(19)
(11) EP 0 535 543 B1

(12) EUROPEAN PATENT SPECIFICATION

(45) Mention of the grant of the patent:
27.03.1996 Bulletin 1996/13

(21) Application number: 92116402.6

(22) Date of filing: 24.09.1992
(51) International Patent Classification (IPC)6G07D 13/00, B65H 5/02

(54)

Paper sheet conveying device and automatic cash handling apparatus

Transportvorrichtung für Blattmaterial und automatische Bargeldverarbeitungsmaschine

Dispositif pour le transport de feuilles de papier et appareil automatique pour le traitement de billets de banque


(84) Designated Contracting States:
DE GB IT

(30) Priority: 30.09.1991 JP 251757/91

(43) Date of publication of application:
07.04.1993 Bulletin 1993/14

(73) Proprietor: HITACHI, LTD.
Chiyoda-ku, Tokyo 101 (JP)

(72) Inventors:
  • Yoshida, Kazushi
    Chiyodamachi, Niihari-gun, Ibaraki-ken (JP)
  • Sera, Satoshi
    Owariasahi-shi (JP)
  • Matsuura, Kunihisa
    Ama-gun, Aichi-ken (JP)
  • Utsumi, Itsunori
    Owariasahi-shi (JP)
  • Kako, Yutaka
    Owariasahi-shi (JP)

(74) Representative: Patentanwälte Beetz - Timpe - Siegfried Schmitt-Fumian - Mayr 
Steinsdorfstrasse 10
D-80538 München
D-80538 München (DE)


(56) References cited: : 
EP-A- 0 405 964
US-A- 4 928 953
EP-A- 0 499 458
   
       
    Note: Within nine months from the publication of the mention of the grant of the European patent, any person may give notice to the European Patent Office of opposition to the European patent granted. Notice of opposition shall be filed in a written reasoned statement. It shall not be deemed to have been filed until the opposition fee has been paid. (Art. 99(1) European Patent Convention).


    Description


    [0001] The invention relates to a paper sheet conveying device suitable for use to hold at least one sheet of paper between conveying belts and convey it, as well as to an automatic cash handling apparatus which employs such a paper sheet conveying device.

    [0002] Among conventional paper sheet conveying devices, the most basic one is disclosed in the JP-A-62-219098 This conventional paper sheet conveying device is designed to hold sheets of paper one at a time by two belts extending around fixed pulleys and convey them one by one. The JP-A-61-283993 discloses a paper sheet conveying device which conveys a large number of paper sheets in a stack. In the aforementioned devices, the conveying belts for holding and conveying the paper sheets extend around fixed pulleys and a fixed guide is used for guiding the paper sheets. Alternately, conveyance is performed without using the guide.

    [0003] The conventional paper sheet conveying devices suffer from the following problems regarding the conveyance of a single sheet of paper or a paper stack consisting of a number of paper sheets or of paper sheets having different thicknesses.

    [0004] In a paper sheet conveying device in which pulleys around which the conveying belts extend are fixed, when a paper stack consisting of a large number of paper sheets passes the pulley, it may stay at that pulley portion or break into respective sheets, making excellent conveyance impossible.

    [0005] In a paper sheet conveying device in which a fixed guide is mounted for guiding a single sheet of paper, conveyance of a paper stack consisting of a large number of paper sheets through such a guide may cause jamming at that portion. On the contrary, conveyance of a single sheet of paper through a guide mounted such that it guides a paper stack may cause buckling of the paper sheet because the guide cannot serve its function.

    [0006] EP-A-0499458 discloses a paper sheet conveying device including at least one pair of endless belts, at least two pulleys around which each of said endless belts extends, and a drive source for driving at least one of said pair of endless belts, said at least one pair of endless belts having runs which oppose each other and which normally move in contact with each other, said runs holding and conveying a paper sheet therebetween,
       wherein the at least one of said at least one pair of endless belts has means for displacing at least a part of the run of the one belt away from the run of the other belt when the one belt is subjected to a force from the paper sheet being conveyed.

    [0007] In a paper sheet conveying device in which one of the belts is a driving belt while the other belt is a driven belt, a paper stack may break at a bending portion of the belt or the paper sheets constituting the paper stack may be dislodged, making excellent conveyance impossible.

