An automated note processing apparatus

By designing an automated banknote processing device, the coordinated movement of the mounting blocks driven by the left and right rotating shafts solves the problem of low printing efficiency of coin column paper rings, enabling fast and large-volume coin column printing.

CN116691191BActive Publication Date: 2025-12-12HEBEI HUIJIN ELECTROMECHANICAL
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Patent Information

Application Number
CN202310840480.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-07-10
Publication Date
2025-12-12
Estimated Expiration
2043-07-10

AI Technical Summary

Technical Problem

The existing method of printing coins on paper rings is inefficient and makes it difficult to process large quantities of cash.

Method used

Design an automated banknote processing device that uses left and right rotating shafts to drive the coordinated movement of mounting blocks to clamp the coin column and press the stamp. Combined with the design of inclined slides and inclined plates, it enables rapid printing of coin columns.

Benefits of technology

It enables rapid, high-volume stamping and printing of coin pillars, improving work efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to a kind of automatic cash processing equipment, including rack, left rotation shaft and right rotation shaft;When needing to print on coin column, driving member drives right rotation shaft to rotate clockwise, during the movement of right rotation shaft, clamping action is pressed to the ring wall of the last coin column and is printed, so that the last coin column is stamped and printed, driving member drives right rotation shaft to rotate counterclockwise, the bottom of left mounting block and right mounting block gradually separates, the top of left mounting block and right mounting block gradually approaches, the first vertical surface and the second vertical surface are vertically parallel, the last coin column falls on the inclined plate, and at this time, the last coin column upstream adjacent coin column is erected on the first circular surface and the second circular surface, repeat the above action, and the structure realizes the fast, large batch processing coin column stamping.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of banknote processing, and particularly relates to an automatic banknote processing device. BACKGROUND

[0002] Banknotes are the collective term for paper currency and coins, wherein the coins are currencies made of metal. The process of coin production is relatively complex and the requirements are relatively strict. The coin production process is casting, making a blank, a heat treatment stage of the blank, rolling the edge, and packaging the finished product. The existing coin packaging processing mode is to wrap a certain amount of coins in paper, and the coins wrapped in the paper form a coin column, as shown in the prior art coin column structure diagram. Figure 1 The completion of the packaging of the coin column 1 prints some information on the paper ring wall, such as the number of coins, the time of manufacture, the value of a single coin, etc. The existing printing method on the paper ring wall is to manually hold a seal to print on the paper ring wall. However, the manual printing method on the paper ring wall has low work efficiency and it is difficult to realize mass processing of banknotes. SUMMARY

[0003] The main purpose of the present application is to provide an automatic banknote processing device to solve the problem of low work efficiency of the printing method on the paper ring wall.

[0004] In order to achieve the above purpose, the present application provides an automatic banknote processing device, comprising a rack, a left rotating shaft and a right rotating shaft;

[0005] The top of the rack is obliquely provided with an inclined slide for placing the coin column;

[0006] The left rotating shaft is arranged on the rack along the width of the inclined slide. The left rotating shaft is fixedly sleeved with a left mounting block, and one end is fixedly sleeved with a driven plate. The driven plate is provided with a strip-shaped through slot. One side of the left mounting block is a first vertical surface. The first vertical surface is provided with a first circular surface along the axial direction of the left rotating shaft. The first vertical surface is provided with a first seal located directly below the first circular surface;

[0007] The right rotating shaft is rotatably arranged on the rack along the axial direction of the left rotating shaft. The right rotating shaft is fixedly sleeved with a right mounting block, and one end is fixedly sleeved with a driving plate. One end of the driving plate is fixedly provided with a driving rod. One end of the driving rod is inserted into the strip-shaped through slot. One side of the right mounting block is a second vertical surface. The second vertical surface is provided with a second circular surface along the axial direction of the right rotating shaft. The right rotating shaft is provided with a rotating shaft driving member for driving the right rotating shaft.

[0008] The first vertical surface and the second vertical surface are oppositely arranged and spaced apart from the second vertical surface to form a falling channel. The falling channel is located at the downstream end of the inclined slide. An inclined plate is arranged directly below the falling channel.

[0009] A preferred scheme is that the driving member comprises a sleeve plate and a first cylinder, one end of the sleeve plate is fixedly sleeved on the right rotating shaft, the other end of the sleeve plate is hingedly connected with a piston rod of the first cylinder, and a cylinder base of the first cylinder is hingedly connected with the frame.

