Field of the Invention
The disclosure relates to an image forming apparatus such as a copier and a printer and a feeding device used in the apparatus and executing a feed control over a recording material therein.
Description of the Related Art
Conventionally, an image forming apparatus such as a copier and a printer has a cassette configured to accommodate recording materials. The cassette has a regulating plate. The regulating plate may be positionally moved in accordance with the size of recording materials to regulate a movement of the recording materials accommodated in the cassette.
According to Japanese Patent Laid-Open No. 2015-105175, a time period from start of feeding of a recording material to detection of the recording material by a registration sensor is measured so that whether the position of a rear-end regulating plate is deviated from a proper position (or position depending on the size) or not based on the measured time period. The rear-end regulating plate here is a regulating plate configured to regulate rear ends (upstream ends in a feeding direction) of recording materials. If it is detected that the position of the rear-end regulating plate is deviated, a user may be prompted to check the cassette, which can reduce the possibility that a conveyance failure due to a delay of feeding of a recording material will occur in future. In a case where a conveyance failure actually occurs, a cause of the failure may be notified to a user so that the same type of conveyance failure can be prevented for improved usability.
On the other hand, it is known that an influence of friction with a previously fed recording material may result in varied positions of leading ends (downstream ends in the feeding direction) of recording materials accommodated in the cassette. According to International Publication No. WO2011/007406, in order to make leading ends of recording materials to be uniform, a control is executed in which a subsequent recording material is fed in advance until the leading end of the subsequent recording material reaches a separation nip formed by a feed roller and a retard roller. Performing such an operation for making positions of leading ends of recording materials uniform can reduce varied positions of the leading ends of the recording materials.
According to Japanese Patent Laid-Open No. 2015-105175, a longer time period may be required from start of feeding of a recording material to detection of the recording material by a registration sensor in a state that the position of the rear-end regulating plate is deviated, compared with a state that the position of the rear-end regulating plate is not deviated. However, execution of the control according to International Publication No. WO2011/007406 can adjust the position of the leading end of a subsequent recording material to match with the separation nip. Thus, even in a state that the position of the rear-end regulating plate is deviated, the measured time period is substantially equal to the measured time period in a state that the position of the rear-end regulating plate is not deviated. In other words, it is difficult to detect a deviation of the rear-end regulating plate.
Aspects of the disclosure provide an image forming apparatus and a feeding device which can reduce variations in positions of leading ends of recording materials accommodated in an accommodation unit and which at the same time can detect a deviation of a rear-end regulating plate provided in the accommodation unit.
According to an aspect of the disclosure, an image forming apparatus includes an accommodation unit configured to accommodate a recording material, a feeding member configured to feed a recording material accommodated in the accommodation unit, a conveying member configured to convey a recording material fed by the feeding member, a separating member configured to form a nip with the conveying member and separate a plurality of recording materials at the nip, a detecting unit configured to detect that the plurality of recording materials has been fed to the nip, a control unit which causes the feeding member to start feeding of a recording material accommodated in the accommodation unit and, in a case where the detecting unit detects that a plurality of recording materials is fed to the nip, causes the feeding member to finish the feeding, an image forming unit configured to form an image on a recording material fed from the accommodation unit, and a regulating unit configured to regulate an end on an upstream side in a feeding direction of recording materials accommodated in the accommodation unit, wherein the control unit measures a time period from start of feeding of a recording material performed by the feeding member to detection by the detecting unit of that a plurality of recording materials is fed to the nip and, based on the measured time period, outputs information indicating that a position of the regulating unit is deviated from a position according to a size of the recording materials accommodated in the accommodation unit.
Further features of the disclosure will become apparent from the following description of embodiments with reference to the attached drawings.
Description of Configuration of Image Forming Apparatus
According to a first embodiment, an electrophotographic laser beam printer 101 (hereinafter, called a printer 101) is applied as an image forming apparatus.
