The present invention relates to a sheet alignment device, and more particularly to a sheet alignment device for use in an office machine.
An office machine such as a printer or a scanner is widely used in the office. For achieving diversified functions and integrating more functions, the office machine is usually equipped with a post-processing device (e.g. a stapler). By the stapler, a plurality of documents outputted from the printer or the scanner can be automatically stapled in order to enhance the working efficiency. The operations of the post-processing device (e.g. a stapler) will be illustrated as follows. Firstly, the documents are placed on a sheet placement tray. Then, the edges of these documents are aligned with each other by a sheet alignment device. Then, a stapling operation is performed by the stapler, so that the same parts of these documents are combined together.
Please refer to
The sheet alignment device 1 comprises a first alignment arm 11, a second alignment arm 12, a sensor 13 and a sheet placement tray 14. The first alignment arm 11 comprises a first platform 11a, a first sidewall 11b and a protrusion structure 11c. The second alignment arm 12 comprises a second platform 12a and a second sidewall 12b.
The first sidewall 11b of the first alignment arm 11 is extended from an end of the first platform 11a and perpendicular to the first platform 11a. The protrusion structure 11c is extended from the first sidewall 11b. The second sidewall 12b of the second alignment arm 12 is extended from an end of the second platform 12a and perpendicular to the second platform 12a. The sensor 13 is arranged beside the protrusion structure 11c. The sheet placement tray 14 is disposed under the first alignment arm 11 and the second alignment arm 12. Moreover, the first platform 11a of the first alignment arm 11 and the second platform 12a of the second alignment arm 12 are coplanar.
Hereinafter, the operations of the conventional sheet alignment device 1 will be illustrated with reference to
After the sheet is introduced into the sheet alignment device 1, the power device (not shown) is controlled by a controller (not shown) to drive both of the first alignment arm 11 and the second alignment arm 12 to be inwardly moved by a preset distance d1. Consequently, the first alignment arm 11 and the second alignment arm 12 are moved to a first standby position b1 and a second standby position b2 so as to carry the sheet S. Meanwhile, the protrusion structure 11c of the first alignment arm 11 is distant from the sensor 13, and thus a second sensing signal is issued by the sensor 13.
When the sheet-aligning action starts, according to the size of the sheet S and under control of the controller (not shown), the first alignment arm 11 is moved toward the second alignment arm 12 by an alignment distance d2 to an alignment position c. Meanwhile, the edge of the sheet S is nestled against the second sidewall 12b.
If another sheet is ready to be introduced into the sheet alignment device 1, the power device (not shown) is controlled by the controller (not shown) to drive the first alignment arm 11 to be distant from the second alignment arm 12 by the alignment distance d2. Consequently, the first alignment arm 11 is returned to the first standby position b1. Similarly, the first alignment arm 11 is moved between the first standby position b1 and the alignment position c in a reciprocating manner until the rest of the sheets implement the sheet-aligning actions.
After the sheet-aligning actions of all sheets have been implemented, a stapling operation is performed by a post-processing device (e.g. a stapler), so that the same parts of these sheets are combined together. Then, the power device (not shown) is controlled by the controller (not shown) to drive both of the first alignment arm 11 and the second alignment arm 12 to be outwardly moved until the sensor 13 is interrupted by the protrusion structure 11c of the first alignment arm 11 again and the first sensing signal is issued by the sensor 13. That is, the first alignment arm 11 and the second alignment arm 12 are respectively returned to the first home position a1 and the second home position a2. Afterwards, the stapled sheets are introduced to the sheet placement tray 14 and ejected to the outer portion of the office machine.
From the above discussions, a plurality of sheets are aligned with each other by moving the first alignment arm 11 and the second alignment arm 12 of the conventional sheet alignment device 1. In addition, the use of the sensor 13 can detect the positions of the first alignment arm 11 and the second alignment arm 12.
The conventional sheet alignment device, however, still has some drawbacks. For example, during the process of performing the sheet-aligning actions of the sheets, the power device (not shown) drives the first alignment arm 11 to be moved between the first standby position b1 and the alignment position c in a reciprocating manner. In addition, the sensor 13 is only able to detect whether the first alignment arm 11 and the second alignment arm 12 are respectively located at the first home position a1 and the second home position a2. On the other hand, the sensor 13 fails to judge whether the first alignment arm 11 is really moved to the first standby position b1. If the first alignment arm 11 is moved by a distance shorter than the alignment distance d2 after the sheet-aligning action of the first sheet is completed, the first alignment arm 11 fails to be moved to the actual first standby position b1. Under this circumstance, the real position of the first alignment arm 11 is separated from the first standby position b1 by an error distance. After the sheet-aligning action of the second sheet is completed, the edges of the second sheet and the first sheet are separated from each other by the error distance. In other words, the second sheet fails to be precisely aligned with the first sheet. If the error distance is generated again during the subsequent sheet-aligning actions are performed, the total error distances will be largely increased. After the sheet-aligning actions of all sheets have been implemented and the sheets are combined together, the stapled parts of these sheets are not at the same position.
