenoid (not shown) to feed a recording material S into a conveyance path. The fed recording material S is conveyed through a registration sensor 21 as a first detecting unit to a secondary transfer portion that is a portion at which the intermediate transfer belt 10 and a secondary transfer roller 20 are in contact with each other (nip portion). The toner image formed on the intermediate transfer belt 10 is transferred onto the recording material S (onto the recording material) when the toner image passes through the secondary transfer portion through application of a secondary transfer voltage to the secondary transfer roller 20.
The recording material S having the unfixed toner image thereon is introduced into a fixing device 30, and the unfixed toner image is fixed onto the recording material S with heat and pressure. The recording material S after the toner image is fixed thereonto is discharged out of the printer 100 by a sheet discharge roller 34. Note that, toner that is not transferred onto the recording material S and remains on a surface of the intermediate transfer belt 10 is removed by a transfer belt cleaning device 16. A fixing motor 23 as a driving unit drives the fixing device 30 and the sheet discharge roller 34. Further, a sheet discharge sensor 22 as a second detecting unit is an optical sensor configured to detect the recording material S that is conveyed through the conveyance path between the fixing device 30 and the sheet discharge roller 34. A rear cover 101 is a cover that is opened and closed when maintenance of the apparatus or the like is performed, and is used when, for example, a jam occurs in the fixing device 30 and a jammed sheet is removed.
[Structure of Fixing Device]
Next, a structure of the fixing device (fixing portion) 30 is described with reference to
The heating unit 32U in contact with a surface of the fixing roller 31 to heat the fixing roller 31 includes a plate-like heater 32h and a tubular film 32 rotated around the heater 32h. The heater 32h is pressed against the fixing roller 31 via the film 32 by a spring 38. A nip portion N2 as a second nip portion is a region in which the heating unit 32U and the fixing roller 31 are in contact with each other. The heater 32h is a ceramic heater in which a heat generating resistor is formed on a ceramic substrate. The film 32 includes a base layer and a surface layer. The base layer is formed of PI (polyimide) and the surface layer is formed of a fluorine resin.
The pressure unit 33U includes a plate-like pad 33P and a tubular film 33 rotated around the pad 33P. The pad 33P is an aluminum plate and is pressed against the fixing roller 31 via the film 33 by a spring 39. The film 33 includes a base layer and a surface layer. The base layer is formed of PEEK (polyether ether ketone) and the surface layer is formed of a fluorine resin. A nip portion N1 as a first nip portion is a region in which the pressure unit 33U and the fixing roller 31 are in contact with each other.
With reference to
[System Configuration of Image Forming Apparatus]
Next, a system configuration of the printer 100 as the image forming apparatus according to this embodiment is described.
A sheet feeding control unit 202 controls the pickup solenoid, the sheet feed motor, and the pickup roller 50 described above so that the recording material S may be conveyed to the registration sensor 21. A high voltage control unit 203 outputs and stops the output of high voltages of a charge voltage, a development voltage, the primary transfer voltage, and the secondary transfer voltage. An optical system control unit 204 drives and stops a scanner motor of the laser scanner 3, and controls on/off of laser light that scans the respective photosensitive drums 1. A sensor detection unit 205 notifies the engine control unit 201 of detection information (detection result) obtained by the registration sensor 21 and the sheet discharge sensor 22. A fixing control unit 206 adjusts a temperature of the fixing roller 31 through supply and stop of the supply of power to the heater 32h and drives and stops the fixing motor 23.
[Control Block of Fixing Device Control]
The engine control unit 201 includes a system timer 301 for measuring a time period after the printer 100 is turned on. The engine control unit 201 refers to the detection information notified from the registration sensor detection unit 304 and the sheet discharge sensor detection unit 305 of the sensor detection unit 205 and to a timer value of the system timer 301, and determines whether or not a winding jam occurred in the fixing device 30. When the engine control unit 201 determines that a winding jam occurred, the engine control unit 201 notifies the conveyance control unit 300 of the occurrence of the winding jam. When the conveyance control unit 300 configured to solve a winding jam is notified of the occurrence of the winding jam by the engine control unit 201, the conveyance control unit 300 controls drive of the fixing motor 23 configured to drive the fixing roller 31 so that the conveyance of the recording material S may be stopped at a position at which the jammed sheet can be removed with ease. Specifically, after a predetermined time period elapses based on a time indicated by the system timer 301 when the registration sensor 21 detects that a trailing edge of the recording material S passes through the registration sensor 21, the conveyance control unit 300 instructs the fixing conveyance control unit 302 to stop the fixing motor 23.
