Banknote inlet adjustable type driving banknote conveying structure

By designing an adjustable active banknote conveying structure at the banknote inlet, the problems of low banknote counting efficiency and poor banknote feeding smoothness in traditional banknote sorting machines are solved. This achieves efficient and continuous banknote feeding and flexible angle adjustment, making it suitable for sorting machines of various banknote types.

CN223728278UActive Publication Date: 2025-12-26SHENYANG CBPM & XINDA BANKING EQUIP CO LTD
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Patent Information

Application Number
CN202520163425.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-23
Publication Date
2025-12-26
Estimated Expiration
2035-01-23

AI Technical Summary

Technical Problem

Traditional banknote sorting machines have low counting efficiency at the banknote inlet, poor banknote dispensing continuity, and the different angles at which banknotes enter the banknote feeding mechanism affect the smoothness of banknote dispensing.

Method used

Design an adjustable active banknote conveying structure with an adjustable banknote inlet. By combining a banknote feeding wheel, a banknote delivery wheel, and a synchronous conveyor belt, the banknote dropping angle can be adjusted to ensure that the banknotes smoothly enter the detection channel.

Benefits of technology

It improves the speed and continuity of banknote counting, adapts to different banknotes of different ages and denominations, ensures that banknotes enter the detection channel smoothly, is suitable for various banknote types, and its modular structure facilitates installation and debugging.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of sorters, and discloses a banknote inlet adjustable type driving banknote conveying structure, which comprises a banknote feeding shaft assembly and an arranged banknote feeding shaft assembly, the banknote feeding shaft assembly comprises a banknote feeding wheel shaft, the surface of the banknote feeding wheel shaft is respectively provided with a banknote feeding wheel and a banknote feeding belt wheel, the banknote feeding shaft assembly comprises a banknote feeding shaft, and the banknote feeding shaft is connected with the banknote feeding belt wheel. The surface of the banknote feeding shaft is respectively connected with a banknote feeding shaft upper belt wheel and a banknote feeding wheel, and a transmission synchronous belt is connected between the banknote feeding belt wheel and the banknote feeding shaft upper belt wheel; the surfaces of the first supporting plate and the second supporting plate are provided with a first banknote feeding wheel assembly positioning hole and a second banknote feeding wheel assembly positioning hole. According to the driving paper money conveying structure with the adjustable paper money inlet, the paper money feeding shaft, the belt wheel and the paper money conveying belt wheel drive the paper money conveying wheel shaft and paper money to enter the paper money counting channel through the conveying synchronous belt, the second paper money conveying wheel assembly positioning hole is adjusted, the first paper money conveying wheel assembly positioning hole and the second paper money conveying wheel assembly positioning hole are fixed, and the paper money discharging angle is changed.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a clearing machine technical field, concretely is a kind of adjustable active banknote conveying structure of entry. BACKGROUND

[0002] The clearing machine is a kind of equipment specially used for currency counting, classification, counting, detection and other functions, also known as banknote clearing machine, cash clearing machine, currency clearing machine or paper currency sorting machine. The clearing machine is a kind of financial machine product, which entered China in the mid-1990s. It classifies and counts according to different characteristics of paper currency or coins to improve the accuracy and efficiency of financial transactions. The clearing machine is widely used in banks, supermarkets, post offices, self-service ticket machines, automatic teller machines, vending machines and other occasions. It not only improves the work efficiency of people, but also reduces the contact of people with currency, and protects the safety and hygiene of currency. The clearing machine is a kind of powerful, efficient and convenient financial machine product. It plays an important role in the financial industry and daily life, and provides people with more convenient, safe and efficient currency processing methods.

[0003] The traditional clearing machine, due to the different widths of banknotes of different denominations, the different numbers of banknotes placed on the entry tray, the different force points, the low banknote counting efficiency of the entry, the poor continuity of the banknote and the different angles of the banknote entering the twisting mechanism, etc. For this reason, an adjustable active banknote conveying structure of entry is proposed. UTILITY MODEL CONTENT

[0004] (I) Technical problem solved

[0005] In view of the deficiencies of the prior art, the utility model provides an adjustable active banknote conveying structure of entry to solve the above-mentioned technical problems of low banknote counting efficiency of the entry, poor continuity of the banknote and different angles of the banknote entering the twisting mechanism, etc.

