Humidifier for badminton cylinder

By controlling the opening and closing mechanism to connect or disconnect the water storage chamber and water filling tank of the badminton tube humidifier, the complexity and pollution problems of the existing technology that requires disassembling the cover to add water are solved, achieving convenient water addition and sealing effect.

CN223965538UActive Publication Date: 2026-03-03虞凯
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-07
Publication Date
2026-03-03

AI Technical Summary

Technical Problem

Existing badminton tube humidifiers require the cover to be removed when adding water, which is complicated and can easily lead to contamination of the water tank.

Method used

The water storage chamber and the water injection tank are connected or separated by rotating the opening and closing parts relative to the main body. Water addition and sealing are achieved by aligning or misaligning the first and second flow guides, thus avoiding the need to disassemble the opening and closing parts.

Benefits of technology

It enables convenient water addition without disassembling the opening and closing parts, prevents the opening and closing parts from being lost or contaminated with dust, ensures the water storage chamber is sealed, and prevents leakage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a shuttlecock tube humidifier which comprises a main body piece, a water storage cavity, a water injection groove and a water supply pipe. The opening and closing piece is rotationally arranged relative to the main body piece; the atomization device is arranged on the main body piece; a first matching part and a second matching part are arranged on the main body part and the opening and closing part respectively, the first matching part comprises a first matching area, the second matching part comprises a second matching area and a third matching area, a first flow guide part is arranged on the first matching area, and a second flow guide part is arranged on the second matching area; the first matching area and the second matching area are aligned or partially aligned, and the first flow guide piece is communicated with the second flow guide piece; the first matching area and the third matching area are aligned or partially aligned, and the second matching area seals the second flow guide piece. By the adoption of the scheme, the water storage cavity and the water injection groove are communicated or separated through rotation of the opening and closing piece relative to the main body piece, and the opening and closing piece does not need to be detached.
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Description

Technical Field

[0001] This utility model belongs to the field of humidifiers, specifically relating to a badminton shuttlecock tube humidifier. Background Technology

[0002] Chinese Patent No. CN202420265260.0 discloses a badminton tube humidifier, which features a cover on the upper part of the humidifier body. The cover is detachably installed on the humidifier body by rotating a buckle. When water needs to be added, the cover is rotated off and water is added into the water tank of the humidifier body. After adding water, the cover is rotated back on to ensure the water tank is sealed. When spraying is needed, the water in the water tank is atomized and sprayed out by activating the atomizing plate.

[0003] The shortcomings of the above structure are that the cover needs to be removed before the water tank can be opened to add water, which makes the operation more complicated. In addition, the cover is easy to be lost or get dusty after being removed, which will cause the water in the water tank to be contaminated. Utility Model Content

[0004] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a badminton tube humidifier that connects or disconnects the water storage chamber and the water injection tank by rotating the opening and closing part relative to the main body without disassembling the opening and closing part.

[0005] To achieve the above objectives, the present invention provides the following technical solution:

[0006] A badminton shuttlecock tube humidifier includes: a main body having a water storage chamber and a water injection tank; an opening and closing member rotatably disposed relative to the main body; and an atomizing device disposed on the main body for atomizing and spraying water from the water storage chamber. The main body and the opening and closing member are respectively provided with a first mating member and a second mating member. The first mating member includes a first mating area, and the second mating member includes a second mating area and a third mating area. The first mating area is provided with a first guide member communicating with the water injection tank. The two mating areas are provided with a second flow guide that communicates with the water storage chamber; the opening and closing member rotates relative to the main body and has an open state and a closed state; in the open state, the first mating area and the second mating area are aligned or partially aligned, and the first flow guide and the second flow guide are connected to connect the water storage chamber and the water injection tank; the opening and closing member rotates to make the first mating area move away from the second mating area, and the first mating area is aligned or partially aligned with the third mating area, and the third mating area closes the second flow guide to isolate the water storage chamber and the water injection tank to form a closed state.

[0007] The present invention is further configured to include a sealing element, which is disposed on the second mating element to separate the first mating area and the second mating area; the sealing element is arranged in an annular shape extending in the rotational circumference of the opening / closing element relative to the main body, and the sealing element includes a first segment and a second segment that are staggered, with the first guide element and the second guide element located between the first segment and the second segment; in the closed state, the first guide element and the second guide element are respectively aligned with the first segment and the second segment so that the sealing element separates the first guide element and the second guide element.