[0010] A preferred scheme is that side plates are arranged on both sides of the falling channel.

[0011] A preferred scheme is that the top of the two side plates is fixedly provided with a baffle, and the baffle is located directly above the right mounting block.

[0012] A preferred scheme is that the second vertical surface is provided with a second seal, the second seal is located directly below the second circular arc surface, and the first seal and the second seal are oppositely arranged.

[0013] A preferred scheme is that the first vertical surface and the first vertical surface are both provided with a plurality of flexible protrusions.

[0014] The plurality of flexible protrusions of the first vertical surface are distributed around the first seal.

[0015] The plurality of flexible protrusions of the second vertical surface are distributed around the second seal.

[0016] The above scheme has the beneficial effects that: firstly, the plurality of coin columns are arranged side by side on the inclined slide, each coin column is arranged along the axial direction of the left rotating shaft, in the initial state, the first vertical surface and the second vertical surface are arranged vertically and in parallel, the last coin column of the plurality of coin columns is arranged on the first circular surface and the second circular surface, when it is necessary to print the coin column, the driving member starts to work, the driving member drives the right rotating shaft to rotate clockwise, the driving rod is arranged fixedly at one end of the driving plate, and the driving rod is arranged to pass through the strip-shaped through groove, so that the driving rod drives the driven plate to rotate, the driven plate drives the left mounting block to rotate through the left rotating shaft, in the movement process of the right rotating shaft, the bottom of the left mounting block and the right mounting block gradually approaches, the top of the left mounting block and the right mounting block gradually moves away, when the top of the left mounting block and the right mounting block gradually moves away by a certain distance, the last coin column falls between the bottom of the left mounting block and the right mounting block, and the bottom of the left mounting block and the right mounting block gradually approaches, so that the last coin column has a clamping action, the ring wall of the last coin column is pressed and printed in the clamping action, so that the stamping and printing of the last coin column is completed, the coin column adjacent to the last coin column upstream of the last coin column abuts against the last coin column, further, the driving member starts to work, the driving member drives the right rotating shaft to rotate counterclockwise, the driving rod is arranged fixedly at one end of the driving plate, and the driving rod is arranged to pass through the strip-shaped through groove, so that the driving rod drives the driven plate to rotate, the driven plate drives the left mounting block to rotate through the left rotating shaft, in the movement process of the right rotating shaft, the bottom of the left mounting block and the right mounting block gradually separates, and the top of the left mounting block and the right mounting block gradually approaches, when the first vertical surface and the second vertical surface are arranged vertically and in parallel, the last coin column falls on the inclined plate, at this time, the coin column adjacent to the last coin column upstream of the last coin column is arranged on the first circular surface and the second circular surface, thereby, the above action is repeated, and the structure realizes rapid and large-batch processing of the coin column stamping. BRIEF DESCRIPTION OF DRAWINGS

[0017] The application will be further described in detail below in combination with the drawings and specific embodiments.

[0018] Figure 1 is a coin column structure schematic diagram in the prior art;

[0019] Figure 2 is a three-dimensional structure schematic diagram of the automatic banknote processing equipment of the application;

[0020] Figure 3 is a first state cross-sectional state structure schematic diagram of the automatic banknote processing equipment of the application;

[0021] Figure 4 is a second state cross-sectional state structure schematic diagram of the automatic banknote processing equipment of the application;

[0022] Figure 5 is Figure 4 another view structure schematic diagram of the application.

[0023] Explanation of reference numerals in the attached figures

[0024] 1. Coin post; 10. Frame; 11. Inclined slide; 20. Left pivot; 21. Left mounting block; 22. Driven plate; 220. Strip groove; 210. First vertical surface; 23. First arc surface; 24. First stamp; 30. Right pivot; 31. Right mounting block; 32. Drive plate; 33. Drive rod; 310. Second vertical surface; 34. Second arc surface; 40. Drive component; 50. Falling channel; 13. Inclined plate; 41. Sleeve plate; 42. First cylinder; 15. Side plate; 16. Baffle plate; 35. Second stamp; 60. Flexible protrusion. Detailed Implementation

[0025] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Many specific details are set forth in the following description to provide a thorough understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Those skilled in the art can make similar extensions without departing from the spirit of the present invention. Therefore, the present invention is not limited to the specific embodiments disclosed below.

