Badminton ball collecting cylinder
By designing the outer cylinder, inner cylinder, and components in a coordinated manner, the problems of feather curling and inconvenience in removing badminton shuttlecocks were solved, achieving stable storage and quick retrieval.
Patent Information
- Application Number
- CN202422902257.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-27
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2034-11-27
AI Technical Summary
Existing badminton tubes are prone to feather curling during storage and transport, and the shuttlecocks are difficult to remove, resulting in inconvenience and damage.
Design a badminton shuttlecock collecting tube comprising an outer cylinder, an inner cylinder, a sliding sleeve, a toggle assembly, a separation assembly, a guide assembly, and a clamping assembly. Through the cooperation of the sliding sleeve and the toggle assembly, stable storage and rapid retrieval of badminton shuttlecocks can be achieved.
It achieves stable storage of badminton shuttlecocks, prevents feathers from curling up, improves ease of use and protection, and allows for quick and easy retrieval.
Smart Images

Figure CN223668603U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a shuttlecock collecting cylinder belongs to shuttlecock technical field. BACKGROUND
[0002] Shuttlecock is an indoor sports project that uses a long-handled netted racket to hit a small ball made of feathers and cork across the net.
[0003] The head (ball head) of the shuttlecock is usually hemispherical, made of cork or similar lightweight materials, to provide elasticity and stability when hitting. The tail of the shuttlecock is made of feathers, which are usually taken from the wings of geese or ducks and fixed on the ball head by fine lines or other suitable materials. The number, length and shape of the feathers will affect the flight performance and stability of the shuttlecock.
[0004] Shuttlecocks are usually stored in shuttlecock cylinders, which are cylindrical in shape, consisting of two parallel circular bases and a curved surface (side). This shape design allows shuttlecocks to be neatly arranged in the cylinder, making it easy to carry and store. The material of the shuttlecock cylinder is usually paper or plastic, and some high-end shuttlecock cylinders may use metal to increase strength and durability.
[0005] The existing shuttlecock cylinder stores shuttlecocks by stacking them one after another, but when the storage is not full, the feathers of the shuttlecock may come into contact with the cylinder wall during carrying due to the shaking of the shuttlecock, which may cause the feathers to curl and affect the subsequent use of the shuttlecock. If you take it from a longer shuttlecock cylinder, it is not easy to take it out quickly, which brings inconvenience to the use of the shuttlecock cylinder. UTILITY MODEL CONTENTS
[0006] The utility model discloses a shuttlecock collecting cylinder to solve the technical problem that the shuttlecock cylinder is inconvenient to take and easy to damage the shuttlecock.
[0007] The utility model discloses a shuttlecock collecting cylinder to solve the technical problem that the shuttlecock cylinder is inconvenient to take and easy to damage the shuttlecock.
[0008] The utility model provides a shuttlecock collecting cylinder, which comprises:
[0009] The collecting cylinder body is composed of an outer cylinder body and an inner cylinder body, the inner cylinder body is fixedly installed inside the outer cylinder body, a sliding sleeve is arranged between the outer cylinder body and the inner cylinder body, a poking assembly is arranged on the outer wall of the sliding sleeve, a separating assembly is arranged inside the top end of the sliding sleeve, and the poking assembly is connected with the separating assembly;
[0010] The lower end cover is embedded and nested with the bottom end surface of the outer cylinder body, and a guide assembly is arranged on the inner wall of the lower end cover.
[0011] An upper end cover is embedded and connected with the top surface of the outer cylinder body, an inside of the upper end cover is provided with a pressing assembly, and a movable metal block is embedded in the pressing assembly.
[0012] In the technical solution, the bottom outer side of the inner cylinder body is fixedly connected with the inner wall of the outer cylinder body through a partition plate, and the surface of the partition plate is connected with a sliding sleeve through a large tension spring, and the large tension spring is sleeved with the surface of the inner cylinder body.
[0013] In the technical solution, the surfaces of the outer cylinder body and the inner cylinder body are both provided with two long holes which are correspondingly arranged and symmetrically distributed in pairs, and the long holes are respectively embedded and slidably connected with the shifting assembly and the separating assembly.
