CN114846528A - Paper sheet storage device and paper sheet processing device - Google Patents

Paper sheet storage device and paper sheet processing device Download PDF

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Publication number
CN114846528A
CN114846528A CN202080087228.2A CN202080087228A CN114846528A CN 114846528 A CN114846528 A CN 114846528A CN 202080087228 A CN202080087228 A CN 202080087228A CN 114846528 A CN114846528 A CN 114846528A
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CN
China
Prior art keywords
storage device
paper sheet
mounting table
mounting
mounting portion
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Granted
Application number
CN202080087228.2A
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Chinese (zh)
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CN114846528B (en
Inventor
本桥康大
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Fujitsu Frontech Ltd
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Fujitsu Frontech Ltd
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Publication of CN114846528A publication Critical patent/CN114846528A/en
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Publication of CN114846528B publication Critical patent/CN114846528B/en
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    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07DHANDLING OF COINS OR VALUABLE PAPERS, e.g. TESTING, SORTING BY DENOMINATIONS, COUNTING, DISPENSING, CHANGING OR DEPOSITING
    • G07D11/00Devices accepting coins; Devices accepting, dispensing, sorting or counting valuable papers
    • G07D11/10Mechanical details
    • G07D11/12Containers for valuable papers

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Pile Receivers (AREA)

Abstract

The paper sheet storage device is provided with: a housing member having a storage space for storing the paper sheets (6); a mounting table (22) for accumulating the paper sheets (6); a support mechanism which supports the loading table (22) so as to be movable along the accumulation direction in which the paper sheets (6) are accumulated; a spring member that urges the mounting table (22) so that the mounting table (22) moves toward the side where the paper sheet (6) enters; a lock mechanism (26) that restricts the movement of the table (22); and an operating mechanism (27) that operates the lock mechanism (26). The housing member is detachably mounted to the mounting portion. When the case member is mounted on the mounting portion, the operating mechanism (27) is in contact with the inner surface of the mounting portion, and the locking mechanism (26) is operated so as to release the restriction of the movement of the mounting table (22), and when the case member is dismounted from the mounting portion, the operating mechanism (27) is separated from the inner surface of the mounting portion, and the locking mechanism (26) is operated so as to restrict the movement of the mounting table (22).

Description

Paper sheet storage device and paper sheet processing device
Technical Field
The present invention relates to a paper sheet storage device and a paper sheet handling device.
Background
A known banknote handling apparatus such as an ATM (Automated Teller Machine) includes a banknote storage device that stores deposited banknotes, and the banknote storage device is detachably mounted to a mounting portion of the banknote handling apparatus. In the banknote handling apparatus, the banknote storage apparatus is detached from the mounting portion, and the banknotes stored in the banknote storage apparatus are conveyed.
As such a banknote storage device, there is a device having the following structure: the paper money feeder includes a mounting table for accumulating paper money and a spring member for biasing the mounting table to move in one direction. The placing table is moved against the urging force of the spring member as the number of bills accumulated on the placing table increases.
Prior art documents
Patent document
Patent document 1: japanese patent laid-open No. 2000-322626
Disclosure of Invention
Problems to be solved by the invention
In the above-described banknote storage device, the mounting table on which the banknotes are stored is biased only by the biasing force of the spring member. Therefore, when vibration or impact is applied from the outside of the banknote storage device, for example, during conveyance of the paper sheet storage device, the placement table moves against the biasing force of the spring member, and thus there is a possibility that the banknotes stacked on the placement table may be disturbed.
The present invention has been made in view of the above circumstances, and an object thereof is to provide a paper sheet storage device and a paper sheet processing apparatus capable of suppressing occurrence of disturbance of paper sheets accumulated on a mounting table when the paper sheet storage device is conveyed.