[0006] (II) Technical scheme

[0007] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: an adjustable active banknote conveying structure of entry, comprising:

[0008] A banknote feeding shaft assembly is arranged on the inner side of the banknote feeding shaft assembly, and the banknote feeding shaft assembly comprises a banknote feeding shaft, and the surface of the banknote feeding shaft is connected with a banknote feeding shaft upper belt pulley and a banknote feeding wheel, and a conveying synchronous belt is connected between the banknote feeding belt pulley and the banknote feeding shaft upper belt pulley, and an entry banknote placing tray is additionally arranged on the outer side of the banknote feeding shaft assembly.

[0009] The upper channel supporting plate is arranged on the outer side of the resistance wheel assembly, and the upper surface of the upper channel supporting plate is additionally provided with a passive counter-rotating shaft assembly, and the lower surface of the passive counter-rotating shaft assembly is additionally provided with a lower channel supporting plate, and the lower surface of the lower channel supporting plate is provided with an active conveying shaft assembly, and the lower portion of the resistance wheel assembly is additionally provided with a twisting shaft assembly.

[0010] The first supporting plate and the second supporting plate are arranged at the two ends of the feeding shaft assembly, and the surfaces of the first supporting plate and the second supporting plate are both provided with a first feeding wheel assembly positioning hole and a second feeding wheel assembly positioning hole. By placing the banknotes on the feeding supporting plate of the banknote inlet, the feeding shaft is rotated, the feeding belt wheel and the feeding belt wheel on the feeding shaft drive the feeding wheel shaft to rotate through the conveying synchronous belt, and the banknotes are driven into the banknote detection channel, the feeding wheel and the feeding wheel are operated, and the banknotes are driven to the tangent position of the twisting shaft assembly and the resistance wheel assembly, the twisting shaft assembly continues to drive the banknotes to run, and the banknotes are driven to continue to run by the active conveying shaft assembly and the passive counter-rotating shaft assembly, the second feeding wheel assembly positioning hole is adjusted, and after the adjustment is completed, the first feeding wheel assembly positioning hole and the second feeding wheel assembly positioning hole are fixed, the banknote downward angle is changed, and the smooth downward feeding of the banknotes is achieved. According to the new and old, denomination and the like of the banknotes, the banknote downward angle is adjusted, and the effects of special banknote downward feeding, continuous and high efficiency are achieved. Since the placed banknotes contact the feeding wheel and the feeding wheel, the angle of the placed banknotes will change after the position of the feeding wheel is changed, the feeding angle determines the banknote downward angle, and each banknote is directly fed to the twisting wheel position, and then smoothly enters the detection channel. On the one hand, not only the smooth downward feeding of the banknotes and the improvement of the banknote detection speed are ensured, but also the downward feeding angle can be flexibly adjusted and the smooth downward feeding of the banknotes is ensured; on the other hand, the mechanism can be used for various soft banknotes, new banknotes and plastic banknotes, and since the modular structure is convenient to install and debug.

[0011] Preferably, the first supporting plate and the second supporting plate are connected with a ruler fixing frame, and the surface of the ruler fixing frame is respectively provided with a first ruler and a second ruler. The banknotes can be limited and ensured to be centered and downward fed.

[0012] Preferably, the positions and shape relationships of the first ruler and the second ruler correspond to each other, and the first ruler and the second ruler are connected with the ruler fixing frame. The first ruler and the second ruler are fixed on the ruler fixing frame, and the ruler fixing frame is fixed on the first supporting plate and the second supporting plate, so that the connection stability is ensured.

[0013] Preferably, the lower portion of the feeding wheel shaft is additionally provided with a feeding wheel shaft fixing frame, and the feeding wheel shaft and the feeding wheel shaft fixing frame are connected through a bearing. The feeding wheel shaft rotates on the feeding wheel shaft fixing frame through the bearing.

