JP2008165376A - Accumulation device for paper sheets - Google Patents

Accumulation device for paper sheets Download PDF

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JP2008165376A
JP2008165376A JP2006352425A JP2006352425A JP2008165376A JP 2008165376 A JP2008165376 A JP 2008165376A JP 2006352425 A JP2006352425 A JP 2006352425A JP 2006352425 A JP2006352425 A JP 2006352425A JP 2008165376 A JP2008165376 A JP 2008165376A
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paper sheets
paper sheet
face
paper
diaphragm
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JP5010270B2 (en
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Atsushi Ina
淳 伊奈
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Toshiba Corp
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Toshiba Corp
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Abstract

<P>PROBLEM TO BE SOLVED: To provide an accumulation device for improving the alignment performance of the accumulation device regardless of the length of paper sheets to be processed. <P>SOLUTION: A rotary roller 74a is arranged in the elliptic hole part of a driving force transmission part 73c. The rotary shaft is connected to an eccentric cam 74b, and connected to a vibration motor 74c. When a vibration motor is rotated, the eccentric rotation of the rotary roller is performed, and transmitted to a driving force transmitting part 73c, and an integrally configured vibration plate 73a is vibrated. Furthermore, this vibration motor 74c is configured to be translated by a driving motor 74g and a link mechanism 74e, and an arrangement position is set depending on the type of paper sheet P. When the length L of the conveyance direction is changed, the arrangement position of an end face alignment part 73p is changed. This end face alignment part is arranged in parallel with the rear end face of the paper sheet P whose length is short, and an angle θ formed by the end face alignment part 73p and the end face of the paper sheet is opened to an anti-clockwise direction according as the length becomes longer, and the paper sheet P is pressurized to the anti-clockwise direction, so that the top ends of the paper sheet P can be aligned. <P>COPYRIGHT: (C)2008,JPO&INPIT

Description

本発明は、有価証券などの紙葉類を処理する紙葉類処理装置に搭載される紙葉類の集積装置に関し、特に紙葉類の端面を取り揃え機構を備えた紙葉類の集積装置に関する。   BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a paper sheet stacking apparatus mounted on a paper sheet processing apparatus for processing paper sheets such as securities, and more particularly to a paper sheet stacking apparatus having an end surface of paper sheets and a mechanism. .

有価証券などの紙葉類を処理する紙葉類処理装置は、処理単位に応じて一括して投入された紙葉類束から取出装置によって紙葉類を1枚ずつ取出して搬送し、紙葉類判別装置によって紙葉類を判別し、正常な券(再利用可能な真券で正券と称する。)、損券(再利用不可能な真券で損券と称する。)及び偽券・搬送不良券など判別不能な排除券に区分される。   A paper sheet processing apparatus for processing paper sheets such as securities takes out the paper sheets one by one from the bundle of paper sheets input in a batch according to the processing unit, and conveys them one by one. The paper classifier is discriminated by a class discriminating device, and a normal ticket (a reusable genuine note is called a genuine note), a non-reusable ticket (a non-reusable genuine note is called a non-revenue note), and a fake They are classified as indeterminate tickets such as badly transported tickets.

このようにして区分された正券又は損券は、集積装置に搬送され、100枚ごとに紙帯で結束されて、把Hが形成される。   The correct bills or the damaged bills sorted in this way are transported to the stacking device and bundled with a paper strip every 100 sheets to form a bundle H.

集積装置には、搬送された紙葉類を集積する集積庫との受渡部分に、高速に搬送される紙葉類の搬送エネルギーを吸収しながら当該紙葉類にダメージを与えないで集積する方法として羽根車を用いた集積装置が用いられる。   In the stacking apparatus, a method for stacking the transported paper sheets without damaging the transported paper sheets while absorbing the transport energy of the transported paper sheets at a delivery portion with the stacker for stacking the transported paper sheets. An accumulation device using an impeller is used.

この集積装置は、回転軸の周囲に複数の羽根が配置されており、この羽根と羽根との間に当該紙葉類を取込む。取込まれた紙葉類は、羽根車の回転に伴って回転しその運動エネルギーが吸収され、紙葉類掻出板に掻き出されて集積庫に集積される(例えば、特許文献1参照。)。   In this stacking device, a plurality of blades are arranged around the rotation shaft, and the paper sheets are taken in between the blades. The taken paper sheets are rotated with the rotation of the impeller to absorb the kinetic energy, scraped out by the paper sheet scraping plate, and accumulated in the stacker (for example, see Patent Document 1). ).

この集積庫への集積の際、紙葉類の搬送方向後端は、端面取揃装置によって取り揃えられる。   At the time of stacking in the stacker, the rear end of the paper sheet in the transport direction is prepared by an end face arranging device.

以下、図8〜図10を参照して従来の集積装置に関する端面取り揃え機構を説明する。この端面取揃装置730は、振動板730a、この振動板730aに振動を伝達する偏心カム730c、この偏心カムを回転駆動する振動用モータ(図示しない)、この振動用モータを左右に並行移動させるリンク機構(図示しない)、及びこの並行移動を検知するセンサ(図示しない)などで構成される。   Hereinafter, an end face assembling mechanism relating to a conventional stacking apparatus will be described with reference to FIGS. The end face arranging device 730 includes a diaphragm 730a, an eccentric cam 730c that transmits vibration to the diaphragm 730a, a vibration motor (not shown) that rotationally drives the eccentric cam, and the vibration motor that moves in parallel to the left and right. A link mechanism (not shown) and a sensor (not shown) for detecting this parallel movement are included.

上記振動板730aは、支点730bを軸に回動可能に配置されており、紙葉類Pの落下の際にその後端に振動を与えることによって紙葉類Pの取り揃えを行っている。
特開2006−213506号公報 (第5頁、図2)
The diaphragm 730a is arranged so as to be rotatable about a fulcrum 730b, and the paper sheets P are arranged by giving vibration to the rear end thereof when the paper sheets P are dropped.
JP 2006-213506 A (Page 5, FIG. 2)

しかしながら、図示した集積装置では、2つの課題が指摘されていた。   However, in the illustrated integrated device, two problems have been pointed out.

