This application claims priority from European Patent Applications No. 06125206.0 filed on Dec. 1, 2006 and No. 06126132.7 filed on Dec. 14, 2006, the entire contents of each being hereby incorporated by reference.
The present invention relates to a sheet flipping device, comprising a receiving member for receiving a sheet, a flipping volume being the volume which, in operation, is defined by the flipping movement of the sheet, and a flipping element for flipping the sheet around an axis of rotation within the flipping volume onto the receiving member. The present invention also relates to a sheet stacking device and an image reproduction apparatus which utilizes the sheet flipping device.
A device of this kind is described in FR 2 760 733. The device uses a flipping wheel to stack sheets on a receiving member in a flipped orientation. The flipping wheel comprises slits at its circumference to accommodate portions of a sheet. An abutment is provided to release the sheets from the slit onto the receiving member. However, it is a disadvantage of this known device that certain types of sheets, in particular floppy sheets with low stiffness in the direction of rotation, do not roll out correctly onto the receiving member, resulting in a less orderly stack or even a device which becomes blocked because of paper jams.
It is an object of the present invention to improve the roll out of sheets onto the receiving member for flipping devices. To this end a sheet flipping device is provided which comprises a discharge element arranged adjacent to said flipping volume, having a base extending in a direction substantially perpendicular to the direction of the axis of rotation said discharge element having multiple electrodes having an end portion extending in a direction towards the flipping volume.
It is observed that the implementation of such a discharge element, which is arranged adjacent to the flipping volume, surprisingly increases the reliability of the flipping device as a result of better roll out of flipped sheets. Even without any physical contact between the discharge elements and the flipping sheets, the roll out of sheets, even of very floppy sheets, improves significantly.
In another embodiment of the device according to the present invention the multiple electrodes each have a sharp end pointing towards the flipping volume. It has been observed that sharp endings which point towards the flipping volume further increase the reliability of the sheet flipping device by further decreasing the risk of an erroneous roll out of a flipping sheet.
In a further embodiment of the device according to the present invention, the multiple electrodes each have a top angle of less than 30°. It has been found that a top angle of less than 30° is sharp enough for situations in devices as presently presented, i.e., existing materials and occurring distances to sufficiently overcome roll out problems. It is preferred to implement top angles of 15° or less.
In another embodiment of the device according to the present invention, the discharge element is electrically connected to earth potential. It has been observed that a connection to earth of the discharge element reduces the risk of collapsing sheets during roll out after or during flipping.
In another embodiment of the device according to the present invention, the multiple electrodes comprise pin-electrodes. Pin-electrodes are usually relatively stiff with respect to flipping sheets. Discharge elements that are provided with pin-electrodes adjacent to the flipping volume have a positive influence on the reliability of the flipping device. The construction of pin-electrodes can be cost-efficient as they may be constructed from a single workpiece by milling, e.g., stainless steel or any other electrically conductive material or material with an electrically conductive surface.
In an embodiment of the device according to the present invention, each of said multiple electrodes comprise a fiber organ provided with a conductive outer surface. The fibre organ provides a flexible base for the electrically conductive outer surface. The fibre does not need to be electrically conductive itself. The mechanical flexibility of this type of electrode provides additional flexibility in the positioning of the discharge element with respect to handling different sheet sizes. Although it is preferred to arrange the discharge elements such that the end-portions are positioned just outside of the flipping volume, this type of mechanical flexible electrode does not disturb the formation of a straight stack when the end-portions are positioned slightly inside the flipping volume. If a sheet touches a small portion of such electrode it will flex automatically and continue its flipping movement almost undisturbed. The electrically conductive outer surface may comprise carbon or any other suitable conductive material.