[0008] The present invention is further configured such that: a first edge communicating with the water storage cavity and / or a second edge communicating with the water injection tank are provided between the first mating member and the second mating member; in the closed state, the first edge and the one of the first guide members and the second guide members communicating with the water injection tank are separated by a sealing member; and / or, in the closed state, the second edge and the one of the first guide members and the second guide members communicating with the water storage cavity are separated by a sealing member.

[0009] The present invention is further configured such that: the first segment and the second segment are axially offset; and / or, the first segment and the second segment are radially offset.

[0010] The present invention is further configured such that: the main body or the opening and closing component is provided with an assembly groove that is adapted to the shape and size of the sealing component.

[0011] The present invention is further configured such that: there are multiple water injection tanks arranged in a circumferentially spaced manner; at least two water injection tanks correspond to at least one set of the first flow guide and the second flow guide respectively; in the open state, the first flow guide and the second flow guide of at least two water injection tanks are aligned.

[0012] The present invention is further configured such that: a rotating handle protrudes from the top of the opening and closing member; and / or, the main body is provided with an opening positioning part and a closing positioning part, and the opening and closing member is provided with a travel mating part, wherein in the opening state, the travel mating part and the opening positioning part abut against each other, and in the closing state, the travel mating part and the closing positioning part abut against each other.

[0013] The present invention is further configured to include: an opening and closing cap, wherein the opening and closing cap and the opening and closing component are linked together, a pre-filling water cavity is provided between the opening and closing cap and the opening and closing component, and the opening and closing cap is provided with multiple opening and closing tracks, the opening and closing tracks extending radially along the rotation circumferential direction of the opening and closing cap; multiple opening and closing blades, each of the opening and closing blades being arranged circumferentially, each of the opening and closing blades being provided with a first assembly portion hinged to the main body and a second assembly portion slidably disposed on the corresponding opening and closing track; the opening and closing cap is rotated to allow each of the opening and closing blades to approach or move away from the rotation axis of the opening and closing cap to open or close the pre-filling water cavity.

[0014] The present invention is further configured such that: the top of the opening and closing member is provided with a drainage surface that is inclined outward and downward along the rotational radial direction of the opening and closing member; and / or, a central abutment is provided on the rotational axis of the opening and closing member, and in the closed state, each of the opening and closing blades abuts against the central abutment; and / or, the outer periphery of the opening and closing cap is provided with raised texture.

[0015] The present invention is further configured as follows: the second mating member and the first mating member are sleeved together in a cylindrical shape, and the water inlet groove is disposed on the outer periphery of the second mating member and the first mating member; and / or, the main body and the opening / closing member are respectively provided with a fourth mating member and a third mating member, the fourth mating member and the third mating member are located on the inner periphery of the second mating member and the first mating member, and the fourth mating member and the third mating member are sleeved together; and / or, the atomizing device includes an atomizing plate, the atomizing plate is disposed at the bottom of the main body to atomize the water in the water storage chamber and spray it downwards. The atomizing device is disposed within the atomizing cavity; and / or, the main body includes a detachable first housing and a second housing, with a mounting cavity between the first housing and the second housing; and / or, the main body has a first mounting portion and the opening / closing member has a second mounting portion, the first mounting portion and the second mounting portion cooperate to restrict the opening / closing member from moving relative to the main body along the rotational axis, and the opening / closing member rotates relative to the main body until the first mounting portion and the second mounting portion separate, thereby releasing the restriction on the opening / closing member from moving relative to the main body along the rotational axis.

[0016] By adopting the above technical solution, when water needs to be added, the first and second guide components are aligned by rotating the opening and closing components to the open state. Water can be injected into the water storage chamber through the first and second guide components without removing the opening and closing components, making the operation more convenient and preventing problems such as loss or dust accumulation of the opening and closing components. After water is added, the opening and closing components are rotated to the closed state. At this time, the first and second guide components are separated by the sealing component, so that the water in the water storage chamber cannot be poured out through the first and second guide components, thus preventing leakage. Attached Figure Description

[0017] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0018] Figure 1 This is a state diagram of the open state in Embodiment 1 of this utility model;

[0019] Figure 2 This is a state diagram of the closed state in Embodiment 1 of this utility model;

