The present invention relates to a post-processing apparatus, and more particularly to a post-processing apparatus with a sheet ejection device.
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 apparatus. By the post-processing apparatus, plural documents outputted from the printer or the scanner can be automatically stapled or punched in order to enhance the working efficiency. Regardless of whether any task is performed, the document outputted from the office machine with the post-processing apparatus is firstly introduced into a first sheet tray of the post-processing apparatus, and finally ejected to a second sheet tray outside the office machine through the a sheet ejection device.
Hereinafter, the structure of a conventional post-processing apparatus will be illustrated with reference to
Please refer to
The second sheet tray 12 is located beside the second end 11b of the first sheet tray 11. The first roller 13c is disposed under the first end 11a of the first sheet tray 11. The second roller 13d is disposed under the second end 11b of the first sheet tray 11. The first roller 13c and the second roller 13d are enclosed by the ring-shaped conveyor belt 13a. In addition, the sheet ejection arm 13b is protruded from an outer surface of the ring-shaped conveyor belt 13a.
Hereinafter, the operations of the conventional sheet ejection device will be illustrated with reference to
After plural paper sheets S are introduced into the first sheet tray 11 through the first end 11a of the first sheet tray 11, the paper sheets S are sequentially stacked on the first sheet tray 11.
Before a sheet-ejecting operation is performed, the ring-shaped conveyor belt 13a is in a static state. Under this circumstance, the sheet ejection arm 13b is stayed in an initial position, which is located under the first sheet tray 11 (see
Once the sheet-ejecting operation is started, the second roller 13d is rotated. Upon rotation of the second roller 13d, the ring-shaped conveyor belt 13a and the sheet ejection arm 13b are simultaneously and circularly moved, and the first roller 13c is driven to be rotated.
Consequently, the sheet ejection arm 13b moved upwardly from the initial position. In addition, the sheet ejection arm 13b is exposed to the surface of the first sheet tray 11 from the first end 11a of the first sheet tray 11, so that the tail edges of the plural paper sheets S are pushed by the sheet ejection arm 13b (see
The sheet ejection arm 13b is continuously moved toward the second end 11b of the first sheet tray 11, so that the plural paper sheets S are moved in the direction toward the second sheet tray 12.
When the sheet ejection arm 13b and the tail edges of the plural paper sheets S reach the second end 11b of the first sheet tray 11 (see
The sheet ejection device of the post-processing apparatus, however, still has some drawbacks. For example, when the tail edges of the plural paper sheets reach the second end of the first sheet tray, the plural paper sheets have been completely detached from the first sheet tray, but the pushing force in the direction x is still exerted on the plural paper sheets. If no instantaneous downward force is exerted on the plural paper sheets to allow the tail edges of the plural paper sheets to be quickly introduced into the second sheet tray, the plural paper sheets may easily fly in the sheet-pushing direction of the sheet ejection arm. Under this circumstance, the plural paper sheets fail to be uniformly aligned with each other.
If the moving speed of the sheet ejection arm is increased to enhance the overall working efficiency, the above problems become more serious.
Therefore, there is a need of providing a post-processing apparatus with an improved sheet ejection device in order to eliminate the drawbacks encountered from the prior art.
The present invention provides a sheet ejection device for allowing the paper sheets to be aligned with each other and smoothly fallen down to the sheet tray.
In accordance with an aspect of the present invention, there is provided a post-processing apparatus with a sheet ejection device for an office machine. The post-processing apparatus further includes a first sheet tray and a second sheet tray. The first sheet tray is used for storing plural paper sheets. The first sheet tray includes an elongated groove. The elongated groove is extended from a first end of the first sheet tray to a second end of the first sheet tray. The second sheet tray is located beside the second end of the first sheet tray. The sheet ejection device is used for transmitting the plural paper sheets from the first sheet tray to the second sheet tray. The sheet ejection device includes a ring-shaped conveyor belt, a driving device, and a sheet ejection arm. The ring-shaped conveyor belt is disposed under the elongated groove of the first sheet tray. The driving device is used for driving a circular movement of the ring-shaped conveyor belt. The sheet ejection arm is movable with the ring-shaped conveyor belt, so that the sheet ejection arm is penetrated through the elongated groove, and moved from the first end of the first sheet tray to the second end of the first sheet tray. The sheet ejection arm includes a first pushing element and a second pushing element. The first pushing element is protruded from a surface of the ring-shaped conveyor belt. The second pushing element is pivotally coupled to the first pushing element and permitted to be swung relative to the first pushing element. After the sheet ejection arm is penetrated through the elongated groove from the first end of the first sheet tray, tail edges of the plural paper sheets are pushed by the sheet ejection arm, so that the plural paper sheets are moved toward the second end of the first sheet tray. When the tail edges of the plural paper sheets reach the second end of the first sheet tray, the second pushing element is swung toward the second sheet tray to press the tail edges of the plural paper sheets, so that the plural paper sheets are aligned with each other and smoothly fallen down to the second sheet tray.