Means for solving the problems
One embodiment of a paper sheet storage device disclosed in the present application includes: a housing member having a storage space for storing sheets; a loading table for accumulating the paper sheets; a support mechanism that supports the table so as to be movable along a direction in which the sheets are accumulated; a spring member that urges the mounting table so as to move the mounting table to a side where the paper sheet enters; a lock mechanism that restricts movement of the mounting table; and an operating mechanism that operates the lock mechanism, wherein the case member is detachably attached to an attachment portion, the operating mechanism operates the lock mechanism to release the restriction of the movement of the mounting table by coming into contact with an inner surface of the attachment portion when the case member is attached to the attachment portion, and the operating mechanism operates the lock mechanism to restrict the movement of the mounting table by separating from the inner surface of the attachment portion when the case member is detached from the attachment portion.
Effects of the invention
According to one aspect of the paper sheet storage device disclosed in the present application, it is possible to suppress occurrence of disturbance of paper sheets accumulated on the mounting table, for example, when the paper sheet storage device is conveyed.
Drawings
Fig. 1 is a schematic view showing a banknote handling apparatus according to an embodiment.
Fig. 2 is a perspective view showing the banknote storage device of the embodiment.
Fig. 3 is a perspective view showing the banknote storage device of the embodiment.
Fig. 4 is a plan view schematically showing the banknote storing device of the embodiment.
Fig. 5 is a side view schematically showing the banknote storing device of the embodiment.
Fig. 6 is a perspective view showing a lock mechanism and an operating mechanism of the banknote storage device according to the embodiment.
Fig. 7 is a perspective side view showing a state in which the banknote storage device of the embodiment is mounted to the mounting portion.
Fig. 8 is a side view showing the lock mechanism and the operating mechanism when the banknote storage device of the embodiment is mounted on the mounting portion.
Fig. 9 is a perspective side view showing a state where the banknote storage device of the embodiment is detached from the mounting portion.
Fig. 10 is a side view showing the lock mechanism and the operating mechanism when the banknote storage device of the embodiment is detached from the mounting portion.
Detailed Description
Hereinafter, embodiments of the paper sheet storage device and the paper sheet handling device disclosed in the present application will be described in detail with reference to the drawings. Note that the paper sheet storage device and the paper sheet handling device disclosed in the present application are not limited to the following embodiments.
Examples
(construction of paper money handling apparatus)
Fig. 1 is a schematic diagram showing a banknote handling apparatus according to an embodiment. As shown in fig. 1, a banknote handling apparatus 1 according to the embodiment includes: an access unit 11 that accesses the paper feed medal 6; a discriminating unit 12 for discriminating the banknotes 6 conveyed from the access unit 11; a plurality of temporary storage units 13 that temporarily store the banknotes 6 conveyed from the differentiating unit 12; and a storage unit 14 that stores the banknotes 6 conveyed from the respective temporary storage units 13.
Further, the banknote processing device 1 includes: a transport mechanism 15 that transports the banknotes 6 along a transport path 15a between the respective units 11, 12, 13, 14; and a control unit (not shown) for controlling the units 11, 12, 13, and 14, respectively. The transport mechanism 15 includes a transport belt constituting a transport path 15a for transporting the banknotes 6 and a plurality of rollers, and is arranged to connect the access unit 11, the discriminating unit 12, each temporary holding unit 13, and the storage unit 14 to each other. The control unit is electrically connected to the discrimination unit 12, each temporary storage unit 13, the storage unit 14, and the conveyance mechanism 15.
As shown in fig. 1, the storage unit 14 provided in the banknote handling apparatus 1 corresponds to the banknote storage apparatus of the embodiment. Hereinafter, the storage unit 14 will be referred to as the banknote storage device 14 instead. The banknote handling device 1 includes a mounting portion 18 to which the rectangular parallelepiped banknote storage device 14 is detachably attached along an X-Y plane (horizontal plane). That is, the banknote storage device 14 is detachably provided to the mounting portion 18 of the banknote handling device 1, and is used as a so-called banknote storage box. The inner surface of the mounting portion 18 has a flat top plate 18a along a horizontal plane (X-Y plane), and when the banknote storage device 14 is mounted to the mounting portion 18, the upper portion of the banknote storage device 14 contacts along the top plate 18 a. In the banknote handling apparatus 1, the banknotes 6 accumulated and stored in the banknote storage device 14 are transported by detaching the banknote storage device 14 from the mounting portion 18.
