Shuttlecock tidying device for stadium
By combining the design of the shuttlecock sweeping roller, the blower, and the spiral channel, the problems of low efficiency, irregular storage, and unstable transmission of badminton shuttlecock sorting devices are solved, achieving automated, stable, and highly adaptable badminton shuttlecock sorting results.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-27
- Publication Date
- 2026-03-31
AI Technical Summary
Existing badminton racket handling devices suffer from low efficiency, irregular storage, unstable transmission, and poor adaptability, making it difficult to meet the stadium's need for rapid and neat racket handling.
The design combines a sweeping mechanism, a conveying mechanism, and a collecting mechanism. It utilizes a sweeping roller, a blower, and a spiral channel to achieve automated sweeping, wind guidance, and centrifugal force coordination, ensuring stable delivery and neat collection of badminton shuttlecocks with their heads facing down.
It achieves efficient and automated sorting, neatly stores badminton shuttlecocks, ensures high stability during transport, reduces manual operation, adapts to different court flatness levels, and improves sorting efficiency and shuttlecock skirt protection.
Smart Images

Figure CN121754867A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of sports equipment auxiliary equipment technology, specifically to a badminton shuttlecock grooming device for sports fields. Background Technology
[0002] After badminton lessons, training sessions, and matches, a large number of shuttlecocks are scattered in the stadium, requiring timely collection and disposal. Current methods mostly rely on manual picking up or the use of simple shuttlecock sweeping tools for centralized collection.
[0003] However, existing technologies have significant drawbacks: First, low sorting efficiency. Manual picking is time-consuming and labor-intensive. Simple shuttlecock sweeping devices can only pile up the shuttlecocks, failing to achieve neat storage and requiring subsequent manual sorting, increasing workload. Second, poor storage regularity. Due to the unique structure of the shuttlecock's head and skirt, existing devices struggle to ensure a uniform "head down" posture during storage. Disorganized stacking can easily lead to skirt deformation, affecting reuse. Third, insufficient transmission stability. Some transmission mechanisms use belt conveyors, which can cause shuttlecocks to jam or fall during transport, especially at turning points, limiting transmission efficiency. Fourth, poor adaptability. The fixed height of the sweeping components makes it impossible to adapt to different court flatness levels, resulting in poor picking up of shuttlecocks scattered in low-lying areas or crevices.
[0004] These issues make existing shuttlecock sorting methods insufficient to meet the demands of stadiums for rapid and neat sorting of large numbers of shuttlecocks, thus limiting the efficiency of venue reuse. Therefore, developing a shuttlecock sorting device that can automatically sweep, stably transport, and neatly store shuttlecocks has become a necessary solution to address the industry's pain points. Summary of the Invention
[0005] The purpose of this invention is to overcome the above-mentioned problems and provide a badminton shuttlecock handling device for sports fields. To achieve the above objective, this invention adopts the following technical solution:
[0006] A badminton shuttlecock handling device for sports fields includes a sweeping mechanism, a conveying mechanism, and a collecting mechanism. The sweeping mechanism has a rotatable sweeping roller. The conveying mechanism is located between the sweeping mechanism and the collecting mechanism. The collecting mechanism has a plurality of shuttlecock tubes. The conveying mechanism includes a blower, a connecting channel, and a spiral channel. The connecting channel connects the air outlet of the blower to the inlet end of the spiral channel. The outlet end of the spiral channel is vertically downward and located above one of the shuttlecock tubes.
[0007] As an improvement, the connecting channel has connection ports on both sides, and the two connection ports are respectively connected to the air outlet of the blower and the inlet of the spiral channel. The opening of the connecting channel faces upward. The ball sweeping mechanism also includes a ball inlet box and an inclined plate. The ball inlet box is fixed to the top of the connecting channel, and the outlet of the ball inlet box faces downward. The opening of the connecting channel is connected to the outlet of the ball inlet box. The inlet of the ball inlet box is located at the front end. The inclined plate is located at the inlet of the ball inlet box and extends to the ground. Side baffles are provided on both sides of the inclined plate. A top baffle is provided at the top of the inlet of the ball inlet box. The ball sweeping roller is rotatably mounted at the front end of the inclined plate.
[0008] As an improvement, the front end of the connecting channel is provided with support profiles on both sides, and the support profiles are detachably provided with suspension arms. The suspension arms are fixed to the support profiles by screws. The two ends of the ball sweeping roller are rotatably arranged between the two suspension arms. A ball sweeping motor is fixed to the front end side of one of the suspension arms, and the output shaft of the ball sweeping motor is connected to the ball sweeping roller.
