Sports spraying water bottle convenient to use
By designing a portable atomizing mechanism and a linked atomizing component, the problem of sports water bottles being difficult to atomize directly during exercise is solved, achieving the effect of atomizing spray for cooling and hydration without stopping during exercise.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- GUANGZHOU AIYUN YANWU TECH CO LTD
- Filing Date
- 2024-03-04
- Publication Date
- 2026-04-28
AI Technical Summary
Existing sports water bottles are difficult to use directly by vaporizing water during exercise, which makes them inconvenient to use, especially when you need to replenish water or cool down, requiring you to stop using them.
A user-friendly sports spray water bottle has been designed, comprising a portable atomizing mechanism, a linkage atomizing component, and a locking docking component. It drives water atomization through a micro pump, achieves direct atomization spraying using a hose and atomizing nozzle, and maintains stability during movement through a linkage shaft and locking component, thus achieving continuous atomization.
Athletes can use atomized spray for cooling and hydration without stopping during exercise, improving convenience and efficiency, and enabling continuous hydration and cooling during exercise.
Smart Images

Figure CN121926435A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of water bottle technology, and more specifically, to an easy-to-use sports spray water bottle. Background Technology
[0002] Sports spray water bottles have multiple uses, including cooling. The spray, made from liquid water atomized, has a certain physical cooling effect. Cooling down with the mist after sweating during exercise is gentle on the skin pores, and the fine mist is easily absorbed, providing hydration. During exercise, the body sweats profusely, leading to moisture loss from the skin's surface; using a spray water bottle can replenish moisture quickly, providing a moisturizing effect. Existing literature, such as Chinese Patent Publication No. CN210696469U, discloses a portable sports water bottle. This water bottle features a straw on the lid, extending through the lid with one end protruding and the other end inside the bottle, allowing users to drink without tilting the bottle or tilting their head back, making it convenient. However, this sports water bottle also has the following problems.
[0003] When athletes use sports water bottles, they need to stop and fully open the bottle cap so that the atomizing part can be placed in contact with their face or mouth to achieve atomization for replenishing water or cooling. It is difficult to directly atomize and use the water bottle during exercise, making it inconvenient to carry and use. Therefore, there is a need for a sports spray water bottle that is easy to use. Summary of the Invention
[0004] To overcome the above-mentioned defects of the prior art, the present invention provides an easy-to-use sports spray water bottle.
[0005] To achieve the above objectives, the present invention provides the following technical solution: a user-friendly sports spray water bottle, comprising a carrying water bottle, a threaded cap, and a micro pump. The threaded cap is located on the outer wall of the micro pump and is detachably connected by a thread. The micro pump is fixedly installed inside the threaded cap, and the input end of the micro pump extends into the carrying water bottle for drawing in water. The output end of the micro pump is connected to a portable atomizing mechanism.
[0006] The portable atomizing mechanism includes a flexible tube connected to the output end of a micro pump, and a concave sleeve with a concave cross-sectional shape is fixedly connected to the top end of the flexible tube. A rotatably connected linkage shaft is embedded in one side of the concave sleeve. A linkage rotating block that is rotatably connected to the concave sleeve is installed at one end of the linkage rotating shaft, and an atomizing nozzle for atomizing water is connected to the top end of the linkage rotating block. A linkage atomizing component is installed on one inclined surface of the linkage rotating block. A locking docking component is installed on one side of the concave sleeve.
[0007] Preferably, the output end of the micro pump extends above the threaded cap and is connected and fixedly connected to the bottom end of the hose. The hose is made of rubber. The atomizing nozzle is fixedly connected to the linkage rotating block. The top end of the atomizing nozzle is embedded with multiple through holes with a circular cross-section. A battery and a Bluetooth controller are installed on one side of the micro pump, arranged sequentially from back to front. A socket support plate fixedly connected to the battery is provided at the bottom end of the Bluetooth controller. A charging port for charging is fixedly connected to one side of the battery. A socket support block is rotatably connected to the outer wall of the linkage rotating shaft near its front end. The socket support block and the concave sleeve block are integrally formed by die casting. A locking bolt for squeezing and locking the linkage rotating shaft is embedded in the threaded connection at the top end of the socket support block.