In an embodiment, the first pushing element further includes a stopper, which is extended from a tip of the first pushing element.
In an embodiment, the second pushing element includes a sidewall, a bulge, a notch, and two coupling blocks. The sidewall is used for contacting and pushing the plural paper sheets. A hook is formed on a tip of the sidewall for preventing the plural paper sheets from being escaped out of a top side of the second pushing element. The bulge is protruded from an opposite surface of the sidewall. The notch is disposed under the bulge. The two coupling blocks are located at a bottom of the second pushing element. The two coupling blocks are coupled to the stopper of the first pushing element, so that the second pushing element is pivotally coupled to the first pushing element.
In an embodiment, before the tail edges of the plural paper sheets are moved to the second end of the first sheet tray, the bulge allows the second pushing element not to be swung toward the second sheet tray.
In an embodiment, before the tail edges of the plural paper sheets are moved to the second end of the first sheet tray, the stopper of the first pushing element is engaged with the notch of the second pushing element, so that a position of the second pushing element is fixed.
In an embodiment, when the tail edges of the plural paper sheets reach the second end of the first sheet tray, a gravity of the bulge allows the second pushing element to be swung toward the second sheet tray.
In an embodiment, the sheet ejection device further includes a first shaft and a second shaft. The first shaft is disposed under the first end of the first sheet tray, wherein the first shaft is parallel with the first sheet tray and perpendicular to a transporting direction of the plural paper sheets. The second shaft is disposed under the second end of the first sheet tray, wherein the second shaft is parallel with the first sheet tray and perpendicular to the transporting direction of the plural paper sheets. The first shaft and the second shaft are enclosed by the ring-shaped conveyor belt, and the driving device is connected to the first shaft.
In an embodiment, the second pushing element of the sheet ejection arm is made of metallic material.
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 post-processing apparatus with a sheet ejection device. By the sheet ejection device, plural paper sheets on a first sheet tray can be moved to a second sheet tray.
Hereinafter, the structure of a post-processing apparatus will be illustrated with reference to
Please refer to
The first sheet tray 21 comprises an elongated groove 211. The elongated groove 211 is extended from a first end 21a of the first sheet tray 21 to a second end 21b of the first sheet tray 21. The sheet ejection device 23 comprises a ring-shaped conveyor belt 231a, a driving device 231b, a first shaft 231c, a second shaft 231d, and a sheet ejection arm 232. The sheet ejection arm 232 comprises a first pushing element 232a and a second pushing element 232b. It is preferred that the second pushing element 232b is made of metallic material.
Please refer to
Hereinafter, a process of assembling the post-processing apparatus will be illustrated with reference to
The second sheet tray 22 is located beside the second end 21b of the first sheet tray 21. The first shaft 231c is disposed under the first end 21a of the first sheet tray 21. The second shaft 231d is disposed under the second end 21b of the first sheet tray 21. The first shaft 231c and the second shaft 231d are both parallel with the first sheet tray 21, and perpendicular to the transporting direction of plural paper sheets. In addition, the first shaft 231c and the second shaft 231d are enclosed by the ring-shaped conveyor belt 231a, and disposed under the elongated groove 211 of the first sheet tray 21. The driving device 231b is connected to the first shaft 231c. The first pushing element 232a of the sheet ejection arm 232 is protruded from an outer surface of the ring-shaped conveyor belt 231a. The two coupling blocks 232bd of the second pushing element 232b are pivotally coupled to the first pushing element 232a through the bilateral sides of the stopper 232aa of the first pushing element 232a (see
As known, if the external force is not uniform during the process of transporting the paper sheet, the paper sheet is usually aslant transported. For maintaining equilibrium of the paper sheet, the sheet ejection device 23 of this embodiment comprises two ring-shaped conveyor belts 231a, two sheet ejection arms 232, and two elongated grooves 211. The configurations and functions of the two ring-shaped conveyor belts 231a, the two sheet ejection arms 232 and the two elongated grooves 211 are identical to each other, and are not redundantly described herein.