[0014] In the technical solution, the shifting assembly comprises a shifting block and a metal spring piece, the shifting block is fixedly connected with the bottom outer wall of the sliding sleeve, the shifting block is slidably connected with the inside of the long hole of the outer cylinder body, the shifting block located at the outer side of the outer cylinder body is fixedly connected with the metal spring piece which is obliquely arranged at the top of the shifting block, and the top end of the metal spring piece is provided with a notch connected with the separating assembly.
[0015] In the technical solution, the separating assembly comprises a sliding block and a movable rod, the sliding block is fixedly connected with the top inner wall of the sliding sleeve, and the sliding block is slidably connected with the inside of the long hole of the inner cylinder body, the sliding block and the sliding sleeve are both penetrated and inserted with the movable rod, one end of the movable rod is embedded into the notch of the metal spring piece, and the other end of the movable rod is fixedly connected with a large magnet located in the sliding block.
[0016] In the technical solution, the guiding assembly comprises a guiding block, the guiding block is fixedly connected with the inner wall of the lower end cover, the bottom end surface of the outer cylinder body is provided with an L-shaped guiding groove, and the guiding block is embedded and slidably connected with the inside of the guiding groove.
[0017] In the technical solution, the bottom end of the inner cylinder body is provided with an inner recess, the inner recess is of an annular structure, and the inner diameter of the inner recess is smaller than the inner diameter of the inner cylinder body.
[0018] In the technical solution, the inside of the upper end cover is fixedly connected with an embedding body, the embedding body is embedded and connected with the inside of the inner cylinder body, and the surface of the embedding body is connected with the pressing assembly.
[0019] In the technical solution, the pressing assembly comprises a resisting rod, the resisting rod is embedded and connected with the surface of the embedding body, the resisting rod is embedded and slidably connected with the inside of the inner cylinder body, the end of the resisting rod is extended into the inside of the shuttlecock and is in contact with the ball head, the inside of the resisting rod is connected with the upper end cover through a small tension spring, and the small tension spring is located in the inside of the annular embedding body.
[0020] In the technical solution, the metal block is internally embedded with a small magnet corresponding to the metal block, the metal block is distributed corresponding to the long hole, and the metal block is distributed corresponding to the large magnet when the sliding sleeve moves up.
[0021] On the basis of common knowledge in the art, the above-mentioned preferred conditions can be combined arbitrarily, that is, each preferred example of the utility model is obtained.
[0022] The positive progress effect of the utility model lies in:
[0023] The above-mentioned badminton collecting cylinder adopts a collecting cylinder main body to collect and store badminton, and the cooperation of the upper end cover and the lower end cover can facilitate the taking and placing operation of the badminton, and the movable sliding sleeve can be used to press and fix a plurality of badminton groups after storage, so that the badminton groups can be stably stored to avoid the problem of badminton edge lifting caused by movement on the inner wall of the cylinder body, improve the storage performance of the badminton, and the upper end cover can be quickly unlocked and opened when taking, and the upper end cover can be automatically locked by the elasticity of the tension spring after collection, so that the convenient storage function is realized, the use convenience of the badminton collecting cylinder is improved, the badminton protection performance is improved, and the badminton groups can be quickly taken, so that the use convenience is improved. BRIEF DESCRIPTION OF DRAWINGS
[0024] Figure 1 It is a whole three-dimensional structure schematic diagram of the utility model.
[0025] Figure 2 It is an internal half-partial three-dimensional structure schematic diagram of the utility model.
[0026] Figure 3 It is a three-dimensional structure schematic diagram of the utility model Figure 2 It is a local enlarged structure schematic diagram of A in the utility model.
[0027] Figure 4 It is a three-dimensional structure schematic diagram of the utility model Figure 2 It is a local enlarged structure schematic diagram of B in the utility model.
[0028] Figure 5 It is a three-dimensional structure schematic diagram of the sliding sleeve in the utility model.
[0029] Figure 6 It is a three-dimensional structure schematic diagram of the guide groove in the utility model.