第1の課題は、紙葉類Pの搬送方向の長さ(以下、長さと称する、)が変化した場合、当該紙葉類Pの取り揃え性能が悪い場合があるという課題である。その理由は、振動板730aは、支点を中心に回動させることにより紙葉類Pの長さに対応する構造になっている。また、振動板730aの振れ角は、全ストロークの中心を堺に左右対称になるように設定されている。そのため、長さが長い紙葉類Pに対しては落下途中で振動板730aにより取り揃えられ、集積庫に集積されるため、取り揃えが良好であるが、長さが短い紙葉類Pに対しては、途中で振動板730aによる取り揃え機能が働かない場合があり集積された紙葉類Pをたわませてしまったり、振動板730aに紙葉類Pの右端が乗り上げてしまったりなどの課題があった(図9参照)。   The first problem is that when the length of the paper sheet P in the conveyance direction (hereinafter referred to as the length) changes, the sorting performance of the paper sheet P may be poor. The reason is that the diaphragm 730a has a structure corresponding to the length of the paper sheet P by rotating around the fulcrum. Further, the deflection angle of the diaphragm 730a is set to be symmetrical with respect to the center of the entire stroke. Therefore, for paper sheets P having a long length, they are arranged by the diaphragm 730a in the middle of dropping, and are collected in the stacker. In some cases, the sorting function by the diaphragm 730a may not work in the middle, and the accumulated paper sheet P may be bent, or the right end of the paper sheet P may ride on the diaphragm 730a. (See FIG. 9).

第2の課題は、紙葉類Pそのものの長さのバラツキを吸収できないという点である。すなわち、紙葉類Pの長さが全て統一されている場合は集積が良好になるが、紙葉類Pの長さは寸法公差の範囲でばらつきがある。この際、図9に示すように最大公差の紙葉類Pに合わせると、振動板730aは、それより小さい紙葉類Pと接触できずに取り揃えが悪くなる。一方、図10に示すように最小公差の紙葉類Pに合わせると、どの紙葉類にも振動板730aは接触するが、最大公差の紙葉類Pをたわませてしまうため、その反動により取り揃えが悪くなるという課題がある。特に、紙葉類Pが新しい紙葉類である新券など、把の出来上がりが安定していることを要求される場合には重要な課題であった。   The second problem is that the length variation of the paper sheet P itself cannot be absorbed. That is, when all the lengths of the paper sheets P are unified, the accumulation is good, but the length of the paper sheets P varies in the range of the dimensional tolerance. At this time, as shown in FIG. 9, when matched to the paper sheet P having the maximum tolerance, the diaphragm 730 a cannot contact the paper sheet P smaller than that, and the arrangement becomes poor. On the other hand, as shown in FIG. 10, when matched to the paper sheet P having the minimum tolerance, the vibration plate 730 a comes into contact with any paper sheet, but the paper sheet P having the maximum tolerance is deflected. As a result, there is a problem that the range becomes worse. In particular, it is an important issue when it is required that the finished product is stable, such as a new ticket in which the paper sheet P is a new paper sheet.

本発明は、上記課題を解決するためになされたもので、処理する紙葉類の長さに係らず集積装置における取り揃え性能が改善する集積装置を提供することを目的とする。   The present invention has been made to solve the above-described problems, and an object of the present invention is to provide an accumulator that improves the sorting performance of the accumulator regardless of the length of paper sheets to be processed.

上記目的を達成するために、本発明の請求項1記載の紙葉類の集積装置は、紙葉類を搬送する搬送路と、この搬送路によって搬送される前記紙葉類を判別する紙葉類判別手段と、この紙葉類判別手段による判別結果に基づいて区分された前記紙葉類を搬送し、搬送路の終端に配置された集積装置で集積処理する紙葉類処理装置の前記集積手段であって、前記搬送路の終端に配置された羽根車と、この羽根車の羽根の間に取込んだ前記紙葉類を掻き出す掻出手段と、この掻出手段によって掻き出された前記紙葉類を集積する集積庫と、この集積手段に集積された前記紙葉類の端面と接触する端面取揃部を有し、この端面取揃部が前記紙葉類の端面と並行又は反時計方向の傾きを有する振動板と、この振動板を振動させる振動板駆動装置と、を備えたことを特徴とする。   In order to achieve the above object, a paper sheet stacking apparatus according to claim 1 of the present invention is a paper path for transporting paper sheets, and a paper sheet for determining the paper sheets transported by the transport path. The paper sheet processing apparatus that transports the paper sheets sorted based on the classification result by the paper classifying means and the paper sheet discriminating means, and performs the stacking process by the stacking device disposed at the end of the transport path An impeller disposed at the end of the conveying path, a scraping means for scraping the paper sheets taken in between the blades of the impeller, and the scraped-out means by the scraping means A stacker for stacking paper sheets, and an end surface aligning portion that contacts an end surface of the paper sheets stacked on the stacking means, and the end surface aligning section is parallel or opposite to the end surface of the paper sheets. A diaphragm having a clockwise inclination and a diaphragm driving device for vibrating the diaphragm are provided. Characterized in that was.