For convenience of explanation, in fig. 1, the front-back direction of the banknote handling apparatus 1 is referred to as the X direction, the width direction of the banknote handling apparatus 1 is referred to as the Y direction, and the vertical direction of the banknote handling apparatus 1 is referred to as the Z direction when the banknote handling apparatus 1 is viewed from the access unit 11 side. In the drawings of fig. 1 and subsequent figures, directions X, Y, Z are also shown, respectively, in the same manner as in fig. 1. Note that, in the present embodiment, the bill 6 is used as an example of the paper sheet, but the present invention is not limited to the bill 6. The paper sheets include securities such as bills, checks, gift certificates, various securities, and stock certificates.
(Structure of paper money storage device)
Fig. 2 and 3 are perspective views showing the banknote storage device 14 according to the embodiment. Fig. 4 is a plan view schematically showing the banknote storage device 14 of the embodiment. Fig. 5 is a side view schematically showing the banknote storage device 14 of the embodiment.
As shown in fig. 2, 3, 4, and 5, the banknote storage device 14 includes: a housing member 21 having a storage space 21a for storing the banknotes 6; a mounting table 22 for accumulating the paper feed bills 6; an impeller 23 for accumulating the banknotes 6 on the table 22; and a support mechanism 24 (see fig. 5) that supports the table 22 so as to be movable along the stacking direction in which the banknotes 6 are stacked. As shown in fig. 5, the banknote storage device 14 includes: a spring member 25 that biases the mounting table 22 so as to move the mounting table 22 toward the side where the bill 6 enters (toward the impeller 23); a lock mechanism 26 that restricts movement of the table 22; and an operating mechanism 27 that operates the lock mechanism 26.
In the banknote storage device 14, when the housing member 21 is attached to the attachment portion 18, the operating mechanism 27 contacts the top plate 18a, which is the inner surface of the attachment portion 18, to operate the lock mechanism 26 so as to release the restriction of the movement of the mounting table 22, and when the housing member 21 is detached from the attachment portion 18, the operating mechanism 27 separates from the top plate 18a of the attachment portion 18 to operate the lock mechanism 26 so as to restrict the movement of the mounting table 22.
As shown in fig. 2 and 3, a cover member 21b that is rotatable via a support shaft 21c and can open and close an internal storage space 21a is provided on the upper portion of the case member 21. The cover member 21b is provided with an inlet 21d for feeding the banknotes 6 conveyed along the conveyance path 15a of the banknote processing apparatus 1 into the storage space 21 a. As shown in fig. 5, a guide plate 29 for guiding the banknotes 6 fed from the feed-in port 21d is provided inside the housing member 21. The guide plate 29 guides the bill 6 to fall from the inlet 21d toward the impeller 23 in a predetermined posture.
As shown in fig. 3 and 4, a pair of partition plates 30 that partition the storage space 21a for storing the bills 6 are provided in the housing member 21 on both sides of the mounting table 22 in the Y direction. Each partition plate 30 is fixed inside the case member 21. As shown in fig. 4 and 5, the lock mechanism 26 and the operating mechanism 27 are disposed in a space between one partition plate 30 and the inner surface of the case member 21. The support mechanism 24 and the spring member 25 are disposed in a space between the partition plate 30 and the inner surface of the case member 21, and the lock mechanism 26 and the operating mechanism 27 are disposed in a free space above the space where the support mechanism 24 is not disposed. Accordingly, the empty space inside the case member 21 is effectively used, and the lock mechanism 26 and the operating mechanism 27 can be disposed inside the case member 21 while avoiding an increase in the size of the case member 21 and the banknote storage device 14.
