Water pipe dismounting structure and fan

By setting a movable button at the water pipe joint, the problem of difficult water pipe disassembly is solved, and a simple disassembly effect of one-handed operation is achieved.

CN224533589UActive Publication Date: 2026-07-21SHENZHEN HESHENGZHI NEW TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN HESHENGZHI NEW TECHNOLOGY CO LTD
Filing Date
2025-08-18
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

The existing water pipe joints are located in a narrow space and the clips are small, making disassembly difficult and requiring both hands to press and pull out the water pipe.

Method used

Design a water pipe disassembly structure by setting a movable button at the water pipe joint. The button can press the buckle to release the connection between the water pipe and the pipe body, and the water pipe can be pulled out with one hand.

Benefits of technology

The disassembly difficulty has been reduced; users can easily pull out the water pipe by simply pressing the button with one hand, simplifying the disassembly process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a water pipe dismounting structure and a fan. The water pipe dismounting structure comprises a shell, a water pipe joint and a button. One end of the water pipe joint is used for connecting a water pipe, and the other end of the water pipe joint is used for connecting a waterway device. The water pipe joint comprises a pipe body and a buckle member which can slide relative to the pipe body. The water pipe can be detachably connected to the pipe body through the buckle member. The button is movably connected to the shell. When the button is pressed, the button can move relative to the shell and press the buckle member, so that the buckle member slides relative to the pipe body, and the water pipe can be pulled out. The application sets the button to replace the user's hand. The user only needs to press the button with one hand, and the other hand or other components can easily pull out the water pipe, thereby reducing the dismounting difficulty. Meanwhile, the button cooperates with the water pipe joint. Whether the position of the water pipe joint or the size of the buckle member, the button can press the buckle member when the button is pressed, and the dismounting difficulty can be reduced.
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Description

Technical Field

[0001] This application belongs to the field of water pipe disassembly technology, specifically relating to water pipe disassembly structures and fans. Background Technology

[0002] Water pipes are usually connected to other water systems through pipe fittings. Pipe fittings include a pipe body and a clip that can slide relative to the pipe body. The water pipe can be easily inserted into the clip to connect it to the pipe body, but when disassembling, the user needs to press the clip tightly with their hand to pull the water pipe out, so disassembly is quite difficult. Utility Model Content

[0003] In view of this, the first aspect of this application provides a water pipe disassembly structure, which includes a housing, a water pipe connector, and a button. One end of the water pipe connector is used to connect a water pipe, and the other end of the water pipe connector is used to connect a water circuit device. The water pipe connector includes a pipe body and a snap-fit ​​member that can slide relative to the pipe body. The water pipe can be detachably connected to the pipe body through the snap-fit ​​member. The button is movably connected to the housing. When the button is pressed, the button can move relative to the housing and press the snap-fit ​​member, so that the snap-fit ​​member slides relative to the pipe body, thereby allowing the water pipe to be pulled out.

[0004] The water pipe disassembly structure provided in the first aspect of this application typically has a water pipe connector located at the housing to facilitate detachable connection with an external water pipe. Building upon this, this application adds a button, which is movably connected to the housing; that is, the button and the housing are not relatively fixed, but the button can move relative to the housing. Furthermore, when the button is pressed by a user or other component, the button, in its movement, presses against a locking mechanism, causing the locking mechanism to slide relative to the pipe body, releasing the connection between the water pipe and the pipe body, thereby allowing the water pipe to be pulled out by the user or other component.

[0005] In summary, in related technologies, the confined space of the water pipe connector and the small size of the clips make it inconvenient for users to press. Furthermore, users typically need both hands to press the clips, making it difficult to pull out the water pipe after pressing them. This application replaces the user's hand by incorporating a button. The user only needs to press the button with one hand, while the other hand or other components can easily pull out the water pipe, thus reducing the difficulty of disassembly. Simultaneously, the button works in conjunction with the water pipe connector; regardless of the location of the connector or the size of the clips, pressing the button will press the clips, further reducing the difficulty of disassembly.

[0006] The button has an inner surface near the water pipe connector, and the inner surface includes an inclined pressing surface. When the button is rotated by a preset angle, the pressing surface contacts the fastener surface.