[0009] As an improvement, the spiral channel is provided with an outlet hopper at its outlet end, the outlet hopper being located above one of the ball cylinders.
[0010] As an improvement, a support box is provided on the side of the blower, and a blower motor is provided on the support box, and the blower motor is rotatably connected to the blower.
[0011] As an improvement, the bottom of the connecting channel, the blower motor, and the support box is provided with a support base, the bottom of the support base is provided with a base plate, and a support column is provided between the middle of the spiral channel and the base plate.
[0012] As an improvement, the base plate is provided with an installation groove, and the collection mechanism also includes a turntable, which is rotatably disposed in the installation groove. The turntable is provided with a plurality of placement grooves, and the ball cylinder is disposed on the placement grooves.
[0013] As an improvement, a push frame is provided at the end of the base plate, and casters are provided at the bottom of the base plate.
[0014] The advantages of this invention are:
[0015] 1. This invention has high sorting efficiency and saves a lot of manpower: The integrated design of automated ball sweeping, conveying and storage eliminates the need for manual picking and secondary sorting, which significantly improves efficiency compared to traditional manual sorting; The rotating collection mechanism can realize continuous storage of multiple ball cylinders, reducing downtime for changing ball cylinders.
[0016] 2. This invention provides neat storage and protects the quality of badminton shuttlecocks: The blower and spiral channel work together to ensure that the shuttlecocks always enter the tube head down through wind guidance and centrifugal force, stacking them neatly and preventing the shuttlecock skirt from deforming, thus ensuring the performance of the shuttlecocks for reuse.
[0017] 3. The present invention provides stable and non-jamming transmission: the upward-opening design of the connecting channel prevents air leakage and shuttlecocks from falling; the guiding structure of the spiral channel ensures smooth movement of the shuttlecocks without jamming, and the transmission stability is superior to that of traditional belt conveyors. Attached Figure Description
[0018] Figure 1 This is a front perspective view of a badminton shuttlecock handling device for a sports field according to Example 1.
[0019] Figure 2 This is a side view of a badminton shuttlecock handling device for a sports field in Example 1.
[0020] Figure 3 This is a rear perspective view of a badminton shuttlecock handling device for a sports field according to Example 1.
[0021] Figure 4 This is an exploded structural diagram of a badminton shuttlecock handling device for a sports field in Example 1.
[0022] Figure 5 This is a structural diagram of the collection mechanism in Example 1.
[0023] The diagram is labeled as follows:
[0024] 1. Ball sweeping mechanism; 11. Ball sweeping roller; 12. Ball inlet box; 13. Inclined plate; 14. Side baffle; 15. Top baffle; 16. Support profile; 17. Suspension arm; 18. Ball sweeping motor;
[0025] 2. Conveying mechanism; 21. Blower; 22. Connecting channel; 221. Connecting port; 23. Spiral channel; 24. Outlet hopper;
[0026] 25. Support box; 26. Blower motor;
[0027] 3. Collection mechanism; 31. Ball tube; 32. Turntable; 33. Placement trough;
[0028] 4. Support structure; 41. Support base; 42. Base plate; 43. Support column; 44. Mounting groove; 45. Push frame; 46. Casters. Detailed Implementation
[0029] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. The components of the embodiments of the present invention described and shown in the accompanying drawings can generally be arranged and designed in various different configurations.
[0030] In the description of the embodiments of the present invention, it should be noted that if terms such as "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship commonly used when the product of the invention is in use, they are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present invention. Furthermore, terms such as "first," "second," and "third" are only used to distinguish descriptions and should not be construed as indicating or implying relative importance.
[0031] Furthermore, the use of terms such as "horizontal," "vertical," and "sag" does not imply that the component must be absolutely horizontal or suspended, but rather that it can be slightly tilted. For example, "horizontal" simply means that its direction is more horizontal relative to "vertical," and does not mean that the structure must be completely horizontal, but can be slightly tilted.
[0032] In the description of the embodiments of the present invention, "multiple" means at least two.
[0033] In the description of the embodiments of the present invention, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set," "install," "connect," and "link" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in the present invention according to the specific circumstances.
[0034] The present invention will now be described in detail and specifically through specific embodiments to enable a better understanding of the invention. However, the following embodiments do not limit the scope of protection of the present invention.