[0020] Figure 3 This is a top view of the first embodiment of the present invention in its open state;

[0021] Figure 4 This is a top view of the closed state of Embodiment 1 of this utility model;

[0022] Figure 5 This is a cross-sectional view of the first embodiment of the present invention in its open state;

[0023] Figure 6 This is a cross-sectional view of the closed state of Embodiment 1 of this utility model;

[0024] Figure 7 This is a cross-sectional view of Embodiment 1 of the present utility model;

[0025] Figure 8 This is an exploded view of Embodiment 1 of this utility model;

[0026] Figure 9 This is a part drawing of the opening and closing component in Embodiment 1 of this utility model;

[0027] Figure 10 This is a schematic diagram of the sealing element in Embodiment 2 of this utility model;

[0028] Figure 11This is a state diagram of the closed state in Embodiment 3 of this utility model;

[0029] Figure 12 This is a state diagram of the open state in Embodiment 3 of this utility model;

[0030] Figure 13 This is a cross-sectional view of Embodiment 3 of the present invention;

[0031] Figure 14 This is an exploded view of Embodiment 3 of this utility model;

[0032] Figure 15 This is a part drawing of the opening and closing blade in Embodiment 3 of this utility model.

[0033] Explanation of reference numerals in the attached figures:

[0034] 1. Main components;

[0035] 11. Water storage chamber; 12. First flow guide; 13. First mating part; 14. Third mating part; 15. Water injection tank; 16. First housing; 17. Second housing; 18. Mounting cavity; 19. Divider;

[0036] 131. First installation section; 132. First mating area;

[0037] 2. Opening and closing components;

[0038] 21. Assembly slot; 22. Second guide component; 23. Second mating component; 24. Fourth mating component; 25. Rotary handle; 26. Flow surface; 27. Central stop;

[0039] 231. Second installation section; 232. Second mating area; 233. Third mating area;

[0040] 3. Atomizing device;

[0041] 31. Control panel; 32. Battery; 33. Atomizing plate; 34. Buttons; 35. Display;

[0042] 4. Sealing components;

[0043] 41. First paragraph; 42. Second paragraph; 43. Inclined paragraph;

[0044] 51. Turn on the positioning unit; 52. Turn off the positioning unit; 53. Stroke coordination unit;

[0045] 6. Sealing ring;

[0046] 7. Open and close the screw cap;

[0047] 71. Pre-filled water cavity; 72. Opening and closing track; 73. Raised lines;

[0048] 8. Opening and closing leaf;

[0049] 81. First Assembly Section; 82. Second Assembly Section;

[0050] 9. Install the cover;

[0051] 101. First edge; 102. Second edge. Detailed Implementation

[0052] To enable those skilled in the art to better understand this utility model and to more clearly define the scope of protection claimed by this utility model, the present utility model is described in detail below with reference to certain specific embodiments. It should be noted that the following are only some specific embodiments of the present utility model, and the specific and direct descriptions of related structures are merely for the convenience of understanding the present utility model; the specific features do not necessarily or directly limit the scope of implementation of the present utility model. Conventional choices and substitutions made by those skilled in the art under the guidance of the present utility model should all be considered within the scope of protection claimed by this utility model.

[0053] Example 1:

[0054] like Figures 1-9 As shown, this utility model discloses a badminton shuttlecock tube humidifier, comprising:

[0055] The main body 1 is provided with a water storage cavity 11 and a water injection tank 15. The upper end of the water storage cavity 11 is open, and the water injection tank 15 is located on the outer periphery of the water storage cavity 11. In addition, a cylindrical first mating member 13 is provided between the water storage cavity 11 and the water injection tank 15 in the main body 1. The first mating member 13 includes a first mating area 132. A first guide member 12 is provided on the first mating area 132 along the radial through opening of the first mating member.

[0056] The opening and closing component 2 is located above the main body 1 and covers the upper end of the water storage cavity 11. The opening and closing component 2 is rotatably arranged relative to the main body 1. In addition, a cylindrical second mating component 23 is provided between the opening and closing component 2 and the water storage cavity 11 and the water injection tank 15. The second mating component 23 is inserted into the inner circumference of the first mating component 13. The second mating component 23 includes a second mating area 232 and a third mating area 233. A second guide component 22 is provided on the second mating area 232 through the radial opening of the second mating component.