[0014] (Three) beneficial effects

[0015] Compared with the prior art, the utility model provides a banknote inlet adjustable active banknote conveying structure, has the following beneficial effects:

[0016] The banknote inlet adjustable active banknote conveying structure, through placing the banknote on the banknote feeding support plate of the banknote inlet, rotating the feeding shaft, driving the feeding wheel shaft to rotate through the transmission synchronous belt of the belt wheel and the feeding belt wheel on the feeding shaft, driving the banknote to enter the banknote counting channel, rotating the feeding wheel and the feeding wheel, driving the banknote to the tangent position of the banknote twisting shaft assembly and the resistance wheel assembly, continuing to drive the banknote to run by the banknote twisting shaft assembly, entering the upper support plate and the lower support plate in the channel, continuing to drive the banknote to run by the driving and driven shaft assemblies, adjusting the positioning hole of the second feeding wheel assembly, after the adjustment is completed, fixing the positioning hole of the first feeding wheel assembly and the positioning hole of the second feeding wheel assembly, changing the banknote downward angle, achieving the smooth banknote downward purpose. According to the old and new, denomination and the like of the banknote, the banknote downward angle is adjusted, the special banknote downward fluent and continuous high efficiency effect can be achieved. Since the placed banknote contacts the feeding wheel and the feeding wheel, after the position of the feeding wheel is changed, the angle of the placed banknote will be changed, the banknote downward angle is determined by the feeding angle, and each banknote is sent to the banknote twisting wheel and directly enters the banknote twisting tangent position, and then smoothly enters the detection channel. The banknote downward fluent and the counting speed are ensured, the banknote downward angle is flexibly adjusted, and the banknote downward fluent is ensured. Meanwhile, the mechanism can use various soft banknotes, new banknotes and plastic banknotes, and adopts the modular structure, so that installation and debugging are facilitated. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is the whole structure schematic view of the utility model;

[0018] Figure 2 It is the first support plate and the second support plate and the connection structure schematic view thereof of the utility model;

[0019] Figure 3 It is the feeding shaft assembly connection structure schematic view of the utility model;

[0020] Figure 4 It is the feeding shaft assembly connection structure schematic view of the utility model;

[0021] Figure 5 It is the feeding wheel assembly adjustment movement track schematic view of the utility model.

[0022] In the figure: 1, the money feeding shaft assembly; 2, the money feeding shaft assembly; 3, the transmission synchronous belt; 4, the money feeding shaft assembly; 5, the money twisting shaft assembly; 6, the resistance wheel assembly; 7, the upper channel support plate; 8, the passive counter shaft assembly; 9, the lower channel support plate; 10, the active transmission shaft assembly; 11, the first support plate; 12, the first size stop; 13, the size stop fixing frame; 14, the second size stop; 15, the second support plate; 16, the money feeding wheel shaft; 17, the money feeding wheel; 18, the money feeding pulley; 19, the money feeding wheel shaft fixing frame; 20, the money feeding shaft upper pulley; 21, the money feeding wheel; 22, the first money feeding wheel assembly positioning hole; 23, the second money feeding wheel assembly positioning hole; 24, the money feeding shaft. DETAILED DESCRIPTION

[0023] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0024] The utility model provides a kind of technical solutions, a kind of active money feeding transmission structure of adjustable money inlet, comprising: Figure 1 、 Figure 3 、 Figure 4 、 Figure 5 Money feeding shaft assembly 1 and money feeding shaft assembly 4 are arranged on the inner side of money feeding shaft assembly 1, and money feeding shaft assembly 1 includes money feeding wheel shaft 16, and money feeding wheel 17 and money feeding pulley 18 are respectively installed on the surface of money feeding wheel shaft 16, money feeding shaft assembly 4 includes money feeding shaft 24, and money feeding shaft upper pulley 20 and money feeding wheel 21 are respectively connected to the surface of money feeding shaft 24, and transmission synchronous belt 3 is connected between money feeding pulley 18 and money feeding shaft upper pulley 20, and money feeding shaft assembly 1 is additionally provided with money inlet support plate 2 on the outer side;