A cassette 102 is an accommodation unit configured to accommodate sheets S (recording materials) and may be detachably attached to a main body of the printer 101. The cassette 102 has a rear-end regulating plate 126 which is configured to regulate rear ends (upstream ends in a feeding direction) of the sheets S accommodated in the cassette 102. The rear-end regulating plate 126 is movable in the feeding direction and may be placed at a proper position based on the size (or length in the feeding direction) of sheets S so that the sheets S can be set at a proper position.
With the cassette 102 attached to the main body of the printer 101, a pickup roller 103 (feeding member) (hereinafter, called a pick roller 103) feeds a sheet S accommodated in the cassette 102. The sheet S fed by the pick roller 103 is conveyed to the further downstream side by a feed roller 106 (conveying member) and reaches a top sensor 108 through a registration roller pair 107. A separation roller 105 (separating member) and the feed roller 106 form a separation nip unit which is configured to prevent a plurality of (or two or more) sheets S from being fed to a downstream side of the separation nip unit. Operations of the separation roller 105 will be described in detail below. Thus, a sheet S positioned at the top in a perpendicular direction of the sheets S accommodated in the cassette 102 can only be fed to the registration roller pair 107.
A sheet S detected by the top sensor 108 (recording material detecting unit) is then conveyed to an image forming unit. The image forming unit includes a photosensitive drum 109, a charging roller 111, a laser scanner 113, a developing device 112, a transfer roller 110, and a fixing device 114. The photosensitive drum 109 is uniformly charged by the charging roller 111 and is then irradiated with laser light L by the laser scanner 113 so that an electrostatic latent image can be formed on its surface. The thus formed electrostatic latent image can be visualized as a toner image by using toner supplied to the developing device 112. The photosensitive drum 109 and the transfer roller 110 form a transfer nip unit, and a sheet S is conveyed to the transfer nip unit in synchronization with a rotation of the photosensitive drum 109. A toner image formed on the photosensitive drum 109 is transferred to the sheet S at the transfer nip unit. In order to transfer a toner image, voltage having an opposite polarity of that of the toner image is applied to the transfer roller 110. The sheet S to which the toner image has been transferred is conveyed to the fixing device 114 and is heated and is pressurized therein. As a result, the toner image transferred to the sheet S is fixed to the sheet S. The sheet S on which the toner image has been fixed is conveyed by a triple roller 116, an intermediate discharge roller 117, and a discharge roller 118 and is discharged to the sheet discharge tray 121. A series of printing operations ends up to this point.
In order to perform printing on both sides of a sheet S, the sheet S having one side printed is not discharged to the sheet discharge tray 121, but, after the rear end of the sheet S passes through the triple roller 116, the triple roller 116, the intermediate discharge roller 117, and the discharge roller 118 are reversely rotated. The sheet S is then conveyed to a both-surface convey path 125 and is further conveyed to the image forming unit again by a both-surface feeding roller 122. Thus, printing can be performed on both sides of the sheet S.
Referring to
An encoder 203 (rotation detecting unit) and a top sensor 108 are connected to the engine control unit 201 and are configured to detect a rotation state of the separation roller 105. Detection results from these sensors are used by the drive control unit 210 for controlling driving of the pick roller 103. Here, the encoder 203 may be a code wheel provided coaxially with the separation roller 105, for example. Alternatively, an optical rotary encoder, a magnetic rotary encoder, or a photo-interrupter, for example, may be applied in accordance with the required accuracy and a location where it is placed. The panel 211 is further connected to the engine control unit 201 and is configured to receive information output from the output unit 208.
Next, a sheet feeding control over the printer 101 according to this embodiment will be described with reference to
The separation roller 105 is driven in a direction which prevents feeding of the sheet S (or a counterclockwise direction in
Next,
Next,
Next,
In the printer 101, if the leading end of the sheet S2 reaches the position Pfr of the separation nip unit and the separation roller 105 stops rotating or rotates in an opposite direction, as described above, the driving of the pick roller 103 is turned off. Because the sheet S1 and the sheet S2 are fed in advance with the sheet S2 placed over the sheet S1, the position of the leading end of the sheet S2 can be matched with the separation nip unit. This can reduce the distance (also called a sheet interval) between the rear end of the sheet S1 and the leading end of the sheet S2 for continuously performing the sheet feeding operation. In other words, the number of sheets to be printed per unit time period and the productivity of the printer 101 can be increased.