[0026] First embodiment:

[0027] like Figures 1 to 5 As shown, this embodiment provides an automated cash handling device, including a frame 10, a left rotating shaft 20, and a right rotating shaft 30. The top of the frame 10 is inclined with a sliding rail 11 for placing coin posts 1. The left rotating shaft 20 is rotatably mounted on the frame 10 along the width of the sliding rail 11. A left mounting block 21 is fixedly fitted onto the left rotating shaft 20, and a driven plate 22 is fixedly fitted onto one end. The driven plate 22 has a strip-shaped through slot 220, such as... Figure 4 As shown, one side of the left mounting block 21 is a first vertical surface 210. The first vertical surface 210 has a first arc surface 23 along the axial direction of the left rotating shaft 20. A first stamp 24 is positioned on the first vertical surface 210, directly below the first arc surface 23. The right rotating shaft 30 is mounted on the frame 10 along the width of the inclined slide 11. The right rotating shaft 30 is fixedly fitted with the right mounting block 31, and one end is fixedly fitted with a drive plate 32. One end of the drive plate 32 is fixedly fitted with a driving rod 33, one end of which passes through a strip-shaped through groove 220. One side of the right mounting block 31 is a second vertical surface 310. The second vertical surface 310 has a second arc surface 34 along the axial direction of the right rotating shaft 30. The right rotating shaft 30 is equipped with a shaft drive component 40 for driving its rotation. Figure 3As shown, the driving member 40 comprises a sleeve plate 41 and a first cylinder 42, one end of the sleeve plate 41 is fixedly sleeved on the right rotating shaft 30, the other end of the sleeve plate 41 is hinged with a piston rod of the first cylinder 42, and a cylinder base of the first cylinder 42 is hinged with the frame 10. Wherein, the first vertical surface 210 is oppositely arranged with the second vertical surface 310, and the interval between the first vertical surface 210 and the second vertical surface 310 forms a falling channel 50, the falling channel 50 is located at the downstream end of the inclined slide 11, and the obliquely arranged plate 13 is arranged directly below the falling channel 50.

[0028] The width of the falling channel 50 is greater than the diameter of the coin column 1.

[0029] Wherein, the first circular arc surface 23 and the second circular arc surface 34 are located at the same height.

[0030] First, a plurality of coin columns 1 are arranged side by side on the inclined slide 11, each coin column 1 is arranged along the axial direction of the left rotating shaft 20, in the initial state, the first vertical surface 210 and the second vertical surface 310 are arranged vertically parallel, the last coin column 1 of the plurality of coin columns 1 is arranged on the first circular arc surface 23 and the second circular arc surface 34, when it is needed to print the coin column 1, the driving part 40 starts to work, the driving part 40 drives the right rotating shaft 30 to rotate clockwise, through the driving plate 32 fixedly arranged at one end of the driving rod 33 and the driving rod 33 passing through the strip-shaped through slot 220, the driving rod 33 is arranged on the top of the driven plate 22, the driven plate 22 drives the left mounting block 21 to rotate through the left rotating shaft 20, in the process of the right rotating shaft moving, the bottom of the left mounting block 21 and the right mounting block 31 gradually approaches, the top of the left mounting block 21 and the right mounting block 31 gradually moves away, when the top of the left mounting block 21 and the right mounting block 31 gradually moves away a certain distance, the last coin column 1 falls between the bottom of the left mounting block 21 and the right mounting block 31, at the same time, the bottom of the left mounting block 21 and the right mounting block 31 gradually approaches, so that the last coin column 1 has a clamping action, in this clamping action, the ring wall of the last coin column 1 is pressed and printed, in this way, the stamping and printing of the last coin column 1 is completed, the coin column 1 adjacent to the last coin column 1 upstream is abutted on the last coin column 1, further, the driving part 40 starts to work, the driving part 40 drives the right rotating shaft 30 to rotate counterclockwise, through the driving plate 32 fixedly arranged at one end of the driving rod 33 and the driving rod 33 passing through the strip-shaped through slot 220, the driving rod 33 is arranged on the top of the driven plate 22, the driven plate 22 drives the left mounting block 21 to rotate through the left rotating shaft 20, in the process of the right rotating shaft moving, the bottom of the left mounting block 21 and the right mounting block 31 gradually separates, the top of the left mounting block 21 and the right mounting block 31 gradually approaches, when the first vertical surface 210 and the second vertical surface 310 are arranged vertically parallel, the last coin column 1 falls on the inclined plate 13, at this time, the coin column 1 adjacent to the last coin column 1 upstream is arranged on the first circular arc surface 23 and the second circular arc surface 34, in this way, the above-mentioned action is repeated, through the structure, the stamping and printing of the coin column 1 is realized quickly and in large quantities.