[0025] Upper channel support plate 7 is arranged on the outer side of resistance wheel assembly 6, and passive counter shaft assembly 8 is additionally provided on the upper surface of upper channel support plate 7, and lower channel support plate 9 is additionally provided on the lower surface of passive counter shaft assembly 8, and active transmission shaft assembly 10 is arranged on the lower surface of lower channel support plate 9, and money twisting shaft assembly 5 is additionally provided below resistance wheel assembly 6;

[0026] Please refer to Figure 2The first support plate 11 and the second support plate 15 are located at both ends of the banknote feeding shaft assembly 1, and the surfaces of the first support plate 11 and the second support plate 15 are respectively provided with positioning holes 22 and 23 for the first banknote feeding wheel assembly. By placing banknotes on the banknote tray 2 at the banknote inlet, the banknote feeding shaft 24 rotates, and the upper pulley 20 and the banknote feeding pulley 18 on the banknote feeding shaft drive the banknote feeding wheel shaft 16 to rotate through the transmission synchronous belt 3, which drives the banknotes into the banknote counting channel. The banknote feeding wheel 17 and the banknote feeding wheel 21 rotate, which drives the banknotes to the tangential position of the banknote twisting shaft assembly 5 and the resistance wheel assembly 6. The banknote twisting shaft assembly 5 continues to drive the banknotes to enter the upper tray 7 and the lower tray 9 of the channel. The banknotes continue to run by the counter-rotating shaft assembly 10 and the passive counter-rotating shaft assembly 8. The positioning holes 23 of the second banknote feeding wheel assembly are adjusted. After the adjustment is completed, the positioning holes 22 and 23 of the first banknote feeding wheel assembly are fixed to change the banknote feeding angle and achieve the purpose of smooth banknote feeding. Adjusting the banknote dropping angle according to the banknote's condition, denomination, etc., achieves a smooth, continuous, and highly efficient banknote dropping process. Since the placed banknotes contact the banknote feeding roller 17 and the banknote feeding wheel 21, changing the position of the banknote feeding roller 17 changes the angle of the placed banknotes. The banknote feeding angle determines the banknote dropping angle. Each banknote, upon reaching the banknote twisting wheel, directly enters the twisting point and smoothly enters the detection channel. On one hand, this not only ensures smooth banknote dropping and increases counting speed but also allows for flexible adjustment of the dropping angle, guaranteeing smooth banknote dropping. The banknote tray 2 at the banknote inlet can hold more banknotes, also ensuring smooth banknote dropping. On the other hand, this institution can use various types of soft banknotes, new banknotes, and polymer banknotes. Furthermore, the modular structure facilitates installation and debugging.

[0027] Please see Figure 2 A ruler fixing frame 13 is connected between the first support plate 11 and the second support plate 15, and a first ruler 12 and a second ruler 14 are respectively provided on the surface of the ruler fixing frame 13. This can be used to limit the movement of banknotes and ensure that the banknotes are centered and placed correctly. The positions and shapes of the first ruler 12 and the second ruler 14 correspond, and the first ruler 12 and the second ruler 14 are connected to the ruler fixing frame 13. The first ruler 12 and the second ruler 14 are fixed to the ruler fixing frame 13, and the ruler fixing frame 13 is fixed to the first support plate 11 and the second support plate 15, thereby ensuring connection stability.

[0028] Please see Figure 3 A banknote feeding wheel axle 16 is provided with a banknote feeding wheel axle fixing bracket 19 at its lower part, and the banknote feeding wheel axle 16 and the banknote feeding wheel axle fixing bracket 19 are connected by bearings. This allows the banknote feeding wheel axle 16 to rotate on the banknote feeding wheel axle fixing bracket 19 via the bearings.