Hereinafter, the operations of the sheet ejection device of the post-processing apparatus of the present invention will be illustrated with reference to
For clearly describing the operations of the sheet ejection device, the driving device 231b is not shown in
Firstly, as shown in
Once the sheet-ejecting operation is started, the first shaft 231c is driven by the driving device 231b to be rotated in a direction y. Upon rotation of the first shaft 231c, the ring-shaped conveyor belt 231a is rotated in the direction y, so that the second shaft 231d is driven to be synchronously rotated in the direction y. Upon rotation of the ring-shaped conveyor belt 231a, the sheet ejection arm 232 is moved toward the region under the first shaft 231c.
When the sheet ejection arm 232 is moved across the first shaft 231c and moved to the first end 21a of the first sheet tray 21, the sheet ejection arm 232 is penetrated through the elongated groove 211 and exposed to the surface of the first sheet tray 21. Consequently, the tail edges e of the plural paper sheets S′ on the first sheet tray 21 are simultaneously pushed by the first pushing element 232a and the sidewall 232ba of the second pushing element 232b.
As the sheet ejection arm 232 is continuously moved toward the second end 21b of the first sheet tray 21, the sheet ejection arm 232 will push the tail edges e of the plural paper sheets S′ toward the second end 21b of the first sheet tray 21 (see
Moreover, before the tail edges e of the plural paper sheets S′ reach the second end 21b of the first sheet tray 21, since the center of gravity of the second pushing element 232b is located at the side of the bulge 232bb, the second pushing element 232b is not swung relative to the second sheet tray 22. During this time period, the stopper 232aa of the first pushing element 232a is engaged with the notch 232bc of the second pushing element 232b, so that the position of the second pushing element 232b is fixed. Under this circumstance, the sidewall 232ba of the second pushing element 232b is maintained in parallel with the first pushing element 232a in order to push the plural paper sheets S′.
When the sheet ejection arm 232 is continuously moved to the region over the second shaft 231d, the tail edges e of the plural paper sheets S′ are pushed to the second end 21b of the first sheet tray 21 (see
At the time when the second pushing element 232b is swung, the tail edges e of the plural paper sheets S′ are pressed by the second pushing element 232b. Under this circumstance, an instantaneous downward force is exerted on the tail edges e of the plural paper sheets S′, thereby facilitating quickly introducing the tail edges e of the plural paper sheets S′ into the second sheet tray 22.
Then, the sheet ejection arm 232 is continuously moved toward the region under the first sheet tray 21 until the sheet ejection arm 232 reaches the initial position.
In other words, when the tail edges e of the plural paper sheets S′ reach the second end 21b of the first sheet tray 21, the change of the center-of-gravity position of the second pushing element 232b allows the tail edges e of the plural paper sheets S′ to be quickly introduced into the second sheet tray 22.
From the above description, the present invention provides a sheet ejection device of a post-processing apparatus. After the plural paper sheets are completely detached from the first sheet tray, the second pushing element provides an instantaneous downward force to the tail edges of the plural paper sheets. Due to the instantaneous downward force, the tail edges e of the plural paper sheets can be quickly fallen down to the second sheet tray without being adversely affected by the pushing force of the sheet ejection arm.
Consequently, during the plural paper sheets are introduced into the second sheet tray, the possibility of flying the plural paper sheets in the sheet-pushing direction of the sheet ejection arm will be minimized. In other words, the operating speed of the sheet ejection arm may be increased, and thus the overall performance will be enhanced.
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.
Number | Date | Country | Kind |
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101106202 | Feb 2012 | TW | national |