Currency counting shaft processing equipment

By integrating tap and milling cutter assemblies into a banknote counting shaft processing device, the threaded hole at the shaft end and the groove on the shaft surface of the banknote counting shaft can be processed in a single clamping operation on the same device. This solves the problem of low efficiency in the existing technology, improves production efficiency and processing accuracy, and reduces labor costs.

CN223629892UActive Publication Date: 2025-12-05SHENYANG CBPM & XINDA BANKING EQUIP CO LTD
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Patent Information

Application Number
CN202423156859.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-12-05
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

In the existing technology, the processing of the threaded holes and grooves of the banknote counting shaft needs to be carried out by two separate machines, resulting in low efficiency and high labor and time costs.

Method used

Design a banknote counting shaft processing device that integrates tap and milling cutter components. The device can process the threaded hole and groove on the shaft end through a single clamping. It adopts automated operation of components such as clamps, feeding components, and ejection cylinders to reduce manual intervention.

Benefits of technology

It improves processing efficiency, reduces labor costs, ensures processing precision and accuracy, and reduces the occurrence of errors and accidents.

✦ Generated by Eureka AI based on patent content.

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Abstract

According to the currency counting shaft machining equipment, a screw tap assembly and a milling cutter assembly are mainly integrated into the same equipment, only one-time clamping is needed, threaded holes and grooves can be machined on the same equipment, only a currency counting shaft needs to be manually placed in a to-be-machined area, two procedures can be automatically completed, the machining precision is guaranteed, and the personnel cost is reduced. The main technical scheme of the utility model is that the currency counting shaft processing equipment comprises a clamp used for fixing or loosening a currency counting shaft; the screw tap assembly and the clamp are arranged in a spaced mode in the first direction, and the screw tap assembly is used for machining a screw hole in the end face of the currency counting shaft; and the milling cutter assembly is used for milling a groove in the shaft surface of the currency counting shaft. The utility model is mainly used for processing.
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Description

TECHNICAL FIELD

[0001] The utility model relates to part processing technical field especially, relates to a point money shaft processing equipment. BACKGROUND

[0002] The point money shaft is on the money suction head on the structure platform of the multiple point machine, the shaft end of the shaft has a threaded hole, and a groove is arranged on the shaft face. In the existing processing mode of the point money shaft, the processing of the threaded hole and the groove is carried out by two independent devices respectively, and twice clamping needs to be manually carried out, so that the efficiency is low, and the labor and time cost are increased. CONTENT OF THE UTILITY MODEL

[0003] Therefore, in order to solve the at least one technical problem, the utility model embodiment provides a point money shaft processing equipment.

[0004] In order to achieve the above-mentioned purpose, the utility model mainly provides the following technical scheme:

[0005] The utility model embodiment provides a point money shaft processing equipment for processing the point money shaft of the multiple point machine, and the point money shaft processing equipment comprises:

[0006] A clamp (100) is used for fixing or loosening the point money shaft (01);

[0007] A tap assembly (200) is arranged at intervals with the clamp (100) in a first direction, and the tap assembly (200) is used for machining a threaded hole from the end face of the point money shaft (01);

[0008] A milling cutter assembly (300) is used for milling a groove from the shaft face of the point money shaft (01).

[0009] Among them, further comprising:

[0010] A feeding assembly (400) is arranged adjacent to the clamp (100) and is used for moving the point money shaft (01) into the clamp (100).

[0011] Among them, the feeding assembly (400) comprises a feeding channel (410) and a feeding cylinder (420), the clamp (100) comprises a supporting table and a clamp cylinder, the feeding cylinder (420) is located between the feeding channel (410) and the supporting table, the output end of the feeding cylinder (420) comprises a feeding position and a waiting position, when the feeding position, the height of the output end of the feeding cylinder (420) is consistent with the height of the top surface of the supporting table, when the waiting position, the height of the output end of the feeding cylinder (420) is consistent with the height of the side of the feeding channel (410) close to the supporting table, and is lower than the height of the top surface of the supporting table, the height of the side of the feeding channel (410) away from the supporting table is higher than the height of the side of the feeding channel (410) close to the supporting table.

[0012] The output end of the clamp cylinder is opposite to the support table, and is used for rising or falling to fix or loosen the point money shaft (01) in cooperation with the support table.

[0013] Further comprising:

[0014] The output end of the material returning cylinder (500) is opposite to the clamp (100), and is used for extending to push the point money shaft (01) in the clamp (100) away from the clamp (100).