また、本発明の請求項4記載の紙葉類の集積装置は、紙葉類を搬送する搬送路と、この搬送路によって搬送される前記紙葉類を判別する紙葉類判別手段と、この紙葉類判別手段による判別結果に基づいて区分された前記紙葉類を搬送し、搬送路の終端に配置された集積装置で集積処理する紙葉類処理装置の前記集積手段であって、前記搬送路の終端に配置された羽根車と、この羽根車の羽根の間に取込んだ前記紙葉類を掻き出す掻出手段と、この掻出手段によって掻き出された前記紙葉類を集積する集積庫と、この集積庫に集積された前記紙葉類の端面と接触する端面取揃部と、この端面取揃部を振動させる駆動力伝達部と、を有する振動板と、前記駆動力伝達部と接触する回転ローラを有し、この回転ローラを偏心駆動する振動板駆動装置と、を備え、前記駆動力伝達部と前記回転ローラとの間に前記紙葉類の公差に相当する隙間を有することを特徴とする。   The paper sheet stacking apparatus according to claim 4 of the present invention includes a transport path for transporting paper sheets, a paper sheet discriminating means for discriminating the paper sheets transported by the transport path, and The paper stacking unit of the paper sheet processing apparatus that transports the paper sheets sorted based on the determination result by the paper sheet determination unit, and stacks the paper sheets with a stacking device disposed at the end of the transport path, An impeller disposed at the end of the conveyance path, scraping means for scraping the paper sheets taken in between the blades of the impeller, and collecting the paper sheets scraped by the scraping means A diaphragm having a stacking unit, an end surface arranging unit that comes into contact with an end surface of the paper sheets accumulated in the stacking unit, and a driving force transmitting unit that vibrates the end surface arranging unit, and the driving force transmission Diaphragm driving device having a rotating roller in contact with a portion and driving the rotating roller eccentrically The provided, characterized by having a gap corresponding to the tolerance of the paper sheet between the rotary roller and the driving force transmitting portion.

さらに、本発明の請求項5記載の紙葉類の集積装置は、紙葉類を搬送する搬送路と、この搬送路によって搬送される前記紙葉類を判別する紙葉類判別手段と、この紙葉類判別手段による判別結果に基づいて区分された前記紙葉類を搬送し、搬送路の終端に配置された集積装置で集積処理する紙葉類処理装置の前記集積手段であって、前記搬送路の終端に配置された羽根車と、この羽根車の羽根の間に取込んだ前記紙葉類を掻き出す掻出手段と、この掻出手段によって掻き出された前記紙葉類を集積する集積庫と、この集積庫に集積された前記紙葉類の端面と接触する端面取揃部と、この端面取揃部を振動させる駆動力伝達部と、を有する振動板と、前記駆動力伝達部と接触する回転ローラを有し、この回転ローラを偏心駆動する振動板駆動装置と、を備え、前記回転ローラが弾性変形する材質で構成したことを特徴とする。   Further, the paper sheet stacking apparatus according to claim 5 of the present invention includes a transport path for transporting paper sheets, a paper sheet discriminating means for discriminating the paper sheets transported by the transport path, and The paper stacking unit of the paper sheet processing apparatus that transports the paper sheets sorted based on the determination result by the paper sheet determination unit, and stacks the paper sheets with a stacking device disposed at the end of the transport path, An impeller disposed at the end of the conveyance path, scraping means for scraping the paper sheets taken between the blades of the impeller, and collecting the paper sheets scraped by the scraping means A diaphragm having a stacking unit, an end surface arranging unit that comes into contact with an end surface of the paper sheets accumulated in the stacking unit, and a driving force transmitting unit that vibrates the end surface arranging unit, and the driving force transmission A diaphragm driving device having a rotating roller in contact with the section and driving the rotating roller eccentrically When, wherein the rotating roller is characterized in that it is made of a material that is elastically deformed.

本発明によれば、集積装置における取り揃え装置にあそびを設けたことにより取り揃え性能が改善する。   According to the present invention, the assembling performance is improved by providing play in the assembling apparatus in the integrated device.

以下、図面を参照して本発明の実施例を説明する。   Embodiments of the present invention will be described below with reference to the drawings.

図1は、本発明の実施例1による集積装置を搭載した紙葉類処理装置100の概略構成図である。紙葉類処理装置100は、有価証券などの紙葉類Pの真偽(真券か偽券か)又は正損(再流通可能な正券か再流通不可能な損券か)を判別し、正券は集積装置70で集積し、損券は集積装置80で集積する。上記紙葉類処理装置100には、積載された紙葉類Pを一括して供給する供給部(図示しない)が設けられている。この供給部に積載された紙葉類Pは、取出装置4によって一定間隔に1枚ずつ取出され、搬送路5に供給される。この搬送路5は、搬送ローラ(図示しない)及び搬送ベルト(図示しない)で構成され、紙葉類Pを図示矢印A1で示す搬送方向上流から搬送方向下流に向かって搬送する。   FIG. 1 is a schematic configuration diagram of a paper sheet processing apparatus 100 equipped with a stacking apparatus according to a first embodiment of the present invention. The paper sheet processing apparatus 100 determines whether the paper sheet P such as securities is genuine (true or fake) or correct (whether it can be recirculated or non-recyclable). The correct bills are collected by the accumulating device 70, and the lost tickets are accumulated by the accumulating device 80. The paper sheet processing apparatus 100 is provided with a supply unit (not shown) that collectively feeds the stacked paper sheets P. The paper sheets P stacked on the supply unit are taken out one by one at regular intervals by the take-out device 4 and supplied to the transport path 5. The transport path 5 is composed of a transport roller (not shown) and a transport belt (not shown), and transports the paper sheet P from the upstream in the transport direction as indicated by the arrow A1 in the transport direction to the downstream in the transport direction.

このようにして搬送された紙葉類Pは、紙葉類判別装置(紙葉類判別手段)6によって判別される。紙葉類判別装置6は、紙葉類Pの物理的特性を検知して判別するもので、複数の装置で構成されており、搬送方向下流に向かって搬送路5に設けられている。   The paper sheet P conveyed in this way is discriminated by a paper sheet discriminating device (paper sheet discriminating means) 6. The paper sheet discriminating device 6 detects and discriminates the physical characteristics of the paper sheet P, and is composed of a plurality of devices, and is provided in the transport path 5 toward the downstream in the transport direction.