[0057] Atomizing device 3 is installed on the main body 1. Atomizing device 3 is used to atomize and spray the water in the water storage chamber 11.

[0058] The outer side of the first guide member 12 is always connected to the water injection tank 15, and the inner side of the second guide member 22 is always connected to the water storage chamber 11.

[0059] The opening / closing component 2 rotates relative to the main body component 1, having an open state and a closed state.

[0060] When it is on, such as Figure 1 , 3 As shown in Figure 5, the first mating area 132 and the second mating area 232 are aligned to achieve the alignment of the first guide member 12 and the second guide member 22 so that external water can enter the water storage chamber 11 through the first guide member 12 and the second guide member 22.

[0061] In the open state, the opening / closing element 2 rotates to move the first mating area 132 and the second mating area 232 away from each other, and align the first mating area 132 and the third mating area 233 to form a closed state. In the closed state, as... Figure 2 , 4 As shown in Figures 6 and 7, the third mating area 233 closes the first guide member 12 to isolate the water storage chamber 11 and the water injection tank 15.

[0062] Therefore, when water needs to be added, the first guide 12 and the second guide 22 are aligned by rotating the opening and closing part 2 to the open state. Water can be added to the water tank 15 without removing the opening and closing part 2. The water in the water tank 15 is injected into the water storage chamber 11 through the first guide 12 and the second guide 22, making the operation more convenient and preventing the opening and closing part 2 from being lost or contaminated with dust. After adding water, the opening and closing part 2 is rotated to the closed state. At this time, the first guide 12 is closed in the third mating area 233, which separates the first guide 12 and the second guide 22. Thus, the water in the water storage chamber 11 cannot be poured out through the first guide 12 and the second guide 22, thus preventing leakage.

[0063] Furthermore, the opening and closing member 2 is provided with a cylindrical fourth fitting member 24 on the inner periphery of the second fitting member 23. Correspondingly, the main body member 1 is provided with a cylindrical third fitting member 14 on the inner periphery of the first fitting member 13, so that the second fitting member 23 is inserted into the inner periphery of the first fitting member 13 to form a fitting that allows the second fitting member 23 to rotate relative to the first fitting member 13, and the fourth fitting member 24 is sleeved on the outer periphery of the third fitting member 14 to form a fitting that allows the fourth fitting member 24 to rotate relative to the third fitting member 14. The water storage cavity 11 is formed between the first fitting member 13 and the third fitting member 14.

[0064] Therefore, the smoothness of the rotation of the opening / closing member 2 relative to the main body member 1 is improved by the cooperation of the second mating member 23 and the first mating member 13, as well as the cooperation of the fourth mating member 24 and the third mating member 14.

[0065] In other embodiments, the second mating member 23 may also be sleeved on the outer periphery of the first mating member 13, and similarly, the fourth mating member 24 may also be inserted into the inner periphery of the third mating member 14.

[0066] In other embodiments, the second mating member 23 may also be disposed on the main body member 1, and the first mating member 13 may be disposed on the opening and closing member 2.

[0067] In addition, it also includes a sealing element 4, which is disposed on the second mating element 23 to separate the second mating area 232 and the third mating area 233. The sealing element 4 is arranged in a ring shape extending along the rotational circumference of the opening and closing element 2 relative to the main body 1. The sealing element 4 includes a first segment 41 and a second segment 42 that are offset from each other, and an inclined segment 43 that connects the first segment 41 and the second segment 42. In this embodiment, since the first guide element 12 is on the outside and the second guide element 22 is on the inside, the first segment 41 and the second segment 42 are axially offset. Specifically, the first segment 41 is below and the second segment 42 is above, while the first guide element 12 and the second guide element 22 are located vertically between the first segment 41 and the second segment 42.

[0068] Furthermore, since the first mating part 13 and the second mating part 23 are sleeve mating, and the first mating part 13 is on the outside and the second mating part 23 is on the inside, a first edge 101 that is always connected to the water storage cavity 11 will be formed at the lower end between the first mating part 13 and the second mating part 23, and a second edge 102 that is always connected to the water injection tank 15 will be formed at the upper end between the first mating part 13 and the second mating part 23.