[Jam of Recording Material in Fixing Device]
Next, a winding jam in the image forming apparatus according to this embodiment is described. During printing operation, the recording material S is wound midway around the fixing roller 31 of the fixing device 30.
On the other hand, even under a state in which the conveyance of the leading edge of the recording material S is stopped for some reason (jammed state), if the state in which the jammed recording material S′ presses down the flag F continues, the fixing roller 31 continues to rotate, and the recording material S′ is jammed to the leading edge side into the shape of accordion pleats. Further, if the fixing roller 31 still continues to rotate, there may be cases in which the recording material S′ bends midway to be wound around the fixing roller 31. Then, as the fixing roller 31 rotates, the recording material S′ wound around the fixing roller 31 enters the nip portion N2 in which the fixing roller 31 is in contact with the heating unit 32U. In the case of an externally heating type fixing device, the jammed recording material S′ sticks to the fixing roller 31 due to adhesion of the toner thereon. However, the heater 32h as the heating member forms the nip portion N2, and thus, when the recording material S′ passes through the nip portion N2, the toner is melted again, and the recording material S′ after passing through the nip portion N2 is easy to separate from the fixing roller 31.
In particular, in the fixing device 30 according to this embodiment, the plate-like heater 32h is pressed against the fixing roller 31 to form the nip portion N2, and the nip portion N2 is in a flat shape. Therefore, the jammed recording material S′ is discharged in a direction of a tangent to the surface of the fixing roller 31 at a position at which the fixing roller 31 is in contact with the heater 32h, that is, toward the transfer belt cleaning device 16 and the secondary transfer roller 20. In other words, the jammed recording material S′ is discharged to an upstream side in the conveyance direction of the recording material. Further, if the fixing roller 31 still continues to rotate, the leading edge side of the recording material S′ in the accordion-like state is also drawn into the nip portion N2, and, as a result, the flag F that is pressed down by the leading edge of the recording material S′ returns to its original state, that is, the state in which the recording material S′ is not detected. This leads to erroneous detection by the sheet discharge sensor 22 that the trailing edge of the recording material S passes through the sheet discharge sensor 22, and the rotation of the fixing roller 31 is stopped.
[Solution of Jammed Sheet in Fixing Device]
Next, a solution of a jam by removing the recording material S′ causing a winding jam is described.
However, with reference to
Therefore, according to this embodiment, as illustrated in
[Jam Detection in Fixing Device]
The detection window is a window that defines a timing at which the trailing edge of the recording material S passes through the sheet discharge sensor 22 for the purpose of detecting whether or not the recording material S is normally conveyed without being jammed in the fixing device 30. Timings at which the detection window according to this embodiment is opened (“OPEN” in
When the sheet discharge sensor 22 detects that the leading edge of the recording material S reaches the sheet discharge sensor 22, an output thereof is switched from the low (LO) level to the high (HI) level, and the sheet discharge sensor detection unit 305 of the sensor detection unit 205 notifies the engine control unit 201 of the detection information obtained by the sheet discharge sensor 22. When the engine control unit 201 is notified that the high level is output by the sheet discharge sensor 22, the engine control unit 201 starts jam detection control (T1001).
When the registration sensor 21 detects that the trailing edge of the recording material S passes through the registration sensor 21, an output thereof is switched from the high (HI) level to the low (LO) level, and the registration sensor detection unit 304 of the sensor detection unit 205 notifies the engine control unit 201 of the detection information obtained by the registration sensor 21. When the engine control unit 201 is notified that the low level is output by the registration sensor 21, the engine control unit 201 refers to the system timer and stores the time T1002. Further, the engine control unit 201 resets the timer for measuring timings at which the detection window described above is opened and closed and starts the timer (T1002).
When the sheet discharge sensor 22 detects that the trailing edge of the recording material S passing through the fixing device 30 passes through the sheet discharge sensor 22, the sheet discharge sensor 22 outputs the low (LO) level (T1003), and the sheet discharge sensor detection unit 305 of the sensor detection unit 205 notifies the engine control unit 201 of the detection information obtained by the sheet discharge sensor 22. When the engine control unit 201 is notified that the low level is output by the sheet discharge sensor 22, the engine control unit 201 refers to a timer value of the timer for measuring timings for the detection window, and confirms whether or not the detection window is in the open state. When the timer value of the timer indicates that the detection window is in the open state at the timing, the engine control unit 201 determines that the recording material S is not jammed in the fixing device 30. On the other hand, when the timer value of the timer indicates that the present time is earlier than the timing (T1005) at which the detection window is opened, the engine control unit 201 determines that a winding jam of the recording material S occurred in the fixing device 30. Then, the engine control unit 201 notifies the conveyance control unit 300 of the occurrence of the winding jam, and instructs the conveyance control unit 300 to perform control for solving the jam.