[0007] The inner surface further includes an inclined guide surface, the inclination direction of which is opposite to that of the pressing surface.

[0008] The housing has two opposing first sidewalls, each with a pivot on it. The button has two opposing second sidewalls, each with a rotation space. Each pivot is located within a rotation space, allowing the button to rotatably connect to the housing. The button has two opposing first and second ends along its length. The pressed portion of the button is closer to the first end, and the pivot and rotation space are closer to the second end. The length direction is perpendicular to the rotation axis of the button.

[0009] The rotating shaft is provided with a first guide slope, and the end of the second sidewall away from the button is provided with a transition groove. The transition groove is used to accommodate the rotating shaft, and the sidewall of the transition groove is provided with a second guide slope corresponding to the first guide slope.

[0010] The first sidewall is also provided with a limiting member, and the limiting member has an inclined limiting surface on the side near the button. When the button is rotated by a preset angle, the limiting surface can abut against the second sidewall.

[0011] The housing has two opposing first side walls and a bottom wall that bends to connect the two first side walls. The water pipe disassembly structure also includes an elastic element, one end of which is connected to the bottom wall and the other end of which is connected to the button. When the button is pressed, the elastic element is in a compressed state.

[0012] The button has an outer surface that is away from the water pipe connector, and the outer surface has a pressing area.

[0013] Wherein, the outer diameter of the buckle protruding from the tube body is equal to or approximately equal to the outer diameter of the tube body.

[0014] The second aspect of this application provides a fan, the fan including a housing assembly, an air outlet device, and a water circuit device, the air outlet device and the water circuit device being disposed within the housing assembly, the housing assembly having a water outlet, the housing assembly including a water pipe disassembly structure as provided in the first aspect of this application, in which one end of the water pipe connector is connected to a water pipe, the other end of the water pipe connector is connected to one end of the water circuit device, and the other end of the water circuit device is connected to the water outlet.

[0015] The fan provided in the second aspect of this application, by adopting the water pipe disassembly structure provided in the first aspect of this application, typically has the water pipe connector located at the housing to facilitate detachable connection with an external water pipe. Based on this, this application adds a button, wherein the button is movably connected to the housing; that is, the button and the housing are not relatively fixed, and the button can move relative to the housing. Furthermore, when the button is pressed by a user or other component, the button, while moving, presses against a locking element, causing the locking element to slide relative to the pipe body, releasing the connection between the water pipe and the pipe body, thereby allowing the water pipe to be pulled out by the user or other component.

[0016] In summary, in related technologies, the confined space of the water pipe connector and the small size of the clips make it inconvenient for users to press. Furthermore, users typically need both hands to press the clips, making it difficult to pull out the water pipe after pressing them. This application replaces the user's hand by incorporating a button. The user only needs to press the button with one hand, while the other hand or other components can easily pull out the water pipe, thus reducing the difficulty of disassembly. Simultaneously, the button works in conjunction with the water pipe connector; regardless of the location of the connector or the size of the clips, pressing the button will press the clips, further reducing the difficulty of disassembly. Attached Figure Description

[0017] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the embodiments of this application will be described below.

[0018] Figure 1 This is a three-dimensional structural diagram of the fan in one embodiment of this application.

[0019] Figure 2 for Figure 1 The diagram shows a three-dimensional structure of the fan from another perspective.

[0020] Figure 3 for Figure 2 A magnified view of a portion of the fan shown.

[0021] Figure 4 for Figure 2 The diagram shows a partial three-dimensional structure of the water pipe disassembly structure in the fan.

[0022] Figure 5 for Figure 4 The exploded view of the disassembled water pipe structure is shown.

[0023] Figure 6 for Figure 4 The diagram shows a cross-sectional view of the water pipe disassembly structure.

[0024] Figure 7 This is a three-dimensional structural diagram of the button in one embodiment of this application.

[0025] Figure 8 for Figure 6 The diagram shows a cross-sectional view of the water pipe disassembly structure after removing the housing and rotating the button to a preset angle.

[0026] Figure 9 for Figure 7 The diagram shows a three-dimensional structure of the button from another perspective.