[0030] EXPLANATION OF REFERENCE NUMERALS
[0031] 1, outer cylinder; 2, inner cylinder; 3, partition; 4, large spring; 5, sliding sleeve; 6, block; 7, metal spring; 8, movable rod; 9, large magnet; 10, sliding block; 11, long hole; 12, guide groove; 13, lower end cover; 14, guide block; 15, concave body; 16, upper end cover; 17, embedded body; 18, stop rod; 19, small spring; 20, small magnet; 21, metal block. DETAILED DESCRIPTION
[0032] The utility model is further illustrated by the following examples, but the utility model is not limited in the scope of the examples.
[0033] As Figures 1-6 shown, the badminton collecting cylinder comprises:
[0034] The collecting cylinder body is composed of an outer cylinder 1 and an inner cylinder 2, the inner cylinder 2 is fixedly installed inside the outer cylinder 1, a sliding sleeve 5 is arranged between the outer cylinder 1 and the inner cylinder 2, a moving assembly is arranged on the outer wall of the sliding sleeve 5, a separating assembly is arranged inside the top end of the sliding sleeve 5, and the moving assembly is connected with the separating assembly.
[0035] A lower end cover 13 is embedded and nested with the bottom end surface of the outer cylinder 1, and a guide assembly is arranged on the inner wall of the lower end cover 13.
[0036] An upper end cover 16 is embedded and nested with the top end surface of the outer cylinder 1, a pressing assembly is arranged inside the upper end cover 16, and a translatable metal block 21 is embedded inside the pressing assembly.
[0037] The bottom outer side of the inner cylinder 2 is fixedly connected with the inner wall of the outer cylinder 1 through a partition 3, the partition 3 is connected with the sliding sleeve 5 through a large spring 4, and the large spring 4 is nested with the surface of the inner cylinder 2; two long holes 11 corresponding to each other and symmetrically distributed in pairs are formed in the surfaces of the outer cylinder 1 and the inner cylinder 2, and the long holes 11 are embedded and slid with the moving assembly and the separating assembly respectively; the moving assembly comprises a block 6 and a metal spring 7, the block 6 is fixedly connected with the bottom outer wall of the sliding sleeve 5, the block 6 is slidably connected with the long hole 11 formed in the outer cylinder 1, the block 6 located outside the outer cylinder 1 is fixedly connected with an obliquely distributed metal spring 7 at the top thereof, and a notch connected with the separating assembly is formed in the top end of the metal spring 7; the separating assembly comprises a sliding block 10 and a movable rod 8, the sliding block 10 is fixedly connected with the top inner wall of the sliding sleeve 5, and the sliding block 10 is slidably connected with the long hole 11 formed in the inner cylinder 2, the sliding block 10 and the sliding sleeve 5 are both penetrated and inserted with the movable rod 8, one end of the movable rod 8 is embedded into the notch of the metal spring 7, and the other end of the movable rod 8 is fixedly connected with a large magnet 9 located inside the sliding block 10.
[0038] In the technical solution, the upper end cover 16 is opened, the shuttlecock is placed inside the inner cylinder 2, the head of the shuttlecock is used to press the shuttlecock to the bottom of the inner cylinder 2, the head of the lowest shuttlecock is abutted against the lower end cover 13, after storage is completed, the upper end cover 16 is closed, the embedded and abutting rod 18 is embedded inside the inner cylinder 2, the knob 6 is rotated to drive the sliding sleeve 5 to move upwards, the sliding block 10 on the sliding sleeve 5 moves inside the long hole 11 to the metal block 21, at this time, the metal block 21 is correspondingly distributed with the large magnet 9, the metal block 21 is adsorbed to the large magnet 9 by overcoming the magnetic force between the metal block 21 and the small magnet 20, the metal block 21 is extended and moves inside the sliding block 10, at this time, the large tension spring 4 is in a tension state, when the knob 6 is released, the sliding sleeve 5 drives the abutting rod 18 to move downwards synchronously due to the existence of the metal block 21, at this time, the elasticity of the large tension spring 4 overcomes the elasticity of the small tension spring 19, the small tension spring 19 is stretched, and the abutting rod 18 abuts against the head of the uppermost shuttlecock, so that the multiple shuttlecocks are pressed tightly inside the inner cylinder 2, and the problem that the shuttlecock shakes in use is avoided.