[0015] Further comprising:

[0016] The clamp (100) and the tap assembly (200) are arranged on opposite sides of the discharging channel (600), and the milling cutter assembly (300) is arranged on one side of the discharging channel (600) in a second direction perpendicular to the first direction.

[0017] The height of the discharging channel (600) close to the milling cutter assembly (300) is higher than the height of the discharging channel (600) away from the milling cutter assembly (300).

[0018] Further comprising that the discharging channel (600) is provided with a discharging opening and a filter (700), the filter (700) covers the discharging opening, and the discharging opening is arranged away from the milling cutter assembly (300).

[0019] Further comprising that the tap assembly (200) comprises a tap motor (210), a tap (220), a tap cylinder (230), a tap sliding block (240) and a tap guide rail (250).

[0020] The tap motor (210) is connected with the tap sliding block (240), the tap sliding block (240) is slidingly arranged on the tap guide rail (250), the tap guide rail (250) extends in the first direction, the tap cylinder (230) is connected with the tap sliding block (240) and is used for driving the tap sliding block (240) to move.

[0021] The tap (220) is connected with the tap motor (210), and the tap (220) is used for machining a screw hole from an end face of the point money shaft (01).

[0022] Further comprising that the milling cutter assembly (300) comprises a sliding table cylinder (310), a milling cutter cylinder (320), a milling cutter motor (330), a milling cutter (340), a milling cutter sliding block (350) and a milling cutter guide rail (360).

[0023] The slide cylinder (310) is connected with the milling cutter motor (330), the milling cutter motor (330) is connected with the milling cutter (340), the slide cylinder (310) is used for driving the milling cutter motor (330) and the milling cutter (340) to move in the second direction perpendicular to the first direction, the slide cylinder (310) is connected with the milling cutter sliding block (350), the milling cutter sliding block (350) is connected with the milling cutter guide rail (360), the milling cutter guide rail (360) extends in the first direction, and the milling cutter cylinder (320) is connected with the milling cutter sliding block (350) and is used for driving the milling cutter sliding block (350) to move.

[0024] The milling cutter (340) is used for milling a groove on the shaft surface of the point money shaft (01).

[0025] The point money shaft machining equipment further comprises a control system (900), wherein

[0026] The water supply assembly comprises at least a first water supply head (810) and a second water supply head (820), the first water supply head (810) is opposite to the tap (220) of the tap assembly (200), and the second water supply head (820) is opposite to the milling cutter (340) of the milling cutter assembly (300).

[0027] The point money shaft machining equipment further comprises a control system (900), wherein

[0028] The control system (900) is connected with the clamp (100), the tap assembly (200) and the milling cutter assembly (300) respectively, and is used for controlling the actions of the clamp (100), the tap assembly (200) and the milling cutter assembly (300) and human-computer interaction.

[0029] The point money shaft machining equipment provided by the embodiment of the utility model integrates the tap assembly and the milling cutter assembly in the same equipment, only needs single clamping, and the threaded hole of the shaft end and the groove on the shaft surface can be machined on the same equipment, only needs manual placing of the point money shaft in the machining area, and two processes can be automatically completed, the equipment has been applied in actual production, is fast in machining while ensuring machining precision, effectively improves production efficiency, and reduces personnel cost. BRIEF DESCRIPTION OF DRAWINGS

[0030] Figure 1 The structure schematic view of the point money shaft machining equipment provided by the embodiment of the utility model is shown in the first view angle.

[0031] Figure 2 The structure schematic view of the point money shaft machining equipment provided by the embodiment of the utility model is shown in the second view angle. DETAILED DESCRIPTION

[0032] In order to further illustrate the technical means and effects taken by the utility model to achieve the predetermined utility model purposes, the following will combine with the drawings and the preferred embodiments to specifically explain the specific implementation, structure, features and effects of the point shaft machining equipment according to the utility model.

[0033] As shown in Figures 1-2 The utility model embodiment provides a point shaft machining equipment for the processing of the point shaft of the point machine, and the point shaft machining equipment comprises:

[0034] A clamp (100) for fixing or loosening the point shaft (01);

[0035] A tap assembly (200) arranged in the first direction with the clamp (100), and the tap assembly (200) is used for machining a threaded hole from the end face of the point shaft (01);

[0036] A milling cutter assembly (300) for milling a groove on the shaft surface of the point shaft (01).