Next, with reference to
Next, with reference to
First, a case will be described where a deviation amount ΔL of a sheet S<La. According to this embodiment, as described above with reference to
Next, a case will be described where the deviation amount ΔL of a sheet S>La. According to this embodiment, if it is detected that the rotation state of the separation roller 105 changes during a period after a predetermined time passed from start of a sheet feeding operation on a sheet S, the driving of the pick roller 103 is turned off. Referring to
Here, if the measured time period Tt is longer than a threshold time Te for a conveyance failure, the engine control unit 201 judges that a conveyance failure such as a delayed print error has occurred. Therefore, the sheet feeding operation ends. Here, the threshold time Te is predefined for judging that a toner image formed on the photosensitive drum 109 cannot be transferred to a proper position of the sheet S.
If it is judged that the measured time period Tt is longer than the threshold time Te and that a conveyance failure has occurred, it is difficult to determine whether the conveyance failure is caused by a deviation of the rear-end regulating plate 126 or by another factor such as the lifetime of the pick roller 103. Therefore, according to this embodiment, data from which the conveyance failure is judged are not used for judging a deviation of the rear-end regulating plate 126 by the judging unit 207 in the engine control unit 201. However, the data may be used for detecting a deviation of the rear-end regulating plate 126.
A method for detecting a deviation of the rear-end regulating plate 126 according to this embodiment will be described with reference to flowchart in
First, referring to
On the other hand, if the top sensor 108 does not detect a sheet S in S102, the engine control unit 201 judges whether the sheet feeding time that is being counted by the measuring unit 206 is longer than the threshold time Te for a conveyance failure or not (S107). If it is not longer than the threshold time Te, the engine control unit 201 uses the drive control unit 210 to continue the sheet feeding operation. If it is longer than the threshold time Te, the engine control unit 201 uses the drive control unit 210 to stop the sheet feeding operation and finishes the measurement of the sheet feeding time performed by the measuring unit 206 (S108). The engine control unit 201 may then judge that a conveyance failure is caused by a delayed print error, for example, and notifies that the conveyance failure has occurred to a user through the panel 211 or an external apparatus (S109).
If it is judged in S103 that the leading end of the subsequent sheet S has not reached the position Pfr of the separation nip, the engine control unit 201 judges whether the sheet feeding time that is being counted by the measuring unit 206 is longer than the threshold time Tp for stopping the pick driving (5110). If it is not longer than the threshold time Tp, the engine control unit 201 uses the drive control unit 210 to continue the sheet feeding operation. If it is longer than the threshold time Tp, the engine control unit 201 uses the drive control unit 210 to stop the sheet feeding operation and finishes the measurement of the sheet feeding time performed by the measuring unit 206 (S111). According to this embodiment, data generated in a case where a sheet S is deviated by a larger deviation amount and the leading end of the sheet S has not reached the position Pfr of the separation nip during the threshold time Tp can be used for detecting a deviation of the rear-end regulating plate 126. Thus, the engine control unit 201 substitutes a provisional value to Tx[0] and stores it in the storage unit 209 (S112). It is assumed here that the provisional value is higher than a deviation threshold time Tb for the rear-end regulating plate 126. The judging unit 207 judges whether the position of the rear-end regulating plate 126 is deviated or not (S106).
Next, with reference to
If the number of check operations equal to the number A of sheets fed in the past are performed, the engine control unit 201 checks whether the total number of set flags is lower than a threshold number B of times or not (S206). If the total number of set flags is higher than the threshold number B of times, the judging unit 207 judges that the position of the rear-end regulating plate 126 is deviated. The output unit 208 notifies information indicating the fact to a user through the panel 211 or an external apparatus (S207). On the other hand, if the total number of set flags is lower than the threshold number B of times, the judging unit 207 judges that the position of the rear-end regulating plate 126 is deviated. The processing then moves to S208. According to this embodiment, in a case where it is defined that A=4 and B=3 and if the number of times that the time period Tx[n] during the past four sheet feeding operations is equal to or higher than the threshold time Tb is equal to or higher than three, it is judged that the position of the rear-end regulating plate 126 is deviated. The engine control unit 201 updates the lastly acquired data (S208). In other words, data at Tx[n] is updated by data at Tx[n+1], and the past sheet feeding data are updated thereby. The detection of a deviation of the rear-end regulating plate 126 completes up to this point.