    [0008] Furthermore, in the case of conveyance of a paper stack consisting of a large number of paper sheets, when the holding of the paper stack is released, as in the case where the paper stack is accommodated in an accommodating box, the stack may expand due to the spring effect thereof, making excellent accommodation impossible.

    [0009] It is an object of the present invention to provide a paper sheet conveying device which is capable of conveying a single sheet of paper or a paper stack consisting of a number of paper sheets or paper sheets having different thicknesses in an excellent state.

    [0010] It is another object of the present invention to provide an automatic cash handling apparatus which is capable of excellently and flexibly conveying a single bank note or a bundle of bank notes consisting of a number of notes or notes having different thicknesses.

    [0011] A paper sheet conveying device according to the present invention includes at least one pair of endless belts, at least two pulleys around which each of the endless belts extends, and a drive source for driving at least one of the pair of endless belts. The at least one pair of endless belts have runs which oppose each other and which normally move in contact with each other. The runs hold and convey a paper sheet supplied therebetween. At least one belt of the at least one pair of endless belts has means for displacing at least a part of the run of the one belt away from the run of the other belt when the one belt is subjected to a force from the paper sheet which is being conveyed.

    [0012] The one pulley of the one endless belt may be supported in a floating state. The displacing means may comprise elastic means for elastically urging the one pulley toward the other endless belt.

    [0013] Since the one pulley of the one endless belt is elastically urged toward the other endless belt, when a paper stack consisting of a large number of paper sheets is held between the runs of the two belts and conveyed, the one pulley and the belt extending around that pulley can be displaced away from the other belt. Thus, the paper sheet conveying device according to the present invention is capable of conveying a single sheet of paper or a paper stack consisting of a number of paper sheets regardless of the thickness of the paper. The elastic means may be a spring member or an elastic material which forms the belt.

    [0014] Since the runs of the pair of endless belts are in contact with each other, even when one of the endless belts is driven by the drive source, the driving force of the drive source is transmitted to the other endless belt. Thus, the paper sheets can be held between the runs of the two belts and conveyed. However, when a large number of sheets of paper are conveyed in a stack, the contact area of the two belts decreases, preventing the driving force of the driving belt to be sufficiently transmitted to the driven belt. In that case, the paper stack to be conveyed may break or conveyance thereof may stop. To eliminate such a drawback, driving of the two endless belts by the drive source at the same speed is desirable.

    [0015] The paper sheets fed to the runs of the pair of belts in a stack can be conveyed separately one by one or in an overlapped relationship by utilizing the phenomenon in which the paper stack breaks to respective sheets during conveyance when the one belt of the pair of endless belts is driven.

    BRIEF DESCRIPTION OF THE DRAWINGS



    [0016] 

    Fig. 1 is a schematic side elevational view of an embodiment of a paper sheet conveying device according to the present invention;

    Fig. 2 is a schematic side elevational view illustrating the operation of the embodiment shown in Fig. 1;

    Figs. 3 and 4 are respectively schematic side elevational views of a second embodiment of the present invention;

    Figs. 5 and 6 are respectively schematic side elevational views of a third embodiment of the present invention;

    Figs. 7 through 9 are respectively schematic side elevational views of a fourth embodiment of the present invention; and

    Figs. 10 through 14 are respectively schematic side elevational views of an automatic cash handling apparatus which employs the first and second embodiments of the paper sheet conveying device according to the present invention.


    DESCRIPTION OF THE PREFERRED EMBODIMENTS



    [0017] A first embodiment of the present invention will be described below with reference to Figs. 1 and 2.

    [0018] A paper sheet conveying device 1 shown in Fig. 1 includes a pair of endless conveying belts 1a and 1b for holding sheets of paper therebetween and conveying them, pulleys 2a, 2b; 2c, 2d around which the belts la and 1b extend, respectively, shafts 3a, 3b; 3c, 3d for supporting the pulleys 2a, 2b; 2c, 2d, respectively, a support arm 4 for supporting the displaceable shaft 3a, a spring member 5 for resiliently coupling the support arm 4 to a frame (not shown), a drive source (not shown) which comprises a stepping motor, and a drive mechanism.