[0008] When using the above technical solution, the Bluetooth controller drives the micro pump to draw water from the water bottle into the hose. The water is then diverted to the atomizing nozzle through the connecting pipe. The atomizing nozzle can be tilted directly to spray water onto the athlete's mouth and face for cooling. At the same time, the athlete does not need to stop while running. The concave sleeve provides support to the connecting block, the linkage shaft provides support to the linkage block, and the linkage block provides support to the atomizing nozzle. The atomizing nozzle can then directly atomize the athlete's mouth and face during exercise.
[0009] Preferably, the linkage atomizing component includes a rectangular frame plate mounted on an inclined surface on one side of the linkage rotating block; a linkage screw is rotatably connected inside the rectangular frame plate, and a reduction motor for driving the linkage screw to rotate is fixedly installed at the bottom end of the rectangular frame plate; the outer wall of the linkage screw is provided with a sleeve groove block that slidably connects with the rectangular frame plate, and support shafts are embedded and fixedly connected to both sides of the sleeve groove block; a sleeve rod is connected to the outer wall of the support shaft; a linkage support shaft is installed on the inner wall of the sleeve rod near its top end; the sleeve groove block is used to drive the support shaft to rotate the sleeve rod; a rotating block is integrally formed at one end of the linkage support shaft by die casting; and a rotation block is integrally formed at the top of the rotating block. An atomizing side spray pipe for atomizing water side spraying is connected to the inclined surface of the end. A linkage rotating rod is fixedly connected to one side of the rotating block, and one end of the linkage rotating rod passes through the linkage rotating block and is rotatably connected through a bearing. The linkage rotating rod is used to position the rotation of the rotating block. One end of the connecting hose is threadedly connected to a connecting pipe. The top and bottom ends of the connecting pipe are respectively fixedly connected to the atomizing spray pipe and the hose. The outer wall of the linkage screw is threadedly connected to the inside of the sleeve groove block. The bottom end of the linkage screw is coaxially connected to the output end of the reduction motor. One end of the support shaft and the linkage support shaft both pass through the sleeve rod, and the outer walls of the linkage support shaft and the support shaft are rotatably connected to the sleeve rod.
[0010] When using the above technical solution, the starting reduction motor drives the linkage screw to rotate forward inside the sleeve groove block. The sleeve groove block drives the two support shafts to move upward. The sleeve rod drives the linkage support shaft to rotate the rotating block. The rotating block causes the outer wall of the linkage rotating rod to be positioned and rotated inside the linkage rotating block. The rotating block drives the atomizing side spray pipe to rotate. The water diverted by the connecting pipe enters the connecting hose and is diverted to the atomizing side spray pipe through the connecting hose. The two atomizing side spray pipes and one atomizing spray pipe achieve large-area atomization and cooling.
[0011] Preferably, the locking assembly includes an elastic clip fixedly installed on one side of the concave sleeve block; a protruding strip is fixedly connected to one side of the inner wall of the elastic clip, a gap is provided between the elastic clip and the concave sleeve block, a locking screw threaded through the concave sleeve block is provided below the data linkage rotating block, a rotating cap is fixedly connected to one end of the locking screw, the locking screw is used to press and lock the athlete's collar, the elastic clip and the protruding strip are integrally formed by die casting, and the outer wall of the protruding strip is polished.
[0012] When using the above technical solution, rotating the screw cap forward separates the screw cap from the water bottle due to the thread action. Reversing the screw cap locks the screw cap and water bottle together. The water bottle is then placed on the athlete's waist belt for fixation. The gap between the concave sleeve and the elastic clip is then inserted into the athlete's collar. The elasticity of the clip causes the convex strip to press against the collar area, achieving a snug fit. Simultaneously, rotating the cap causes the locking screw to rotate, and the collar area is locked under the pressure between the locking screw and the elastic clip.
[0013] The technical effects and advantages of this invention are as follows:
[0014] 1. This invention uses a portable atomizing mechanism to drive a micro pump to draw water from the water bottle into a flexible tube. The water is then distributed to the atomizing nozzle via a connecting pipe. The atomizing nozzle can be tilted directly to spray water onto the athlete's mouth and face for cooling. The athlete does not need to stop while running; the concave sleeve provides support to the connecting block. The atomizing nozzle can directly atomize the athlete's mouth and face during exercise. There is no need to stop to open and close the cap during exercise; the bottle can be used continuously during exercise. The spray water bottle is more convenient to carry and use during exercise, saving time and effort.