[0037] The clamp (100) can adopt various ways to clamp the point shaft (01), such as vertical clamping to fix the point shaft (01). After the point shaft (01) is clamped by the clamp (100), the direction of the axis is the first direction, that is, the X-axis direction shown in Figure 1 , and the second direction in the following refers to the Y direction in Figure 1 , both the first direction and the second direction are horizontal directions, and the vertical direction is the Z direction shown in Figure 2 . During the processing of the threaded hole and the groove, the point shaft (01) does not need to be moved and clamped repeatedly, and the point shaft (01) can be released after the processing is completed. Before processing, the point shaft (01) is a semi-finished product, the end face of the point shaft (01) has a bottom hole that has been processed, and only the threaded hole needs to be sleeved, and a groove needs to be milled on the shaft surface on this side.

[0038] The tap assembly (200) is arranged in the first direction with the clamp (100), and then the tap assembly (200) is opposite to the end face of the point shaft (01), or in other words, opposite to the already processed bottom hole, so that the tap assembly (200) can further process the threads on the bottom hole. The milling cutter assembly (300), the tap assembly (200) and the clamp (100) are arranged in a triangular shape, or in other words, the milling cutter assembly (300) is located on one side of the second direction at the middle position between the tap assembly (200) and the clamp (100). Then the milling cutter assembly (300) can correspond to the shaft surface of the point shaft (01), such as the shaft end face, and move in the horizontal direction to mill the groove.

[0039] The clamp (100), the tap assembly (200) and the milling cutter assembly (300) can be directly fixed on an operation table, or in some embodiments, the banknote counting shaft processing equipment further comprises a main support structure, and the clamp (100), the tap assembly (200) and the milling cutter assembly (300) are connected with the main support structure to play a fixing role in position.

[0040] The banknote counting shaft processing equipment provided in the embodiment of the utility model integrates the tap assembly and the milling cutter assembly in the same equipment, only needs single clamping, and the threaded hole of the shaft end and the groove on the shaft surface can be processed on the same equipment, only needs manual placement of the banknote counting shaft in the processing area, and can automatically complete two processes, the equipment has been applied in actual production, can guarantee processing precision, is fast in processing, can effectively control processing precision, is accurate and efficient in processing, improves processing efficiency, and reduces personnel cost. And can reduce the occurrence of errors and accidents in the production process.

[0041] In one embodiment, the banknote counting shaft processing equipment further comprises a feeding assembly (400), the feeding assembly (400) is arranged adjacent to the clamp (100) and is used for moving the banknote counting shaft (01) into the clamp (100).

[0042] The banknote counting shaft (01) is placed on the feeding assembly (400) by manual operation, the feeding assembly (400) automatically pushes the banknote counting shaft (01) into the clamp (100) according to the processing progress, realizes that the batch feeding is only manually and uniformly performed once, and then the next batch feeding can be performed after the current batch of banknote counting shafts (01) are sequentially processed, without the need of continuous persistence and frequent operation.

[0043] More specifically, the feeding assembly (400) comprises a feeding channel (410) and a feeding cylinder (420), the clamp (100) comprises a support table and a clamp cylinder, the feeding cylinder (420) is located between the feeding channel (410) and the support table, the output end of the feeding cylinder (420) comprises a feeding position and a waiting position, at the feeding position, the height of the output end of the feeding cylinder (420) is consistent with the height of the top surface of the support table, at the waiting position, the height of the output end of the feeding cylinder (420) is consistent with the height of the side of the feeding channel (410) close to the support table and is lower than the height of the top surface of the support table, and the height of the side of the feeding channel (410) away from the support table is higher than the height of the side of the feeding channel (410) close to the support table. The output end of the clamp cylinder is opposite to the support table, and the output end of the clamp cylinder is used for rising or falling to fix or release the banknote counting shaft (01) in cooperation with the support table.