    [0019] The shafts 3b, 3c and 3d are fixed directly to or supported by the frame and are thus not displaceable. The support arm 4 is rotatably mounted at one end thereof on a shaft 4a mounted on the frame and is coupled to the spring member 5 at the other end thereof. The shaft 3a is positioned by the action of the spring member 5 such that the runs of the conveying belts la and 1b are disposed in face-to-face contact with each other. In this embodiment, the shaft 3c is driven through a timing belt and gears in a direction indicated by an arrow in Fig. 1 by the stepping motor (not shown) which is the drive source. In the vicinity of the pulley 2d, a paper stack 6, consisting of at least one sheet of paper, is fed between the conveying belts la and 1b, as shown in Fig. 1. In this embodiment, when the paper stack 6 passes between the pulleys 2b and 2d, the two belts 1a and 1b convey the paper stack 6 without breaking it to respective sheets because the distance between the pulleys 2b and 2d is sufficiently long and because both conveying belts 1a and 1b have a sufficient conveying force. When the paper stack 6 passes between the pulleys 2a and 2c, the support arm 4 supporting the pulley 2a is subjected to a force from the paper stack 6 and is thereby pivotally moved about the shaft 4a in a direction in which it is moved away from the pulley 2c so as to assure passage of the paper stack 6, as shown in Fig. 2. Consequently, the shaft 3a of the pulley 2a is displaced, and this allows the belts 1a and 1b to discharge or convey the paper stack 6 to a subsequent conveying path without breaking it to respective sheets. After the paper stack 6 passes between the pulleys 2a and 2c, the support arm 4 for supporting the pulley 2a is pivotally moved to its original position shown in Fig. 1 by the restoring force of the spring member 5.

    [0020] A second embodiment of the present invention will be described below with reference to Fig. 3. The second embodiment is differentiated from the embodiment shown in Fig. 1 in that it does not employ a spring member. In this embodiment, a conveying device 10 includes endless conveying belts 11a and 11b made of an elastic material (rubber) and adapted to hold a paper stack therebetween and convey it, pulleys 12a, 12b, 12c; 12d, 12e around which the conveying belts 11a and 11b extend, respectively, shafts 13a, 13b, 13c; 13d, 13e for supporting the pulleys, a support arm 14 for supporting the displaceable shaft 13d, drive means having a timing belt 15 and a timing gear 16 for driving the pulley 12d, a frame, a drive source and a drive mechanism which are not shown.

    [0021] The shafts 13a, 13b, 13c and 13e are mounted directly on the frame and are thus not displaceable. The shaft 13d is pivotally supported by the support arm 14 which is in turn pivotally mounted on a shaft 14a. The shafts 13a, 13b, 13c, 13d and 13e are mounted such that they have the positional relationship shown in Fig. 3. The pulley 12d is positioned such that it brings the runs of the conveying belts 11a and 12b into contact with each other due to the elastic force of the conveying belt 11b. In this embodiment, the driving force from the drive source (not shown) is transmitted to the shaft 13d through the timing belt 15, the timing gear 16 and so on to drive the pulley 12d. The timing belt 15 extends so loosely that it does not generate idling, so as to make the shaft 13d displaceable. In this paper sheet conveying device 10, a paper stack 17 consisting of at least one sheet of paper is fed, as shown in Fig. 3. In a case where the stack 17 consists of a plurality of sheets of paper, when it comes near the portion of the belt lla bent by the pulley 12b, the support arm 14 for supporting the pulley 12d is subjected to a force from the paper stack 17 and is thereby pivotally moved about the rotary shaft 14a in a direction in which it is moved away from the pulley 12b so as to allow the stack 17 to pass past the bent portion, as shown in Fig. 4. As a result, the paper stack 17 is discharged or conveyed to a subsequent conveying path without being broken to respective sheets. After the paper stack 17 passes between the pulleys 12a and 12d, the arm 14 for supporting the pulley 12d is returned to its original position shown in Fig. 3 by the elastic restoring force of the conveying belt 11b because the axis of the shaft 13d is closer to the belt 11a than the line which connects the axis of the shaft 13e to the axis of the shaft 14a.

    [0022] In the second embodiment, only one conveying belt llb of the pair of convey belts is driven while the other conveying belt 11a is driven by the force of the conveying belt 11b. If the pulley 12a is also driven by the drive source so that both conveying belts 11a and 11b can be driven, more reliable conveyance of the paper stack 17 is ensured. This also applies to the embodiment shown in Fig. 1.

