This application is based upon and claims the benefit of priority from the prior Japanese Patent Application No. 2008-315904, filed on Dec. 11, 2008; the entire contents of all of which are incorporated herein by reference.
The present invention relates to a sheet processing apparatus for discriminating and sorting sheets such as marketable securities and more particularly to a sheet supply apparatus for supplying sheets.
A sheet processing apparatus for processing sheets such as marketable securities moves a sheet bundle supplied to a supply portion in a batch to a take-out position. The sheet bundle moved to the take-out position is taken out one by one starting from the sheet on the uppermost surface of the sheet bundle by a take-out apparatus and is conveyed to a sheet discriminator. The conveyed sheets are discriminated for the kind, authenticity, qualification, and conveying direction of the sheets by the sheet discriminator. On the basis of the discrimination results, the sheets are sorted and processed such as stacking and sealing.
This kind of apparatus is already put to practical use and the sheet supply apparatus installed in the supply portion of the sheet processing apparatus is equipped with an openable door. An operator opens the door, supplies a sheet bundle (for example, 1,000 sheets) to be processed, and closes the door. Then, if he performs the take-out start process such as pressing the take-out start button from the operating portion (console) of the sheet processing apparatus, the sheets are taken out one by one starting from the sheet on the uppermost surface of the sheet bundle at a predetermined interval.
The take-out apparatus used to take out sheets is often of an air suction method using a take-out rotor. To improve the processing efficiency, sheets must be taken out surely at high speed and the take-out by the take-out rotor is suited to this method (for example, refer to Japanese Patent Application Publication No. 2008-50053).
However, in the sheet supply apparatus described in Japanese Patent Application Publication No. 2008-50053, there are the problems (1) to (3) indicated below imposed.
(1) Problem of operability: When an operator lifts up a sheet bundle (about 1 kg for 1,000 sheets) and supplies the sheet bundle to the supply portion in the state that he sits on a chair, the supply portion is desirably arranged in the neighborhood of the sitting position. However, if the supply portion is excessively close to the sitting position, he consequently approaches the take-out apparatus installed in the neighborhood of the supply portion, and the noise of the take-out apparatus for taking out the sheets becomes loud, so that there is a limit to approaching, and the operability is apt to be sacrificed.
(2) Problem of safety: The sheet supply portion is equipped with a door, and the door can be opened during processing of the sheets, and the next sheet bundle can be supplied. Consequently, the sheets can be processed continuously and the operation rate of the sheet processing apparatus is improved. However, due to opening of the door, a problem of safety arises that there are possibilities that the operator may make contact with the operation portion such as the take-out apparatus for taking out the sheets.
(3) Problem of noise: In relation to (1) mentioned above, if the take-out apparatus is arranged in the neighborhood of the sitting position of the operator, the operability shown in (1) becomes better, though the operator hears directly the sound of the take-out apparatus for taking out the sheets and a problem of noisy arises.
The present invention was developed to solve the aforementioned problems and is intended to provide a sheet supply apparatus that the operability is improved by shortening the distance from the sitting position of an operator to the supply portion for supplying a sheet bundle, and the sheet supply portion is separated from the sheet take-out portion, and the take-out apparatus is arranged in the apparatus, thus the operator does not make contact with the operation portion even if the door is opened, and the noise can be prevented.
To achieve the above advantage, the aspect of the present invention is to provide a sheet supply apparatus comprising a supply portion with a sheet bundle supplied via an opening portion; a take-out portion to move the sheet bundle supplied to the supply portion to a take-out position and take out the sheets one by one starting from a sheet on an uppermost surface of the sheet bundle; a first door with the opening portion arranged openably to be opened when the sheet bundle is supplied to the supply portion; a second door arranged openably on a middle position when the sheet bundle supplied to the supply portion moves to the take-out position; and a controller to control the first door and the second door to open or close.
Further, to achieve the above advantage, the aspect of the present invention is to provide a sheet supply method comprising supplying a sheet bundle to a supply portion with a first door opened and loading the sheet bundle on a carrier; opening a second door closed and ensuring a movement path of the carrier; moving the carrier with the sheet bundle loaded to a take-out portion along the movement path; and closing the first door.
Hereinafter, the embodiments of the present invention will be explained with reference to the accompanying drawings.
In the sheet supply apparatus 2, the supply portion 10 is arranged on the front side and the take-out portion 20 is arranged on the bask side (the rear side) thereof. The sheet bundle Ps supplied by the supply portion 10 is loaded on the carrier 11 and the carrier 11 moves from the supply portion 10 to the take-out portion 20 by a first moving structure 11a. By the movement, the sheet bundle Ps is transferred from the supply portion 10 to the take-out portion 20.
The first moving structure 11a is composed of a drive motor and a belt driven by the drive motor. Depending on the bill kind of the sheet bundle Ps supplied, the drive quantity is set. The details will be described later.
Hereinafter, the detailed operation of the carrier 11 will be explained.