As described above, the engine control unit 201 determines whether or not a winding jam occurred based on the time period from the timing at which the trailing edge of the recording material S passes through the registration sensor 21 to the timing at which the trailing edge of the recording material S passes through the sheet discharge sensor 22. For example, the engine control unit 201 can determine whether or not a winding jam occurred based on the time period from the timing at which the leading edge of the recording material S is detected by the sheet discharge sensor 22 to the timing at which the trailing edge of the recording material S passes through the sheet discharge sensor 22. Specifically, when the engine control unit 201 is notified that the sheet discharge sensor 22 outputs the high level (T1001), the engine control unit 201 resets and starts the timer in order to measure a time period necessary for the recording material S to pass through the sheet discharge sensor 22. When the engine control unit 201 is notified that the sheet discharge sensor 22 outputs the low level, the engine control unit 201 stops the timer, and, based on the timer value that is read and on the conveyance speed of the recording material S, variations (tolerance) in the diameter of the fixing roller 31, and the like, calculates a length of the recording material S in the conveyance direction. The engine control unit 201 compares the calculated length of the recording material S in the conveyance direction with the length in the conveyance direction corresponding to the size information of the recording material from the printer controller 200 that is stored in the RAM, and determines whether or not a winding jam occurred. When the calculated length of the recording material S in the conveyance direction is smaller than the length in the conveyance direction corresponding to the size information of the recording material stored in the RAM, the engine control unit 201 determines that a winding jam of the recording material S occurred in the fixing device 30. Then, the engine control unit 201 notifies the conveyance control unit 300 of the occurrence of the winding jam and instructs the conveyance control unit 300 to perform control for solving the jam.
Further, the engine control unit 201 determines that a jam of the recording material S occurred in the fixing device 30 as well when, even after the timing (T1006) at which the detection window is closed, the sheet discharge sensor 22 is not notified of the output of the low level. The jam in this case is, for example, a jam in which the trailing edge of the recording material S passed through the nip portion N1 but the recording material S is bent midway while being conveyed into an accordion-like state, and the recording material S is retained in the conveyance path with the flag F being pressed down. Such a jam in this case is different from the winding jam described in this embodiment, and is thus solved by a publicly known method. Therefore, description thereof is omitted in this embodiment.
The conveyance control unit 300 notified of the occurrence of a winding jam by the engine control unit 201 does not stop the drive of the fixing motor 23, and allows the drive to continue. The conveyance control unit 300 refers to the system timer 301, and when detecting that the predetermined time period elapses, the conveyance control unit 300 instructs the fixing conveyance control unit 302 of the fixing control unit 206 to stop the drive of the fixing motor 23 (T1004). In accordance with the instruction from the conveyance control unit 300, the fixing conveyance control unit 302 stops the drive of the fixing motor 23 to stop the rotation of the fixing roller 31. Note that, the predetermined time period refers to a time period necessary for the trailing edge of the recording material S to be conveyed to the position C (
[Control Sequence for Solving Jam in Fixing Device]
As described above, in the image forming apparatus including an externally heating type fixing device according to this embodiment, when a winding jam occurs in the fixing device, after the trailing edge of the jammed recording material S passes through the nip portion N1 and is conveyed to the position C, the conveyance of the recording material S is stopped. With this process, when a user opens the rear cover 101 in order to solve the jam, an end portion of the recording material S that is visually recognized can be only the end portion B discharged from the nip portion N2. The user can remove the jammed sheet by pulling the visually recognized end portion B of the recording material S. The possibility of the recording material S being torn is lower than that when the recording material S is nipped at the two positions of the nip portions N1 and N2, and the jam can be solved with ease. Further, the direction in which the user pulls the recording material S is the same as the direction in which the fixing roller 31 rotates when the recording material S is conveyed, and thus, there is no fear that the fixing roller 31 and the like are affected when the jammed sheet is removed. Note that, in this embodiment, the color laser printer 100 is described as an example of the image forming apparatus, but the present invention is also applicable to, for example, a monochrome printer, as long as an image forming apparatus includes an externally heating type fixing device.
As described above, according to this embodiment, usability can be improved when a winding jam in the fixing device is solved.
