Humidifying structure and humidifying fan
By setting up a power supply chamber on the pipe connection of the humidification fan and making it removably connected to the mount, the problem of wires being easily damaged during disassembly and cleaning of the humidification fan is solved, and the aesthetics of the equipment is improved.
Patent Information
- Application Number
- CN202422073392.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-26
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-08-26
AI Technical Summary
When existing humidification fans are removed and cleaned, the wires are easily pulled and damaged, and the equipment is not beautiful enough.
A humidification structure is designed, in which a power supply chamber is provided on one side of the pipe connection, which is used to accommodate the circuit. The pipe connection is removably connected to the mounting base, ensuring that the power is disconnected first, protecting the wires, and improving the aesthetics of the equipment through a compact wire layout.
It effectively avoids damage to the wires during disassembly of pipes, and improves the overall aesthetics of the equipment, ensuring the safety and convenience of users during cleaning.
Smart Images

Figure CN223005079U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of humidification, in particular to a humidification structure and a humidifying fan. Background Art
[0002] Maintaining an appropriate indoor air humidity is crucial for improving the comfort of living and working environments. Currently, as a device that combines the function of air humidification and the function of fan air supply, humidifying fans are widely used in places where humidity needs to be adjusted and air flow needs to be provided. By converting water vapor into fine mist and evenly dispersing it in the air, humidifying fans can effectively increase the indoor humidity and improve the dry environment, thus providing more comfortable conditions for life and work. However, when using a humidifying fan, users need to regularly clean the pipeline for transporting water vapor, and there are certain problems with the disassembly of the pipeline in existing humidifying fans. Some humidifying fans place the pipeline outside the bracket for easy disassembly and cleaning, which affects the overall aesthetics of the product. And there are also some humidifying fans that integrate the pipeline and the wire inside the same bracket. Although this saves space and increases the aesthetics, when disassembling the pipeline for cleaning, the presence of the wire will limit the disassembly operation, and it is easy to pull the wire accidentally, thereby causing damage to the wire.
[0003] Therefore, it is necessary to develop a humidification structure and a humidifying fan that can not only ensure the aesthetics of the device but also protect the wire during the disassembly and cleaning process of the pipeline. Summary of the Utility Model
[0004] In view of the problem in the above-mentioned prior art that it is difficult to balance aesthetics and the wire is easily damaged during the cleaning process, the technical solution adopted by the utility model to solve its technical problems is:
[0005] A humidification structure includes a mounting base and a pipeline connector connected to the mounting base and used for discharging water vapor. One side of the pipeline connector is provided with a power supply cavity. The mounting base includes a driving device connected to the pipeline connector and used for generating water vapor. The power supply cavity is used to accommodate the circuit to supply power to an external device. The pipeline connector is detachably connected to the mounting base.
[0006] Further, in the humidification structure of the solution, the pipeline connector includes a first pipeline part and a second pipeline part detachably connected to the first pipeline part. A first isolation seat is provided on one side of the first pipeline part, and a second isolation seat is provided on one side of the second pipeline part. The first isolation seat and the second isolation seat enclose to form a power supply cavity.
[0007] Further, in the humidification structure of the solution, a limiting end is further provided on one side of the first pipeline part close to the first isolation seat, and a limiting groove is further provided on one side of the second pipeline part close to the second isolation seat. The limiting end and the limiting groove cooperate to fix the relative positions of the first pipeline part and the second pipeline part.
[0008] Furthermore, a humidifying structure described in the solution, wherein a first mating end and a second mating end connected to the first mating end are further provided on one side of the first pipe member close to the second pipe member, a mating cavity and a mating hole are further provided on one side of the second pipe member close to the first pipe member, the first mating end is in tight fit with the mating cavity, and the second mating end is in tight fit with the mating hole, so that the first pipe member and the second pipe member are detachably connected, and a sealing member is provided on the outer side of the second mating end.
[0009] Furthermore, a humidifying structure described in the solution, wherein the mounting seat further includes a base and a connecting pipe connected to the base, the first pipe member further has an outlet connection end for connecting an external device, the second pipe member further has an inlet connection end detachably connected to the connecting pipe, the pipe connecting member further has a water vapor pipe communicating the outlet connection end and the inlet connection end, and the connecting pipe is detachably connected to the base.
[0010] Furthermore, a humidifying structure described in the solution, wherein the mounting seat further includes a fixing bracket respectively connected to the base and the pipe connecting member, the fixing bracket has a fixing end for fixing the second pipe member, the fixing end is provided with a first fixing hole, the second pipe member is further provided with a first connection hole, and the first pipe member is further provided with a second connection hole penetrating through the first pipe member and matingly connected to an external device on one side of the first mating end. The fixing bracket is detachably connected to the base, and the first fixing hole is matingly connected to the first connection hole, so that the fixing bracket is detachably connected to the pipe connecting member.
[0011] Furthermore, a humidifying structure described in the solution, wherein the limiting end is provided with a third fixing hole, and a third connection hole is further provided on one side of the fixing bracket. The third fixing hole and the third connection hole are matingly connected, so that the fixing bracket is matingly connected to the first pipe member.
[0012] Furthermore, a humidifying structure described in the solution, wherein the fixing bracket is further provided with an isolation cavity for placing wires, and the isolation cavity is used for isolating the wires and the connecting pipe.