In another embodiment of the device according to the present invention, the discharge element is moveably arranged, such that the lateral position with respect to the sheet is adaptable. By enabling a laterally adaptable positioning of the discharge element, in particular, the end-portions of the electrodes thereon, a variety of sheet sizes may be handled. It is preferred to arrange the end-portions of the electrodes just outside of the flipping volume in order not to disturb the flipping sheets' movement and to be close enough to function efficiently.
The adaptation of the lateral position may be manual or automated in accordance with a measurement or other electrical signal, for example a signal from a printer controller of a printer coupled to such a flipping device.
In another embodiment of the device according to the present invention, the sheet flipping device further comprises a module for generating an airflow in the direction of the flipping sheets' movement such that the flipping of the sheet is assisted during at least a part of the flipping movement of the sheet. A module for generating an airflow may, for example, comprise a ventilator that blows in the direction of the sheet's flipping movement, or a suction device that sucks the sheet during at least a part of the flipping movement in the direction of flipping. A combination of sucking and blowing or other modules for generating airflow are also implementable.
The present invention will now be explained with reference to the following figures, wherein
The sheet flipping device is further provided with two discharge elements 150, 151 arranged adjacent to the flipping volume. This flipping volume is the volume through which the sheet 111 is actually moved during its flipping movement, in operation from its initial position to its flipped position on top of the receiving member 101 or the previously formed stack 105. The discharge elements 150, 151 have bases 112, 113 extending in a direction substantially perpendicular to the direction of the axis of rotation of the flipping wheel 102. The discharge elements 150, 151 have multiple electrodes 120 arranged on the bases 112, 113 having an end portion extending in a direction towards the flipping volume. The discharge elements 150, 151 are mounted on an apparatus frame (not shown) via frame mounts 115, 116.
In operation an incoming sheet is fed towards the sheet flipping wheel 102 in direction A from a supply or any sheet processing unit (not shown). In the illustrated situation, the leading edge portion of sheet 111 is accommodated in slit 110 and rotated in the direction of rotation R by driving the driving motor 103 for approximately a half revolution. At this point, the leading edge portion of the sheet 111 is released from the slit 110 by means of an abutment (not shown) which is arranged between two segments of the flipping wheel 102. By rotating the flipping wheel 102 further, the sheet 111 will be released and accommodated on top of the previously formed stack 105 in a flipped orientation with respect to its original orientation.
The electrodes 120 of the discharge elements 150, 151 have a sharp end, pointing towards the flipping volume to enable a discharge during the flipping of a sheet 111. The electrodes 120 are electrically conductive. Electrically conductive electrodes 120 are electrically connected to the bases 112, 113. The bases 112, 113 are connected to earth potential. The discharge element 150, 151 is constructed as an integral element formed from a single workpiece, e.g., stainless steel or any other electrical conductive material but may alternatively also be constructed as a modular assembly wherein the electrodes 120 are individually mounted on the base 112, 113.
In the flipping device according to the present invention, the discharge elements are arranged adjacent to the flipping volume. In practise a variety of sheet sizes may be processed and stacked. Therefore the discharge elements are generally arranged adjacent to the flipping volume of the sheet size with the largest width. If the end portions of the electrodes are sharp enough, the electrodes will still enable a discharge to smaller sheet sizes.
Alternatively, the discharge elements may be arranged in a moveable fashion, such that the lateral position of the discharge elements may vary in dependence on the actual sheet size.
The illustrated embodiments of
End-portions of electrodes may extend slightly into the flipping volume 10 thereby slightly toughing the flipping sheets, but preferably the end-portions are arranged just outside and adjacent to the flipping volume.
The invention being thus described, it will be obvious that the same may be varied in many ways. Such variations are not to be regarded as a departure from the spirit and scope of the invention, and all such modifications as would be obvious to one skilled in the art are intended to be included within the scope of the following claims.
Number | Date | Country | Kind |
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06125206 | Dec 2006 | EP | regional |
06126132 | Dec 2006 | EP | regional |
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Number | Date | Country | |
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20080136088 A1 | Jun 2008 | US |