上記紙葉類判別装置6の判別の結果、正券は、集積装置70に搬送され、損券は、集積装置80に搬送される。集積装置70及び集積装置80は同様に構成されているため、以下、集積装置70の説明を行う。   As a result of the discrimination by the paper sheet discriminating device 6, the correct bill is conveyed to the stacking device 70, and the damaged bill is transported to the stacking device 80. Since the integrated device 70 and the integrated device 80 are configured in the same manner, the integrated device 70 will be described below.

正券と判別された紙葉類Pは、振分けゲート51により集積装置70側に搬送される。この搬送路の終端には、羽根車を用いた集積装置70が配置されており、この集積装置70によって紙葉類Pが取込まれる。取込まれた紙葉類Pは計数され100枚に達すると、下部に配置された施封装置75に渡され、この施封装置75によって紙帯で結束される(以下、施封と称する。)。このようにして把Hが形成される。形成された把Hは、把排出装置76によって方向変換され、把搬送装置9に渡される。   The paper sheet P determined to be a genuine note is conveyed to the stacking device 70 side by the sorting gate 51. A stacking device 70 using an impeller is disposed at the end of the transport path, and the paper sheets P are taken in by the stacking device 70. When the taken paper sheets P are counted and reach 100 sheets, they are transferred to a sealing device 75 disposed at the lower portion and bound by a paper strip by the sealing device 75 (hereinafter referred to as sealing). ). In this way, the small bundle H is formed. The formed small bundle H is changed in direction by the small bundle discharge device 76 and transferred to the small bundle conveying device 9.

把搬送装置9は、把排出装置76から排出された把Hを受け取り、後処理装置10側に搬送する。   The small bundle conveying device 9 receives the small bundle H discharged from the small bundle discharging device 76 and conveys it to the post-processing device 10 side.

後処理装置10では、把排出装置76から排出された把Hを10把積み重ねてさらに結束(大帯結束)し、この結束帯に紙葉類Pの券種などの属性を印字するが、本発明の主旨の範囲外であるため詳細の説明を省略する。   In the post-processing device 10, 10 bundles of the bundles H discharged from the bundle discharge device 76 are stacked and further bundled (bundled together), and attributes such as the type of the sheet P are printed on the bundled band. Since it is out of the scope of the gist of the invention, detailed description is omitted.

図2は、図1に示す集積装置70の構成図である。図3は、図2に示す集積装置70の斜視図である。以下、図2及び図3を参照して本発明に係る集積装置70の構成及びその動作を説明する。   FIG. 2 is a block diagram of the integrated device 70 shown in FIG. FIG. 3 is a perspective view of the stacking device 70 shown in FIG. Hereinafter, the configuration and operation of the integrated device 70 according to the present invention will be described with reference to FIGS.

集積装置70は、回転する羽根車71、端面取揃装置73及び紙葉類掻出板(掻出手段)72などで構成される。   The stacking device 70 includes a rotating impeller 71, an end face arranging device 73, a paper sheet scraping plate (scraping means) 72, and the like.

羽根車71は回転軸71bの周辺に複数の羽根71aが組み込まれて構成されている。この羽根車71は、図示矢印B方向に搬送された紙葉類Pを羽根71aと羽根71aの間で取込み、回転しながら紙葉類Pの搬送エネルギーを吸収することにより紙葉類Pにダメージを与えずに取込むことができる。   The impeller 71 is configured by incorporating a plurality of blades 71a around the rotation shaft 71b. The impeller 71 takes in the paper sheet P conveyed in the direction indicated by the arrow B between the blades 71a and 71a and absorbs the transport energy of the paper sheet P while rotating, thereby damaging the paper sheet P. Can be taken in without giving.

端面取揃装置73には、振動板73a及びこの振動板73aに振動を与える振動板駆動装置74が備えられている。   The end face arranging device 73 includes a diaphragm 73a and a diaphragm driving device 74 that applies vibration to the diaphragm 73a.

振動板73aは、羽根車71の外周を囲む板状体で構成され、上部が支点(回動軸)73bで軸支され、略中央部にこの振動板73aに駆動力を伝達するための駆動力伝達部73cが設けられている。   The diaphragm 73a is composed of a plate-like body that surrounds the outer periphery of the impeller 71, the upper part is pivotally supported by a fulcrum (rotating shaft) 73b, and a drive for transmitting a driving force to the diaphragm 73a at a substantially central part. A force transmission part 73c is provided.

このように構成された振動板73aは、羽根車71に取込まれた紙葉類Pが集積庫70aからの飛び出しを防止すると共に、紙葉類掻出板72から掻き出された紙葉類Pの後端に振動を与えながら紙葉類Pの端面を取り揃える機能を有する。   The vibration plate 73a configured as described above prevents the paper sheets P taken into the impeller 71 from jumping out from the stacking box 70a, and the paper sheets scraped from the paper sheet scraping plate 72. It has a function of arranging the end faces of the paper sheets P while applying vibration to the rear end of P.

紙葉類掻出板72は、羽根車71の中心に向かい、かつ、搬送方向上流に向かって傾斜した板状態で構成され、この紙葉類掻出板72に掻き出された紙葉類Pは集積庫70aに集積される。   The paper sheet scraping plate 72 is configured in a plate state that is inclined toward the center of the impeller 71 and upstream in the transport direction, and the paper sheet P scraped to the paper sheet scraping plate 72. Are accumulated in the accumulation box 70a.

このように構成された集積装置70において、本発明の主要な部分は、端面取揃装置73に係る部分であるため、以下その詳細説明する。   In the stacking device 70 configured as described above, the main part of the present invention is a part related to the end face arranging device 73, and will be described in detail below.

この駆動力伝達部73cには、楕円形ドーナツ状の穴部が設けられており、この穴部に振動板駆動装置74の回転ローラ74aが配置される。   The driving force transmitting portion 73c is provided with an elliptical donut-shaped hole, and the rotating roller 74a of the diaphragm driving device 74 is disposed in the hole.