In the fixing device 30 of the printer 100 according to the first embodiment, the fixing roller 31 is in contact with the film 33 of the pressure unit 33U and the film 32 of the heating unit 32U, and the nip portions N1 and N2 are formed at all times. In a second embodiment of the present invention, solving a jam is described in the printer 100 including the fixing device 30 that has a pressure adjusting mechanism configured to adjust pressures applied by the springs 38 and 39 configured to press the heater 32h and the pad 33P, respectively, against the fixing roller 31.
[Structure of Fixing Device]
A structure of the fixing device (fixing portion) 30 according to this embodiment is described with reference to
[Control Block of Fixing Device Control]
The fixing conveyance control unit 402 controls forward rotation or stop of the fixing motor 23 in accordance with instruction from the engine control unit 201 or the conveyance control unit 300 to rotate or stop the fixing roller 31, thereby rotating or stopping the fixing roller 31. Further, when instruction to reduce the pressures is received from the conveyance control unit 300, the fixing conveyance control unit 402 reversely rotates the fixing motor 23. When the fixing motor 23 is reversely rotated, the pressure adjusting mechanism 40 reduces the pressures applied by the spring 38 and the spring 39 to move the heater 32h and the pad 33P away from the fixing roller 31. On the other hand, when the fixing motor 23 is forwardly rotated for the purpose of fixing an image on the recording material S, the pressure adjusting mechanism 40 increases the pressures applied by the spring 38 to press the heater 32h against the fixing roller 31 and applied by the spring 39 to press the pad 33P against the fixing roller 31, respectively. This forms the nip portion N1 between the pad 33P and the fixing roller 31 and the nip portion N2 between the heater 32h and the fixing roller 31.
[Solution of Jammed Sheet in Fixing Device]
According to this embodiment, as illustrated in
[Jam Detection in Fixing Device]
When the sheet discharge sensor 22 detects that the leading edge of the recording material S passing through the fixing device 30 reaches the sheet discharge sensor 22, the sheet discharge sensor 22 outputs the high (HI) level, and the sheet discharge sensor detection unit 305 of the sensor detection unit 205 notifies the engine control unit 201 of the detection information of the sheet discharge sensor 22. When the engine control unit 201 is notified that the high level is output by the sheet discharge sensor 22, the engine control unit 201 starts jam detection control (T2001).
When the registration sensor 21 detects that the trailing edge of the recording material S passes through the registration sensor 21, the registration sensor 21 outputs the low (LO) level, and the registration sensor detection unit 304 of the sensor detection unit 205 notifies the engine control unit 201 of the detection information obtained by the registration sensor 21. When the engine control unit 201 is notified that the low level is output by the registration sensor 21, the engine control unit 201 refers to the system timer 301 and stores the time T2002. Further, the engine control unit 201 resets the timer for measuring timings at which the detection window is opened and closed and starts the timer (T2002).
When the sheet discharge sensor 22 detects that the trailing edge of the recording material S passing through the fixing device 30 reaches the sheet discharge sensor 22, the sheet discharge sensor 22 outputs the low (LO) level, and the sheet discharge sensor detection unit 305 of the sensor detection unit 205 notifies the engine control unit 201 of the detection information obtained by the sheet discharge sensor 22. When the engine control unit 201 is notified that the low level is output by the sheet discharge sensor 22, the engine control unit 201 refers to a timer value of the timer for measuring timings for the detection window, and confirms whether or not the detection window is in the open state. When the timer value of the timer indicates that the detection window is in the open state at the timing, the engine control unit 201 determines that the recording material S is not jammed in the fixing device 30. On the other hand, when the timer value of the timer indicates that the present time is earlier than the timing at which the detection window of the sheet discharge sensor for the trailing edge of the recording material is opened, the engine control unit 201 determines that a winding jam of the recording material S occurred in the fixing device 30. Then, the engine control unit 201 notifies the conveyance control unit 300 of the occurrence of the winding jam, and instructs the conveyance control unit 300 to perform control for solving the jam. Note that, as described in the first embodiment, the engine control unit 201 can also determine whether or not a winding jam occurred based on the time period from the timing at which the leading edge of the recording material S is detected by the sheet discharge sensor 22 to the timing at which the trailing edge of the recording material S passes through the sheet discharge sensor 22.
