a) is timing of long edge conveyance of A-4 size recording sheet, while
The embodiments of the present invention will now be detailed while referring to the drawings, but the present invention is not limited to the described embodiments.
In
Numeral 4 represents a switching gate, which switches to either eject recording sheet P onto exterior ejection tray 5 or to convey recording sheet P to sheet re-supplying section 8. Numeral 6 represents a sheet supplying section, which conveys sheet P one by one from sheet supplying tray 60 via paired sheet supplying rollers 61.
Numeral 7 represents a sheet supply conveyance section, which includes sheet supplying route 71, which is from sheet supply tray 60 to paired registration rollers 72, and paired registration rollers 72.
Numeral 8 is a sheet re-supplying section, which conveys sheet P to paired registration rollers 72, for reverse side image formation procedure of double-sided image formation. Sheet re-supplying section 8 includes branched conveyance route 81 which is branched from switching gate 4, flipping conveyance section 82 which flips sheet P, re-supplying route 83 which conveys the flipped sheet, sheet re-supplying routes 84 and 85 which are from switching member 86 to paired registration rollers 72, switching member 86 and solenoid 104 which drives switching member 86.
Sheet re-supplying route 84 forms a shorter route which is from sheet re-supplying section 8 to paired registration rollers 72, while sheet re-supplying route 85 forms a longer route which is from re-supplying section 8 to paired registration rollers 72. Sheet re-supplying routes 84 and 85 are selected by switching gate 86.
The operation of the image forming apparatus shown in
In image forming section 1, a toner image is formed on photo-conductor 10, and paired registration rollers 72 convey recording sheet P synchronized with image formation in image forming section 1, whereby the toner image is transferred onto recording sheet P at a transfer position where transfer device 2 is mounted. The transferred toner image is fixed onto recording sheet P after passing through fixing device 3.
In single-sided image formation, recording sheet P is ejected to exterior ejection tray 5 after image fixing.
In double-sided image formation, after an image is transferred onto the front side of recording sheet P, recording sheet P passes through fixing device 3 and is conveyed to branched conveyance route 81 via switching gate 4.
Next, recording sheet P is flipped by flipping roller 92 at flipping conveyance section 82, after which flipped recording sheet P is conveyed back to paired registration rollers 72, via sheet re-supplying route 83, and either shorter re-supplying route 84 or longer re-supplying route 85.
By paired registration rollers 72 which works in synchronizing with reverse side image formation on image forming section 1, flipped recording sheet P is again conveyed to the transfer position, where another toner image is transferred onto the reverse side of recording sheet P, and that image is fixed via fixing device 3, and sheet P carrying the images on the double sides is finally ejected to exterior ejection tray 5.
As shown in
Next, conveyance control of the recording sheet in the case of double-sided image forming procedure will now be detailed.
The double-sided image forming procedure of the long edge conveyance of A-4 size sheets is conducted via timing shown in
In this case, re-supplying route 84 is selected, therefore the conveyance length is set shorter.
On the other hand, in the case of double-sided image formation for the short edge conveyance of A-4 size sheets, longer re-supplying route 85 is selected, and double-sided image formation is conducted by timing shown in
By selecting either shorter route 84 or longer route 85, the length of the circulation conveyance route can be changed.
“Circulation conveyance route” is the sheet supplying route for reverse side image formation, which starts from paired registration rollers 72, through fixing device 3, switching gate 4, branched conveyance route 81, flipping conveyance route 82, re-supplying route 83, and sheet re-supplying route 84 (or 85), terminating at paired registration rollers 72. Further, when the length of circulation conveyance route is calculated, the length of flipping conveyance route 82 is the length in the conveyance direction of a single recording sheet for each size.
As shown in
Circulation time T3 is based on formula T3=4L+4D. Due to this, time interval E in
When comparing
In
At the terminal stage, that is, when image formation is conducted on the reversed sheets which are conveyed only through re-supplying route of the circulation conveyance route, and further, when the time interval corresponding to front side image formation becomes blank, the length of the circulation conveyance route can be shortened by being switched to re-supplying route 84.
In the total procedure of double-sided image formation in
On the other hand in
Due to this switching, time interval F in
In addition, at the terminal stage of double-sided image formation, the sheet conveyance speed in the circulation conveyance route can be increased, whereby the image forming time is further shortened to improve the image forming efficiency.
As described above, at the terminal stage of the double-sided image formation, the circulation conveyance route can be set to be shorter so that the time of double-sided image formation procedure can be shortened, resulting in further improved image forming efficiency.
In
Based on sheet size information sent from sensor 102 provided on sheet supplying section 6, control section 100 controls the drive of solenoid 104, and further selects either sheet re-supplying route 84 or 85, using switching member 86.
In double-sided image formation, based on sheet size information sent from sensor 102, control section 100 selects sheet re-supplying route 84 or 85, as described above, further, at the terminal stage of double-sided image formation, control section 100 selects shorter re-supplying route 84.
The sheet re-supplying route (being a movable route) is formed of movable paired guide members 87. Guide member 87 includes end section 87A, being a horn aperture to more easily receive the recording sheet from re-supplying route 83, while guide member 73 is also formed as a horn aperture, which is mounted adjacent to paired registration rollers 72, to receive the recording sheet from the sheet re-supplying route.
Both paired guide members 87 and paired conveyance rollers 90 are united and secured by supporting member 88. Supporting member 88, pressed against cam 89, which is a changing member to change the length of sheet re-supplying route, by spring 91. Supporting member 88 changes the position, while following the rotation of cam 89 by spring 91, as shown in
In
The same numbers are applied to sections in
Control section 100 controls the drive of motor 105, based on sheet size information which is sent from sensor 102 provided on sheet supplying section 6, and changes the length of sheet re-supplying route, using cam 89, as shown in
Further, in double-sided image formation, as described above, based on sheet size information which is sent from sensor 102, control section 100 selects either sheet re-supplying route 84 or 85, still further, at the terminal stage of double-sided image formation, control section 100 employs the shortest re-supplying route shown in
Based on the present invention, since the productivity for double-sided image formation is increased to 100% or near 100%, double-sided image forming production rate improves.
At the terminal stage of double-sided image forming procedure, reduced is the operational time of double-sided image formation in which recording sheets are supplied only from the circulation conveyance route, which results in increased double-sided image forming efficiency.
Number | Date | Country | Kind |
---|---|---|---|
JP2006-181114 | Jun 2006 | JP | national |
JP2007-046878 | Feb 2007 | JP | national |