この回転ローラ74aの回転軸は、中心軸をずらした偏心カム74bに連結されており、この偏心カム74bの回転軸は振動モータ74cに連結される。   The rotating shaft of the rotating roller 74a is connected to an eccentric cam 74b whose center axis is shifted, and the rotating shaft of the eccentric cam 74b is connected to a vibration motor 74c.

この状態で振動モータ74cが回転すると、回転ローラ74aの回転軸が水平方向に所定量変動しながら回転する。この変動は駆動力伝達部73cに伝達され、この駆動力伝達部73cと一体に構成された振動板73aが振動することになる。   When the vibration motor 74c rotates in this state, the rotation shaft of the rotation roller 74a rotates while fluctuating by a predetermined amount in the horizontal direction. This fluctuation is transmitted to the driving force transmitting portion 73c, and the diaphragm 73a configured integrally with the driving force transmitting portion 73c vibrates.

さらに、この振動モータ74cを左右に並行移動させる駆動モータ74g、この駆動モータの駆動力を伝達するリンク機構74e、及びこの並行移動を検知するセンサ74fなどが配置されている。   Further, a drive motor 74g that moves the vibration motor 74c in parallel from side to side, a link mechanism 74e that transmits the driving force of the drive motor, a sensor 74f that detects the parallel movement, and the like are arranged.

振動板73aは、支点73bを軸に回動可能に配置されている。処理される紙葉類Pの長さによって振動板の端面取揃部73pの配置位置が設定されるので、それに伴って回動する(詳細は、後述する。)。   The diaphragm 73a is disposed so as to be rotatable about the fulcrum 73b. Since the arrangement position of the end face arranging portion 73p of the diaphragm is set according to the length of the paper sheet P to be processed, it is rotated accordingly (details will be described later).

偏心カムは、回転軸が上下及び左右に移動することによって振動板73aに振動を与える。   The eccentric cam applies vibration to the diaphragm 73a as the rotation shaft moves up and down and left and right.

図4は、取り扱う紙葉類Pの種類(券種)によって搬送方向の長さLが異なる場合の振動板73aの配置位置を示す図である。図は、紙葉類Pの長さLがL1からL3まで変化したとき、振動板73aの端面取揃部73pの配置位置がP1からP3まで以下のように変更される。また、図5は、紙葉類Pの長さLがL1からL3まで変化するときの端面取揃部73pと紙葉類Pの端面との角度θを示す図。   FIG. 4 is a diagram illustrating an arrangement position of the diaphragm 73a when the length L in the transport direction varies depending on the type (ticket type) of the paper sheet P to be handled. In the figure, when the length L of the paper sheet P changes from L1 to L3, the arrangement position of the end face arranging portion 73p of the diaphragm 73a is changed from P1 to P3 as follows. FIG. 5 is a diagram showing an angle θ between the end face arranging portion 73p and the end face of the paper sheet P when the length L of the paper sheet P changes from L1 to L3.

P1:紙葉類Pの長さL1の場合の端面取揃部73pの配置位置(図5(1)参照)
P2:紙葉類Pの長さL2の場合の端面取揃部73pの配置位置(図5(2)参照)
P3:紙葉類Pの長さL3の場合の端面取揃部73pの配置位置(図5(3)参照)
このように、取り扱う紙葉類Pの種類によって、振動板73aの端面取揃部73pの配置位置が異なるため、それに対応して振動板73aを回動可能に軸支する支点が回動する。
P1: Arrangement position of the end face arranging portion 73p in the case of the length L1 of the paper sheet P (see FIG. 5 (1))
P2: Arrangement position of the end face arranging portion 73p in the case of the length L2 of the paper sheet P (see FIG. 5 (2))
P3: Arrangement position of the end face arranging portion 73p in the case of the length L3 of the paper sheet P (see FIG. 5 (3))
As described above, since the arrangement position of the end face arranging portion 73p of the diaphragm 73a differs depending on the type of the paper sheet P to be handled, the fulcrum that pivotally supports the diaphragm 73a rotates correspondingly.

この場合、本発明の振動板73aの端面取揃部73pは取り扱う紙葉類Pの短い紙葉類P後端面に対して平行になるように配置される。また、そのような構造になるように振動板73aの端面取揃部73pが構成される(図5(1)参照)。   In this case, the end face arranging portion 73p of the diaphragm 73a of the present invention is arranged to be parallel to the rear end face of the short paper sheet P to be handled. Further, the end face arranging portion 73p of the diaphragm 73a is configured so as to have such a structure (see FIG. 5 (1)).

従って、紙葉類Pの長さが長くなるに従って、端面取揃部73pと紙葉類の端面との角度θが反時計方向に開くように配置される。すなわち、集積された紙葉類Pの取り揃えを行うためには、当該集積された紙葉類Pを紙葉類掻出板72に当接するように集積することが望ましい、そのために、紙葉類が集積されるに従って、その高さ方向に集積された紙葉類Pが反時計方向に押圧されることにより、紙葉類Pの先端が紙葉類掻出板72側に押圧されて取り揃えられる。   Accordingly, as the length of the paper sheet P becomes longer, the angle θ between the end face arranging portion 73p and the end face of the paper sheet is arranged to open counterclockwise. That is, in order to collect the accumulated paper sheets P, it is desirable to accumulate the accumulated paper sheets P so as to abut against the paper sheet scraping plate 72. As the sheets are accumulated, the paper sheets P accumulated in the height direction are pressed counterclockwise, so that the leading ends of the paper sheets P are pressed toward the paper sheet scraping plate 72 side and arranged. .

紙葉類Pの長さに係らず紙葉類Pの後端面と並行になるように端面取揃部73pを配置するには、振動板73の支点73bを長さ方向に並行移動する必要がある。この並行移動のためには、平行移動する機構、空間及び制御装置が必要になる。これらを簡略化し、かつ、同様の効果を得るのに上述した実施例の方法は有効である。   In order to arrange the end face arranging portion 73p so as to be parallel to the rear end face of the paper sheet P regardless of the length of the paper sheet P, it is necessary to move the fulcrum 73b of the diaphragm 73 in parallel in the length direction. is there. For this parallel movement, a translation mechanism, a space, and a control device are required. In order to simplify these and obtain the same effect, the method of the embodiment described above is effective.

