Badminton tube capable of quickly humidifying and storing shuttlecocks
By designing an outer tube, an inner tube, and a steam dispersion component, a rapid humidification and preservation tube for badminton shuttlecocks has been developed, solving the problems of low and uneven humidification efficiency in existing technologies. This achieves uniform humidification and continuous moisture retention for badminton shuttlecocks, improving hitting performance and lifespan.
Patent Information
- Application Number
- CN202520624278.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-03
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-04-03
AI Technical Summary
Existing badminton humidification equipment is inefficient and provides uneven humidification, resulting in inconsistent humidity levels on the upper and lower parts of the shuttlecock, which affects hitting performance and lifespan.
A shuttlecock rapid humidification and preservation tube was designed, comprising an outer tube, an inner tube, and a steam dispersion component. By setting a partition and steam vents between the inner tube and the connecting ring, a small-scale steam channel is formed, and water vapor is evenly distributed to each shuttlecock. Continuous humidification is achieved through a sealing cap and a moisturizing cotton pad.
It achieves uniform humidification of badminton shuttlecocks, improves humidification efficiency, avoids excessive wetting of the lower part of the shuttlecock, extends service life, and provides continuous moisturizing effect.
Smart Images

Figure CN223878635U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to badminton cylinder technical field, concretely relates to a badminton quick humidification and preservation cylinder. BACKGROUND
[0002] The badminton humidification is mainly for keeping the proper humidity of badminton, thereby improving its flight stability and service life, and the feather of badminton is easy to become dry and harden when being stored in dry climate for a long time, thereby affecting the hitting effect and flight trajectory, and proper humidification can keep the feather of badminton soft, improve the comfort and control force when hitting, reduce the deviation when flying, and effectively prolong the service life of badminton and reduce the demand for frequent replacement of badminton.
[0003] At present, the badminton humidification is mainly carried out through special humidification equipment, the humidification equipment is placed on the horizontal desktop, the both ends of the badminton cylinder are sealed, the humidification equipment is opened, and the water vapor slowly rises along the cylinder, and the efficiency is slow when the whole barrel of badminton is humidified, and the humidification degree of the upper and lower badminton in the same cylinder is not consistent due to the blockage of the lower badminton feather, therefore, a badminton quick humidification and preservation cylinder is provided. UTILITY MODEL CONTENTS
[0004] In order to solve the technical problems existing in the prior art, the utility model provides a badminton quick humidification and preservation cylinder.
[0005] In order to solve the above technical problems, the utility model provides the following technical scheme: a badminton quick humidification and preservation cylinder, which comprises an outer cylinder, an inner cylinder and a steam dispersion assembly are sleeved in the inner part of the outer cylinder, the steam dispersion assembly is located between the outer cylinder and the inner cylinder, the inner cylinder and the steam dispersion assembly cooperate to form a channel for steam flow in the inner part of the outer cylinder, and the steam dispersion assembly comprises a connecting ring and a partition plate.
[0006] A group of connecting rings are arranged at the both ends of the inner cylinder, a plurality of groups of partition plates are arranged between the two groups of connecting rings, and the connecting ring, the partition plate and the inner cylinder cooperate to divide a plurality of groups of small-specification steam channels in the outer cylinder.
[0007] Preferably, a plurality of groups of steam through holes are arranged in the inner part of the connecting ring, the plurality of groups of steam through holes are arranged at equal intervals in the connecting ring, and the connecting ring is communicated with the small-specification steam channel.
[0008] Preferably, the inner cylinder comprises an inner cylinder main body and a steam hole, the inner cylinder main body is sleeved in the inner part of the outer cylinder, the inner cylinder main body is used for arranging the badminton ball body, a plurality of groups of steam holes are arranged on the surface of the inner cylinder main body, and the steam hole is communicated with the inner part of the inner cylinder main body and the small-specification steam channel.
[0009] Preferably, the inner barrel further comprises a connecting reinforcing rubber ring, which is attached to the opening of the inner wall of the inner barrel body, and the end of the inner barrel body is covered with a barrel cover, and the connecting reinforcing rubber ring abuts against the barrel cover.