Therefore, there is a need of providing an improved sheet alignment device so as to obviate the drawbacks encountered from the prior art.
The present invention relates to a sheet alignment device with reduced moving distance error, and thus the sheet-aligning precision is enhanced.
In accordance with an aspect of the present invention, there is provided a sheet alignment device for aligning a plurality of sheets on a sheet placement tray with each other. The sheet alignment device includes a first alignment arm, a second alignment arm, a power device, a transmission device, a first sensor and a second sensor. The first alignment arm is used for carrying first ends of the sheets. The first alignment arm includes a first platform, a first sidewall, a first blocking piece and a second blocking piece. The first platform is parallel with the sheet placement tray. The first sidewall is perpendicular to the first platform. The first blocking piece and the second blocking piece are disposed over the first platform. The second alignment arm is used for carrying second ends of the sheets. The second alignment arm includes a second platform, a second sidewall and a third blocking piece. The second platform is parallel with the sheet placement tray. The second sidewall is perpendicular to the second platform, and the third blocking piece is disposed over the second platform. The transmission device is connected with the power device, the first alignment arm and the second alignment arm. Through the transmission device, the first alignment arm is driven by the power device to be moved to a first home position, a first standby position and an alignment position, and the second alignment arm is driven by the power device to be moved to a second home position and a second standby position. The first sensor is disposed over the first alignment arm for detecting a position of the first alignment arm. The second sensor is disposed over the second alignment arm for detecting a position of the second alignment arm.
In an embodiment, the power device includes a first driving element and a second driving element. The transmission device comprises a first transmission element and a second transmission element. The first transmission element is connected with the first driving element and the first alignment arm. The second transmission element is connected with the second driving element and the second alignment arm.
In an embodiment, the first alignment arm further includes a third platform, and the second alignment arm further includes a fourth platform. The third platform is extended from the first sidewall and parallel with the first platform. The fourth platform is extended from the second sidewall and parallel with the second platform.
In an embodiment, the sheet alignment device includes a first roller, a second roller and a first elastic element. The first roller is disposed on the first driving element. The second roller is disposed on the third platform of the first alignment arm. The outer peripheries of the first roller and the second roller are enclosed by the first transmission element. The first elastic element is disposed on the first transmission element for maintaining a tension force of the first transmission element
In an embodiment, the sheet alignment device further includes a third roller, a fourth roller and a second elastic element. The third roller is disposed on the second driving element. The fourth roller is disposed on the fourth platform of the second alignment arm. The outer peripheries of the third roller and the fourth roller are enclosed by the second transmission element. The second elastic element is disposed on the second transmission element for maintaining a tension force of the second transmission element.
In an embodiment, the first blocking piece and the second blocking piece are disposed on the third platform. The third blocking piece is disposed on the fourth platform.
In an embodiment, the sheet alignment device further includes a supporting shaft. Both ends of the supporting shafts are disposed on the third platform and the fourth platform to be connected with the first alignment arm and the second alignment arm, respectively. The first alignment arm and the second alignment arm are movable toward each other or distant from each other along the supporting shaft.
In an embodiment, the first alignment arm further includes a first fixing part, and the second alignment arm further includes a second fixing part. The first fixing part is disposed on the third platform for fixing the first alignment arm on the first transmission element. The second fixing part is disposed on the fourth platform for fixing the second alignment arm on the second transmission element.
In an embodiment, the sheet alignment device further includes a controller for controlling movement of the first alignment arm and the second alignment arm. If no sheet is placed on the sheet placement tray, the first alignment arm and the second alignment arm are controlled by the controller to be moved to the first home position and the second home position. If the first sensor and the second sensor are respectively interrupted by the first blocking piece and the third blocking piece, the controller stops moving the first alignment arm and the second alignment arm.
In an embodiment, when a first sheet is introduced into the sheet placement tray, the first alignment arm and the second alignment arm are controlled by the controller to be moved to the first standby position and the second standby position, respectively. Whereas, when the first sensor is interrupted by the second blocking piece, the controller stops moving the first alignment arm and the second alignment arm.
In an embodiment, when a sheet-aligning action of the first sheet starts, the first alignment arm is controlled by the controller to be moved to the alignment position according to a size of the first sheet. After the sheet-aligning action of the first sheet is completed, if there is any sheet to be aligned, the first alignment arm is moved to the first standby position. When the first sensor is interrupted by the second blocking piece, the controller stops moving the first alignment arm.
The above objects and advantages of the present invention will become more readily apparent to those ordinarily skilled in the art after reviewing the following detailed description and accompanying drawings, in which:
The present invention provides a sheet alignment device. The sheet alignment device may be applied to an office machine.