図6は、本発明の実施例2による集積装置70に用いられる振動板73である。図7は、図6に示す実施例2の効果を説明する図である。また、この振動板73以外の部分は実施例1と同様であるためその説明を省略する。なお、振動板73は、集積装置70に用いられるものであるが、集積装置82に用いられる振動板も同様に構成されるため、その説明を省略する。   FIG. 6 shows a diaphragm 73 used in the stacking apparatus 70 according to the second embodiment of the present invention. FIG. 7 is a diagram for explaining the effect of the second embodiment shown in FIG. Since parts other than the diaphragm 73 are the same as those in the first embodiment, the description thereof is omitted. The diaphragm 73 is used in the stacking apparatus 70, but the diaphragm used in the stacking apparatus 82 is also configured in the same manner, so that the description thereof is omitted.

本実施例2では、駆動伝達部73cと、回転ローラ74aとの間にガタΔxが設けてある。このガタは、紙葉類Pの長さがある公差をもつ場合に、その公差を吸収することを意図している。すなわち、振動板73の端面取揃部73pの位置が最大公差の紙葉類Pに合わせると振動板73がそれより短い紙葉類Pと接触できずに取り揃えが悪くなる課題を解決するために、本実施例では、最小公差の紙葉類Pに振動板73を合わせ、公差の範囲で長い紙葉類Pが集積された場合には、振動板73がその公差Δx相当分後退できる。図7は、本実施例による効果を示す図である。図示した一例は、最小公差の紙葉類Pに振動板73の位置を合わせたものに長い紙葉類P1が集積されたために振動板73が退避した状態を示す。   In the second embodiment, a backlash Δx is provided between the drive transmission unit 73c and the rotation roller 74a. This play is intended to absorb the tolerance when the length of the paper sheet P has a certain tolerance. That is, in order to solve the problem that if the position of the end face arranging portion 73p of the vibration plate 73 is matched with the paper sheet P having the maximum tolerance, the vibration plate 73 cannot contact the paper sheet P shorter than that and the assortment becomes poor. In this embodiment, when the diaphragm 73 is aligned with the minimum tolerance paper sheet P, and the long paper sheets P are accumulated within the tolerance range, the diaphragm 73 can be retracted by an amount equivalent to the tolerance Δx. FIG. 7 is a diagram illustrating the effect of this embodiment. The illustrated example shows a state in which the diaphragm 73 is retracted because the long sheet P1 is accumulated on the sheet P having the minimum tolerance and the position of the diaphragm 73 aligned.

本発明の実施例によれば、紙葉類の搬送方向の長さが公差の範囲でばらついた場合であっても振動板73が集積された紙葉類Pの後端と接触が可能であり、取り揃えが可能である。   According to the embodiment of the present invention, it is possible to contact the rear end of the paper sheet P on which the diaphragm 73 is accumulated even when the length of the paper sheet in the conveying direction varies within a tolerance range. , Can be stocked.

(変形例)
本実施例の変形例として、上記ガタXを設けるかわりに、回転ローラ74aのローラ表面を弾性変形材で構成しても同様の効果をえることができる。本実施例では、この弾性変形材としてウレタンゴムを使用した場合であっても同様の効果が得られる。
(Modification)
As a modification of the present embodiment, the same effect can be obtained even if the roller surface of the rotating roller 74a is made of an elastic deformation material instead of providing the play X. In the present embodiment, the same effect can be obtained even when urethane rubber is used as the elastic deformation material.

本発明の実施例1による集積装置を搭載した紙葉類処理装置の概略構成図。BRIEF DESCRIPTION OF THE DRAWINGS FIG. 1 is a schematic configuration diagram of a paper sheet processing apparatus equipped with an accumulation apparatus according to Embodiment 1 of the present invention. 図1に示す集積装置70の構成図。FIG. 2 is a configuration diagram of an integration device 70 shown in FIG. 図2に示す集積装置70の斜視図。FIG. 3 is a perspective view of the accumulation device 70 shown in FIG. 2. 紙葉類Pの種類により振動板の配置位置が変更になる様子を示す図。The figure which shows a mode that the arrangement position of a diaphragm is changed with the kind of paper sheet P. FIG. 紙葉類Pの長さLが変化するときの端面取揃部73pと集積紙葉類の端面との角度θの変化を示す図。The figure which shows the change of angle (theta) of the end surface arrangement | positioning part 73p when the length L of the paper sheet P changes, and the end surface of stacking paper sheets. 本発明の実施例2による集積装置70に用いられる振動板73を示す図。The figure which shows the diaphragm 73 used for the integration | stacking apparatus 70 by Example 2 of this invention. 本実施例による効果を示す図。The figure which shows the effect by a present Example. 従来のガタなし振動板730aの一例。An example of the conventional backlash-free diaphragm 730a. 図8に示す振動板730aの端面取揃部730pの配置位置を紙葉類Pの最大公差に合わせた場合の端面取り揃えの効果を示す図。The figure which shows the effect of the end face arrangement when the arrangement position of the end face arranging part 730p of the diaphragm 730a shown in FIG. 図8に示す振動板730aの端面取揃部730pの配置位置を紙葉類Pの最小公差に合わせた場合の端面取り揃えの効果を示す図。The figure which shows the effect of the end face arrangement | sequence when the arrangement position of the end face arrangement | positioning part 730p of the diaphragm 730a shown in FIG.