[0035] Example 1
[0036] This embodiment discloses a badminton shuttlecock handling device for sports fields.
[0037] like Figures 1 to 5 As shown, this embodiment includes a ball-sweeping mechanism 1, a conveying mechanism 2, a collecting mechanism 3, and a supporting structure 4. These components work together to achieve automated sorting, as detailed below:
[0038] (I) Sweeping Mechanism 1: Badminton Shuttlecock Rapid Collection Component
[0039] The shuttlecock sweeping mechanism 1 is used to quickly sweep the badminton shuttlecocks scattered on the court into the conveying mechanism 2. It includes a sweeping roller 11, a shuttlecock box 12, an inclined plate 13, and a support and adjustment structure to ensure that no badminton shuttlecocks are missed.
[0040] 1. Core shuttlecock sweeping component: The shuttlecock sweeping roller 11 has a cylindrical structure and a flexible brush (such as nylon bristles) on its surface to avoid damaging the shuttlecock. The shuttlecock sweeping roller 11 is rotatably mounted at the front end of the inclined plate 13 and is driven by the shuttlecock sweeping motor 18. Support profiles 16 are provided on both sides of the front end of the connecting channel 22. Suspension arms 17 are detachably mounted on the support profiles 16 and are fixed to the support profiles 16 with screws. The two ends of the shuttlecock sweeping roller 11 are rotatably mounted between the two suspension arms 17 through bearings. The shuttlecock sweeping motor 18 is fixed to the front side of one of the suspension arms 17. The output shaft of the motor is connected to the shuttlecock sweeping roller 11, which drives the shuttlecock sweeping roller 11 to rotate at high speed, sweeping the shuttlecocks on the court toward the inclined plate 13.
[0041] 2. Height adjustment function: The height of the suspension arm 17 can be adjusted on the support profile 16. By loosening the fixing screw, the suspension arm 17 can be moved up and down to the appropriate height and then tightened again. It can adapt to different field flatness and ensure that the shuttlecock sweeping roller 11 is close to the ground to avoid missing badminton shuttlecocks in low-lying areas.
[0042] 3. Guiding and collecting structure: The shuttlecock inlet box 12 is fixed to the top of the connecting channel 22. The outlet of the shuttlecock inlet box 12 faces downward, and the opening of the connecting channel 22 faces upward, forming a guiding channel for the shuttlecocks. The inlet of the shuttlecock inlet box 12 is located at the front end, and the inclined plate 13 is located at the inlet of the shuttlecock inlet box 12 and extends to the ground. Side baffles 14 are provided on both sides of the inclined plate 13 to prevent the shuttlecocks from falling from the sides. A top baffle 15 is provided at the top of the inlet of the shuttlecock inlet box 12 to prevent the shuttlecocks from being bounced up and leaving the collecting channel when sweeping. The inclined plate 13 is inclined forward and downward, which makes it easy for the shuttlecocks swept up by the sweeping roller 11 to slide along the inclined plate 13 into the shuttlecock inlet box 12 and finally into the connecting channel 22.
[0043] (II) Conveying Mechanism 2: Wind-guided and Spiral-regulating Components
[0044] The conveying mechanism 2 is the core component for achieving stable shuttlecock transmission and proper posture. It includes a blower 21, a connecting channel 22, a spiral channel 23, and a matching drive structure, ensuring that the shuttlecock enters the collecting mechanism 3 head-down.
[0045] 1. Wind-driven component: Blower 21 provides power for transmission. A support box 25 is provided on its side, and a blower motor 26 is fixed on the support box 25. The output shaft of the blower motor 26 is connected to the impeller of the blower 21, driving the blower 21 to generate high-speed airflow. The air outlet of the blower 21 is connected to the connecting channel 22. The airflow is sent into the spiral channel 23 through the connecting channel 22, causing the shuttlecock to move along the channel.
[0046] 2. Connection Channel 22 Design: Connection channels 22 have connection ports 221 on both sides, which connect to the air outlet of the blower 21 and the inlet of the spiral channel 23, respectively; the opening of the connection channel 22 faces upward and connects to the outlet of the ball inlet box 12. This upward opening design ensures that the airflow in the duct is concentrated and blown into the spiral channel 23, preventing the airflow from leaking out of the opening and blowing the shuttlecock out of the channel, thus ensuring airflow utilization and transmission stability.