    [0023] A third embodiment of the present invention will be described below with reference to Fig. 5. In this embodiment, a paper stack convey device 20 includes endless conveying belts 21a, 21b made of an elastic material and adapted to hold the paper stack therebetween and convey it, pulleys 22a, 22b, 22c; 22d, 22e, 22f around which the convey belts 21a, 21b extend, respectively, shafts 23a, 23b, 23c; 23d, 23e, 23f for supporting the pulleys, an arcuate guide 24 for guiding the paper stack conveyed by the belts 21a and 21b, a spring member 25 for coupling the guide 24 to a frame (not shown), a drive source (not shown), and a drive mechanism (not shown). At least one conveying belt 21a of the conveying belts is made of an elastic material.

    [0024] One end of the guide 24 is pivotally mounted on a shaft 24a mounted on the frame between the shafts 23a and 23b and near the shaft 23f, while the other end of the guide 24 is coupled to an end of the spring member 25 whose the other end is mounted on the frame. The normal position of the guide 24 is that at which it ensures guiding of one sheet of paper (see Fig. 5). This normal position is determined by a stopper which is not shown. In this embodiment, the pulleys 22a and 22d are driven by the drive source and the drive mechanism which are not shown, that is, both conveying belts 21a and 22b are driven.

    [0025] In the paper sheet conveying device 20, a paper stack 26 consisting of at least a single sheet of paper is fed, as shown in Fig. 5. When the paper stack consisting of a plurality of sheets of paper is fed, the guide 24 is subjected to a force from the paper stack 26 and the free end thereof is thereby displaced about the shaft 24a in a direction in which it moves away from the pulley 22f, as shown in Fig. 6, so as to allow the paper stack 26 to pass through the guide 24 and so as to define the direction of conveyance of the paper stack 26. After the paper stack 26 has passed, the guide 24 is returned to its original position shown in Fig. 5 by the restoring force of the spring member 25.

    [0026] The conveyance devices 1, 10 and 20 described above are suitable to convey a paper stack consisting of a large number of paper sheets or of those having different thicknesses, e.g., thick paper sheets. The conveyance devices 1, 10 and 20 convey, for example, a stack of paper sheets. However, when the number of paper sheets to be conveyed in a stack increases, a conveying belt may readily come off a pulley. In addition, when holding (pressing) force on the paper stack is released during stacking of paper sheets, the stack may expand due to the spring effect thereof, prohibiting an excellent stacking operation of the paper sheets. A fourth embodiment which will be described below is designed to eliminate such a drawback.

    [0027] Fig. 7 shows the fourth embodiment of the present invention. In this embodiment, a paper sheet conveying device 30 includes three endless conveying belts 31a, 31b, 31c for holding a paper stack therebetween and conveying it, pulleys 32a, 32b, 32c; 32d, 32e; 32f, 32g, shafts 33a, 33b, 33c; 33d, 33e; 33f, 33g for respectively supporting the pulleys, a frame, a drive source and a drive mechanism which are not shown. In this embodiment, the pulley 32a is a driving pulley. At least one conveying belt 31a is made of an elastic material. The conveying belt 31a is a driving belt while the conveying belts 31b and 31c are driven belts which are moved due to the contact with the conveying belt 31a. When a paper stack 34 consisting of a large number of paper sheets is fed into the paper sheet conveying device 30, the paper stack 34 stays between the belts 31a and 31c and at a position upstream of the pulley 32f, as shown in Fig. 8, because the conveying belt 31c is deformed in the manner shown in Fig. 8 by the paper stack 34 and the load on the belt is increased to cause a slippage between the belts 31a and 31c at a position where the conveying belts 31a and 31c are in contact with each other and displace the conveying belts 31a and 31c away from each other at the position of the pulley 32c so that the belt 31c becomes to be free from the driving force. However, at that time, a conveying force is applied from the conveying belt 31a to the paper stack 34 which is in contact with the conveying belt 31a to convey the paper sheets one by one or in a state where they are partially laid on top of one another, as shown in Fig. 9. Consequently, the sheets of paper are separated from each other or partially laid on top of one another when they pass between the pulleys 32a and 32d, and this makes it possible to convey the paper stack without providing the pivotal pulley shaft support arm, unlike the embodiment shown in Fig. 1. This effect can also be obtained by detecting that the paper stack 34 has arrived at a predetermined position and by stopping the conveying belts 31c by, for example, a brake actuated by a detection signal.