符号の説明Explanation of symbols

H 把
P 紙葉類
100 紙葉類処理装置
4 取出装置
5 搬送路
6 紙葉類判別装置
51 振分けゲート
70、80 集積装置
70a 集積庫
71 羽根車
72 紙葉類掻出板
73 端面取り揃え装置
73a 振動板
73b 支点
73c 駆動力伝達部
73p 端面取揃部
74 振動板駆動装置
74a 回転ローラ
74b 振動モータ
74e リンク機構
H Bundle P Paper sheet 100 Paper sheet processing apparatus 4 Take-out apparatus 5 Transport path 6 Paper sheet discriminating apparatus 51 Sorting gates 70, 80 Stacking apparatus 70a Stacking box 71 Impeller 72 Paper sheet scraping plate 73 End face sorting apparatus 73a Diaphragm 73b Support point 73c Driving force transmission part 73p End face arranging part 74 Diaphragm driving device 74a Rotating roller 74b Vibration motor 74e Link mechanism

Claims (5)

紙葉類を搬送する搬送路と、この搬送路によって搬送される前記紙葉類を判別する紙葉類判別手段と、この紙葉類判別手段による判別結果に基づいて区分された前記紙葉類を搬送し、搬送路の終端に配置された集積装置で集積処理する紙葉類処理装置の前記集積装置であって、
前記搬送路の終端に配置された羽根車と、
この羽根車の羽根の間に取込んだ前記紙葉類を掻き出す掻出手段と、
この掻出手段によって掻き出された前記紙葉類を集積する集積庫と、
この集積手段に集積された前記紙葉類の端面と接触する端面取揃部を有し、この端面取揃部が前記紙葉類の端面と並行又は反時計方向の傾きを有する振動板と、
この振動板を振動させる振動板駆動装置と、
を備えたことを特徴とする紙葉類の集積装置。
A transport path for transporting paper sheets, a paper sheet discriminating means for discriminating the paper sheets transported by the transport path, and the paper sheets classified based on a discrimination result by the paper sheet discrimination means The stacking device of the paper sheet processing apparatus for stacking processing with a stacking device disposed at the end of the transport path,
An impeller disposed at the end of the conveying path;
Scraping means for scraping the paper sheets taken in between the blades of the impeller;
A stacker for collecting the paper sheets scraped by the scraping means;
An end face aligning portion that contacts the end face of the paper sheets accumulated in the stacking means, and the end face aligning section has a diaphragm that is parallel or counterclockwise to the end face of the paper sheets;
A diaphragm driving device for vibrating the diaphragm;
An apparatus for stacking paper sheets.
前記振動板は、
一端に回動可能な回動軸と、
当該振動板を前記振動板駆動装置によって駆動される駆動力伝達部と、
他端に前記紙葉類の端面と接触する端面取揃部と、
を備え、
前記端面取揃部は、
取り扱う紙葉類の中の長さの短い紙葉類のときに、当該紙葉類の端面に対して当該端面取揃部が並行になるように配置し、取り扱う紙葉類の中の長さの長い紙葉類のときに、当該紙葉類の端面に対して当該端面取揃部が反時計方向の角度を有して配置することを特徴とする請求項1記載の紙葉類の集積装置。
The diaphragm is
A pivot shaft pivotable at one end;
A driving force transmission unit for driving the diaphragm by the diaphragm driving device;
An end face arrangement portion that contacts the end face of the paper sheet at the other end;
With
The end face arranging portion is
When handling paper sheets that are short in length, arrange the end face alignment part parallel to the end face of the paper sheet, and the length of the paper sheet that is handled. 2. The stacking of paper sheets according to claim 1, wherein, when the paper sheets are long, the end face arrangement portion is arranged with an angle in a counterclockwise direction with respect to the end face of the paper sheets. apparatus.
前記振動板駆動装置は、
振動モータと、
この振動モータの回転軸に連結された偏心カムと、
この偏心カムの回転軸に連結された回転ローラと、
この回転ローラの配置位置を前記紙葉類の長さに応じて移動する移動手段と、
を備え
前記駆動力伝達部は、
前記回転ローラと接触する接触部を有し、前記回転ローラが前記偏心カムの回転に伴い偏心しながら回転するときの振動を前記振動板に伝達することを特徴とする請求項1記載の紙葉類の集積装置。
The diaphragm driving device includes:
A vibration motor;
An eccentric cam connected to the rotating shaft of the vibration motor;
A rotating roller connected to the rotating shaft of the eccentric cam;
Moving means for moving the arrangement position of the rotating roller according to the length of the paper sheet;
The driving force transmission unit comprises
The paper sheet according to claim 1, further comprising a contact portion that contacts the rotating roller, wherein vibration when the rotating roller rotates while being eccentric as the eccentric cam rotates is transmitted to the diaphragm. Kind of accumulator.
紙葉類を搬送する搬送路と、この搬送路によって搬送される前記紙葉類を判別する紙葉類判別手段と、この紙葉類判別手段による判別結果に基づいて区分された前記紙葉類を搬送し、搬送路の終端に配置された集積装置で集積処理する紙葉類処理装置の前記集積装置であって、
前記搬送路の終端に配置された羽根車と、
この羽根車の羽根の間に取込んだ前記紙葉類を掻き出す掻出手段と、
この掻出手段によって掻き出された前記紙葉類を集積する集積庫と、
この集積庫に集積された前記紙葉類の端面と接触する端面取揃部と、この端面取揃部を振動させる駆動力伝達部と、を有する振動板と、
前記駆動力伝達部と接触する回転ローラを有し、この回転ローラを偏心駆動する振動板駆動装置と、を備え、
前記駆動力伝達部と前記回転ローラとの間に前記紙葉類の公差に相当する隙間を有することを特徴とする紙葉類の集積装置。
A transport path for transporting paper sheets, a paper sheet discriminating means for discriminating the paper sheets transported by the transport path, and the paper sheets classified based on a discrimination result by the paper sheet discrimination means The stacking device of the paper sheet processing apparatus for stacking processing with a stacking device disposed at the end of the transport path,
An impeller disposed at the end of the conveying path;
Scraping means for scraping the paper sheets taken in between the blades of the impeller;
A stacker for collecting the paper sheets scraped by the scraping means;
A diaphragm having an end face arranging portion that comes into contact with the end face of the paper sheets accumulated in the stacker, and a driving force transmitting portion that vibrates the end face arranging portion,
A rotating roller that contacts the driving force transmission unit, and a diaphragm driving device that drives the rotating roller eccentrically,
An apparatus for stacking paper sheets, wherein a gap corresponding to a tolerance of the paper sheets is provided between the driving force transmission unit and the rotating roller.
紙葉類を搬送する搬送路と、この搬送路によって搬送される前記紙葉類を判別する紙葉類判別手段と、この紙葉類判別手段による判別結果に基づいて区分された前記紙葉類を搬送し、搬送路の終端に配置された集積装置で集積処理する紙葉類処理装置の前記集積手段であって、
前記搬送路の終端に配置された羽根車と、
この羽根車の羽根の間に取込んだ前記紙葉類を掻き出す掻出手段と、
この掻出手段によって掻き出された前記紙葉類を集積する集積庫と、
この集積庫に集積された前記紙葉類の端面と接触する端面取揃部と、この端面取揃部を振動させる駆動力伝達部と、を有する振動板と、
前記駆動力伝達部と接触する回転ローラを有し、この回転ローラを偏心駆動する振動板駆動装置と、を備え、
前記回転ローラが弾性変形する材質で構成したことを特徴とする紙葉類の集積装置。
A transport path for transporting paper sheets, a paper sheet discriminating means for discriminating the paper sheets transported by the transport path, and the paper sheets classified based on a discrimination result by the paper sheet discrimination means The stacking means of the paper sheet processing apparatus for stacking and processing with a stacking apparatus disposed at the end of the transport path,
An impeller disposed at the end of the conveying path;
Scraping means for scraping the paper sheets taken in between the blades of the impeller;
A stacker for collecting the paper sheets scraped by the scraping means;
A diaphragm having an end face arranging portion that comes into contact with the end face of the paper sheets accumulated in the stacker, and a driving force transmitting portion that vibrates the end face arranging portion,
A rotating roller that contacts the driving force transmission unit, and a diaphragm driving device that drives the rotating roller eccentrically,
An apparatus for stacking paper sheets, wherein the rotating roller is made of a material that is elastically deformed.
JP2006352425A 2006-12-27 2006-12-27 Paper sheet stacking device Active JP5010270B2 (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2015018212A1 (en) * 2013-08-05 2015-02-12 广州广电汇通金融服务有限公司 Financial self-service equipment and impeller type paper money separation device thereof