[0027] Figure 10 This is an exploded view of part of the housing and buttons in one embodiment of this application.

[0028] Figure 11 for Figure 6 The diagram shows a cross-sectional view of the water pipe disassembly structure after removing the water pipe joints and adapters.

[0029] Figure 12 This is a partial structural diagram of the shell in one embodiment of this application.

[0030] Figure 13 This is a three-dimensional structural diagram of a water pipe connector according to one embodiment of this application.

[0031] Label Explanation:

[0032] Water pipe disassembly structure-1, housing assembly-2, fan-3, housing-10, receiving space-100, first side wall-11, pivot-12, first guide slope-120, limiting member-13, limiting surface-130, bottom wall-14, water pipe connector-20, pipe body-21, snap fastener-22, button-30, inner surface-31, pressing surface-32, guide surface-33, boss-34, outer surface-35, pressing area-350, second side wall-36, transition groove-360, second guide slope-361, rotation space-37, first end-38, second end-39, protruding post-390, adapter-40, elastic member-50. Detailed Implementation

[0033] The following are preferred embodiments of this application. It should be noted that, for those skilled in the art, several improvements and modifications can be made without departing from the principles of this application, and these improvements and modifications are also considered to be within the scope of protection of this application.

[0034] In view of this, in order to solve the above-mentioned technical problems, this application provides a water pipe disassembly structure, which please refer to. Figures 1-6 , Figure 1 This is a three-dimensional structural diagram of the fan in one embodiment of this application. Figure 2 for Figure 1 The diagram shows a three-dimensional structure of the fan from another perspective. Figure 3 for Figure 2 A magnified view of a portion of the fan shown. Figure 4for Figure 2 The diagram shows a partial three-dimensional structure of the water pipe disassembly structure in the fan. Figure 5 for Figure 4 The exploded view of the disassembled water pipe structure is shown. Figure 6 for Figure 4 The diagram shows a cross-sectional view of the water pipe disassembly structure. This embodiment provides a water pipe disassembly structure 1, which includes a housing 10, a water pipe connector 20, and a button 30. One end of the water pipe connector 20 is used to connect a water pipe, and the other end is used to connect a water circuit device. The water pipe connector 20 includes a pipe body 21 and a locking member 22 that can slide relative to the pipe body 21. The water pipe can be detachably connected to the pipe body 21 through the locking member 22. The button 30 is movably connected to the housing 10. When the button 30 is pressed, the button 30 can move relative to the housing 10 and press the locking member 22, so that the locking member 22 slides relative to the pipe body 21, thereby allowing the water pipe to be pulled out.

[0035] The water pipe disassembly structure 1 involves the quick disassembly of the water pipe and the water pipe connector 20, and can be applied to a variety of systems and equipment, such as fans 3, hydraulic systems, chemical equipment, medical equipment, etc. This embodiment and the following description only use fans 3 as an illustration.

[0036] The water pipe disassembly structure 1 includes a housing 10, a water pipe connector 20, and a button 30. The housing 10 is part of the housing assembly 2 in the equipment and is mainly used to install various components and serve as an appearance part. This embodiment does not limit the housing 10, as long as it can accommodate the button 30. The water pipe connector 20 is usually located at the housing 10 to facilitate the detachable connection of external water pipes to the water circuit device inside the housing 10. In other words, one end of the water pipe connector 20 is used to connect the water pipe, and the other end is used to connect the water circuit device. The water pipe connector 20 includes a pipe body 21 and a locking member 22 that can slide relative to the pipe body 21. When connecting the water pipe, it is not necessary to control the locking member 22; simply inserting the water pipe into the locking member 22 will connect the water pipe to the pipe body 21. However, when disassembling, the user must press the locking member 22 by hand to release the connection restriction between the water pipe and the pipe body 21, thereby pulling out the water pipe. In related technologies, the water pipe connector 20 is located at the housing 10. The location of the water pipe connector 20 is confined, making it inconvenient for the user to press it. Furthermore, the locking element 22 of the water pipe connector 20 is typically small, further complicating the user's pressing in such a confined space. Additionally, the user usually needs both hands to press the locking element 22, making it difficult to remove the water pipe after pressing it. It is worth noting that the water pipe can be directly inserted into the water pipe connector 20 or indirectly inserted into it via an adapter 40. This embodiment only illustrates the adapter 40 and does not show the water pipe connected to the adapter 40, but the principle is the same and can be understood in the same way.