[0069] In this embodiment, the sealing element 4 is mounted on the opening / closing element 2, meaning the sealing element 4 is fixed relative to the second guide element 22. Rotation of the opening / closing element 2 enables the following:

[0070] In the open state, the first guide member 12 and the second guide member 22 are both located below the second section 42 and aligned, and the aligned first guide member 12 and the second guide member 22 can guide the water in the water injection tank 15 into the water storage chamber 11.

[0071] In the closed state, the first guide member 12 is located above the first section 41 and the second guide member 22 is located below the second section 42, so that the seal member 4 separates the first guide member 12 and the second guide member 22. This ensures that the water in the water storage cavity 11 cannot leak from the second guide member 22 through the seal member 4 into the first guide member 12. In addition, since the first edge 101 and the second guide member 22 are both located below the second section 42, the water entering the first edge 101 of the water storage cavity 11 will only flow to the second guide member 22, thus preventing it from leaking through the seal member. Similarly, the water entering the second edge 102 of the water injection tank 15 will only flow to the first guide member 12, thus preventing it from entering through the seal member. This ensures the sealing of the water storage cavity 11, allowing the sealing to be completed with just one seal member 4, making the overall structure simpler.

[0072] In other embodiments, the first segment 41 can be on top and the second segment 42 on the bottom. In addition, to prevent leakage at the first edge 101 and the second edge 102, other sealing structures, such as silicone rings, need to be set on both the upper and lower sides of the sealing member 4 to prevent water from entering the first edge 101 of the water storage cavity 11 from flowing upward into the first guide member 12 and water from entering the second guide member 22 of the water storage cavity 11 from flowing downward into the second edge 102.

[0073] In addition, in this embodiment, the outer periphery of the second mating part 23 is recessed with an assembly groove 21 that matches the shape and size of the sealing part 4, so that the sealing part 4 is fitted onto the outer periphery of the second mating part 23 and is positioned and installed by mating with the assembly groove 21. Furthermore, under the misaligned structure of the first section 41 and the second section 42, it can be ensured that the sealing part 4 mating in the assembly groove 21 can rotate synchronously with the opening and closing part 2.

[0074] It should be noted that in other embodiments, when the first mating component 13 is disposed on the opening / closing component 2 and the second mating component 23 is disposed on the main body component 1, and when the first segment 41 and the second segment 42 are disposed in different positions, a seal can be achieved by setting a separate sealing component or by setting a sealing component in conjunction with other sealing structures according to the sealing requirements. Since the principle is the same, it will not be described again here. Preferably, there are multiple water injection tanks 15. In this embodiment, two are used. Each water injection tank 15 is arranged circumferentially around the outer periphery of the first mating component 13 and is separated by a separator 19. In addition, each water injection tank 15 corresponds to a first guide component 12 and a second guide component 22. In the open state, both sets of first guide components 12 and second guide components 22 are aligned to open the water storage chamber 11. In the closed state, both sets of first guide components 12 and second guide components 22 are staggered to close the water storage chamber 11.

[0075] Therefore, in the open state, water can be injected into a water tank 15, allowing water to enter the water storage chamber 11 through the first guide 12 and the second guide 22. Since another set of first guide 12 and second guide 22 connects another water tank 15 to the water storage chamber 11, regardless of whether the first guide 12 and second guide 22 are submerged, when the water level in the water storage chamber 11 rises, the air in the water storage chamber 11 can be discharged through the other set of first guide 12 and second guide 22, ensuring smooth water addition.

[0076] In this embodiment, the top of the opening and closing member 2 is provided with a rotating handle 25, and the opening and closing member 2 can be rotated by driving the rotating handle 25 to rotate.

[0077] The main body 1 is provided with an opening positioning part 51 and a closing positioning part 52, and the opening and closing part 2 is provided with a travel mating part 53. In the open state, the travel mating part 53 and the opening positioning part 51 abut against each other, and in the closed state, the travel mating part 53 and the closing positioning part 52 abut against each other, making the positioning at both ends more convenient.

[0078] The main body 1 includes a first housing 16 and a second housing 17 that are detachably connected by means of buckles, bolts, etc. The first housing 16 is located above the second housing 17, and the water storage cavity 11 is disposed inside the first housing 16. In addition, an installation cavity 18 is provided between the first housing 16 and the second housing 17. The installation cavity 18 is opened when the first housing 16 and the second housing 17 are separated. The atomizing device 3 is installed into the installation cavity 18 when the installation cavity 18 is open. Then the first housing 16 and the second housing 17 are combined to complete the assembly of the atomizing device 3.