The mounting table 22 has a mounting surface 22a on which the bills 6 conveyed by the impeller 23 are stacked. The mounting table 22 is provided movably in a horizontal direction (a direction along an X-Y plane), and the mounting surface 22a is inclined with respect to a vertical direction (Z direction). The mounting table 22 is inclined such that the upper end of the mounting surface 22a is farther from the impeller 23 than the lower end. By inclining the mounting surface 22a in this manner, the banknotes 6 conveyed by the rotating impeller 23 are smoothly accumulated on the mounting table 22.
As shown in fig. 4 and 5, the impeller 23 has a plurality of blades 23a for conveying the banknotes 6 and is disposed at a position facing the inlet 21 d. The impeller 23 holds the bill 6 fed from the feed port 21d between the blades 23a, and rotates the blades 23a to feed the bill 6 to be accumulated on the mounting table 22.
As shown in fig. 6, the support mechanism 24 includes: a guide rail member 31 provided to the partition plate 30 along the X direction; and a slide member 32 that reciprocates in the Y direction along the rail member 31. The slide member 32 is coupled to the mounting table 22, and the mounting table 22 moves in the X direction in the storage space 21a by moving the slide member 32 along the guide rail member 31.
The spring member 25 is disposed below the support mechanism 24 disposed in a space between the one partition plate 30 and the inner surface of the case member 21. As shown in fig. 5, the spring member 25 is a tension coil spring, and one end 25a of the spring is fixed to a fixing portion 30a of the partition plate 30. The spring member 25 extends in the X direction from the fixing portion 30a, is mounted on a pulley 34 supported by the partition plate 30, is folded by the pulley 34, extends in the X direction, and has the other end 25b fixed to the mounting table 22. Therefore, the table 22 is biased toward the impeller 23 by the biasing force of the spring member 25. As the accumulation amount of the banknotes 6 accumulated on the table 22 increases, the table 22 moves in a direction away from the impeller 23 side against the urging force of the spring member 25.
(Structure of locking mechanism)
The lock mechanism 26 is provided inside the case member 21, and includes an engagement member 36 provided on the mounting table 22 and a lock member 37 with which the engagement member 36 is engaged. Mounting table 22 has side surface portion 22b that moves in the X direction along partition plate 30, and engagement member 36 is fixed to side surface portion 22 b. The engaging member 36 has a triangular projection 36a that engages with the lock member 37, and the tip of the projection 36a is disposed opposite to the lock member 37.
The lock member 37 is rotatably supported by a support shaft 37a provided on the partition plate 30 fixed to the case member 21. The lock member 37 is coupled to an arm member 43, described later, included in the operating mechanism 27, and includes a long hole 37b that movably supports the arm member 43.
The lock member 37 has a plurality of recesses 38 into which the projections 36a of the engaging member 36 are engaged, and a plurality of partition walls 39 provided between the adjacent recesses 38. The plurality of recesses 38 are arranged along the moving direction (X direction) of the table 22 at the lower end portion of the lock member 37, and are provided in the moving area of the table 22 in the housing space 21 a. The partition walls 39 are formed as plate-like ribs orthogonal to the arrangement direction of the plurality of recesses 38.
As described above, since the engaging member 36 has the triangular projection 36a, when the tip of the projection 36a comes into contact with the partition wall 39 of the recess 38, the partition wall 39 slides along the oblique side of the triangular projection 36 a. Therefore, the projection 36a of the engaging member 36 is guided to one of the adjacent recesses 38, and therefore the projection 36a can be smoothly engaged in the recess 38. Therefore, the movement of the stage 22 can be smoothly regulated by the lock member 37 regardless of the position of the stage 22 in the X direction.