[0037] Based on this, this embodiment adds a button 30, which is movably connected to the housing 10. In other words, the button 30 and the housing 10 are not fixed to each other; the button 30 can move relative to the housing 10, for example, the button 30 can slide and / or rotate relative to the housing 10. Regardless of the connection method, when the button 30 is pressed, the button 30 can move relative to the housing 10. It is worth noting that the main body of the button 30 can be manually pressed by the user, or it can be other components, such as a motor that drives a transmission structure to finally press the button 30, achieving automatic pressing. This embodiment and the following description only illustrate the manual pressing by the user.

[0038] When the button 30 moves relative to the housing 10, this embodiment can also enable the button 30 to press the buckle 22. When the button 30 presses the buckle 22, it can act as a user's hand, causing the buckle 22 to slide relative to the pipe body 21, releasing the connection restriction between the water pipe and the pipe body 21, so that the water pipe can be pulled out smoothly.

[0039] In summary, this embodiment replaces the user's hand with a button 30. The user only needs to press the button 30 with one hand, and the other hand or other parts can easily pull out the water pipe, thereby reducing the difficulty of disassembly. At the same time, the button 30 cooperates with the water pipe connector 20. Regardless of whether the location of the water pipe connector 20 is narrow or not, or the size of the fastener 22, the button 30 can press the fastener 22 when it is pressed, which also reduces the difficulty of disassembly.

[0040] Optionally, the housing 10 is provided with a receiving space 100, and at least a portion of the button 30 may be disposed within the receiving space 100 to accommodate the button 30.

[0041] Please refer to this as well. Figures 6-8 , Figure 7 This is a three-dimensional structural diagram of the button in one embodiment of this application. Figure 8 for Figure 6 The diagram shows a cross-sectional view of the water pipe disassembly structure with the housing removed and the button rotated to a preset angle. In this embodiment, the button 30 has an inner surface 31 near the water pipe connector 20, and the inner surface 31 includes an inclined pressing surface 32. When the button 30 rotates to a preset angle, the pressing surface 32 contacts the fastener 22.

[0042] The button 30 has an inner surface 31 near the water pipe connector 20 and an outer surface 35 away from the water pipe connector 20. The outer surface 35 is the surface pressed by the user, and the inner surface 31 is the surface on which the button 30 mates with the water pipe connector 20. In this embodiment, the inner surface 31 may include a pressing surface 32, which is inclined. In other words, the surfaces other than the pressing surface 32 are flat, and the pressing surface 32 is inclined relative to the other surfaces and has a certain included angle.

[0043] This embodiment illustrates the connection between button 30 and housing 10. Since button 30 rotates relative to housing 10 at a certain angle when pressed, and the pressing surface 32 is tilted in this embodiment, the pressing surface 32 can achieve surface contact with the latching member 22 when button 30 rotates at a preset angle. This increases the contact area between button 30 and latching member 22, allowing latching member 22 to slide entirely relative to pipe body 21, rather than only making linear or point contact where button 30 only partially slides relative to pipe body 21. This improves the sliding effect of latching member 22 and better unlocks the water pipe. When button 30 is not pressed, the relationship between button 30 and latching member 22 is not limited; button 30 and latching member 22 may not contact each other, or they may make linear contact.

[0044] Please refer to this again. Figure 7In this embodiment, the inner surface 31 further includes an inclined guide surface 33, the inclination direction of which is opposite to the inclination direction of the pressing surface 32.

[0045] In addition to the inclined pressing surface 32, the inner surface 31 may also include an inclined guide surface 33, but the inclination direction of the guide surface 33 is opposite to that of the pressing surface 32. During the assembly process of the entire machine, the button 30 is installed on the housing 10, and then the assembled housing 10 and the button 30 are attached to other components, such as the rear housing. By providing the guide surface 33 and making it inclined, the guide surface 33 on the button 30 can be used as a guide when the housing 10 is assembled to other components, facilitating the assembly of the housing 10.