[0079] Specifically, the atomizing device 3 includes a control board 31, a battery 32, an atomizing plate 33, a button 34, and a display 35. The battery 32, the atomizing plate 33, the button 34, and the display 35 are all connected to the control board 31. The battery 32 provides power to the circuit. The button 34 is located on the outer surface of the main body shell so that the operation of the atomizing plate 33 can be controlled by pressing the button 34. The display 35 can be used to display the battery power or working status of the battery 32.

[0080] The display 35 extends to the inner periphery of the third mating member 14, and the opening and closing member 2 is made of a light-transmitting material so that the display content of the display 35 can be displayed through the opening and closing member 2.

[0081] In addition, a sealing ring 6 is provided between the fourth mating part 24 and the third mating part 14 to prevent water in the water storage chamber 11 from entering the third mating part 14 and causing leakage.

[0082] Among them, the atomizing plate 33 adopts a microporous atomizing plate 33.

[0083] The first housing 16 and the second housing 17 are provided with openings. The first housing 16 and the second housing 17 are assembled to clamp the atomizing plate 33 at the openings so that the atomizing plate 33 contacts the water in the water storage chamber 11 facing upwards, and atomizes the water and sprays it downwards when the atomizing plate 33 is working.

[0084] The first mating part 13 has an arc-shaped first mounting part 131 on its inner upper circumference, and the second mating part 23 has an arc-shaped second mounting part 231 on its outer circumference. When the opening / closing part 2 and the main body 1 are separated, by adjusting the opening / closing part 2 to the open state corresponding to the main body 1, the first mating part 13 and the third mating part 14 are circumferentially misaligned. The second mating part 23 can then be inserted into the first mounting part 131 to move the second mounting part 231 below the first mounting part 131. Then, by rotating the opening / closing part 2 to the closed state, the first mounting part 131 and the second mounting part 231 can be assembled, thus restricting the upward movement of the opening / closing part 2 to ensure the stable installation of the opening / closing part 2 and the main body 1.

[0085] Example 2:

[0086] like Figure 10 As shown, this embodiment discloses a badminton tube humidifier, whose main structure is the same as that of Embodiment 1. The difference is that the first mating part 13 is disposed above or below the second mating part 23. Correspondingly, the first segment 41 and the second segment 42 are radially offset, such that the first segment 41 is on the outside and the second segment 42 is on the inside.

[0087] Normally, the first guide member 12 is located below the second guide member 22. Similarly, the seal member 4 can be located on the opening and closing member 2, so that the second guide member 22 is always located outside the second section 42. Alternatively, the seal member 4 can be located on the main body member 1, so that the first guide member 12 is always located inside the first section 41.

[0088] Example 3:

[0089] like Figures 11-15 As shown, this embodiment discloses a badminton shuttlecock tube humidifier, whose main structure is the same as that of Embodiment 1. The difference is that the handle 25 is not included, and instead, the following are also included:

[0090] The opening and closing cap 7 is sleeved on the opening and closing component 2 so that the opening and closing cap 7 and the opening and closing component 2 are combined to form a pre-filled water chamber 71. The opening and closing cap 7 and the opening and closing component 2 can rotate synchronously by snap-fit. In addition, the opening and closing cap 7 has multiple opening and closing tracks 72 arranged circumferentially. The opening and closing tracks 72 extend radially along the rotation circumferential direction of the opening and closing cap 7.

[0091] The number of opening and closing blades 8 is the same as that of the opening and closing rails 72. Each opening and closing blade 8 is arranged circumferentially. Each opening and closing blade 8 is provided with a first assembly part 81 hinged to the main body 1 and a second assembly part 82 slidably disposed on the corresponding opening and closing rails 72.

[0092] The opening and closing cap 7 rotates so that each opening and closing leaflet 8 approaches or moves away from the rotation axis of the opening and closing cap 7, thereby opening and closing the pre-filling water chamber 71.