[0047] 3. The spiral channel 23 is well-organized: The spiral channel 23 has a structure that spirals upwards and then vertically downwards. Its inlet end is connected to the connecting channel 22, and its outlet end is vertically downwards. After the airflow generated by the blower 21 carries the shuttlecock into the spiral channel 23, under the combined action of centrifugal force and airflow pressure, the head of the shuttlecock, due to its greater weight, gradually faces towards the inside of the channel, and finally maintains a head-down posture under the guidance of gravity and airflow. The outlet end of the spiral channel 23 is provided with an outlet hopper 24, which is funnel-shaped, to further guide the shuttlecock to fall accurately into the shuttlecock tube 31 below, avoiding deviation in falling.
[0048] (III) Collection Mechanism 3: Rotating Neat Storage Component
[0049] like Figure 5 As shown, the collecting mechanism 3 is used to neatly store badminton shuttlecocks, including several shuttlecock tubes 31, a turntable 32, and a matching mounting structure, which can achieve continuous storage of multiple shuttlecock tubes 31.
[0050] 1. Rotary turntable 32 structure: The base plate 42 is provided with a mounting groove 44. The turntable 32 is rotatably mounted in the mounting groove 44 via bearings. Several placement grooves 33 are evenly provided on the turntable 32. Ball cylinders 31 are placed in the placement grooves 33 accordingly, realizing the detachable installation of ball cylinders 31, which facilitates subsequent replacement of full cylinders and replenishment of empty cylinders. The turntable 32 can be rotated manually or by a motor. When a ball cylinder 31 is full, rotating the turntable 32 can move the adjacent empty ball cylinders 31 to below the outlet hopper 24, realizing continuous storage without stopping the machine.
[0051] 2. Shuttlecock tube 31 storage: The shuttlecock tube 31 adopts a cylindrical structure, which is adapted to the shape and size of the shuttlecock. Since the conveying mechanism 2 has already arranged the shuttlecock in a head-down position, the shuttlecock can be neatly stacked after entering the shuttlecock tube 31, avoiding deformation of the shuttlecock skirt and improving the standardization of storage.
[0052] (iv) Support and moving structure
[0053] 1. Fixed support: The bottom of the connecting channel 22, blower motor 26 and support box 25 is provided with a support base 41. The bottom of the support base 41 is fixed to the base plate 42 to ensure the overall stability of the conveying mechanism 2. A support column 43 is provided between the middle of the spiral channel 23 and the base plate 42 to enhance the load-bearing capacity of the spiral channel 23 and avoid the channel deformation caused by airflow impact.
[0054] 2. Mobility function: The bottom of the base plate 42 is equipped with a push frame 45, which makes it easy for the operator to push the device to move; the bottom of the base plate 42 is equipped with casters 46, which can realize the flexible turning of the device and adapt to the badminton handling needs of different areas of the stadium.
[0055] (V) Working Principle
[0056] 1. Preparation stage: Adjust the height of the suspension arm 17 on the support profile 16 according to the flatness of the site so that the sweeping roller 11 is close to the ground; put the empty ball cylinder 31 into the placement slot 33 of the turntable 32, and rotate the turntable 32 so that one of the ball cylinders 31 is aligned with the outlet bucket 24 at the outlet end of the spiral channel 23; the operator holds the push frame 45 and moves the device to the area to be cleaned through the casters 46.
[0057] 2. Sweeping and collecting shuttlecocks: Start the sweeping motor 18 and the blower motor 26. The sweeping motor 18 drives the sweeping roller 11 to rotate. The flexible brush on the surface sweeps the shuttlecocks scattered on the ground toward the inclined plate 13. The shuttlecocks slide along the inclined plate 13 and, under the guidance of the side baffle 14 and the top baffle 15, enter the shuttlecock box 12 and finally fall into the connecting channel 22 through the outlet of the shuttlecock box 12.
[0058] 3. Wind-powered transmission and posture adjustment: The high-speed airflow generated by the blower 21 is blown into the spiral channel 23 through the connecting channel 22. The airflow carries the shuttlecock in the connecting channel 22 into the spiral channel 23. Inside the spiral channel 23, centrifugal force causes the shuttlecock's head to face the inside of the channel. Combined with gravity, the shuttlecock gradually adjusts to a head-down posture and moves stably along the spiral channel 23 to the outlet end, where it falls precisely into the shuttlecock tube 31 below through the outlet hopper 24.