    [0028] An embodiment of an automatic cash handling apparatus which employs some of the aforementioned paper sheet convey devices will be described below with reference to Figs. 10 through 14. Fig. 10 schematically shows a cash dispenser which employs the paper sheet convey devices 1 and 10 shown in Figs. 1 and 3. This cash dispenser is designed to convey bills set in a cassette 100 to a payment port 102 and pay it back to a customer. In this embodiment, the automatic cash dispenser includes six conveying belts 103a through 103f which form conveying paths, a plurality of pulleys 104 around which the convey belts extend, a guide (not shown), and a convey direction changing gate (not shown). Among the pulleys shown in Fig. 10, the pulleys 104a, 104b and 104c are driving pulleys, that is, the conveying belts 103a, 103b and 103c are driving belts. Also, each of the pulleys 104b and 104d is mounted on a pivotal support arm such as that described above.

    [0029] In the cash dispenser (the automatic cash handling apparatus) 100, the bills required by the customer are conveyed one by one from the cassette 100 to a stacking portion 105, as shown in Fig. 11. The stacking operation is performed by a stopper 106 or the like provided in the stacking portion 105 to deposit the bills on a bottom plate (not shown) above the convey belt 103b. A double sheet detecting roller 109 checks bills 108 which are not separated at a separating portion 107 in the cassette 100, and the direction changing gate (not shown) provided in a portion B changes the direction of conveyance of the sheets from direction a to direction b to accommodate them in an accommodating box 110.

    [0030] When the required amount of bills is deposited in the stacking portion 105, the stopper 106 retracts and then the pulley 104e moves in the manner shown in Fig. 12 so that bills 101 to be paid to the customer can be held between the conveying belts 103a and 103b. Subsequently, the conveying path is driven at a low speed to discharge the bills, as shown in Fig. 13. At that time, the pulley 104b is displaced such that it is moved away from the pulley 104a to present the bills 101 to the customer in a stack. When the bills 101 have come to a position where the customer can reach them, the drive of the convey belts 103a and 103b is stopped in a state where the belts 103a and 103b slightly hold the bills 101. The bills 101 presented to the customer may not be taken out by the customer. In that case, when a certain period of time elapses, a control unit recognizes that the customer has forgotten to take the bills, and reverses the direction of drive of the driving source to feed back the bills 101 to the accommodating box 110 (Fig. 14). When the bills 101 are in a stack, as shown in Fig. 14, the support arm of the pulley 104d pivots and thereby permits accommodation of the bills 101 into the accommodating box 110 in a stack.

    [0031] The paper sheet conveying device according to the present invention is capable of conveying a single sheet of paper or a paper stack consisting of a number of paper sheets or of those having different thicknesses along the same conveying path and thereby prevents an increase in the overall size of the drive and production cost. The automatic cash handling apparatus according to the present invention is capable of excellently and flexibly conveying bank notes having different thicknesses.


    Claims

    1. A paper sheet conveying device (1, 10, 20, 30) including at least one pair of endless belts (1a, 1b; 11a, 11b; 21a, 21b; 31a, 31c; 103a, 103b), at least two pulleys (2a, 2b; 2c, 2d; 12a through 12c; 12d through 12e; 22a through 22c, 22d through 22f; 32a through 32c, 32f through 32g; 104a, 104d; 104b, 104e) around which each of said endless belts extends, and a drive source for driving at least one of said pair of endless belts, said at least one pair of endless belts having runs which oppose each other and which normally move in contact with each other to form a paper sheet conveying path, said runs holding and conveying a paper sheet therebetween,
       wherein the at least one of said at least one pair of endless belts has means for displacing at least a part of the run of the one belt away from the run of the other belt when the one belt is subjected to a force from the paper sheet being conveyed, and wherein at least one of the pulleys (2a, 2c; 12d; 22a, 22d; 33a, 33d, 104a, 104b) which define the discharge end of said paper sheet conveying path is drivingly connected to said drive source.
     
    2. A paper sheet conveying device according to Claim 1, wherein the one pulley (2a; 12d; 104b; 104d) of the one endless belt is supported in a floating state, and wherein said displacing means comprises elastic means (5; 11b) for elastically urging the one pulley toward the other endless belt.
     