[0093] Therefore, when water needs to be added, by rotating the opening and closing cap 7, with the cooperation of the second assembly part 82 and the opening and closing track 72, each opening and closing blade 8 is moved away from the rotation axis of the opening and closing cap 7 to open the pre-filling water chamber 71. Simultaneously, the opening and closing cap 7 drives the opening and closing element 2 to rotate to the open state, thereby aligning the first guide element 12 and the second guide element 22. Water can then be injected from above the pre-filling water chamber 71. After the water is added, by rotating the opening and closing cap 7, with the cooperation of the second assembly part 82 and the opening and closing track 72, each opening and closing blade 8 is moved closer to the rotation axis of the opening and closing cap 7 to close the pre-filling water chamber 71. Simultaneously, the opening and closing cap 7 drives the opening and closing element 2 to rotate to the closed state, thereby cutting off the pre-filling water chamber 71 and the water storage chamber 11, thus providing a dual waterproof function.

[0094] In addition, in this embodiment, an installation cover 9 is provided above the opening and closing leaf 8. The installation cover 9 is fixedly installed on the main body 1 by bolts. The first assembly part 81 is rotated and installed on the main body 1 by engaging with the installation cover 9 upwards, while the second assembly part 82 is assembled by engaging with the opening and closing track 72 downwards.

[0095] Specifically, the mounting cover 9 is ring-shaped, and after the pre-injection chamber 71 is opened, water is injected into the inner circumference of the mounting cover 9.

[0096] Preferably, in this embodiment, the top of the opening and closing member 2 is provided with a drainage surface 26 that is inclined outward and downward along the rotational radial direction of the opening and closing member 2, and the number of water injection grooves 15 on the main body member 1 is one, and it is in the shape of a ring, so that the water injected into the pre-injection cavity 71 is diffused outward into the water injection groove 15 under the action of the drainage surface 26, and then enters the water storage cavity 11 through the multiple first guide members 12 and second guide members 22 on the water injection groove 15.

[0097] In addition, a central abutment 27 is provided protruding upward on the rotation axis of the opening and closing member 2. In the closed state, each opening and closing leaf 8 abuts against the central abutment 27.

[0098] This allows the pre-injection chamber 71 to be closed more tightly by the opening and closing leaf 8 abutting against the central abutment 27.

[0099] Preferably, the outer periphery of the opening and closing screw cap 7 is provided with raised texture 73 to make rotation more convenient.

[0100] The circuit board has an indicator light located below the center abutment 27, which can illuminate the center abutment 27 to serve as an indicator.

[0101] The above description of the disclosed embodiments enables those skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A badminton shuttlecock tube humidifier, characterized in that, include: The main body (1) is provided with a water storage cavity (11) and a water injection tank (15). The opening and closing component (2) is rotatably arranged relative to the main body component (1); Atomizing device (3) is provided on the main body (1) and is used to atomize and spray the water in the water storage chamber (11). The main body (1) and the opening / closing part (2) are respectively provided with a first mating part (13) and a second mating part (23). The first mating part (13) includes a first mating area (132), and the second mating part (23) includes a second mating area (232) and a third mating area (233). The first mating area (132) is provided with a first guide part (12), and the second mating area (232) is provided with a second guide part (22). The first mating area (132) and the second mating area (232) are aligned or partially aligned to form an open state, and the first guide (12) and the second guide (22) are connected to connect the water storage cavity (11) and the water injection tank (15). The opening and closing member (2) rotates to move the first mating area (132) away from the second mating area (232), and the first mating area (132) and the third mating area (233) are aligned or partially aligned. The third mating area (233) closes the first guide member (12) so that the water storage chamber (11) and the water injection tank (15) are separated to form a closed state.

2. The badminton shuttlecock tube humidifier according to claim 1, characterized in that: It also includes a seal (4) disposed on the second mating member (23) to separate the second mating area (232) and the third mating area (233); The sealing element (4) is arranged in a ring shape extending in the rotational circumference of the opening and closing element (2) relative to the main body (1). The sealing element (4) includes a first segment (41) and a second segment (42) that are staggered. The first guide element (12) and the second guide element (22) are located between the first segment (41) and the second segment (42). In the closed state, the first guide (12) and the second guide (22) are aligned with the first segment (41) and the second segment (42) respectively so that the seal (4) isolates the first guide (12) and the second guide (22).

3. The badminton shuttlecock tube humidifier according to claim 2, characterized in that: A first edge (101) communicating with the water storage cavity (11) and / or a second edge (102) communicating with the water injection tank (15) are provided between the first mating part (13) and the second mating part (23). In the closed state, the one of the first guide member (12) and the second guide member (22) communicating with the water injection tank (15) and the first edge (101) is separated by a seal; and / or, In the closed state, the one of the first guide (12) and the second guide (22) that connects to the water storage cavity (11) and the second edge (102) is separated by a seal.