[0046] Optionally, a boss 34 may be provided on the inner surface 31 of the button 30. The surfaces of the boss 34 on opposite sides along the length direction of the button 30 may be inclined. In this case, the surface near the pressed part of the button 30 is the pressing surface 32, and the surface away from the pressed part of the button 30 is the guide surface 33.

[0047] Please refer to Figure 9 , Figure 9 for Figure 7 The diagram shows a three-dimensional view of the button from another perspective. In this embodiment, the button 30 has an outer surface 35 facing away from the water pipe connector 20, and the outer surface 35 has a pressing area 350.

[0048] In this embodiment, a pressing area 350 is provided on the outer surface 35 of the button 30. The pressing area 350 is used to indicate the part to press, making it easier for the user to press. Excellent pressing effect can be achieved by applying a small amount of force. Of course, the button 30 can also be moved by the user pressing an area outside the pressing area 350. It is not necessary to press the pressing area 350, but pressing the pressing area 350 will provide a better pressing effect.

[0049] Optionally, a circular groove may be formed on the outer surface 35 of the button 30, which is the pressing area 350.

[0050] Please refer to this as well. Figure 7 , Figures 10-11 , Figure 10 This is an exploded view of part of the housing and buttons in one embodiment of this application. Figure 11 for Figure 6The diagram shows a cross-sectional view of the water pipe disassembly structure after removing the water pipe joint and adapter. In this embodiment, the housing 10 has two opposing first sidewalls 11, each first sidewall 11 having a rotating shaft 12. The button 30 has two opposing second sidewalls 36, each second sidewall 36 having a rotation space 37. Each rotating shaft 12 is located within one of the rotation spaces 37, allowing the button 30 to rotatably connect to the housing 10. The button 30 includes a first end 38 and a second end 39 opposing each other along its length. The pressed portion of the button 30 is near the first end 38, and the rotating shaft 12 and the rotation space 37 are near the second end 39. The length direction is perpendicular to the rotation axis of the button 30.

[0051] Two opposing first sidewalls 11 can be provided on the housing 10, and a rotating shaft 12 can be provided on each first sidewall 11. Optionally, the two first sidewalls 11 are provided on the inner side of the housing 10 and at the edge of the housing 10 receiving space 100, so that the housing 10 can better cooperate with the button 30. Then, two opposing second sidewalls 36 are provided on the button 30, and a rotation space 37 can be provided on each second sidewall 36. Optionally, the two second sidewalls 36 are provided on the inner surface 31 of the button 30 and at the edge of the inner surface 31. Optionally, the rotation space 37 can be a rotation groove or a rotation hole. Through the arrangement of the first sidewalls 11 and the second sidewalls 36, the rotating shaft 12 and the rotation space 37 can be better cooperated, so that each rotating shaft 12 can be provided in a rotation space 37, thereby making the button 30 rotatably connected to the housing 10. When the button 30 is pressed, the rotating shaft 12 rotates in the rotation space 37.

[0052] Furthermore, when button 30 is rotated, it can rotate along the axis of the rotating shaft 12. Therefore, the axis of the rotating shaft 12 is the rotation axis of button 30. The length direction of button 30 is perpendicular to the rotation axis, and the width direction of button 30 is parallel to the rotation axis. In other words, the direction of the longest side of button 30 is its length direction. Button 30 includes a first end 38 and a second end 39 arranged opposite each other along its length direction. As shown in the figure, the first end 38 is the upper end, and the second end 39 is the lower end. In this embodiment, the pressed part of button 30 is located closer to the first end 38, that is, the pressed part of button 30 is located closer to the upper end, and the rotating shaft 12 and the rotation space 37 are located closer to the second end 39, that is, the rotating shaft 12 and the rotation space 37 are located closer to the lower end.