    3. A paper sheet conveying device according to Claim 2, wherein one (12d) of the pulleys which define a discharge end of said paper sheet conveying path is supported in the floating state and wherein driving force transmitting means (13d, 15, 16) are provided between said one pulley (12d) and said driving source.
     
    4. A paper sheet conveying device according to Claim 3, wherein said one pulley (12d) has a shaft (13d) supported by a pivotal shaft supporting arm (14) and wherein one (11b) of said pair of endless belts is made of an elastic material which forms said elastic means.
     
    5. A paper sheet conveying device according to Claim 2, wherein a shaft (3a) of the one pulley (2a) is supported by a pivotal shaft supporting arm (4), and wherein said elastic means comprises a spring member (5) which acts on said arm.
     
    6. A paper sheet conveying device according to Claim 2, wherein a shaft (13d) of the one pulley (12d) is supported by a pivotal shaft supporting arm (14), and wherein the one endless belt (11b) is made of an elastic material which constitutes said elastic means.
     
    7. A paper sheet conveying device according to Claim 1, wherein the one endless belt (21a) is made of an elastic material which constitutes said displacing means, wherein the one pulley (22f) of the other endless belt (21b) is disposed close to the run of the one endless belt (21a), and wherein a guide (24) is provided close to the one pulley (22f), one end of said guide being pivotally supported while the other end thereof is elastically biased toward the other endless belt (21b).
     
    8. A paper sheet conveying device according to Claim 1, wherein the one endless belt (31a) is made of an elastic material which constitutes said displacing means, wherein said drive source drives the one endless belt (31a), the other endless belt (31c) being driven by the one endless belt (31a) which is driven by said drive source, wherein the one pulley (32f) of the other endless belt (31c) is normally disposed at a position where it ensures that the other endless belt is in contact with the run of the one endless belt, and wherein the two endless belts are arranged such that the paper sheets of the paper stack located close to the one endless belt are successively conveyed by the run of the one endless belt.
     
    9. An automatic cash handling apparatus comprising the paper sheet conveying device defined in any one of Claims 1 through 6.
     
    10. An automatic cash handling apparatus according to Claim 9, further comprising a payment port (102), and a cassette (100) for accommodating bills (101) to be conveyed to said payment port, said paper sheet conveying device constituting at least a part of a paper sheet conveying path extending between said cassette (100) and said payment port (102).
     
    11. An automatic cash handling apparatus according to Claim 10, further comprising an accommodating box (110) disposed at a position offset from said paper sheet conveying path, and a changing gate disposed in the midway of said paper sheet conveying path.
     


    Ansprüche

    1. Transportvorrichtung für Papierblätter (1, 10, 20, 30) mit mindestens einem Endlosbänderpaar (1a, 1b; 11a, 11b; 21a, 21b; 31a, 31c; 103a, 103b), mindestens zwei Laufrollen (2a, 2b; 2c, 2d; 12a bis 12c; 12d bis 12e; 22a bis 22c, 22d bis 22f; 32a bis 32c, 32f bis 32g; 104a, 104d; 104b, 104e), um die jedes Endlosband verläuft, und einer Antriebseinrichtung zum Antrieb von mindestens einem Endlosbänderpaar, wobei mindestens ein Endlosbänderpaar einander gegenüberliegende und sich zur Bildung einer Papiertransportbahn normalerweise in Kontakt miteinander bewegende Stränge aufweist, die dazwischen ein Papierblatt halten und transportieren, wobei mindestens eines der Bänder des mindestens einen Endlosbänderpaars eine Stelleinrichtung aufweist, um zumindestens ein Teil des Strangs des einen Bandes von dem Strang des anderen Bandes wegzubewegen, wenn durch das transportierte Papierblatt eine Kraft auf das eine Band ausgeübt wird, und wobei mindestens eine der das Austragsende der Papiertransportbahn begrenzenden Laufrollen (2a, 2c; 12d; 22a, 22d; 33a, 33d, 104a, 104b) antriebsmäßig mit der Antriebseinrichtung verbunden ist.
     
    2. Transportvorrichtung für Papierblätter nach Anspruch 1, wobei die eine Laufrolle (2a; 12d; 104b; 104d) des einen Endlosbandes schwimmend gelagert ist, und wobei die Stelleinrichtung ein elastisches Element (5; 11b) zum elastischen Andruck der einen Laufrolle in Richtung des anderen Endlosbandes aufweist.
     