[0039] The guide assembly comprises a guide block 14 which is fixedly connected with the inner wall of the lower end cover 13, the bottom end surface of the outer cylinder 1 is provided with an L-shaped guide groove 12, and the guide block 14 is embedded and slidably connected with the inside of the guide groove 12; the bottom end of the inner cylinder 2 is provided with an inner recess 15 which is in an annular structure and has an inner diameter smaller than that of the inner cylinder 2.
[0040] In the technical solution, the existence of the large tension spring 4 makes the feather of the lowest shuttlecock abut against the inner wall of the inner recess 15, when the shuttlecock is taken, the lower end cover 13 is rotated to drive the guide block 14 to slide in the guide groove 12 and then to be pulled apart, the lower end cover 13 is opened, the head of the shuttlecock is taken out from the inside of the inner cylinder 2, and the feather of the next shuttlecock continues to abut against the inner recess 15, so that the shuttlecock is taken out one by one, and the shuttlecock in the deep part is conveniently taken out, thereby solving the problem that the shuttlecock in the inside is not easy to take out.
[0041] The upper end cover 16 is fixedly connected with an embedded body 17 which is embedded and connected with the inside of the inner cylinder 2 and is connected with the pressing assembly; the pressing assembly comprises an abutting rod 18 which is embedded and connected with the surface of the embedded body 17 and is embedded and slidably connected with the inside of the inner cylinder 2, and the abutting rod 18 is provided with an end which extends into the inside of the shuttlecock and is in contact with the head; the inside of the abutting rod 18 is connected with the upper end cover 16 through a small tension spring 19 which is located inside the annular embedded body 17; a metal block 21 is embedded and slidably connected with the inside of the abutting rod 18, the abutting rod 18 is embedded with a small magnet 20 which is correspondingly distributed with the metal block 21, the metal block 21 is correspondingly distributed with the long hole 11, and when the sliding sleeve 5 moves upwards, the metal block 21 is correspondingly distributed with the large magnet 9.
[0042] In the technical solution, before the upper end cover 16 is opened, the push block 6 is pushed upward, the push block 6 moves to the top of the long hole 11, the metal elastic sheet 7 is pressed, the elastic deformation of the metal elastic sheet 7 is utilized to push the movable rod 8 to move to the inside of the sliding block 10, at this time, the big magnet 9 pushes the metal block 21 to the inside of the abutting rod 18, the state of the metal elastic sheet 7 being pressed is kept, the push block 6 is moved downward, at this time, the big magnet 9 is separated from the metal block 21, the metal block 21 is adsorbed by the small magnet 20, the abutting rod 18 is pulled by the small tension spring 19 and is attached to the surface of the inlay 17, at this time, the upper end cover 16 is not forced any more, the upper end cover 16 can be quickly opened to store the badminton, after the badminton is stored, the upper end cover 16 is covered on the top of the outer cylinder body 1, the push block 6 is continuously moved upward and then moved downward, the movement of the abutting rod 18 can be realized, and the stored badminton can be pressed and stored.
[0043] The utility model is not limited to the above-mentioned embodiment, no matter makes any change in its shape or structure, all fall in the protection scope of the utility model. The protection scope of the utility model is defined by the appended claims, the person skilled in the art can make various changes or modifications to these embodiments without departing from the principles and essence of the utility model, but these changes and modifications all fall into the protection scope of the utility model.
