一种票币回收装置
The design of the return mechanism and storage box solved the problems of blockage and jamming in the banknote recycling device, and achieved stable transportation and efficient classification and storage of banknotes.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHIDAXIN AUTOMATION EQUIP CO LTD
- Filing Date
- 2025-07-18
- Publication Date
- 2026-07-17
AI Technical Summary
Existing banknote recycling devices are prone to clogging and jamming due to the soft texture of banknotes when identifying counterfeit banknotes or failing to identify them. Furthermore, during the sorting and storage process, banknotes can easily get stuck in the turning gaps due to changes in speed or angular deviations, causing equipment malfunctions.
The system employs an ejection mechanism, including an electric push rod, a clamping plate driven by a servo motor, and a rotating column, to clamp counterfeit or unidentifiable banknotes from the transport path and move them into the housing for discharge. Combined with a storage box, banknotes are classified and stored using irregularly shaped columns driven by a servo motor.
It reduces the chance of coin and ticket congestion, improves the operational stability of the equipment and the efficiency of coin and ticket classification and storage, and reduces the equipment failure rate.
Smart Images

Figure CN224519354U_ABST
Abstract
Claims
1. A banknote recycling device, comprising a storage box (1), a guide cylinder (2), a controller (3), a feeding port (4), a conveying mechanism (5), a first banknote recognition module (6), a second banknote recognition module (7), a discharging mechanism (8) and a touch panel (9), characterized in that: The upper side of the storage box (1) is fixed with a guide cylinder (2) and a controller (3), and the upper end of the guide cylinder (2) is provided with a feed port (4); the inside of the guide cylinder (2) is fixed with a transport mechanism (5), and the inner walls on both sides of the guide cylinder (2) are respectively fixed with a first coin recognition module (6) and a second coin recognition module (7), wherein the first coin recognition module (6) and the second coin recognition module (7) are respectively arranged; the inside of the guide cylinder (2) is fixed with a material ejection mechanism (8), wherein the material ejection mechanism (8) is arranged on the lower side of the first coin recognition module (6) and the second coin recognition module (7); the controller (3) is electrically connected to the transport mechanism (5), the first coin recognition module (6), the second coin recognition module (7), the material ejection mechanism (8) and the touch panel (9) through data lines, wherein the touch panel (9) is fixed on the outer side of the controller (3).
2. A banknote recycling apparatus as claimed in claim 1, wherein: The transport mechanism (5) includes a side plate (51), a roller (52), a conveyor belt (53), a gear set (54), and a first servo motor (55). There are two side plates (51), and both side plates (51) are fixed to the guide cylinder (2). Two rollers (52) are rotatably installed at both ends of the side plate (51), and the two rollers (52) at one end of the side plate (51) are connected by the gear set (54). Two conveyor belts (53) are wrapped around the two rollers (52) on the same side of the side plate (51), and the conveyor belts (53) are set at both ends of the rollers (52). One end of one of the rollers (52) is fixed to the output end of the first servo motor (55), and the base of the first servo motor (55) is fixed to the guide cylinder (2). The first servo motor (55) is electrically connected to the controller (3) through a data line. The first coin recognition module (6), the second coin recognition module (7), and the unloading mechanism (8) are all set between the corresponding conveyor belts.
3. A banknote recycling apparatus as defined in claim 1, characterized in that: The unloading mechanism (8) includes a first housing (81), a second housing (82), an electric push rod (83), a clamping plate (84), a telescopic column (85), a rotating column (86), and a second servo motor (87). The first housing (81) and the second housing (82) are respectively fixed on both sides of the guide cylinder (2), and the clamping plate (84) is fixed inside the first housing (81) and the second housing (82) by the electric push rod (83). The corresponding sides of the clamping plate (84) are respectively fixed to the corresponding first housing (81) and second housing (82) by a plurality of telescopic columns (85), wherein the telescopic columns (86) are... 5) Each is composed of two mutually slidingly connected columns; several rotating columns (86) are rotatably installed on the side of the clamp (84) away from the electric push rod (83), wherein the rotating columns (86) on the same clamp (84) are connected by the cooperation of belt and pulley; a second servo motor (87) is fixed on the outer side of the clamp (84), wherein the output end of the second servo motor (87) is fixed to the corresponding rotating column (86); the electric push rod (83) and the second servo motor (87) are electrically connected to the controller (3) through data lines; the lower end of the first housing (81) is open.
4. A banknote recycling apparatus as defined in claim 1, characterized in that: The storage box (1) includes a box body (11), a third servo motor (12), a shaped column (13), a storage bucket (14), a storage cavity (15), and an end cap (16). The upper end of the box body (11) is fixed with a guide cylinder (2), a controller (3), and a third servo motor (12). The output end of the third servo motor (12) is fixed with a shaped column (13), which is rotatably connected to the box body (11). The storage bucket (14) is rotatably installed inside the box body (11). Several storage cavities (15) are evenly opened inside the storage bucket (14), and the center position of the upper side of the storage bucket (14) is slidably connected to the shaped column (13). The lower end of the box body (11) is fixed by fastening the end cap (16). The third servo motor (12) is electrically connected to the controller (3) through a data cable.