[0010] Preferably, the barrel cover comprises a barrel cover body, a sealing rubber ring and an air inlet hole, the middle part of the barrel cover body is outwardly protruded to form a connecting part, the barrel cover body is nested in the inner barrel through the connecting part, the sealing rubber ring is attached to the outer part of the barrel cover body, and the air inlet hole is arranged at the side of the connecting part of the barrel cover body.
[0011] Preferably, the air inlet hole is arranged in several groups, and the air inlet holes in the several groups are arranged at the side wall of the connecting part of the barrel cover body at equal intervals, and the air inlet hole is in communication with the inner barrel body on the inner wall of the inner barrel body.
[0012] Preferably, the outer part of the barrel cover body is attached to the steam through hole of the connecting ring, and the barrel cover body seals the steam through hole through the sealing rubber ring.
[0013] Preferably, the inner part of the barrel cover body is filled with a sealing cover, the sealing cover is fixed in the inner part of the barrel cover body through screw connection, and the sealing cover seals the air inlet hole.
[0014] Preferably, a moisturizing cotton sheet is arranged between the barrel cover body and the sealing cover, and the moisturizing cotton sheet is supplemented with pure water.
[0015] Preferably, another group of barrel cover bodies are arranged in the other end of the inner barrel body, and a hygrometer is arranged in the other group of barrel cover bodies.
[0016] The beneficial effects of the present utility model compared with the prior art are as follows:
[0017] 1. The utility model discloses an outer barrel, an inner barrel and a steam dispersion assembly, after the barrel cover body is aligned with the humidifier, the water vapor generated by the humidifier enters the small specification steam passage formed by the connecting ring and the partition plate through the air inlet hole and the inner barrel, the water vapor gradually rises through the small specification steam passage, and the water vapor can enter each position in the inner barrel body through the steam holes comprehensively, so that each shuttlecock is uniformly and synchronously humidified, the humidifying efficiency is improved, and the problem that the lower shuttlecock is excessively humidified is avoided.
[0018] 2. The utility model discloses a sealing cover, the sealing cover is inserted into the inner part of the barrel cover body again, the sealing cover reseals the air inlet hole in the barrel cover body, the water vapor is retained in the outer barrel, and the shuttlecock is continuously humidified, so that the shuttlecock can be directly used next time.
[0019] 3. The utility model discloses a moisturizing cotton piece is provided, when the sealing cover is connected in the ball barrel cover main part, the water in the moisturizing cotton piece will enter the inner ball barrel main part through the natural evaporation mode, forms the natural continuous moisturizing during storage. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 It is the three-dimensional structure schematic diagram of the utility model;
[0021] Figure 2 It is the three-dimensional development structure schematic diagram of the utility model;
[0022] Figure 3 It is the steam dispersion subassembly structure schematic diagram of the utility model;
[0023] Figure 4 It is the ball barrel cover structure schematic diagram of the utility model;
[0024] Figure 5 It is the water vapor path schematic diagram of the utility model;
[0025] Figure 6 It is the inverted three-dimensional structure schematic diagram of the utility model.
[0026] Figure numbers show:
[0027] 1, outer ball barrel, 2, inner ball barrel, 21, inner ball barrel main part, 22, steam hole, 23, connecting reinforcing rubber ring, 3, steam dispersion subassembly, 31, connecting ring, 32, partition, 4, ball barrel cover, 41, ball barrel cover main part, 42, sealing rubber ring, 43, air inlet hole, 5, sealing cover, 6, moisturizing cotton piece, 7, hygrometer. DETAILED DESCRIPTION
[0028] The above and other technical features and advantages of the utility model will be further described in conjunction with the drawings and embodiments, but the following embodiments are only preferred embodiments of the utility model, not all.
[0029] Embodiment:
[0030] As shown in Figure 1 - Figure 6 The utility model provides a badminton quick humidification storage ball barrel, including outer ball barrel 1, the inside of outer ball barrel 1 is equipped with inner ball barrel 2 and steam dispersion subassembly 3, steam dispersion subassembly 3 is located between outer ball barrel 1 and inner ball barrel 2, and inner ball barrel 2 and steam dispersion subassembly 3 cooperate in the channel for steam flow that is formed in outer ball barrel 1 inside, and steam dispersion subassembly 3 includes connecting ring 31 and partition 32.
[0031] A plurality of connecting rings 31 are arranged at both ends of the inner barrel 2, and a plurality of partitions 32 are arranged between the two groups of connecting rings 31, so as to divide a plurality of small-sized steam channels in the outer barrel 1 in cooperation with the connecting rings 31 and the partitions 32.