[0029] The scheme: by putting the banknote on the banknote feeding plate 2 of the banknote inlet, the feeding shaft 24 rotates, the pulley 20 and the feeding pulley 18 on the feeding shaft drive the feeding wheel shaft 16 to rotate through the transmission synchronous belt 3, drive the banknote into the banknote counting channel, the feeding wheel 17 and the feeding wheel 21 operate, drive the banknote to the tangent position of the banknote twisting shaft assembly 5 and the resistance wheel assembly 6, the banknote twisting shaft assembly 5 continues to drive the banknote to run, enters the upper supporting plate 7 and the lower supporting plate 9 in the channel, and is driven by the driving transmission shaft assembly 10 and the passive counter shaft assembly 8 to continue to run, the second feeding wheel assembly positioning hole 23 is adjusted, after the adjustment is completed, the first feeding wheel assembly positioning hole 22 and the second feeding wheel assembly positioning hole 23 are fixed, the banknote downward angle is changed, and the smooth banknote downward purpose is achieved. According to the new and old, denomination and the like of the banknote, the banknote downward angle is adjusted, the special banknote downward smooth, continuous and the like high efficiency effect can be achieved. Since the placed banknote contacts the feeding wheel 17 and the feeding wheel 21, after the position of the feeding wheel 17 is changed, the angle of the placed banknote will change, and the feeding angle determines the banknote downward angle.

[0030] It should be noted that the relational terms herein such as first and second and the like are used solely to distinguish one from another entity or action, without necessarily requiring or implying that the entities or actions are in any way mutually exclusive or in any way in a sequence, unless explicitly stated otherwise. Also, the terms "comprising," "including," or any other variation thereof are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.

[0031] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made thereto without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A banknote entry port adjustable active belt banknote conveying structure, characterized in that, The utility model relates to a banknote feeding device, including: The banknote feeding shaft assembly (1) and the banknote feeding shaft assembly (1) inside surface set up the banknote feeding shaft assembly (4), and the banknote feeding shaft assembly (1) includes the banknote feeding wheel shaft (16), and is installed respectively with the banknote feeding wheel (17) and the banknote feeding pulley (18) on the surface of banknote feeding wheel shaft (16), the banknote feeding shaft assembly (4) includes the banknote feeding shaft (24), and the surface of banknote feeding shaft (24) is connected with the banknote feeding shaft upper pulley (20) and the banknote feeding wheel (21) respectively, and is connected with the transmission synchronous belt (3) between the banknote feeding pulley (18) and the banknote feeding shaft upper pulley (20), the outer side of the banknote feeding shaft assembly (1) is equipped with the banknote inlet banknote supporting plate (2); The channel upper supporting plate (7) is set up on the outer side of the resistance wheel assembly (6), and the upper surface of the channel upper supporting plate (7) is equipped with the passive counter shaft assembly (8), and the lower surface of the passive counter shaft assembly (8) is equipped with the channel lower supporting plate (9), and the lower surface of the channel lower supporting plate (9) is provided with the active transmission shaft assembly (10), and the lower side of the resistance wheel assembly (6) is equipped with the banknote twisting shaft assembly (5); The first supporting plate (11) and the second supporting plate (15) are set up at both ends of the banknote feeding shaft assembly (1), and the surface of the first supporting plate (11) and the second supporting plate (15) are all provided with the first banknote feeding wheel assembly positioning hole (22) and the second banknote feeding wheel assembly positioning hole (23).

2. The adjustable active banknote conveying structure of the banknote inlet according to claim 1, characterized in that: The first supporting plate (11) and the second supporting plate (15) are connected with the ruler fixed frame (13), and the surface of the ruler fixed frame (13) is provided with the first ruler (12) and the second ruler (14) respectively.

3. The adjustable active banknote conveying structure of the banknote inlet according to claim 2, characterized in that: The position and shape relationship of the first ruler (12) and the second ruler (14) correspond, and the first ruler (12) and the second ruler (14) are connected with the ruler fixed frame (13).

4. The adjustable active banknote conveying structure of the banknote inlet according to claim 1, characterized in that: The lower part of the banknote feeding wheel shaft (16) is equipped with the banknote feeding wheel shaft fixed frame (19), and the banknote feeding wheel shaft (16) and the banknote feeding wheel shaft fixed frame (19) are connected through the bearing.