Further, the lock member 37 is formed with a plurality of concave portions 38 and a plurality of partition walls 39 so that the positions of the concave portions 38 that engage with the projections 36a that move together with the mounting table 22 are shifted by 1 position every time the number of banknotes 6 stacked on the mounting table 22 changes by a predetermined number, for example, 100. Accordingly, when the platform 22 moves in the X direction in accordance with a change in the accumulation amount of the banknotes 6, the protrusions 36a of the platform 22 appropriately engage with the respective recesses 38 of the lock member 37, and therefore the platform 22 moving in the X direction can be smoothly regulated. Further, this can further appropriately suppress the occurrence of disturbance of the banknotes 6 stacked on the mounting table 22 restricted by the lock member 37 due to vibration or impact applied to the banknote storage device 14.
(Structure of operating mechanism)
As shown in fig. 6, the operating mechanism 27 includes: a roller member 41 that contacts the top plate 18a of the mounting portion 18 along the top plate 18 a; an arm member 43 that rotates by the roller member 41 contacting the top plate 18 a; and a coil spring 44 that biases the arm member 43 in one direction. In other words, the operating mechanism 27 is a switching mechanism that switches between a locked state in which the locking mechanism 26 restricts the mounting table 22 and an unlocked state in which the locking mechanism 26 releases the restriction of the mounting table 22.
The roller member 41 is rotatably supported at one end of the arm member 43 via a rotary shaft 41 a. The rotation shaft 41a is disposed along the Y direction, and the roller member 41 rotates along the top plate 18a when the banknote storage device 14 is inserted into and removed from the mounting portion 18 in the X direction. The roller member 41 is supported by the arm member 43 so that a part of the roller member 41 protrudes outside the case member 21 through the opening 21e of the cover member 21b (see fig. 2 and 3). In other words, in a posture in which the banknote storage device 14 is mounted to the mounting portion 18, the upper end of the roller member 41 protruding outward from the opening 21e of the housing member 21 is positioned higher than the height of the top plate 18a of the mounting portion 18 in the Z direction.
The arm member 43 is rotatably supported by the partition plate 30 via a first support shaft 43a, and is rotatably supported by the lock member 37 via a second support shaft 43 b. The second support shaft 43b of the arm member 43 is supported by the elongated hole 37b of the lock member 37, and the second support shaft 43b moves along the longitudinal direction of the elongated hole 37b, thereby rotating the lock member 37 about the support shaft 37 a. Therefore, the operating mechanism 27 and the lock mechanism 26 form a link structure in which the arm member 43 and the lock member 37 are coupled by the second support shaft 43b supported by the elongated hole 37 b.
One end of coil spring 44 is fixed to partition plate 30, and the other end is fixed to arm member 43. The coil spring 44 biases the arm member 43 to rotate about the first shaft 43a and move the roller member 41 toward the outside of the case member 21.
Since the operating mechanism 27 includes the roller member 41, even when the banknote storage device 14 is attached to and detached from the mounting portion 18 from either of the two sides (front and rear) in the X direction, the roller member 41 rolls along the top plate 18a, and therefore the roller member 41 can be smoothly pushed into the case member 21 through the top plate 18 a. Therefore, the banknote storage device 14 can cope with the attachment and detachment operations in both directions to and from the mounting portion 18, and is not restricted by the attachment and detachment directions to and from the mounting portion 18, and the degree of freedom in the structure of the mounting portion 18 of the banknote handling device 1 is improved.
(operation of locking mechanism and operating mechanism)
Fig. 7 is a perspective side view showing a state in which the banknote storage device 14 of the embodiment is attached to the attachment portion 18. Fig. 8 is a side view showing the lock mechanism 26 and the operating mechanism 27 when the banknote storage device 14 of the embodiment is mounted on the mounting portion 18.
As shown in fig. 7 and 8, when the banknote storage device 14 is attached to the attachment portion 18 along the X direction, the upper end of the roller member 41 protruding outward from the opening 21e of the housing member 21 is higher than the top plate 18a, and therefore the roller member 41 comes into contact with the vicinity of the top plate 18 a. The roller member 41 in contact with the vicinity of the top plate 18a moves downward of the top plate 18a while rotating, and the roller member 41 is pushed downward by the top plate 18a, whereby the banknote storage device 14 is mounted in the mounting portion 18.