[0053] The above can also be understood as the rotation axis of button 30 being moved away from the pressed area of ​​button 30. This increases the rotational torque of button 30 when it is pressed, reducing the force applied by the user and making it easier for the user to press button 30 and the latch 22. For example, when there is water pressure in the water pipe, if the user presses the latch 22 by hand, a greater force is required to make the latch 22 slide and unlock, compared to when there is no water pressure in the water pipe. This embodiment, by setting the position of the rotation axis, allows the user to apply less force to make the latch 22 slide and unlock, even when there is water pressure in the water pipe, further reducing the difficulty of disassembly.

[0054] Please refer to this as well. Figure 7 , Figure 10 , Figure 12 , Figure 12 This is a partial structural diagram of the housing according to one embodiment of this application. In this embodiment, the rotating shaft 12 is provided with a first guide slope 120, and the end of the second sidewall 36 away from the button 30 is provided with a transition groove 360. The transition groove 360 ​​is used to accommodate the rotating shaft 12, and the sidewall of the transition groove 360 ​​is provided with a second guide slope 361 corresponding to the first guide slope 120.

[0055] Since this embodiment places the rotating shaft 12 within the rotation space 37 to rotatably connect the button 30 to the housing 10, the button 30 needs to be mounted on the housing 10 during assembly. The two second sidewalls 36 are close to the two first sidewalls 11. However, because the rotating shaft 12 protrudes from the first sidewalls 11, it is inconvenient to assemble the button 30. Therefore, this embodiment first creates a transition groove 360 ​​at the end of the second sidewall 36 furthest from the button 30. When the second sidewall 36 moves closer to the first sidewall 11, the rotating shaft 12 can be placed within the transition groove 360, preventing interference between the rotating shaft 12 and the button 30, thus preventing the button 30 from being assembled.

[0056] Based on this, this embodiment also provides a first guide slope 120 on the side of the rotating shaft 12 near the button 30, and a second guide slope 361 corresponding to the first guide slope 120 is provided on the side wall of the transition groove 360. By utilizing the contact and cooperation between the first guide slope 120 and the second guide slope 361, the difficulty of installing the rotating shaft 12 into the rotation space 37 can be further reduced. Specifically, as the button 30 moves closer, the rotating shaft 12 is first placed in the transition groove 360, and then the first guide slope 120 and the second guide slope 361 come into contact. When the button 30 continues to move closer, the rotating shaft 12 will continuously squeeze the second side wall 36, causing the second side wall 36 to deform to a certain extent, until the rotating shaft 12 is placed in the rotation space 37, and the second side wall 36 returns to its original shape.

[0057] Please refer to this again. Figures 10-12In this embodiment, the first sidewall 11 is also provided with a limiting member 13. The limiting member 13 is provided with an inclined limiting surface 130 on the side near the button 30. When the button 30 rotates at a preset angle, the limiting surface 130 can abut against the second sidewall 36.

[0058] In addition to the pivot 12, a limiting member 13 can also be provided on the first sidewall 11, and a limiting surface 130 is provided on the side of the limiting member 13 near the button 30. When the button 30 is pressed and rotated by a preset angle, the latch 22 can be unlocked, but at this time there is no need to press the latch 22 further to avoid damage to the latch 22. Therefore, when the button 30 rotates by a preset angle, the limiting surface 130 can abut against the second sidewall 36, thereby using the limiting member 13 to prevent the button 30 from continuing to rotate. At the same time, since the second sidewall 36 is horizontal in the initial state of the button 30, and tilted when the button 30 rotates by a preset angle, this embodiment can also tilt the limiting surface 130 to better abut against the tilted second sidewall 36.

[0059] In this embodiment, the housing 10 is provided with two first side walls 11 arranged opposite to each other and a bottom wall 14 that bends and connects the two first side walls 11. The water pipe disassembly structure 1 also includes an elastic element 50. One end of the elastic element 50 is connected to the bottom wall 14 and the other end of the elastic element 50 is connected to the button 30. When the button 30 is pressed, the elastic element 50 is in a compressed state.

[0060] In addition to the two first side walls 11, the housing 10 may also have a bottom wall 14, which connects the two first side walls 11 together. The water pipe disassembly structure 1 may also have an elastic element 50, with one end of the elastic element 50 connected to the bottom wall 14 and the other end connected to the button 30. When the button 30 is pressed, the elastic element 50 is compressed. When the user releases the button, the compressed elastic element 50 provides a rebound force to the button 30, causing the button 30 to move in the opposite direction and return to its initial position.