[0044] The feeding channel (410), the feeding cylinder (420), the support table and the clamp cylinder can be connected with the aforementioned main support structure. The feeding channel (410) extends in the second direction, i.e., the Y direction, and is inclined downward near the side of the feeding cylinder (420). The cylinder body of the feeding cylinder (420) is fixed, and the piston rod of the feeding cylinder (420) extends upward, and the top end of the piston rod is connected with a feeding plate, which serves as the output end of the feeding cylinder (420). The feeding plate moves in the vertical direction to switch between the feeding position and the waiting position. In the waiting position, the top surface of the feeding plate is level with the end of the feeding channel (410) near the feeding cylinder (420), and then the top surface of the feeding plate is connected with the end of the feeding channel (410). Workers can batchly discharge the point counting shafts (01) into the feeding channel (410), and since the feeding channel (410) is an inclined channel, the point counting shafts (01) will roll along the feeding channel (410) to the feeding plate, and the frontmost point counting shaft (01) will roll to the feeding plate, and since the feeding plate in the waiting position is lower than the top surface of the support table, it will be stopped by the limitation of the side wall of the support table. After the processing of the previous point counting shaft (01) is completed, the output end of the feeding cylinder (420), i.e., the feeding plate, moves upward, and then pushes the next point counting shaft (01) upward to slide into the support table. The point counting shaft (01) drives the feeding plate to return to the waiting position during the sliding process, and then the next point counting shaft (01) will roll to the feeding plate for pushing.

[0045] In some embodiments, the table surface of the support table can be concave in the middle, and a semicircular surface matching the profile of the point counting shaft (01) is arranged in the middle. The output end of the clamp cylinder carries a clamp block, the clamp block is opposite to the support table, and a semicircular surface matching the profile of the point counting shaft (01) is arranged on the clamp block, and then the clamp cylinder drives the clamp block to fall, cooperates with the support table to clamp the point counting shaft (01) from both sides. When it is necessary to loosen the point counting shaft (01), the clamp cylinder drives the clamp block to rise.

[0046] In one embodiment, the point counting shaft processing device further comprises a feeding-out cylinder (500) located on the side opposite to the drill assembly (200) of the clamp (100), and the output end of the feeding-out cylinder (500) is opposite to the clamp (100), and the output end of the feeding-out cylinder (500) is used to extend to push the point counting shaft (01) in the clamp (100) away from the clamp (100).

[0047] When the point shaft (01) is finished, the clamp cylinder drives the clamp block to rise and then releases the point shaft (01), the output end of the material return cylinder (500) extends to push the point shaft (01) off the clamp (100), which can be pushed onto the discharging channel (600) of the subsequent embodiment, and then the output end of the material return cylinder (500) is retracted. The material return cylinder (500) can be connected with the aforementioned main support structure.

[0048] In an embodiment, the point shaft processing device further comprises a discharging channel (600), the clamp (100) and the tap assembly (200) are arranged on opposite sides of the discharging channel (600), and the milling cutter assembly (300) is arranged on one side of the discharging channel (600) perpendicular to the second direction. The height of the side of the discharging channel (600) close to the milling cutter assembly (300) is higher than the height of the side of the discharging channel (600) away from the milling cutter assembly (300).

[0049] The discharging channel (600) is arranged to extend in the second direction and is a plate-shaped structure inclined downward in the direction away from the milling cutter assembly (300). In the aforementioned embodiment, after the material return cylinder (500) pushes the point shaft (01) in the clamp (100) away, the point shaft (01) will fall into the discharging channel (600) and roll along the inclined surface of the discharging channel (600) to the side away from the milling cutter assembly (300). In some embodiments, the side of the discharging channel (600) away from the milling cutter assembly (300) is provided with a finished product receiving member (1000) for collecting finished point shafts (01). The discharging channel (600) can be connected with the aforementioned main support structure.

[0050] In an embodiment, the discharging channel (600) is provided with a discharging opening and a filter (700), the filter (700) covers the discharging opening, and the discharging opening is arranged away from the milling cutter assembly (300).

[0051] The filter (700) can be, for example, a steel mesh, which can filter out debris and water generated during processing, while supporting the point shaft (01) to continue rolling to the finished product receiving member (1000). A collection bag, a water collecting tank, and a discharge pipe connected to the water collecting tank can be arranged below the filter (700).

[0052] In one embodiment, the tap assembly (200) includes a tap motor (210), a tap (220), a tap cylinder (230), a tap slide (240), and a tap rail (250). The tap motor (210) is connected to the tap slide (240), the tap slide (240) is slidingly disposed in the tap rail (250), the tap rail (250) extends in a first direction, the tap cylinder (230) is connected to the tap slide (240), and the tap rail (250) and the tap cylinder (230) can be connected to the aforementioned main support structure. The tap cylinder (230) is configured to drive the tap slide (240) to move. The tap (220) is connected to the tap motor (210), and the tap (220) is configured to machine a threaded hole from an end face of the currency counting shaft (01).