The first alignment arm 21 comprises a first platform 21a, a first sidewall 21b, a third platform 21c, a first blocking piece 21d, a second blocking piece 21e and a first fixing part 21f. The second alignment arm 22 comprises a second platform 22a, a second sidewall 22b, a fourth platform 22c, a third blocking piece 22d and a second fixing part 22e. The power device 26 comprises a first driving element 26a and a second driving element 26b. The transmission device 27 comprises a first transmission element 27a and a second transmission element 27b.
Hereinafter, a process of assembling the sheet alignment device will be illustrated with reference to
Hereinafter, the operating principle of the present invention will be illustrated with reference to
Hereinafter, the operations of the sheet alignment device 2 will be illustrated with reference to
As the second driving element 26b is rotated, the third roller 30 is synchronously rotated to drive the second transmission element 27b of the transmission device 27. At the same time, the fourth roller 31 is driven by the second transmission element 27b to rotate, so that the second transmission element 27b is moved more smoothly. Under this circumstance, since the second alignment arm 22 is connected with the second transmission element 27b, the second alignment arm 22 is simultaneously moved with the second transmission element 27b.
Please refer to
In a case that no sheet is introduced to the sheet placement tray 4, the first alignment arm 21 and the second alignment arm 22 are respectively located at a first home position a1 and a second home position a2 (see
Please also refer to
Please also refer to
After the sheet-aligning action of the first sheet S1 is completed, if a second sheet S2 is ready to be aligned, the first alignment arm 21 needs to be removed back to the first standby position b1 and a waiting time is required to introduce the second sheet S2 into the sheet placement tray 4. Under control of the controller 34, the first transmission element 27a is transmitted by the first driving element 26a to be rotated in the clockwise direction. Please also refer to
During the sheet-aligning action of the second sheet S2 is performed, the controller 34 will calculate the moving distance of the first alignment arm 21. Similarly, until the first sensor 23 is no longer interrupted by the second end 21eb of the second blocking piece 21e and the first sensor 23 issues a low-level signal L, the controller 34 starts to calculate the moving distance of the first alignment arm 21. The timing of starting calculating the moving distance is identical to that described above. Moreover, the first alignment arm 21 is also stopped at the alignment position c.
During the sheet-aligning action of the second sheet S2 is performed, the first side of the second sheet S2 is pushed by the first sidewall 21b of the first alignment arm 21, and thus the second sheet S2 is moved toward the second sidewall 22b of the second alignment arm 22. After the sheet-aligning action of the second sheet S2 is completed, the second side and the first side of the second sheet S2 are nestled against the second sidewall 22b of the second alignment arm 22 and the first sidewall 21b of the first alignment arm 21, respectively (see
After the sheet-aligning action of the second sheet S2 is completed, if another sheet is ready to be aligned, the controller 34 will drive the first driving element 26a again, so that the first alignment arm 21 is moved to the third standby position b3 and a waiting time is required to introduce the sheet into the sheet placement tray 4.
If no additional sheet is needed to be aligned, a stapling operation is performed by a post-processing device (e.g. a stapler), so that the same parts of the first sheet S1 and the second sheet S2 are combined together. Then, the stapled sheets S1 and S2 are ejected out of the sheet placement tray 4. Then, under control of the controller 34, the first alignment arm 21 and the second alignment arm 22 are moved in the directions distant from each other, so that the stapled sheets S1 and S2 fall down to the outer portion of the office machine. Until the first sensor 23 and the second sensor 24 are respectively interrupted by the first blocking piece 21d of the first alignment arm 21 and the third blocking piece 22d of the second alignment arm 22 (i.e. the first alignment arm 21 and the second alignment arm 22 are respectively moved back to the first home positional and the second home position a2), the controller 34 will stop moving the first alignment arm 21 and the second alignment arm 22. Meanwhile, the sheet-aligning action of the sheet alignment device 2 is finished.
Please refer to
From the above description, the second blocking piece 21e of the first alignment arm 21 and the first sensor 23 are collectively operated to determine the timing of calculating the moving distance of the first alignment arm 21. During the sheet-aligning action of each sheet is performed, if the first sensor 23 is no longer interrupted by the second end 21eb of the second blocking piece 21e and the first sensor 23 issues a low-level signal L, the controller 34 starts to calculate the moving distance of the first alignment arm 21. Since the moving distance of the first alignment arm 21 is calculated at the same start point for each sheet during the sheet-aligning action of each sheet is performed, the possibility of resulting in the moving distance error will be minimized. Consequently, the possibility of accumulating the moving distance error will be reduced. Since these sheets can be precisely aligned with each other, after a stapling operation is performed by a post-processing device (i.e. the stapler), the same parts of these sheets can be accurately combined together.
While the invention has been described in terms of what is presently considered to be the most practical and preferred embodiments, it is to be understood that the invention needs not be limited to the disclosed embodiment. On the contrary, it is intended to cover various modifications and similar arrangements included within the spirit and scope of the appended claims which are to be accorded with the broadest interpretation so as to encompass all such modifications and similar structures.
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