[0061] Optionally, the button 30 may be provided with a protrusion 390, and the other end of the elastic element 50 may be sleeved on the protrusion 390 for fixation.

[0062] Please refer to Figure 13 , Figure 13 This is a three-dimensional structural diagram of a water pipe connector according to one embodiment of this application. In this embodiment, the outer diameter of the buckle 22 protruding from the pipe body 21 is equal to or approximately equal to the outer diameter of the pipe body 21.

[0063] In addition to creatively adding a button 30 and designing the structure of the button 30 and other components that cooperate with it, this application also creatively designs the water pipe connector 20. Specifically, in related technologies, the outer diameter and thickness of the portion of the latching member 22 protruding from the pipe body 21 are relatively small, making it difficult for the user to contact the latching member 22 and apply force to it. This embodiment creatively increases the outer diameter of the latching member 22 protruding from the pipe body 21, making the outer diameter of the latching member 22 equal to or approximately equal to the outer diameter of the pipe body 21, thus facilitating the pressing engagement of the button 30 and the latching member 22.

[0064] Optionally, this embodiment may also increase the thickness of the portion of the buckle 22 protruding from the tube body 21.

[0065] Please refer to this again. Figures 1-2 This embodiment provides a fan 3, which includes a housing assembly 2, an air outlet device, and a water circuit device. The air outlet device and the water circuit device are disposed inside the housing assembly 2. The housing assembly 2 has a water outlet. The housing assembly 2 includes a water pipe disassembly structure 1 as provided in the above embodiment of this application. In the water pipe disassembly structure 1, one end of the water pipe connector 20 is connected to a water pipe, the other end of the water pipe connector 20 is connected to one end of the water circuit device, and the other end of the water circuit device is connected to the water outlet.

[0066] The fan 3 provided in this embodiment includes, but is not limited to, household fans and industrial fans in terms of usage scenarios, and includes, but is not limited to, table fans and standing fans in terms of type. This embodiment only illustrates the use of a standing fan, in which case the fan 3 can also be called a tower fan. The fan 3 mainly includes a housing assembly 2, an air outlet device, and a water channel device. The air outlet device is located inside the housing assembly 2 and can realize the air outlet function. The water channel device is located inside the housing assembly 2 and can be connected to an external water pipe, and sprays water mist outward through the water outlet. In this case, the fan 3 can also be called a mist tower fan.

[0067] The housing assembly 2 includes the water pipe disassembly structure 1 provided in the above embodiments of this application, and the position of the housing 10 is not limited. For example, the housing 10 can be a front net, a rear net, a top shell, or other parts. This application only illustrates the housing 10 as a rear net.

[0068] The fan 3 provided in this embodiment employs the water pipe disassembly structure 1 provided in the above-described embodiments of this application. The water pipe connector 20 is typically located at the housing 10 to facilitate detachable connection with an external water pipe. Based on this, this application adds a button 30, which is movably connected to the housing 10; that is, the button 30 and the housing 10 are not relatively fixed, and the button 30 can move relative to the housing 10. Furthermore, when the button 30 is pressed by a user or other component, the button 30, while moving, presses the latch 22, causing the latch 22 to slide relative to the pipe body 21, releasing the connection restriction between the water pipe and the pipe body 21, thereby allowing the water pipe to be pulled out by the user or other component.

[0069] In summary, in related technologies, the confined space of the water pipe connector 20 and the small size of the clip 22 make it inconvenient for users to press. Furthermore, users typically need both hands to press the clip 22, making it difficult to pull out the water pipe after pressing it. This application replaces the user's hand with a button 30. The user only needs to press the button 30 with one hand, and the other hand or other parts can easily pull out the water pipe, thus reducing the difficulty of disassembly. Simultaneously, the button 30 works in conjunction with the water pipe connector 20; regardless of the location of the water pipe connector 20 or the size of the clip 22, pressing the button 30 will press the clip 22, further reducing the difficulty of disassembly.

[0070] In the description of this application, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.