When the banknote storage device 14 is mounted in the mounting portion 18 in this way, the roller member 41 moves downward, and the arm member 43 pivots about the first pivot shaft 43a against the biasing force of the coil spring 44, and the second pivot shaft 43b moves rightward in fig. 8 along the elongated hole 37b of the lock member 37. Therefore, as the second support shaft 43b of the arm member 43 moves along the elongated hole 37b, the lock member 37 pivots about the support shaft 37a, and the plurality of recesses 38 aligned along the lower end portion of the lock member 37 are lifted away from the projection 36a of the engagement member 36 provided on the mounting table 22. By raising the plurality of recesses 38 of the lock member 37, the engagement state between the recesses 38 and the protrusions 36a is released, and the restriction of the movement of the table 22 by the lock member 37 is released.
Thus, the mounting table 22 is movable in the X direction, and the banknotes 6 can be stored in the storage space 21a by moving according to the accumulation amount of the banknotes 6 accumulated on the mounting table 22. That is, when the banknote storage device 14 is attached to the attachment portion 18, the roller member 41 in contact with the top plate 18a moves toward the inside of the housing member 21, and the locked state of the mounting table 22 by the lock mechanism 26 is released.
Fig. 9 is a perspective side view showing a state where the banknote storage device 14 of the embodiment is detached from the mounting portion 18. Fig. 10 is a side view showing the lock mechanism 26 and the operating mechanism 27 when the banknote storage device 14 of the embodiment is detached from the mounting portion 18.
As shown in fig. 9 and 10, when the banknote storage device 14 is detached from the attachment portion 18, the roller member 41 is separated from the top plate 18a that presses the roller member 41 downward, and the arm member 43 is thereby rotated by the biasing force of the coil spring 44 so that the roller member 41 protrudes outward from the opening 21e of the case member 21.
When the roller member 41 is moved upward in this way, the actuating mechanism 27 rotates the arm member 43 about the first pivot shaft 43a by the biasing force of the coil spring 44, and the second pivot shaft 43b moves leftward in fig. 10 along the elongated hole 37b of the lock member 37. Therefore, as the second support shaft 43b of the arm member 43 moves along the elongated hole 37b, the lock member 37 pivots about the support shaft 37a, and the plurality of recesses 38 aligned along the lower end portion of the lock member 37 descend toward the projection 36a of the engagement member 36 provided on the mounting table 22. By lowering the plurality of recesses 38 of the lock member 37, the projection 36a enters any one of the recesses 38 according to the position of the table 22, and the recess 38 engages with the projection 36a, whereby the movement of the table 22 is regulated by the lock member 37.
This can prevent the placement table 22 from moving due to vibration or impact during conveyance of the banknote storage device 14, and can therefore suppress disturbance of the banknotes 6 accumulated on the placement table 22. That is, when the banknote storage device 14 is detached from the mounting portion 18, the roller member 41 separated from the top plate 18a moves outward of the housing member 21, and the locking mechanism 26 is thereby brought into a locked state in which the mounting table 22 is restricted.
The operating mechanism 27 in the present embodiment is arranged such that the roller member 41 moves in the vertical direction (Z direction), but the arrangement of the operating mechanism 27 is not limited. The operating mechanism 27 may be disposed such that the roller member 41 moves in the horizontal direction (direction along the X-Y plane), for example, or the disposition of the lock mechanism 26 may be appropriately changed according to the disposition of the operating mechanism 27. Similarly, the mounting portion 18 is not limited to the structure having the top plate 18a in contact with the roller member 41, and may be configured such that the roller member 41 is in contact with the side surface (X-Z plane), for example.