[0031] The side plates 15 are arranged on both sides of the falling channel 50. The side plates 15 limit the movement track of the coin column 1.

[0032] The baffles 16 are fixedly arranged on the top of the two side plates 15, and the baffles 16 are located directly above the right mounting block 31.

[0033] Second embodiment:

[0034] As Figure 4The second vertical surface 310 is provided with a second stamp 35, which is located directly below the second circular arc surface 34, and the first stamp 24 is oppositely arranged with the second stamp 35. The first stamp 24 and the second stamp 35 are oppositely arranged, so that the paper ring wall of the coin column 1 can be synchronously printed on both sides.

[0035] As shown in Figure 5 The first vertical surface 210 and the first vertical surface 210 are both provided with a plurality of flexible protrusions 60;

[0036] The plurality of flexible protrusions 60 of the first vertical surface 210 are distributed around the first stamp 24;

[0037] The plurality of flexible protrusions 60 of the second vertical surface 310 are distributed around the second stamp 35. The flexible protrusions 60 are provided to make the printing more stable and clearer.

[0038] Other embodiments:

[0039] The first stamp 24 is detachably arranged on the left mounting block 21, and the second stamp 35 is detachably arranged on the right mounting block 31. The bottom end of the left mounting block 21 is provided with a first through hole, and the first stamp 24 is bolted on the first through hole;

[0040] The bottom end of the right mounting block 31 is provided with a second through hole, and the second stamp 35 is bolted on the second through hole. In this way, the first stamp and the second stamp can be detachably arranged, and the type of stamp can be quickly replaced.

[0041] Obviously, the described embodiments are only part of the embodiments of the present application, not all. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor belong to the scope of protection of the present application.

Claims

1. An automated note processing apparatus, characterized by, The utility model relates to a coin counting machine, including: A rack, the top of the rack is obliquely arranged for placing the oblique slide way of the coin column; The left rotating shaft is arranged on the rack along the width of the oblique slide way, the left rotating shaft is fixedly sleeved with the left mounting block, and one end is fixedly sleeved with the driven plate, the driven plate is provided with a strip-shaped through slot, one side of the left mounting block is a first vertical surface, the first vertical surface is provided with a first circular surface along the axial direction of the left rotating shaft, and the first vertical surface is provided with a first seal located below the first circular surface; The right rotating shaft is arranged on the rack along the axial direction of the left rotating shaft, the right rotating shaft is fixedly sleeved with the right mounting block, and one end is fixedly sleeved with the driving plate, one end of the driving plate is fixedly provided with the driving rod, one end of the driving rod penetrates the strip-shaped through slot, one side of the right mounting block is a second vertical surface, the second vertical surface is provided with a second circular surface along the axial direction of the right rotating shaft, and the right rotating shaft is provided with a driving member for driving the rotating shaft; Wherein, the first vertical surface and the second vertical surface are oppositely arranged, and the spacing between the first vertical surface and the second vertical surface forms a falling channel, the falling channel is located at the downstream end of the oblique slide way, and an inclined plate is arranged below the falling channel.

2. The automated processed currency handling apparatus of claim 1 wherein, The driving member includes a sleeve plate and a first cylinder, one end of the sleeve plate is fixedly sleeved on the right rotating shaft, the other end of the sleeve plate is hinged with the piston rod of the first cylinder, and the cylinder base of the first cylinder is hinged with the rack.

3. The automated processed currency handling apparatus according to claim 1 wherein, Both sides of the falling channel are provided with side plates.

4. The automated processed currency handling apparatus according to claim 3 wherein, The top of the two side plates is fixedly provided with a baffle, and the baffle is located above the right mounting block.

5. The automated processed currency handling apparatus according to claim 1 wherein, The second vertical surface is provided with a second seal, and the second seal is located below the second circular surface, and the first seal and the second seal are oppositely arranged.

6. The automated processed currency handling apparatus according to claim 5 wherein, The first vertical surface and the first vertical surface are provided with a plurality of flexible protrusions; The plurality of flexible protrusions of the first vertical surface are distributed around the first seal; The plurality of flexible protrusions of the second vertical surface are distributed around the second seal.

Citation Information

Patent Citations

  • Fully-automatic paper money and coin sorting machine and sorting method thereof

    CN107845186A

  • Ink box structure of buoy coloring machine

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