[0015] 2. This invention uses a linkage atomizing component to start a reduction motor that drives a linkage screw to rotate forward inside the sleeve groove block. The sleeve groove block slides along the inside of the rectangular frame plate. Water from the atomizing side spray pipe enters the connecting hose through the connecting pipe and is then distributed to the atomizing side spray pipe. The two atomizing side spray pipes and one atomizing spray pipe achieve large-area atomization and cooling. There is no need for the person exercising to stop and open the bottle cap. Water can be continuously replenished over a large area during exercise. The spray water bottle is more time-saving and labor-saving during exercise.
[0016] 3. This invention uses a locking assembly to insert the gap between the concave sleeve and the elastic clip into the athlete's collar. The elasticity of the elastic clip causes the convex strip to press against the collar area to achieve a tight fit. At the same time, rotating the rotating cap causes the locking screw to rotate. Under the action of the thread, the end of the concave sleeve presses against and locks the collar area. The locking screw and the elastic clip at the collar area achieve the locking operation under the pressure. It can directly place the atomizing part at the collar area to supply water atomization. It can spray water atomized outside the body without stopping and can follow the movement. It is more convenient to carry the spray water bottle for sports use.
[0017] Based on the interaction of the above-mentioned multiple functions, the atomizing part is first fixed at the collar of the athlete's clothing. Then, the atomized water produced by the bottle can be used continuously during exercise to replenish water and cool down. Finally, the two atomizing side nozzles achieve large-area atomization, cooling and replenishment in a coordinated manner. In summary, the spray water bottle can be used continuously during exercise without stopping to open the bottle, making it more convenient to carry and use. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the overall structure of a user-friendly sports spray water bottle according to the present invention.
[0019] Figure 2 This is a partial structural diagram of the vertical cross-section of the connection between the water bottle and the threaded cap of the present invention.
[0020] Figure 3 This is a schematic diagram of a partial cut-off structure at the connection between the flexible hose and the connecting pipe of the present invention.
[0021] Figure 4 This is a partial structural diagram of the connection between the linkage rotating block and the linkage rotating rod of the present invention.
[0022] Figure 5 For the present invention Figure 4 Enlarged structural diagram at point A in the middle.
[0023] Figure 6 This is a partial structural diagram of the connection between the linkage shaft and the linkage block of the present invention.
[0024] The attached diagram is labeled as follows: 1. Water bottle; 2. Threaded cap; 3. Miniature pump; 4. Hose; 5. Concave sleeve; 6. Linkage shaft; 7. Linkage block; 8. Atomizing nozzle; 9. Charging port; 10. Battery; 11. Bluetooth controller; 12. Sleeve support plate; 13. Sleeve support block; 14. Locking bolt; 15. Rectangular frame plate; 16. Linkage screw; 17. Gear motor; 18. Sleeve groove block; 19. Support shaft; 20. Sleeve rod; 21. Linkage support shaft; 22. Rotating block; 23. Atomizing side nozzle; 24. Linkage rod; 25. Connecting hose; 26. Connecting pipe; 27. Elastic retaining strip; 28. Protruding strip; 29. Locking screw; 30. Rotating cap. Detailed Implementation
[0025] 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. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0026] As attached Figures 1-6 The illustration shows a user-friendly sports spray water bottle. This bottle is equipped with a portable atomizing mechanism, a linked atomizing component, and a locking docking component. The design of these mechanisms and components allows the spray water bottle to be used continuously during movement without needing to stop and open the bottle, making it more convenient to carry and use. The specific structural configuration of each mechanism and component is as follows:
[0027] In the above technical solutions, as shown in the appendix Figures 1-3 As shown, the portable atomizing mechanism includes a flexible tube 4 connected to the output end of the micro pump 3, and a concave sleeve 5 with a concave cross-sectional shape is fixedly connected to the top end of the flexible tube 4. A rotatably connected linkage shaft 6 is embedded in one side of the concave sleeve 5. A linkage rotating block 7 rotatably connected to the concave sleeve 5 is installed at one end of the linkage rotating shaft 6, and an atomizing nozzle 8 for atomizing water is connected to the top end of the linkage rotating block 7. A linkage atomizing component is installed on one inclined surface of the linkage rotating block 7. A locking docking component is installed on one side of the concave sleeve 5.