[0059] 4. Continuous storage: When a ball cylinder 31 is full, manually or by rotating the turntable 32 with the motor, move the adjacent empty ball cylinder 31 to below the outlet hopper 24 to continue storage; after all ball cylinders 31 are full, turn off the motor, remove the full ball cylinder 31, and replace it with an empty ball cylinder 31 to start the next round of sorting.
[0060] This embodiment is a manually operated rotary storage device suitable for small badminton halls. It uses a manually rotated turntable 32 to achieve continuous storage, as detailed below:
[0061] 1. Equipment assembly:
[0062] Ball sweeping mechanism 1 assembly: Support profile 16 is welded to both sides of the front end of connecting channel 22, and suspension arm 17 is connected to support profile 16 by bolts to ensure that suspension arm 17 can move up and down when the bolts are loosened; ball sweeping roller 11 is installed between two suspension arms 17 by bearings at both ends, ball sweeping motor 18 is fixed to the side of one of the suspension arms 17 by screws, and motor output shaft is connected to the end of ball sweeping roller 11 by coupling; ball inlet box 12 is welded to the top of connecting channel 22, and ball inlet box 12 outlet is aligned with the opening of connecting channel 22; inclined plate 13 is welded to the inlet of ball inlet box 12, side baffle 14 is welded to both sides of inclined plate 13, and top baffle 15 is welded to the top of inlet of ball inlet box 12.
[0063] Assembly of conveying mechanism 2: Blower 21 is fixed to one side connection port 221 of connecting channel 22 via connecting flange; support box 25 is welded to the side of blower 21; blower motor 26 is fixed to support box 25 with screws; motor output shaft is connected to impeller of blower 21; inlet end of spiral channel 23 is welded to the other side connection port 221 of connecting channel 22; outlet end is welded to outlet bucket 24; support base 41 is welded to the bottom of connecting channel 22, blower motor 26, and support box 25; bottom of support base 41 is welded to base plate 42; one end of support column 43 is welded to the middle of spiral channel 23, and the other end is welded to base plate 42.
[0064] Collection and moving structure assembly: A mounting groove 44 is opened on the base plate 42, and the turntable 32 is installed in the mounting groove 44 through the thrust bearing. Several placement grooves 33 are evenly opened on the turntable 32, and the ball cylinder 31 is placed in the placement groove 33; the push frame 45 is welded to the end of the base plate 42, and the caster wheel 46 is fixed to the bottom of the base plate 42 with screws.
[0065] 2. Usage process:
[0066] Preparation: Loosen the fixing bolts of the suspension arm 17, move the suspension arm 17 up and down to make the ball sweeping roller 11 close to the ground, and tighten the bolts to fix it; put the empty ball tube 31 into the placement slot 33 of the turntable 32, and rotate the turntable 32 to make one ball tube 31 align with the outlet bucket 24; the operator holds the push frame 45 and pushes the device to the badminton shuttlecock scattering area through the universal wheels 46.
[0067] Sorting: Start the shuttlecock sweeping motor 18 and the blower motor 26. The shuttlecock sweeping roller 11 rotates and sweeps up the shuttlecocks. The shuttlecocks enter the shuttlecock box 12 along the inclined plate 13 and fall into the connecting channel 22. The airflow generated by the blower 21 carries the shuttlecocks into the spiral channel 23. In the spiral channel 23, the shuttlecocks are adjusted to a head-down position and fall into the shuttlecock tube 31 through the outlet hopper 24. When the shuttlecock tube 31 is full, turn off the motor, manually rotate the turntable 32, align the empty shuttlecock tube 31 with the outlet hopper 24, and restart the motor to continue sorting.
[0068] Finishing: After finishing, turn off the motor, remove the full-ball cylinder 31, clean the remaining debris on the surface of the device, and push the device to the storage area.
[0069] Example 2: Electric Rotary Badminton Shuttlecock Arrangement Device
[0070] This embodiment discloses an electric rotary sorting device suitable for large stadiums. Based on Embodiment 1, the manual turntable is replaced with an electric drive, while the other structures are the same as in Embodiment 1. The specific improvements are as follows:
[0071] 1. Improved assembly: Install a geared motor under the base plate and fix it to the bottom of the base plate with screws; weld a drive shaft to the center of the bottom of the turntable, pass through the through hole in the base plate, and connect it to the output shaft of the geared motor through a coupling; install a control switch on the base plate, and electrically connect the control switch to the geared motor, the ball sweeping motor, and the blower motor to achieve centralized control.