[0032] A plurality of steam holes are arranged in the connecting rings 31, and the steam holes are arranged at equal intervals in the connecting rings 31, so as to communicate with the small-sized steam channels.
[0033] The inner barrel 2 comprises an inner barrel body 21 and steam holes 22.
[0034] The inner barrel body 21 is arranged in the outer barrel 1, and is used for arranging badminton balls. A plurality of steam holes 22 are arranged on the surface of the inner barrel body 21, so as to communicate the small-sized steam channels with the inner barrel body 21. The water vapor in the steam channels can enter the inner barrel body 21 through the steam holes 22, and can enter all positions in the inner barrel body 21 through the steam holes 22 with the rising of the water vapor, so as to uniformly humidify each badminton ball.
[0035] The barrel 2 further comprises a connecting reinforcing rubber ring 23, which is arranged at the opening of the inner wall of the inner barrel body 21. The end of the inner barrel body 21 is covered by a barrel cover 4, and the connecting reinforcing rubber ring 23 abuts against the barrel cover 4. When the barrel cover 4 contacts the connecting reinforcing rubber ring 23, the connecting reinforcing rubber ring 23 can increase the friction between the barrel cover 4 and the connecting reinforcing rubber ring 23 through the abutting deformation, so as to stably fix the barrel cover 4 in the inner barrel 2.
[0036] The barrel cover 4 comprises a barrel cover body 41, a sealing rubber ring 42 and an air inlet hole 43.
[0037] The barrel cover body 41 is outwardly protruded at the middle portion to form a connecting portion, and is nested in the inner barrel 2 through the connecting portion. The barrel cover body 41 is connected with the inner barrel 2 through the friction. The sealing rubber ring 42 is arranged on the outer portion of the barrel cover body 41, and seals the opening of the connecting ring 31 under the support of the barrel cover body 41 when the barrel cover body 41 is connected with the inner barrel 2, so as to seal the inner portion of the outer barrel 1 and reduce the escape of the water vapor.
[0038] The air inlet hole 43 is arranged at the side of the connecting part of the ball cover body 41, and is arranged in several groups. The air inlet holes 43 are arranged at the side wall of the connecting part of the ball cover body 41 at equal intervals, and are in communication with the inner ball body 21 on the inner wall of the inner ball body 21. After the ball cover body 41 is aligned with the humidifier, the water vapor generated by the humidifier enters the small-sized steam passage formed by the connecting ring 31 and the partition plate 32 through the air inlet hole 43 and the inner ball 2, and the water vapor gradually rises through the small-sized steam passage. In this process, the ball cover body 41 does not need to be opened, so that the water vapor flow is not directly sprayed to the shuttlecock, and the lower shuttlecock is prevented from being excessively damp.
[0039] The outer part of the ball cover body 41 is attached to the steam through hole of the connecting ring 31, and the ball cover body 41 is closed by the sealing rubber ring 42. In the closed humidifying stage, the sealing rubber ring 42 can reduce the evaporation of the moisture in the outer ball 1 through the connecting part of the ball cover body 41 and the inner ball 2, so as to maintain the humidity in the outer ball 1 at a certain degree, thereby keeping the shuttlecock in the outer ball 1 at a certain humidity for a long time.
[0040] The inner part of the ball cover body 41 is filled with a sealing cover 5, which is fixed in the inner part of the ball cover body 41 by screw connection. The sealing cover 5 closes the air inlet hole 43. In the humidifying stage, the sealing cover 5 is taken out of the inner part of the ball cover body 41, and the sealing cover 5 releases the sealing effect of the ball cover body 41. At this time, the water vapor can enter from one end of the ball cover body 41 and exit from the other end of the ball cover body 41, forming a complete water vapor flow path. In the humidifying stage, the sealing cover 5 is inserted into the inner part of the ball cover body 41 again, and the sealing cover 5 re-closes the air inlet hole 43 in the ball cover body 41. The water vapor is retained in the outer ball 1, thereby continuously humidifying the shuttlecock.