[0028] In the above technical solutions, as shown in the appendix Figures 1-3As shown, a battery 10 and a Bluetooth controller 11 are arranged sequentially from back to front on one side of the micro pump 3. A sleeve support plate 12, fixedly connected to the battery 10, is located at the bottom of the Bluetooth controller 11. A sleeve support block 13 is rotatably connected to the outer wall of the linkage shaft 6 near its front end. The sleeve support block 13 and the concave sleeve block 5 are integrally formed by die casting. A locking bolt 14 for pressing and locking the linkage shaft 6 is embedded in the top of the sleeve support block 13, so that the athlete does not need to... The stop does not directly provide support force to the sleeve support block 13 through the concave sleeve block 5. The locking bolt 14 locks the linkage shaft 6 with the sleeve support block 13 under the action of thread force, which can provide a squeezing and locking force to the linkage shaft 6. Secondly, the charging port 9 can realize the charging operation of the storage battery 10. At the same time, the Bluetooth controller 11 is connected to Bluetooth and powered by the storage battery 10. The Bluetooth controller 11 drives the micro pump 3 to realize negative pressure drive. Meanwhile, the sleeve support plate 12 provides support force to the Bluetooth controller 11 and the storage battery 10, increasing stability.
[0029] In the above technical solutions, as shown in the appendix Figures 3-5 As shown, the linkage atomizing assembly includes a rectangular frame plate 15 mounted on an inclined surface on one side of the linkage rotating block 7; a linkage screw 16 is rotatably connected inside the rectangular frame plate 15, and a reduction motor 17 for driving the linkage screw 16 to rotate is fixedly installed at the bottom end of the rectangular frame plate 15. The outer wall of the linkage screw 16 is provided with a sleeve groove block 18 that is slidably connected to the rectangular frame plate 15, and support shafts 19 are embedded and fixedly connected on both sides of the sleeve groove block 18. A sleeve rod 20 is connected to the outer wall of the support shaft 19, and a linkage support shaft 21 is installed on the inner wall of the sleeve rod 20 near its top end. The sleeve groove block 18 is used to drive the support shaft 19 to rotate the sleeve rod 20; a rotating block 22 is integrally formed at one end of the linkage support shaft 21 by die casting, and a rotating block 22 is formed at the top of the rotating block 22. An atomizing side spray pipe 23 for atomizing water side spraying is connected to the inclined surface of the end. A linkage rotating rod 24 is fixedly connected to one side of the rotating block 22, and one end of the linkage rotating rod 24 passes through the linkage rotating block 7 and is rotatably connected through a bearing. The linkage rotating rod 24 is used to position the rotation of the rotating block 22. One end of the connecting hose 25 is threadedly connected to a connecting pipe 26. The top and bottom ends of the connecting pipe 26 are fixedly connected to the atomizing spray pipe 8 and the hose 4 respectively. The outer wall of the linkage screw 16 is threadedly connected to the inside of the sleeve groove block 18. The bottom end of the linkage screw 16 is coaxially connected to the output end of the reduction motor 17. One end of the support shaft 19 and the linkage support shaft 21 both pass through the sleeve rod 20, and the outer walls of the linkage support shaft 21 and the support shaft 19 are rotatably connected to the sleeve rod 20.
[0030] In the above technical solutions, as shown in the appendix Figure 6As shown, the locking assembly includes an elastic clip 27 fixedly installed on one side of the concave sleeve block 5; a protruding strip 28 is fixedly connected to one side of the inner wall of the elastic clip 27, and a gap is opened between the elastic clip 27 and the concave sleeve block 5. A locking screw 29 with a thread passing through the concave sleeve block 5 is provided below the data linkage rotating block 7. A rotating cap 30 is fixedly connected to one end of the locking screw 29. The locking screw 29 is used to press and lock the athlete's collar. The elastic clip 27 and the protruding strip 28 are integrally formed by die casting, and the outer wall of the protruding strip 28 is polished.