[0053] After the clamp (100) clamps the currency counting shaft (01), the output end of the tap cylinder (230) drives the tap slide (240) to move, and then the tap (220) moves to a specified position. The tap motor (210) can be a servo motor, which controls the direction and feed amount of the tap (220), and then machines the thread. After the threaded hole machining process is completed, the tap cylinder (230) drives the tap (220) to return to the initial position.

[0054] In one embodiment, the milling cutter assembly (300) includes a slide cylinder (310), a milling cutter cylinder (320), a milling cutter motor (330), a milling cutter (340), a milling cutter slide (350), and a milling cutter rail (360). The slide cylinder (310) is connected to the milling cutter motor (330), the milling cutter motor (330) is connected to the milling cutter (340), the slide cylinder (310) is configured to drive the milling cutter motor (330) and the milling cutter (340) to move in a second direction perpendicular to the first direction, the slide cylinder (310) is connected to the milling cutter slide (350), the milling cutter slide (350) is connected to the milling cutter rail (360), the milling cutter rail (360) extends in the first direction, the milling cutter cylinder (320) is connected to the milling cutter slide (350), and the milling cutter rail (360) and the milling cutter cylinder (320) can be connected to the aforementioned main support structure. The milling cutter cylinder (320) is configured to drive the milling cutter slide (350) to move. The milling cutter (340) is configured to mill a slot from a shaft face of the currency counting shaft (01).

[0055] After the threaded hole machining is completed, the slide cylinder (310) drives the milling cutter motor (330) and the milling cutter (340) to move until the milling cutter (340) moves to a specified position at the shaft end face of the currency counting shaft (01). The milling cutter motor (330) can be a servo motor, which controls the operation of the milling cutter (340). The milling cutter cylinder (320) drives the milling cutter slide (350) and then drives the milling cutter (340) to move the slot. After the slot machining process is completed, the milling cutter (340) returns to the initial position.

[0056] In one embodiment, the point shaft processing equipment further comprises a water supply assembly, the water supply assembly at least comprising a first water supply head (810) and a second water supply head (820), the first water supply head (810) being opposite to the tap (220) of the tap assembly (200), and the second water supply head (820) being opposite to the milling cutter (340) of the milling cutter assembly (300).

[0057] The water supply assembly can further comprise a first support plate (830) and a second support plate (840), the first support plate (830) being connected with the tap motor (210) and extending to the end of the tap (220), and the first water supply head (810) being connected with the first support plate (830) and then being opposite to the tap (220) to supply water during the processing of the tap (220). The second support plate (840) is connected with the milling cutter motor (330) and extends to the end of the milling cutter (340), and the second water supply head (820) is connected with the second support plate (840) and then is opposite to the milling cutter (340) to supply water during the processing of the milling cutter (340). The cooling cycle of the two processing procedures is realized. It should be noted that, in one embodiment, the tap (220) is shielded by the first support plate (830) for the convenience of viewing and indicating the structure, Figure 1 In one embodiment, part of the first support plate (830) is removed, and part of the tap (220) is exposed. Figure 1 In one embodiment, part of the first support plate (830) is removed, and part of the tap (220) is exposed.

[0058] In one embodiment, the point shaft processing equipment further comprises a control system (900), the control system (900) being connected with the clamp (100), the tap assembly (200) and the milling cutter assembly (300) respectively, and being used for controlling the actions of the clamp (100), the tap assembly (200) and the milling cutter assembly (300) and the human-computer interaction.

[0059] The control system (900) can further comprise a PLC control panel, a servo controller, a valve guide cylinder and an air source processor. Then the control of the clamp cylinder, the feeding cylinder (420), the material returning cylinder (500), the tap motor (210), the tap cylinder (230), the sliding table cylinder (310), the milling cutter cylinder (320) and the milling cutter motor (330) can be realized. The PLC control panel can interact with the operator to control the start, setting, alarm and end of the equipment.

[0060] The above is only a specific embodiment of the present application, but the protection scope of the present application is not limited to this. Any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the present application, which should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. A banknote counting shaft processing device for processing banknote counting shafts of a recounting machine, characterized in that, The point money shaft machining equipment comprises: a clamp (100) for fixing or loosening a point money shaft (01); a tap assembly (200) spaced apart from the clamp (100) in a first direction, the tap assembly (200) being used for machining a threaded hole from an end face of the point money shaft (01); a milling cutter assembly (300) for milling a groove on a shaft face of the point money shaft (01).