The conveyance control unit 300 notified of the occurrence of a winding jam by the engine control unit 201 refers to the system timer 301, and, when detecting that the predetermined time period elapses, instructs the fixing conveyance control unit 402 of the fixing control unit 206 to stop the drive of the fixing motor 23 (T2004). In accordance with the instruction from the conveyance control unit 300, the fixing conveyance control unit 402 stops the drive of the fixing motor 23 to stop the rotation of the fixing roller 31. Note that, the predetermined time period refers to a time period necessary for the trailing edge of the recording material S to be conveyed to the position D (
After that, when the rotation of the fixing motor 23 is stopped (T2006), the conveyance control unit 300 instructs the fixing conveyance control unit 402 to reversely rotate the fixing motor 23. In accordance with the instruction from the conveyance control unit 300, the fixing conveyance control unit 402 drives the fixing motor 23 to reversely rotate the fixing motor 23. Then, the pressure adjusting mechanism 40 reduces the pressures applied by the springs 38 and 39 to press the heater 32h against the fixing roller 31 and to press the pad 33P against the fixing roller 31, respectively. When the reduction of the pressures applied by the springs 38 and 39 is completed (T2007) and the heater 32h and the pad 33P move away from the fixing roller 31, the fixing conveyance control unit 402 stops the reverse rotation of the fixing motor 23 (T2008).
[Control Sequence for Solving Jam in Fixing Device]
In Step S2004, the conveyance control unit 300 instructs the fixing conveyance control unit 402 to reversely rotate the fixing motor 23 so that the pressure adjusting mechanism 40 may reduce the pressures applied by the springs 38 and 39 to move the heater 32h and the pad 33P, respectively, away from the fixing roller 31. In accordance with the instruction from the conveyance control unit 300, the fixing conveyance control unit 402 reversely rotates the fixing motor 23. In Step S2005, for the purpose of determining whether or not a time period necessary for reducing the pressures elapses, the conveyance control unit 300 resets and starts the timer. In Step S2006, the conveyance control unit 300 refers to the timer, and determines whether or not the time period necessary for reducing the pressures elapses and whether or not the reduction of the pressures is completed. When the timer value of the timer indicates that the time period necessary for reducing the pressures elapses, the conveyance control unit 300 determines that the reduction of the pressures is completed, and the process proceeds to Step S2007. On the other hand, when the timer value indicates that the time period necessary for reducing the pressures does not elapse, the conveyance control unit 300 determines that the reduction of the pressures is not completed, and Step S2006 is repeated.
The heater 32h and the pad 33P are now away from the fixing roller 31, and thus, in Step S2007, the conveyance control unit 300 instructs the fixing conveyance control unit 402 to stop the fixing motor 23. In accordance with the instruction from the conveyance control unit 300, the fixing conveyance control unit 402 stops driving the fixing motor 23 to reversely rotate the fixing motor 23, and the process ends.
As described above, in the image forming apparatus including an externally heating type fixing device according to this embodiment, when a winding jam occurs in the fixing device, after the trailing edge of the jammed recording material S is conveyed to the position D in the vicinity of the guide 37, the conveyance of the recording material S is stopped. Further, through reduction of the pressures, the heater 32h and the pad 33P are moved away from the fixing roller 31. As a result, force to pull the jammed sheet necessary for a user to remove the jammed sheet can be small, which can reduce the load. Further, the position D is on the upstream side in the conveyance path with respect to the position C in the first embodiment, and thus, the possibility that the bent end portion of the recording material S′ is jammed to be brought into contact with the intermediate transfer belt 10 or the transfer belt cleaning device 16 can be reduced. Further, similarly to the case of the first embodiment, when a user opens the rear cover 101, the user can visually recognize only the end portion B of the jammed recording material S′, and thus, the user can remove the jammed sheet by grabbing the end portion B of the recording material S′ and pulling the end portion B in the direction of the arrow B″.
As described above, according to this embodiment, usability can be improved when a winding jam in the fixing device is solved.
Further, in the embodiments described above, a case in which the leading edge of the recording material S is pulled around the fixing roller 31 after being once detected by the sheet discharge sensor 22, and is again detected by the sheet discharge sensor 22, that is, a case of a so-called midway winding jam, is described as an example. However, the present invention can also be applied to a case in which the leading edge of the recording material S is wound around the fixing roller 31 without being detected by the sheet discharge sensor 22, that is, a case of a so-called leading edge winding jam.
While the present invention has been described with reference to exemplary embodiments, it is to be understood that the invention is not limited to the disclosed exemplary embodiments. The scope of the following claims is to be accorded the broadest interpretation so as to encompass all such modifications and equivalent structures and functions.
This application claims the benefit of Japanese Patent Application No. 2015-054897, filed Mar. 18, 2015, which is hereby incorporated by reference herein in its entirety.
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2015-054897 | Mar 2015 | JP | national |
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Number | Date | Country | |
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