[0031] The working principle of the sports spray bottle in this embodiment is as follows:
[0032] First, when using the atomizing device, rotate the threaded cap 2 forward. The threaded cap 2 and the carrying water bottle 1 are separated by the thread. Then, add the water to be atomized into the carrying water bottle 1. Reverse the threaded cap 2 and the carrying water bottle 1 to lock and seal the threads. Place the carrying water bottle 1 on the athlete's waist belt for fixation. Then, insert the gap between the concave sleeve 5 and the elastic clip 27 into the athlete's collar, below the chin. The elasticity of the elastic clip 27 drives the convex strip 28 to press the collar of the athlete's clothing to achieve a close fit and lock. At the same time, rotate the rotating cap 30 to drive the locking screw 29 to rotate. The locking screw 29 and the concave sleeve 5 are pressed and locked at the ends of the athlete's collar by the threads. The collar of the athlete's clothing is locked by the pressure between the locking screw 29 and the elastic clip 27.
[0033] Secondly, when using the atomization function of this invention, the Bluetooth controller 11 is connected to a mobile phone and activated on the phone. The battery 10 provides power to the Bluetooth controller 11 and the connecting plate 12. The Bluetooth controller 11 drives the micro pump 3 to draw water from the water bottle 1 into the hose 4, which then directly atomizes and sprays the water into the connecting pipe 26. The connecting pipe 26 then distributes the water to the atomizing nozzle 8. The atomizing nozzle 8 can be tilted directly towards the athlete's mouth and face to achieve atomized cooling, while simultaneously promoting exercise. During running, the athlete does not need to stop and can directly provide support to the connecting support block 13 through the concave sleeve block 5. The locking bolt 14 and the connecting support block 13 lock the linkage shaft 6 under the action of thread force. The linkage shaft 6 provides support to the linkage block 7, and the linkage block 7 provides support to the atomizing nozzle 8. The atomizing nozzle 8 can directly atomize the athlete's mouth and face during exercise, which can achieve continuous cooling and drinking operation. The athlete can use the atomized water continuously during exercise without stopping and opening the entire bottle.
[0034] Finally, multi-faceted cooling and atomization are achieved. The reduction motor 17 is activated, driving the linkage screw 16 to rotate forward within the sleeve groove block 18. The sleeve groove block 18 slides along the guide inside the rectangular frame plate 15. The sleeve groove block 18 drives the two support shafts 19 to move upward. The support shafts 19 cause the sleeve rod 20 to rotate and push upward. The sleeve rod 20 drives the linkage support shaft 21 to rotate the rotating block 22. The rotating block 22 causes the outer wall of the linkage rotating rod 24 to rotate and be positioned within the linkage rotating block 7. In this way, the rotating block 22 achieves positioning and rotation through the linkage rotating rod 24. The rotating block 22 drives the atomizing side spray pipe 23 to rotate. The water diverted from the connecting pipe 26 into the connecting hose 25, and then diverted into the atomizing side spray pipe 23 through the connecting hose 25. The atomizing side spray pipe 23 can spray the atomized water sideways. The two atomizing side spray pipes 23 and one atomizing spray pipe 8 can achieve large-area atomization and cooling. At the same time, the reduction motor 17 can drive the linkage screw 16 to continue to reverse. The two atomizing side spray pipes 23 can reciprocate to achieve large-area replenishment of water or direct cooling of the exerciser.
[0035] All contents not described in detail in the specification are existing technologies known to those skilled in the art, and the model parameters of each electrical appliance are not specifically limited; conventional equipment can be used. Electrical control components not mentioned in this technical solution are not shown in the figures because they are existing technologies, and will not be described here.
[0036] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A user-friendly sports spray water bottle, comprising a carrying water bottle (1), a threaded cap (2), and a miniature pump (3), wherein the threaded cap (2) is located on the outer wall of the miniature pump (3) and is detachably connected by a thread, the miniature pump (3) is fixedly disposed inside the threaded cap (2), and the input end of the miniature pump (3) extends into the carrying water bottle (1) for drawing in water, characterized in that: The output end of the micro pump (3) is connected to a portable atomizing mechanism; The portable atomizing mechanism includes a hose (4) connected to the output end of the micro pump (3), and a concave sleeve (5) with a concave cross-sectional shape is fixedly connected to the top end of the hose (4), and a rotating shaft (6) is embedded on one side of the concave sleeve (5). One end of the linkage shaft (6) is equipped with a linkage block (7) that is rotatably connected to the concave sleeve block (5), and the top end of the linkage block (7) is connected to an atomizing nozzle (8) for atomizing water. A linkage atomizing component is installed on one inclined surface of the linkage rotating block (7); A locking assembly is installed on one side of the concave sleeve (5).