[0041] A humidifying cotton piece 6 is arranged between the ball cover body 41 and the sealing cover 5, and pure water is supplemented in the humidifying cotton piece 6. When the sealing cover 5 is connected in the ball cover body 41, the water in the humidifying cotton piece 6 enters the inner ball body 21 by natural evaporation, thereby forming natural and continuous humidification during storage.
[0042] Another group of ball cover bodies 41 is arranged in the other end of the inner ball body 21, and a hygrometer 7 is arranged in the other group of ball cover bodies 41. During storage, the hygrometer 7 can measure the temperature and humidity in the inner ball body 21, so that the user can adjust the temperature and humidity according to the measurement data, thereby better maintaining the shuttlecock in the inner ball body 21. The hygrometer 7 can be selected from any one of electronic type and mechanical type.
[0043] The above merely describes preferred embodiments of the present application, which are merely illustrative but not restrictive. Those skilled in the art understand that many changes, modifications, or even equivalences can be made to the present application within the spirit and scope of the present application as defined in the claims, and all will fall within the protection scope of the present application.
Claims
1. A shuttlecock quick-hydrating storage cartridge, characterized in that, The outer barrel is internally sleeved with an inner barrel and a steam dispersion assembly, the steam dispersion assembly is located between the outer barrel and the inner barrel, the inner barrel and the steam dispersion assembly cooperate to form a steam flow channel in the outer barrel, and the steam dispersion assembly comprises a connecting ring and a partition plate. A plurality of groups of connecting rings are arranged at both ends of the inner barrel, a plurality of groups of partition plates are arranged between the two groups of connecting rings, and the connecting ring, the partition plate and the inner barrel cooperate to divide a plurality of groups of small-sized steam channels in the outer barrel.
2. A shuttlecock quick-hydrating storage ball tube according to claim 1, characterized in that, A plurality of groups of steam through holes are arranged in the connecting ring, and the plurality of groups of steam through holes are arranged at equal intervals in the connecting ring and communicate with the small-sized steam channels.
3. A shuttlecock quick-hydrating storage ball can according to claim 2, characterized in that, The inner barrel comprises an inner barrel body and a steam hole, the inner barrel body is sleeved in the outer barrel, the inner barrel body is used for accommodating a badminton ball, a plurality of groups of steam holes are arranged on the surface of the inner barrel body, and the steam holes communicate the small-sized steam channels with the inner barrel body.
4. A shuttlecock quick-hydrating storage ball can according to claim 2, characterized in that, The inner barrel further comprises a connecting reinforcing rubber ring, the connecting reinforcing rubber ring is pasted at the opening of the inner wall of the inner barrel body, the end of the inner barrel body is covered with a barrel cover, and the connecting reinforcing rubber ring abuts against the barrel cover.
5. A shuttlecock quick-hydrating storage ball can according to claim 4, characterized in that, The barrel cover comprises a barrel cover body, a sealing rubber ring and an air inlet hole, the middle part of the barrel cover body is outwardly protruded to form a connecting part, the barrel cover body is nested in the inner barrel through the connecting part, the sealing rubber ring is pasted to the outer part of the barrel cover body, and the air inlet hole is arranged at the side edge position of the connecting part of the barrel cover body.
6. A shuttlecock quick-hydrating storage ball can according to claim 5, characterized in that, A plurality of groups of air inlet holes are arranged at equal intervals at the side wall of the connecting part of the barrel cover body, and the air inlet hole communicates with the inner barrel body on the inner wall of the inner barrel body.
7. A shuttlecock quick-hydrating storage ball can according to claim 5, characterized in that, The outer part of the barrel cover body is attached to the steam through hole of the connecting ring, and the steam through hole is closed by the sealing rubber ring.
8. A shuttlecock quick-hydrating storage ball can according to claim 7, characterized in that, The inner part of the barrel cover body is filled with a sealing cover, the sealing cover is fixed in the inner part of the barrel cover body in a threaded connection mode, and the sealing cover closes the air inlet hole.
9. A shuttlecock quick-hydrating storage ball can according to claim 7, characterized in that, A moisturizing cotton sheet is arranged between the barrel cover body and the sealing cover, and pure water is supplemented in the moisturizing cotton sheet.
10. A shuttlecock quick-hydrating storage ball can according to claim 7, characterized in that, Another group of barrel cover bodies are arranged at the other end of the inner barrel body, and a hygrothermograph is arranged in the other group of barrel cover bodies.