Families Citing this family (17)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8337166B2 (en) 2001-11-26 2012-12-25 Shurflo, Llc Pump and pump control circuit apparatus and method
US8540493B2 (en) 2003-12-08 2013-09-24 Sta-Rite Industries, Llc Pump control system and method
US8602745B2 (en) 2004-08-26 2013-12-10 Pentair Water Pool And Spa, Inc. Anti-entrapment and anti-dead head function
US7874808B2 (en) 2004-08-26 2011-01-25 Pentair Water Pool And Spa, Inc. Variable speed pumping system and method
US8469675B2 (en) 2004-08-26 2013-06-25 Pentair Water Pool And Spa, Inc. Priming protection
US8019479B2 (en) 2004-08-26 2011-09-13 Pentair Water Pool And Spa, Inc. Control algorithm of variable speed pumping system
US8480373B2 (en) 2004-08-26 2013-07-09 Pentair Water Pool And Spa, Inc. Filter loading
US7854597B2 (en) 2004-08-26 2010-12-21 Pentair Water Pool And Spa, Inc. Pumping system with two way communication
US7845913B2 (en) 2004-08-26 2010-12-07 Pentair Water Pool And Spa, Inc. Flow control
US7686589B2 (en) 2004-08-26 2010-03-30 Pentair Water Pool And Spa, Inc. Pumping system with power optimization
US8313306B2 (en) 2008-10-06 2012-11-20 Pentair Water Pool And Spa, Inc. Method of operating a safety vacuum release system
US9556874B2 (en) 2009-06-09 2017-01-31 Pentair Flow Technologies, Llc Method of controlling a pump and motor
US8564233B2 (en) 2009-06-09 2013-10-22 Sta-Rite Industries, Llc Safety system and method for pump and motor
US8436559B2 (en) 2009-06-09 2013-05-07 Sta-Rite Industries, Llc System and method for motor drive control pad and drive terminals
BR112013014476A2 (en) 2010-12-08 2016-09-20 Pentair Water Pool & Spa Inc vacuum relief relief valve for a vacuum release safety system
WO2013067206A1 (en) 2011-11-01 2013-05-10 Pentair Water Pool And Spa, Inc. Flow locking system and method
US9885360B2 (en) 2012-10-25 2018-02-06 Pentair Flow Technologies, Llc Battery backup sump pump systems and methods

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS59140593A (en) * 1983-01-31 1984-08-11 富士通株式会社 Sheet paper storage mechanism
JP2006109856A (en) * 2004-10-12 2006-04-27 Tosho Inc Vibration discharge cassette and medicament put-out device
JP2006213506A (en) * 2005-02-07 2006-08-17 Toshiba Corp Paper sheet stacking device

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS59140593A (en) * 1983-01-31 1984-08-11 富士通株式会社 Sheet paper storage mechanism
JP2006109856A (en) * 2004-10-12 2006-04-27 Tosho Inc Vibration discharge cassette and medicament put-out device
JP2006213506A (en) * 2005-02-07 2006-08-17 Toshiba Corp Paper sheet stacking device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2015018212A1 (en) * 2013-08-05 2015-02-12 广州广电汇通金融服务有限公司 Financial self-service equipment and impeller type paper money separation device thereof
US9487372B2 (en) 2013-08-05 2016-11-08 Grg Banking Equipment Co., Ltd. Financial self-service equipment and impeller type paper money separation device thereof

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