(effects of the embodiment)
As described above, the banknote storage device 14 according to the embodiment includes: a spring member 25 that urges the mounting table 22 so that the mounting table 22 moves toward the banknote 6; a lock mechanism 26 that restricts movement of the table 22; and an operating mechanism 27 that operates the lock mechanism 26. When the case member 21 is attached to the attachment portion 18, the operating mechanism 27 contacts the top plate 18a of the attachment portion 18, and causes the lock mechanism 26 to operate so as to release the restriction of the movement of the mounting table 22, and when the case member 21 is detached from the attachment portion 18, the operating mechanism 27 separates from the top plate 18a of the attachment portion 18, and causes the lock mechanism 26 to operate so as to restrict the movement of the mounting table 22. Accordingly, when the banknote storage device 14 is detached from the mounting portion 18, the movement of the mounting table 22 is restricted by the lock mechanism 26, and therefore, it is possible to suppress the occurrence of disturbance in the banknotes 6 stacked on the mounting table 22 due to vibration or impact at the time of conveying the banknote storage device 14 and the like.
Further, the operating mechanism 27 in the banknote storage device 14 according to the embodiment includes: a roller member 41 that contacts along the top plate 18a of the mounting portion 18; and an arm member 43 that rotates by contact of the roller member 41 with the top plate 18 a. By providing the roller member 41 in this way, even when the banknote storage device 14 is attached to and detached from the mounting portion 18 from either of the two sides (front and rear) in the X direction, the roller member 41 can be smoothly pushed into the case member 21 by the top plate 18 a. Therefore, the banknote storage device 14 can cope with the attachment and detachment operations in both directions to and from the mounting portion 18, and is not restricted by the attachment and detachment directions to and from the mounting portion 18, and the degree of freedom of the structure of the mounting portion 18 of the banknote handling device 1 is improved.
The lock mechanism 26 in the banknote storage device 14 according to the embodiment includes the engagement member 36 provided on the mounting table 22, and the lock member 37 rotatably supported by the housing member 21 and engaged with the engagement member 36, and the lock mechanism 26 is provided inside the housing member 21. The locking member 37 is coupled to the arm member 43. Accordingly, the lock mechanism 26 and the operating mechanism 27 can be realized by a simple link structure, and the lock mechanism 26 and the operating mechanism 27 can be disposed by effectively utilizing the empty space inside the case member 21, so that the case member 21 and the banknote storage device 14 can be prevented from being enlarged.
In the lock mechanism 26 of the banknote storage device 14 according to the embodiment, the engaging member 36 has a triangular projection 36a that engages with the lock member 37, and the lock member 37 has: a plurality of recesses 38 arranged along the moving direction of the mounting table 22 and engaged with the protrusions 36 a; and a plurality of partition walls 39 respectively provided between the adjacent recesses 38. Accordingly, when the projection 36a of the engaging member 36 is engaged with the recess 38, the partition wall 39 slides along the oblique side of the triangular projection 36a, and when the tip of the projection 36a contacts the partition wall 39 of the recess 38, the partition wall 39 slides along the oblique side of the triangular projection 36a, whereby the projection 36a can be smoothly engaged with the recess 38. Therefore, regardless of the position of the table 22 moving in the storage space 21a, the movement of the table 22 can be smoothly regulated by the lock member 37.
In the lock mechanism 26 of the banknote storage device 14 according to the embodiment, the plurality of concave portions 38 and the plurality of partition walls 39 are formed in the lock member 37 such that the positions of the concave portions 38 that engage with the protrusions 36a are shifted by 1 position every 100 sheets of banknotes 6 stacked on the mounting table 22. Accordingly, the protrusions 36a of the platform 22 that move with a change in the accumulation amount of the banknotes 6 are each appropriately engaged with the respective recesses 38 of the lock member 37, and therefore, the platform 22 that moves in the storage space 21a can be smoothly restricted. Further, this can further appropriately suppress the occurrence of disturbance of the banknotes 6 stacked on the mounting table 22 restricted by the lock member 37 due to vibration or impact applied to the banknote storage device 14.