Here, as the size (length in the sheet feeding direction) of a sheet S increases, the time period Tx measured by the measuring unit 206 increases. This is because the time period from feeding of a sheet S1 at the top in the cassette to passage of the rear end of the sheet S1 through the position Pfr of the separation nip increases as the size of the sheets S increases. For that, a plurality of threshold times Tb may be preset in consideration of the size of sheets S or other characteristics of sheets S, and the threshold time Tb to be applied may be changed in accordance with information regarding the sheets S acquired for performing a printing job.
For improved reliability of information to be notified, it is judged that the position of the rear-end regulating plate 126 is deviated if four sheets S are continuously fed, and the time period Tx exceeds the threshold time Tb three times. In other words, this can prevent wrong detection of a deviation of the rear-end regulating plate 126 with making a distinction from a case where a sheet feeding operation delays unexpectedly due to a pick error or a slip caused by abrasion of the pick roller 103. However, it may be judged that the position of the rear-end regulating plate 126 is deviated if the time period Tx exceeds the threshold time Tb once.
This detection of a deviation of the rear-end regulating plate 126 is applied only if the leading end of a sheet S reaches the position Pfr of the separation nip in the previous sheet feeding operation, such as after a continuous sheet feeding operation is started and two sheets are fed. For that, a result of the measurement for the first sheet is not used for the detection of a deviation of the rear-end regulating plate 126.
According to this embodiment, the positions of the leading ends of the sheets S accommodated in the cassette 102 are adjusted to be uniform for improved productivity, and a deviation of the rear-end regulating plate 126 provided in the cassette 102 can be detected. Prompting a user to check the cassette 102 if it is detected that the position of the rear-end regulating plate is deviated can reduce the possibility that a conveyance failure such as a delayed print error will occur in future. When a conveyance failure actually occurs, a cause thereof is notified to a user so that re-occurrence of the conveyance failure can also be prevented for improved usability. Even without such notification to a user, in a case where a mechanism is provided which automatically corrects the position of the rear-end regulating plate 126 to a proper position, the correction mechanism may place the position of the rear-end regulating plate 126 to a proper position when it is judged that the position of the rear-end regulating plate 126 is not at the proper position.
A second embodiment will be described in detail. Substantial parts of descriptions thereof are the same as those of the first embodiment, and differences from the first embodiment will only be described.
According to the first embodiment, a fixed threshold time Tb is set irrespective of the total number of sheets fed in the past from the cassette 102.
As the number of fed sheets increases, the time period Tx from start of feeding of a sheet S1 at the top in the cassette to reach of the leading end of the next sheet S2 to the position Pfr of the separation nip increases because of reduced performance of sheet feeding of the sheet feeding mechanism due to abrasion of rollers. Therefore, if the number of fed sheets is higher than Sa, the measured time period Tx is longer than the threshold time Tb even though the position of the rear-end regulating plate 126 is set at a proper position. As a result, there is a possibility that it is wrongly judged that the rear-end regulating plate 126 is not at a proper position. According to this embodiment, appropriate judgment can be performed.
How much the threshold time Tb is increased in accordance with the number of fed sheets stored in the storage unit 209 may be set based on results of advance experimental verifications of the degree of increase of the time period Tx according to the number of fed sheets. The degree of deterioration of the sheet feeding performance may be calculated in consideration of parameters including not only the number of fed sheets but also a print mode, a sheet type and surrounding environment (temperature and humidity) to correct the threshold time Tb.