As shown in
As shown in
As shown in
Next, by referring to
The first moving structure 11a is composed of a front-back direction moving structure 14x and a lateral direction moving structure 14y. The front-back direction moving structure 14x is composed of a front-back direction drive motor 14a and a drive belt 14b connected to the front-back direction drive motor 14a via the pulley. The carrier 11 pressed by the drive belt 14b can move in the front-back direction along a front-back direction slide rail 14c. Further, the carrier 11, when it returns, must stop on the front side (the home position) and the stop position is set by a front side position sensor 14d.
The front side stop position is fixed by the front side position sensor 14d, though the back direction stop position depends upon a carrier back side position sensor 25 (refer to
The horizontal direction moving structure 14y is composed of a horizontal direction drive motor 14e and a drive belt 14f connected to the horizontal direction drive motor 14e via the pulley. The carrier 11 pressed by the drive belt 14f can move in the horizontal direction along a horizontal direction slide rail 14g. The carrier 11 moving in this way is detected by a leftward stopping place sensor 14h and a rightward stopping place sensor 14i. The leftward and rightward stopping places depend upon the respective leftward and rightward stopping place sensors.
The sheet bundle Ps is transferred from the supply portion 10 to the take-out position 20 by the structure described above. If the sheet bundle Ps is transferred in the right direction in this way, the sheet bundle guide 27 goes down in the direction of the arrow E drawn (
The sheet bundle Ps transferred in this way, when a first backup plate 21 moves up in the direction of the arrow F drawn by a second moving structure 11b, is moved from the carrier 11 whereon the sheet bundle Ps is loaded to the first backup plate 21 (
The carrier 11 which becomes free due to shifting of the sheet bundle Ps moves in the direction of the arrow G drawn (
As shown in
By realization of the above constitution, the problems of (1) to (3) can be solved.
In
In the drawing, the back wall 24, on the basis of the conveyance standard conveying base (not drawn) which is a conveyance standard of the sheet processing apparatus 1, can move in the front-back direction by the back wall position setting structure 23. The reason is that since the sheet size handled may depend on the kind (bill kind) of the sheets, even if the size of the bill kind (in this case, the short side size of the sheets) is changed, the center of the sheets in the short side direction is set so as to be at a fixed distance from the conveying base. Namely, according to the size of the sheets, the position of the back wall 24 is set by the back wall position setting structure 23.
The back wall position setting structure 23 is composed of a front-back direction drive motor 23a and a ball screw 23b connected to the front-back direction drive motor 23a, and when the front-back direction drive motor 23a rotates in the forward direction, can shift the back wall 24 forward in the front direction, and when the front-back direction drive motor 23a rotates in the backward direction, can shift the back wall 24 backward in the back direction.
The sheet bundle guide 27 is incorporated vertically movably in the back wall 24 and if the back wall 24 moves in the front-back direction, the sheet bundle guide 27 also moves in the front-back direction.
A sheet bundle guide drive motor 28 is attached to the conveying base and the timing belt and idle roller are also attached to the conveying base. The sheet bundle guide 27, even if the back wall 24 moves in the front-back direction, can move by the sheet bundle guide moving structure.
The timing belt side clasp 26b is formed in a concave shape, and the bottom thereof is attached to the timing belt 26a, and a sheet bundle side clasp 27a is structured so as to fit into the concavity. The sheet bundle guide 27 is attached to the sheet bundle side clasp 27a and the sheet bundle guide 27 moves in the vertical direction in correspondence to the movement of the timing belt side clasp 26b in the vertical direction.
The fitting portion of the timing belt side clasp 26b into the sheet bundle side clasp 27a, even if the sheet bundle side clasp 27a slides in the front-back direction (the back direction) due to the short side size of the sheets, is kept in the fitting condition. By the fitting, the difference in the size in the short side direction due to the bill kind of the sheets is absorbed.
On the back wall 24, the carrier back side position sensor 25 for detecting the back side position of the carrier 11 is arranged and the back side position of the carrier 11 is set by the carrier back side position sensor 25. Therefore, even if the back wall 24 moves front and back due to the short side size of the sheets, the carrier back side position sensor 25 moves in correspondence to the movement of the back wall 24 and the back side stop position of the carrier 11 is specified by the movement of the back wall 24.
As mentioned above, according to this embodiment, the sheet supply portion is separated from the take-out portion, and the supply portion is arranged in the neighborhood of the operator, and the take-out portion is installed in the apparatus away from the operator, so that a sheet supply apparatus improved in operability, safety, and noise can be provided.
Number | Date | Country | Kind |
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2008-315904 | Dec 2008 | JP | national |
Number | Name | Date | Kind |
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5199697 | Yamada et al. | Apr 1993 | A |
7240829 | Graef et al. | Jul 2007 | B2 |
7870997 | Eastman et al. | Jan 2011 | B2 |
20090084841 | Washington et al. | Apr 2009 | A1 |
Number | Date | Country |
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2001-060278 | Mar 2001 | JP |
2008-050053 | Mar 2008 | JP |
Number | Date | Country | |
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20100148418 A1 | Jun 2010 | US |