    3. Transportvorrichtung für Papierblätter nach Anspruch 2, wobei eine (12d) der ein Austragsende der Papiertransportbahn begrenzenden Laufrollen schwimmend gelagert ist, und wobei Mittel zur Übertragung der Antriebskraft (13d, 15, 16) zwischen der einen Laufrolle (12d) und der Antriebseinrichtung vorgesehen sind.
     
    4. Transportvorrichtung für Papierblätter nach Anspruch 3, wobei die eine Laufrolle (12d) eine von einem Schwenkarm (14) gehalterte Welle (13d) aufweist, und wobei eines (11b) der beiden Endlosbänder aus einem elastischen Material besteht, welches das elastische Element bildet.
     
    5. Transportvorrichtung für Papierblätter nach Anspruch 2, wobei eine Welle (3a) der einen Laufrolle (2a) von einem Schwenkarm (4) gehaltert ist, und wobei das elastische Element ein auf den Arm wirkendes Federelement (5) umfaßt.
     
    6. Transportvorrichtung für Papierblätter nach Anspruch 2, wobei eine Welle (13d) der einen Laufrolle (12d) von einem Schwenkarm (4) gehaltert ist, und wobei das eine Endlosband (11b) aus einem elastischen Material besteht, welches das elastische Element bildet.
     
    7. Transportvorrichtung für Papierblätter nach Anspruch 1, wobei das eine Endlosband (21a) aus einem elastischen Material besteht, das die Stelleinrichtung bildet, wobei die eine Laufrolle (22f) des anderen Endlosbandes (21b) in der Nähe des Strangs des einen Endlosbandes (21a) angeordnet ist, und wobei in der Nähe der einen Laufrolle (22f) eine Führung (24) vorgesehen ist, deren eines Ende gelagert und deren anderes Ende in Richtung des anderen Endlosbandes (21b) elastisch vorgespannt ist.
     
    8. Transportvorrichtung nach Anspruch 1, wobei das eine Endlosband (31a) aus einem elastischen Material besteht, das die Stelleinrichtung bildet, wobei die Antriebseinrichtung das eine Endlosband (31a) antreibt und das andere Endlosband (31c) durch das von der Antriebseinrichtung angetriebene eine Endlosband (31a) angetrieben wird, wobei die eine Laufrolle (32f) des anderen Endlosbandes (31c) normalerweise an einer Stelle angeordnet ist, an der sie gewährleistet, daß das andere Endlosband in Kontakt mit dem Strang des einen Endlosbandes ist, und wobei die beiden Endlosbänder derart angeordnet sind, daß die Papierblätter des in der Nähe des einen Endlosbandes angeordneten Papierstapels von dem Strang des einen Endlosbandes nacheinander transportiert werden.
     
    9. Banknotenautomat mit einer Transportvorrichtung für Papierblätter nach einem der Ansprüche 1 bis 6.
     
    10. Banknotenautomat nach Anspruch 9, der ferner eine Auszahlungsöffnung (102) und eine Kassette (100) zur Aufnahme der an die Auszahlungsöffnung zu transportierenden Banknoten (100) aufweist, wobei die Transportvorrichtung für die Papierblätter zumindest einen Teil einer zwischen der Kassette (100) und der Auszahlungsöffnung (102) verlaufenden Papiertransportbahn bildet.
     
    11. Banknotenautomat nach Anspruch 10, der ferner einen versetzt zur Papiertransportbahn angeordneten Papierbehälter (110) und einen in der Mitte der Papiertransportbahn angeordneten Umkehrdurchlaß aufweist.
     


    Revendications

    1. Appareil (1, 10, 20, 30) de transport de feuilles de papier comprenant au moins une paire de courroies sans fin (1a, 1b ; 11a, 11b ; 21a, 21b ; 31a, 31c ; 103a, 103b), au moins deux poulies (2a, 2b ; 2c, 2d ; 12a à 12c ; 12d à 12e ; 22a à 22c, 22d à 22f ; 32a à 32c, 32f à 32g ; 104a, 104d ; 104b, 104e) autour desquelles passent les courroies sans fin, et une source motrice destinée à l'entraînement de l'une au moins des paires de courroies sans fin, cette paire de courroies sans fin ayant des brins qui sont en regard et qui se déplacent normalement en contact mutuel pour la formation d'un trajet de transport de feuilles de papier, ces brins maintenant et transportant une feuille de papier entre eux,
       dans lequel ladite paire de courroies sans fin au moins comporte un dispositif de déplacement d'une partie au moins du brin d'une première courroie afin qu'il s'écarte du brin ou de l'autre courroie lorsque la courroie est soumise à une force par la feuille de papier qui est transportée, et dans lequel l'une au moins des poulies (2a, 2c ; 12d ; 22a, 22d ; 33a, 33d, 104a, 104b) qui forment l'extrémité d'évacuation du trajet de transport de feuilles de papier est raccordée à la source motrice afin qu'elle soit entraînée.
     