The banknote storage device 14 according to the embodiment further includes an impeller 23 that conveys the banknotes 6 fed from the feed-in port 21d of the housing member 21 and accumulates the banknotes 6 on the mounting table 22. The mounting table 22 is provided to be movable in a horizontal direction (a direction along the X-Y plane), and a mounting surface 22a on which the banknotes 6 are stacked is inclined with respect to the vertical direction. In this way, when the mounting surface 22a of the mounting table 22 is inclined, the bills 6 accumulated on the mounting surface 22a are likely to be disturbed, and thus the effect of restricting the mounting table 22 by the lock mechanism 26 is remarkable. Therefore, the occurrence of disturbance of the banknotes 6 stacked on the mounting table 22 during conveyance or the like of the banknote storage device 14 can be effectively suppressed.
Description of the reference symbols
1 paper money processing device (paper sheet processing device)
6 paper currency (paper type)
14 storage part, paper money storage device (paper storage device)
15a conveying path
18 mounting part
18a roof (inner surface)
21 housing part
21a housing space
21d feeding port
22 platform
22a carrying surface
23 impeller
24 support mechanism
25 spring component
26 locking mechanism
27 actuating mechanism
36 engaging member
36a protrusion
37 locking member
38 recess
39 partition wall
41 roller component
43 arm part

Claims (7)

1. A paper sheet storage device includes:
a housing member having a storage space for storing sheets;
a loading table for accumulating the paper sheets;
a support mechanism that supports the table so as to be movable along a direction in which the sheets are accumulated;
a spring member that urges the mounting table so as to move the mounting table to a side where the paper sheet enters;
a lock mechanism that restricts movement of the mounting table; and
an operating mechanism for operating the locking mechanism,
the case member is detachably mounted to the mounting portion,
the operating mechanism operates the lock mechanism to release the restriction of the movement of the mounting table by coming into contact with the inner surface of the mounting portion when the housing member is mounted to the mounting portion, and operates the lock mechanism to restrict the movement of the mounting table by separating from the inner surface of the mounting portion when the housing member is dismounted from the mounting portion.
2. The paper sheet storage device according to claim 1,
the operating mechanism includes:
a roller member in contact with an inner surface of the mounting portion along the inner surface; and
an arm member that rotates by contact of the roller member with the inner surface.
3. The paper sheet storage device according to claim 2,
the lock mechanism has:
an engaging member provided on the mounting table; and
a lock member rotatably supported by the case member and engaged with the engagement member,
the locking mechanism is disposed inside the housing member,
the locking member is coupled to the arm member.
4. The paper sheet storage device according to claim 3,
the engaging member has a triangular projection engaged with the lock member,
the locking member has a plurality of recesses into which the protrusions are engaged, the recesses being aligned in the moving direction of the table, and a plurality of partitions provided between the recesses adjacent to each other.
5. The paper sheet storage device according to claim 4,
the lock member is formed with the plurality of concave portions and the plurality of partition walls so that the position of the concave portion engaged with the projection is shifted by 1 position every time the number of sheets of paper stacked on the mounting table changes by a predetermined number.
6. The paper sheet storage device according to claim 1, further comprising:
an inlet port provided in the case member and configured to feed the sheet-like material into the case member; and
an impeller that conveys the paper sheets fed from the feed port and accumulates the paper sheets on the mounting table,
the mounting table is provided to be movable in a horizontal direction, and a mounting surface on which the paper sheets are stacked is inclined with respect to a vertical direction.
7. A paper sheet handling apparatus includes:
the paper sheet storage device according to claim 1;
the mounting part; and
and a conveyance path that conveys the paper sheets to the paper sheet storage device.
CN202080087228.2A 2020-01-27 2020-01-27 Paper sheet storage device and paper sheet processing device Active CN114846528B (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/JP2020/002789 WO2021152666A1 (en) 2020-01-27 2020-01-27 Paper sheet storing device and paper sheet handling device

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