2. The easy-to-use sports spray water bottle according to claim 1, characterized in that: The output end of the micro pump (3) extends above the threaded cap (2) and is connected and fixedly connected to the bottom end of the hose (4), which is made of rubber.
3. The easy-to-use sports spray water bottle according to claim 1, characterized in that: The atomizing nozzle (8) is fixedly connected to the linkage rotating block (7), and the top of the atomizing nozzle (8) is embedded with multiple through holes with a circular cross-sectional shape.
4. The easy-to-use sports spray water bottle according to claim 1, characterized in that: The micro pump (3) is equipped with a battery (10) and a Bluetooth controller (11) arranged sequentially from back to front on one side. The bottom of the Bluetooth controller (11) is provided with a sleeve support plate (12) fixedly connected to the battery (10). A charging port (9) for charging is fixedly connected to one side of the battery (10). A sleeve support block (13) is rotatably connected to the outer wall of the linkage shaft (6) near its front end. The sleeve support block (13) and the concave sleeve block (5) are integrally formed by die casting. The top of the sleeve support block (13) is embedded with a threaded connection for pressing and locking the linkage shaft (6).
5. A user-friendly sports spray bottle according to claim 1, characterized in that: The linkage atomizing component includes a rectangular frame plate (15) installed on an inclined surface on one side of the linkage rotating block (7); The rectangular frame plate (15) is rotatably connected to a linkage screw (16). A reduction motor (17) for driving the linkage screw (16) to rotate is fixedly installed at the bottom end of the rectangular frame plate (15). The outer wall of the linkage screw (16) is provided with a sleeve groove block (18) that is slidably connected to the rectangular frame plate (15). Support shafts (19) are embedded and fixedly connected on both sides of the sleeve groove block (18). A sleeve rod (20) is connected to the outer wall of the support shaft (19). A linkage support shaft (21) is installed on the inner wall of the sleeve rod (20) near its top. The sleeve groove block (18) is used to drive the support shaft (19) to rotate the sleeve rod (20). One end of the linkage support shaft (21) is integrally formed with a rotating block (22) by die casting. An atomizing side spray pipe (23) for atomizing water side spray is connected to the inclined surface at the top of the rotating block (22). A linkage rotating rod (24) is fixedly connected to one side of the rotating block (22), and one end of the linkage rotating rod (24) passes through the linkage rotating block (7) and is rotatably connected by a bearing. The linkage rotating rod (24) is used to position the rotating block (22) to rotate. One end of the connecting hose (25) is threadedly connected to a connecting pipe (26). The top and bottom ends of the connecting pipe (26) are respectively fixedly connected to the atomizing spray pipe (8) and the hose (4).
6. A user-friendly sports spray bottle according to claim 5, characterized in that: The outer wall of the linkage screw (16) is connected to the inside of the sleeve groove block (18) by a threaded transmission, and the bottom end of the linkage screw (16) is coaxially connected to the output end of the geared motor (17).
7. A user-friendly sports spray bottle according to claim 5, characterized in that: One end of both the support shaft (19) and the linkage shaft (21) passes through the sleeve rod (20), and the outer walls of both the linkage shaft (21) and the support shaft (19) are rotatably connected to the sleeve rod (20).
8. A user-friendly sports spray bottle according to claim 1, characterized in that: The locking assembly includes an elastic clip (27) fixedly installed on one side of the concave sleeve block (5); A protruding strip (28) is fixedly connected to one side of the inner wall of the elastic clip (27). A gap is opened between the elastic clip (27) and the concave sleeve (5). A locking screw (29) with a thread passing through the concave sleeve (5) is provided below the data linkage rotating block (7). A rotating cap (30) is fixedly connected to one end of the locking screw (29). The locking screw (29) is used to squeeze and lock the athlete's collar.
9. A user-friendly sports spray bottle according to claim 8, characterized in that: The elastic clip (27) and the raised strip (28) are integrally formed by die casting, and the outer wall of the raised strip (28) is polished.
Citation Information
Patent Citations
Portable sports kettle
CN210696469U