[0071] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this application, "multiple" means two or more, unless otherwise expressly specified. Moreover, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion.

[0072] In this application, unless otherwise expressly specified and limited, the terms "installation," "connection," "joining," "fixing," etc., should be interpreted broadly. For example, they can refer to a connection, a detachable connection, or an integral part. They can refer to a mechanical connection or an electrical connection. They can refer to a direct connection or an indirect connection through an intermediate medium, or the internal communication of two components or the interaction between two components. For those skilled in the art, the specific meaning of the above terms in this application can be understood according to the specific circumstances.

[0073] The foregoing has provided a detailed description of the embodiments of this application, elucidating and explaining the principles and implementation methods of this application. These descriptions are merely for the purpose of aiding understanding the method and core ideas of this application. However, the content of this specification should not be construed as a limitation of this application. Those skilled in the art can make various modifications and variations to this application without departing from its spirit and scope. These modifications and variations fall within the scope of the claims of this application and their equivalents.

Claims

1. A water pipe disassembly structure, characterized in that, The water pipe disassembly structure includes a housing, a water pipe connector, and a button. One end of the water pipe connector is used to connect to a water pipe, and the other end is used to connect to a water circuit device. The water pipe connector includes a pipe body and a locking member that can slide relative to the pipe body. The water pipe can be detachably connected to the pipe body through the locking member. The button is movably connected to the housing. When the button is pressed, the button can move relative to the housing and press the locking member, so that the locking member slides relative to the pipe body, thereby allowing the water pipe to be pulled out.

2. The water pipe disassembly structure as described in claim 1, characterized in that, The button has an inner surface near the water pipe connector, and the inner surface includes an inclined pressing surface. When the button is rotated by a preset angle, the pressing surface contacts the fastener surface.

3. The water pipe disassembly structure as described in claim 2, characterized in that, The inner surface also includes an inclined guide surface, the inclination direction of which is opposite to the inclination direction of the pressing surface.

4. The water pipe disassembly structure as described in claim 1, characterized in that, The housing has two opposing first sidewalls, each first sidewall having a pivot. The button has two opposing second sidewalls, each second sidewall having a rotation space. Each pivot is located within a rotation space, allowing the button to rotatably connect to the housing. The button includes a first end and a second end opposing each other along its length. The pressed portion of the button is closer to the first end, and the pivot and the rotation space are closer to the second end. The length direction is perpendicular to the rotation axis of the button.

5. The water pipe disassembly structure as described in claim 4, characterized in that, The rotating shaft is provided with a first guide slope, and the second sidewall is provided with a transition groove at the end away from the button. The transition groove is used to accommodate the rotating shaft, and the sidewall of the transition groove is provided with a second guide slope corresponding to the first guide slope.

6. The water pipe disassembly structure as described in claim 4, characterized in that, The first sidewall is also provided with a limiting member, and the limiting member has an inclined limiting surface on the side near the button. When the button is rotated by a preset angle, the limiting surface can abut against the second sidewall.

7. The water pipe disassembly structure as described in claim 1, characterized in that, The housing has two opposing first side walls and a bottom wall that bends to connect the two first side walls. The water pipe disassembly structure also includes an elastic element. One end of the elastic element is connected to the bottom wall, and the other end of the elastic element is connected to the button. When the button is pressed, the elastic element is in a compressed state.

8. The water pipe disassembly structure as described in claim 1, characterized in that, The button has an outer surface that is opposite to the water pipe connector, and the outer surface has a pressing area.

9. The water pipe disassembly structure as described in claim 1, characterized in that, The outer diameter of the buckle protruding from the tube body is equal to or approximately equal to the outer diameter of the tube body.

10. A fan, characterized in that, The fan includes a housing assembly, an air outlet device, and a water circuit device. The air outlet device and the water circuit device are disposed within the housing assembly. The housing assembly has a water outlet. The housing assembly includes a water pipe disassembly structure as described in any one of claims 1-9. In the water pipe disassembly structure, one end of the water pipe connector is connected to a water pipe, the other end of the water pipe connector is connected to one end of the water circuit device, and the other end of the water circuit device is connected to the water outlet.