According to this embodiment, in addition to the effect acquired by the first embodiment, the following effect can be provided. That is, wrong detection of a deviation of the rear-end regulating plate 126 due to reduced sheet feeding performance can be prevented, and a deviation of the rear-end regulating plate 126 can be detected with high accuracy.
According to the first and second embodiments, the control unit 200 is installed in the printer 101, for example. However, embodiments are not limited thereto. As illustrated in
The cassette 152 is an accommodation unit configured to accommodate a sheet S (recording material) and is detachably attached to a main body of the printer 101. The rear-end regulating plate 176 provided in the cassette 152 is configured to regulate a rear end (or an end on an upstream side in the feeding direction) of a sheet S accommodated in the cassette 152. The rear-end regulating plate 176 is movable in the feeding direction and is placed at a proper position according to the size (length in the feeding direction) of sheets S so that the sheets S can be set at a proper position.
With the cassette 152 attached to the main body of the sheet feeding option 151, a pickup roller 153 (hereinafter, called a pick roller 153) feeds a sheet S accommodated in the cassette 152. The sheet S fed by the pick roller 153 is fed to the further downstream side by a feed roller 156 and reaches the top sensor 108 through an option sensor 158 and the registration roller pair 107. A separation roller 155 and the feed roller 156 form a separation nip unit which is configured to prevent a plurality of sheets S from being fed to a downstream side of the separation nip unit. The separation roller 155 operates in the same manner as that of the separation roller 105. Thus, a sheet S positioned at the top in a perpendicular direction of sheets S accommodated in the cassette 152 can only be fed to the registration roller pair 107. The sheet feeding option 151 has an operation panel 261 (hereinafter, called a panel 261) which is configured to display various kinds of information to a user.
According to the first and second embodiments, the cassette 102 detachably attached to the printer 101 is applied as an accommodation unit, for example. However, embodiments are not limited thereto. The accommodation unit may be a manual feed tray or a multi-tray capable of inserting a sheet S into the printer 101. With a rear-end regulating plate provided in such an accommodation unit, a deviation thereof can be detected in the same manner.
According to the first and second embodiments, the driving of the pick roller 103 is turned off to control so as to prevent the pick roller 103 from executing a sheet feeding operation. However, embodiments are not limited thereto. For example, the pick roller 103 may be configured to move between a contact position where it touches a sheet S and a retracted position where it does not touch the sheet S. In this configuration, the pick roller 103 is moved from the contact position to the retracted position at a time when the leading end of the sheet S2 reaches the separation roller 105 to control the pick roller 103 so as not to execute the sheet feeding operation. In other words, the pick roller 103 is isolated from the sheet S. In this case, the driving of the pick roller 103 may be kept in an ON state, that is, the pick roller 103 may be kept rotating.
According to the first and second embodiments, it is judged that the sheet S2 reaches the separation roller 105 at a time when the encoder 203 detects that the separation roller 105 stops rotating or rotates in an opposite direction. However, embodiments are not limited thereto. At a time when it is detected that the rotation speed in a forward direction of the separation roller 105 is lower than a predetermined rotation speed, the reach of the sheet S2 to the separation roller 105 may be judged. The forward direction here is a direction in which a sheet S is to be fed. Thus, the driving of the pick roller 103 can be turned off earlier under the second sheet feeding control to control such that the pick roller 103 can be prevented from excessively pushing the leading end of the sheet S2 toward the separation nip unit Pfr.
According to the first and second embodiments, the reach of the sheet S2 to the separation roller 105 is judged based on a detection result of a rotation state of the separation roller 105. However, embodiments are not limited thereto. For the judgment, a double-feed detection sensor configured to detect a double feed of sheets S may be provided in neighborhood of the separation roller 105. Here, the double-feed detection sensor may be an ultrasonic sensor or a transmitted light detection sensor.
While the disclosure has been described with reference to embodiments, it is to be understood that the invention is not limited to the disclosed 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. 2016-055761 filed Mar. 18, 2016, which is hereby incorporated by reference herein in its entirety.
Number | Date | Country | Kind |
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2016-055761 | Mar 2016 | JP | national |