    2. Appareil de transport de feuilles de papier selon la revendication 1, dans lequel la première poulie (2a ; 12d ; 104b ; 104d) de la première courroie sans fin est supportée à l'état flottant, et le dispositif destiné à déplacer comporte un dispositif élastique (5 ; 11b) destiné à rappeler élastiquement la première poulie vers l'autre courroie sans fin.
     
    3. Appareil de transport de feuilles de papier selon la revendication 2, dans lequel une première (12d) des poulies qui forment l'extrémité d'évacuation du trajet de transport de la feuille de papier est supportée à l'état flottant, et un dispositif (13d, 15, 16) de transmission d'une force motrice est placé entre la première poulie (12d) et la source motrice.
     
    4. Appareil de transport de feuilles de papier selon la revendication 3, dans lequel la première poulie (12d) a un arbre (13d) supporté par un bras (14) de support de bras pivotant, et dans lequel la première (11b) des deux courroies sans fin est formée d'un matériau élastique qui forme le dispositif élastique.
     
    5. Appareil de transport de feuilles de papier selon la revendication 2, dans lequel un arbre (3a) de la première poulie (2a) est supporté par un bras (4) de support d'arbre pivotant, et le dispositif élastique comporte un organe à ressort (5) agissant sur le bras.
     
    6. Appareil de transport de feuilles de papier selon la revendication 2, dans lequel un arbre (13d) de la première poulie (12d) est supporté par un bras (14) de support d'arbre pivotant, et dans lequel la courroie sans fin (11b) est formée d'un matériau élastique qui constitue le dispositif élastique.
     
    7. Appareil de transport de feuilles de papier selon la revendication 1, dans lequel la courroie sans fin (21a) est formée d'un matériau élastique qui constitue le dispositif de déplacement, la première poulie (22f) de l'autre courroie sans fin (21b) est placée près du brin de la première courroie sans fin (21a), et un guide (24) est placé près de la première poulie (22f), une première extrémité du guide étant supportée de manière pivotante alors que l'autre extrémité est rappelée élastiquement vers l'autre courroie sans fin (21b).
     
    8. Appareil de transport de feuilles de papier selon la revendication 1, dans lequel la première courroie sans fin (31a) est formée d'un matériau élastique qui constitue le dispositif de déplacement, la source motrice entraîne la première courroie sans fin (31a), l'autre courroie sans fin (31c) étant entraînée par la première courroie sans fin (31a) qui est entraînée par la source motrice, la première poulie (32f) de l'autre courroie sans fin (31c) est normalement à une position dans laquelle l'autre courroie sans fin est au contact du brin de la première courroie sans fin, et les deux courroies sans fin sont disposées afin que les feuilles de papier de la pile de papier placée près de la première courroie sans fin soient transportées successivement par le brin de la première courroie sans fin.
     
    9. Appareil automatique de traitement de billets de banque, comprenant l'appareil de transport de feuilles de papier selon l'une quelconque des revendications 1 à 6.
     
    10. Appareil automatique de traitement de billets de banque selon la revendication 9, comprenant en outre un orifice (102) de paiement et une cassette (100) destinée à contenir les billets (101) à transporter vers l'orifice de paiement, l'appareil de transport de feuilles de papier constituant une partie au moins du trajet de transport de feuilles de papier placées entre la cassette (100) et l'orifice de paiement (102).
     
    11. Appareil automatique de traitement de billets de banque selon la revendication 10, comprenant en outre un caisson (110) de logement ayant une position décalée par rapport au trajet de transport de la feuille de papier, et un portillon de commutation placé sur le trajet de transport de feuilles de papier.
     




    Drawing