2. The point counting shaft processing apparatus according to claim 1, characterized by, Further comprising: a feeding assembly (400) disposed adjacent to the clamp (100) and used for moving the point money shaft (01) into the clamp (100).

3. The point money shaft machining equipment according to claim 2, wherein the feeding assembly (400) comprises a feeding channel (410) and a feeding cylinder (420), the clamp (100) comprises a support table and a clamp cylinder, the feeding cylinder (420) is located between the feeding channel (410) and the support table, an output end of the feeding cylinder (420) comprises a feeding position and a waiting position, at the feeding position, a height of the output end of the feeding cylinder (420) is consistent with a height of a top surface of the support table, at the waiting position, the height of the output end of the feeding cylinder (420) is consistent with a height of a side of the feeding channel (410) close to the support table and is lower than the height of the top surface of the support table, a height of a side of the feeding channel (410) away from the support table is higher than the height of the side of the feeding channel (410) close to the support table; an output end of the clamp cylinder is opposite to the support table, and the output end of the clamp cylinder is used for rising or falling to fix or loosen the point money shaft (01) in cooperation with the support table.

4. The point counting shaft processing apparatus according to claim 1, characterized by Further comprising: a feeding cylinder (500) located on a side of the clamp (100) opposite to the tap assembly (200), and an output end of the feeding cylinder (500) is opposite to the clamp (100), and the output end of the feeding cylinder (500) is used for extending out to push the point money shaft (01) in the clamp (100) away from the clamp (100).

5. The point counting shaft processing apparatus according to claim 1, wherein Further comprising: a discharging channel (600), the clamp (100) and the tap assembly (200) are separately arranged on opposite sides of the discharging channel (600), and the milling cutter assembly (300) is arranged on one side of the discharging channel (600) in a second direction perpendicular to the first direction; a height of a side of the discharging channel (600) close to the milling cutter assembly (300) is higher than a height of a side of the discharging channel (600) away from the milling cutter assembly (300).

6. The point money shaft machining equipment according to claim 5, wherein a discharging opening and a filter piece (700) are arranged on the discharging channel (600), the filter piece (700) covers the discharging opening, and the discharging opening is arranged away from the milling cutter assembly (300).

7. The point money shaft machining equipment according to claim 1, wherein The tap assembly (200) comprises a tap motor (210), a tap (220), a tap cylinder (230), a tap slider (240) and a tap guide rail (250); The tap motor (210) is connected with the tap slider (240), the tap slider (240) is slidingly arranged on the tap guide rail (250), the tap guide rail (250) extends in the first direction, the tap cylinder (230) is connected with the tap slider (240) and is used for driving the tap slider (240) to move; The tap (220) is connected with the tap motor (210), and the tap (220) is used for machining a screw hole from an end face of the currency counting shaft (01).

8. The currency counting shaft machining device according to claim 1, wherein The milling cutter assembly (300) comprises a sliding table cylinder (310), a milling cutter cylinder (320), a milling cutter motor (330), a milling cutter (340), a milling cutter slider (350) and a milling cutter guide rail (360); The sliding table cylinder (310) is connected with the milling cutter motor (330), the milling cutter motor (330) is connected with the milling cutter (340), the sliding table cylinder (310) is used for driving the milling cutter motor (330) and the milling cutter (340) to move in a second direction perpendicular to the first direction, the sliding table cylinder (310) is connected with the milling cutter slider (350), the milling cutter slider (350) is connected with the milling cutter guide rail (360), the milling cutter guide rail (360) extends in the first direction, and the milling cutter cylinder (320) is connected with the milling cutter slider (350) and is used for driving the milling cutter slider (350) to move; The milling cutter (340) is used for milling a groove on a shaft surface of the currency counting shaft (01).

9. The point counting shaft processing apparatus according to claim 1, characterized by, Further comprising A water supply assembly, the water supply assembly at least comprising a first water supply head (810) and a second water supply head (820), the first water supply head (810) being opposite to the tap (220) of the tap assembly (200), and the second water supply head (820) being opposite to the milling cutter (340) of the milling cutter assembly (300).

10. The point counting shaft processing apparatus according to claim 1, characterized by, Further comprising: A control system (900) connected with the clamp (100), the tap assembly (200) and the milling cutter assembly (300) respectively, and used for controlling actions of the clamp (100), the tap assembly (200) and the milling cutter assembly (300) and human-computer interaction.