[0072] 2. Differences in usage: When the ball cylinder is full, there is no need to turn off the motor. Simply start the geared motor with the control switch to drive the turntable to rotate. After moving the empty ball cylinder to the bottom of the outlet hopper, turn off the geared motor to continue collecting, further improving sorting efficiency and reducing operation steps.
[0073] The specific embodiments of the present invention have been described in detail above, but they are merely examples, and the present invention is not equivalent to the specific embodiments described above. For those skilled in the art, any equivalent modifications and substitutions to the present invention are also within the scope of the present invention. Therefore, all equivalent transformations and modifications made without departing from the spirit and scope of the present invention should be covered within the scope of the present invention.
Claims
1. A badminton arranging device for stadium, comprising a sweeping mechanism (1), a conveying mechanism (2) and a collecting mechanism (3), wherein a sweeping roller (11) is rotatably arranged on the sweeping mechanism (1), the conveying mechanism (2) is arranged between the sweeping mechanism (1) and the collecting mechanism (3), and a plurality of ball barrels (31) are arranged on the collecting mechanism (3). The conveying mechanism (2) comprises a blower (21), a connecting channel (22) and a spiral channel (23), the connecting channel (22) is connected with the air outlet of the blower (21) and the inlet end of the spiral channel (23), the outlet end of the spiral channel (23) is vertically downward, and the outlet end of the spiral channel (23) is located above one of the ball barrels (31).
2. A shuttlecock arrangement for a sports stadium as claimed in claim 1, wherein, Two sides of the connecting channel (22) are provided with connecting openings (221), the two connecting openings (221) are connected with the air outlet of the blower (21) and the inlet of the spiral channel (23) respectively, the opening of the connecting channel (22) is upward, the ball sweeping mechanism (1) further comprises a ball inlet box (12) and an inclined plate (13), the ball inlet box (12) is fixed on the top of the connecting channel (22), the outlet of the ball inlet box (12) is downward, the opening of the connecting channel (22) is communicated with the outlet of the ball inlet box (12), the inlet of the ball inlet box (12) is located at the front end, the inclined plate (13) is located at the inlet of the ball inlet box (12) and extends to the ground, two sides of the inclined plate (13) are provided with side baffles (14), the top of the inlet of the ball inlet box (12) is provided with a top baffle (15), and the ball sweeping roller (11) is rotatably arranged at the front end of the inclined plate (13).
3. A shuttlecock arrangement for a sports stadium as claimed in claim 2, characterised in that, The front ends of two sides of the connecting channel (22) are provided with support profiles (16), the support profiles (16) are detachably provided with suspension arms (17), the suspension arms (17) are fixed on the support profiles (16) through screws, and the two ends of the ball sweeping roller (11) are rotatably arranged between the two suspension arms (17), the front end side of one of the suspension arms (17) is fixedly provided with a ball sweeping motor (18), and the output shaft of the ball sweeping motor (18) is connected with the ball sweeping roller (11).
4. A shuttlecock arrangement device for a sports stadium according to claim 1, characterized in that The outlet end of the spiral channel (23) is provided with an outlet hopper (24), and the outlet hopper (24) is located above one of the ball barrels (31).
5. A shuttlecock arrangement device for a sports stadium according to claim 1, characterized in that, The side of the blower (21) is provided with a support box (25), the support box (25) is provided with a blowing motor (26), and the blowing motor (26) is rotatably connected with the blower (21).
6. A shuttlecock arrangement for a sports stadium as claimed in claim 5, wherein, The bottom of the connecting channel (22), the blowing motor (26) and the support box (25) is provided with a support seat (41), the bottom of the support seat (41) is provided with a bottom plate (42), and the middle part of the spiral channel (23) and the bottom plate (42) are provided with a support column (43).
7. A shuttlecock arrangement for a sports stadium as claimed in claim 6, wherein, The bottom plate (42) is provided with a mounting groove (44), the collecting mechanism (3) further comprises a rotating disc (32), the rotating disc (32) is rotatably arranged in the mounting groove (44), the rotating disc (32) is provided with a plurality of placing grooves (33), and the ball barrel (31) is arranged on the placing groove (33).
8. A shuttlecock arrangement for a sports stadium as claimed in claim 6, characterised in that, The end of the bottom plate (42) is provided with a pushing frame (45), and the bottom of the bottom plate (42) is provided with a universal wheel (46).