4. The badminton shuttlecock tube humidifier according to claim 2, characterized in that: The first segment (41) and the second segment (42) are axially offset; and / or, The first segment (41) and the second segment (42) are radially offset.

5. The badminton shuttlecock tube humidifier according to claim 2, characterized in that: The second mating part (23) is provided with an assembly groove (21) that is adapted to the shape and size of the seal (4).

6. The badminton shuttlecock tube humidifier according to any one of claims 1-5, characterized in that: The number of water injection tanks (15) is multiple, and they are arranged in a circumferentially spaced manner; At least two of the water injection tanks (15) correspond to at least one set of the first guide (12) and the second guide (22); In the open state, the first guide (12) and the second guide (22) of at least two of the water injection tanks (15) are aligned.

7. The badminton shuttlecock tube humidifier according to any one of claims 1-5, characterized in that: The top of the opening / closing element (2) is provided with a rotating handle (25); and / or, The main body (1) is provided with an opening positioning part (51) and a closing positioning part (52), and the opening and closing part (2) is provided with a travel engagement part (53). In the open state, the travel engagement part (53) and the opening positioning part (51) abut against each other, and in the closed state, the travel engagement part (53) and the closing positioning part (52) abut against each other.

8. The badminton shuttlecock tube humidifier according to any one of claims 1-5, characterized in that, Also includes: The opening and closing cap (7) and the opening and closing component (2) are linked together. A pre-filled water chamber (71) is provided between the opening and closing cap (7) and the opening and closing component (2). The opening and closing cap (7) is provided with multiple opening and closing tracks (72). The opening and closing tracks (72) extend along the rotation circumference of the opening and closing cap (7) and along the rotation radial direction of the opening and closing cap (7). Multiple opening and closing blades (8) are arranged in a circumferential manner. Each opening and closing blade (8) is provided with a first assembly part (81) hinged to the main body (1) and a second assembly part (82) slidably disposed on the corresponding opening and closing track (72). The opening and closing cap (7) is rotated so that each of the opening and closing blades (8) approaches or moves away from the rotation axis of the opening and closing cap (7) to open or close the pre-filled water chamber (71).

9. The badminton shuttlecock tube humidifier according to claim 8, characterized in that: The top of the opening / closing element (2) is provided with a drainage surface (26) that slopes outward and downward along the rotational radial direction of the opening / closing element (2); and / or, The opening / closing member (2) has a central abutment (27) on its rotation axis. In the closed state, each of the opening / closing blades (8) abuts against the central abutment (27); and / or, The outer periphery of the opening and closing screw cap (7) is provided with raised texture (73).

10. The badminton shuttlecock tube humidifier according to claim 1, characterized in that: The second mating part (23) and the first mating part (13) are arranged in a cylindrical shape with a sleeve fitting, and the water injection groove (15) is disposed on the outer periphery of the second mating part (23) and the first mating part (13); and / or, The main body (1) and the opening / closing part (2) are respectively provided with a third mating part (14) and a fourth mating part (24), the third mating part (14) and the fourth mating part (24) are located on the inner periphery of the first mating part (13) and the second mating part (23), and the third mating part (14) and the fourth mating part (24) are fitted together; and / or, The atomizing device (3) includes an atomizing plate (33), which is disposed at the bottom of the main body (1) to atomize the water in the water storage chamber (11) and spray it downwards; and / or, The main body (1) includes a detachable first housing (16) and a second housing (17), with an installation cavity (18) provided between the first housing (16) and the second housing (17), and the atomizing device (3) is disposed within the installation cavity (18); and / or, The main body (1) is provided with a first mounting part (131), and the opening and closing part (2) is provided with a second mounting part (231). The first mounting part (131) and the second mounting part (231) cooperate with each other to restrict the opening and closing part (2) from moving relative to the main body (1) along the rotation axis. The opening and closing part (2) rotates relative to the main body (1) until the first mounting part (131) and the second mounting part (231) separate, thereby releasing the restriction on the opening and closing part (2) from moving relative to the main body (1) along the rotation axis.

Citation Information

Patent Citations

  • Humidifier for badminton cylinder

    CN221846002U