Claims
1. A shuttlecock collecting tube, characterized in that, Include: The collecting cylinder body is composed of an outer cylinder (1) and an inner cylinder (2), the inner cylinder (2) is fixedly installed inside the outer cylinder (1), a sliding sleeve (5) is arranged between the outer cylinder (1) and the inner cylinder (2), a pushing assembly is arranged on the outer wall of the sliding sleeve (5), a separating assembly is arranged inside the top end of the sliding sleeve (5), and the pushing assembly is connected with the separating assembly; The lower end cover (13) is embedded and nested with the bottom surface of the outer cylinder (1), and the inner wall of the lower end cover (13) is provided with a guide assembly; The upper end cover (16) is embedded and nested with the top surface of the outer cylinder (1), the inside of the upper end cover (16) is provided with a pressing assembly, and the inside of the pressing assembly is embedded with a translatable metal block (21).
2. A shuttlecock collecting cylinder as claimed in claim 1, characterised in that: The outer side of the bottom of the inner cylinder (2) is fixedly connected with the inner wall of the outer cylinder (1) through a partition (3), the surface of the partition (3) is connected with the sliding sleeve (5) through a large tension spring (4), and the large tension spring (4) is nested with the surface of the inner cylinder (2).
3. A shuttlecock collecting cylinder as claimed in claim 1, characterized in that: The surfaces of the outer cylinder (1) and the inner cylinder (2) are both provided with two long holes (11) which are correspondingly arranged and symmetrically distributed in pairs, and the long holes (11) are respectively embedded and slidably connected with the pushing assembly and the separating assembly.
4. A shuttlecock collecting cylinder as claimed in claim 3, characterised in that: The pushing assembly comprises a pushing block (6) and a metal spring piece (7), the pushing block (6) is fixedly connected with the outer wall of the bottom of the sliding sleeve (5), the pushing block (6) is slidably connected with the long hole (11) formed in the outer cylinder (1), the top of the pushing block (6) located outside the outer cylinder (1) is fixedly connected with an obliquely distributed metal spring piece (7), and the top end of the metal spring piece (7) is provided with a notch connected with the separating assembly.
5. A shuttlecock collecting cylinder as claimed in claim 3, characterised in that: The separating assembly comprises a sliding block (10) and a movable rod (8), the sliding block (10) is fixedly connected with the inner wall of the top end of the sliding sleeve (5), and the sliding block (10) is slidably connected with the long hole (11) formed in the inner cylinder (2), the sliding block (10) and the sliding sleeve (5) are both inserted and connected with the movable rod (8) at the top end, one end of the movable rod (8) is embedded into the notch of the metal spring piece (7), and the other end of the movable rod (8) is fixedly connected with a large magnet (9) located inside the sliding block (10).
6. A shuttlecock collecting cylinder as claimed in claim 1, characterized in that: The guide assembly comprises a guide block (14), the guide block (14) is fixedly connected with the inner wall of the lower end cover (13), the bottom surface of the outer cylinder (1) is provided with an L-shaped guide groove (12), and the guide block (14) is embedded and slidably connected with the guide groove (12).
7. A shuttlecock collecting cylinder as claimed in claim 1, characterized in that: The bottom end of the inner cylinder (2) is provided with an inner recess (15), the inner recess (15) is an annular structure, and the inner diameter of the inner recess (15) is smaller than the inner diameter of the inner cylinder (2).
8. A shuttlecock collecting cylinder as claimed in claim 1, characterized in that: The inside of the upper end cover (16) is fixedly connected with an embedded body (17), the embedded body (17) is embedded and nested with the inside of the inner cylinder (2), and the surface of the embedded body (17) is connected with the pressing assembly.
9. A shuttlecock collecting cylinder as claimed in claim 8, characterised in that: The pressing assembly comprises a stopper (18) which is surface-embedded with an inlay (17), is internally embedded with the inner cylinder (2) and is provided with an end which extends into the shuttlecock and contacts the head, the inside of the stopper (18) is connected with the upper end cover (16) through a small tension spring (19), and the small tension spring (19) is located inside the annular inlay (17).
10. A shuttlecock collecting cylinder as claimed in claim 1, characterized in that: The metal block (21) is internally embedded with the stopper (18) at both ends, small magnets (20) corresponding to the metal blocks (21) are internally embedded with the stopper (18), the metal blocks (21) are correspondingly distributed with the long hole (11), and when the sliding sleeve (5) moves upwards, the metal blocks (21) are correspondingly distributed with the large magnet (9).