[0013] Furthermore, a humidifying structure described in the solution, wherein the driving device includes an ultrasonic generator located at one end of the connecting pipe away from the pipe connecting member, a focusing ring located between the ultrasonic generator and the pipe connecting member, and a fan for promoting the water vapor on the focusing ring to enter the connecting pipe. The mounting seat is further provided with a storage cavity for storing liquid and a conveying channel for conveying the liquid to the ultrasonic generator.
[0014] Further, a humidifying fan according to the solution further includes a blowing device, a connecting bracket connecting the blowing device and the first pipe fitting, a water outlet at the air outlet of the blowing device, and an output channel communicating the water outlet and the outlet connection end.
[0015] The beneficial effects of the present utility model are as follows:
[0016] By providing a power supply cavity on the pipe connector and detachably connecting the pipe connector to the mounting base, the user can first disconnect the power supply and then detach the pipe connector from the mounting base when disassembling and cleaning the pipe, facilitating the subsequent disassembly and cleaning of the internal pipe of the humidifying structure and avoiding damage to the wires during the pipe disassembly process. In addition, by arranging the power supply cavity on the pipe connector, the layout of the wires and the pipe is more compact, avoiding the exposure of the pipe to the outside and further enhancing the overall aesthetics of the device.
[0017] The following will further illustrate the present utility model in conjunction with the drawings and specific embodiments. Description of the Drawings
[0018] Figure 1 It is a schematic external view of a humidifying structure of the present utility model.
[0019] Figure 2 It is a schematic cross-sectional external view of a humidifying structure of the present utility model.
[0020] Figure 3 It is an enlarged view of part I of the schematic cross-sectional external view of a humidifying structure of the present utility model.
[0021] Figure 4 It is an exploded schematic cross-sectional external view of a pipe connector of a humidifying structure of the present utility model.
[0022] Figure 5 It is an exploded schematic external view of a pipe connector of a humidifying structure of the present utility model.
[0023] Figure 6 It is an exploded schematic external view of a pipe connector of a humidifying structure of the present utility model.
[0024] Figure 7 It is a schematic external view of a mounting base of a humidifying structure of the present utility model.
[0025] Figure 8 It is a schematic cross-sectional external view of a humidifying fan of the present utility model. Specific Embodiments
[0026] The following will describe in detail the embodiments of the present utility model with reference to the drawings.
[0027] AsFigures 1-7 A humidifying structure is shown, which includes a mounting base 1 and a pipe connector 2 connected to the mounting base 1 and used for discharging water vapor. One side of the pipe connector 2 is provided with a power supply chamber 25. The mounting base 1 includes a driving device 12 connected to the pipe connector 2 and used for generating water vapor. The power supply chamber 25 is used to accommodate a circuit to supply power to an external device. The pipe connector 2 is detachably connected to the mounting base 1.
[0028] In the utility model, by arranging the power supply chamber 25 on the pipe connector 2 and detachably connecting the pipe connector 2 to the mounting base 1, when a user disassembles and cleans the pipe, the user can first disconnect the power supply and then detach the pipe connector 2 from the mounting base 1, which facilitates the subsequent disassembly and cleaning work of the internal pipe of the humidifying structure and avoids damage to the wires during the pipe disassembly process. In addition, by arranging the power supply chamber 25 on the pipe connector 2, the layout of the wires and the pipe is more compact, avoiding the situation of exposing the pipe outside, and further improving the overall aesthetics of the device.
[0029] Specifically, in the utility model, the power supply chamber 25 is arranged on the pipe connector 2, and the detachable connection between the pipe connector 2 and the mounting base 1 is realized. When a user disassembles and cleans the pipe, the user can first disconnect the power supply and then detach the pipe connector 2 from the mounting base 1. This setting avoids the problem that the wires may be pulled and damaged during the pipe disassembly in the traditional structure. Further, by integrating the power supply chamber 25 on the pipe connector 2, the layout of the wires and the pipe is more compact and reasonable, not only saving the space inside the device, but also effectively avoiding the situation of exposing the pipe outside, thus greatly improving the overall aesthetics of the device.
[0030] Further, as Figures 1-7 shown, a humidifying structure, wherein the pipe connector 2 includes a first pipe part 22 and a second pipe part 23 detachably connected to the first pipe part 22. A first isolation seat 211 is provided on one side of the first pipe part 22, and a second isolation seat 212 is provided on one side of the second pipe part 23. The first isolation seat 211 and the second isolation seat 212 enclose to form the power supply chamber 25.
[0031] In the present utility model, the pipe connector 2 is set as a detachable first pipe member 22 and a second pipe member 23. When the first pipe member 22 and the second pipe member 23 are connected, a power supply cavity 25 is formed, enabling the power cord to be connected to an external device through the power supply cavity 25, thereby powering the external device. In this embodiment, the power cord is connected to the external device in the form of a plug. This setting allows the first pipe member 22 and the second pipe member 23 to be separated and the power cord to be unplugged from the plug before disassembling the pipe, avoiding the power cord from being pulled during the disassembly process and thus protecting the power cord from damage. Further, by respectively providing a first isolation seat 211 and a second isolation seat 212 on the first pipe member 22 and the second pipe member 23, this setting enables the plug to be installed on the pipe connector 2, making the overall layout of the humidifying structure more compact and further improving the aesthetics of the device.
[0032] Further, as Figures 1-7 shown in a humidifying structure, a limiting end 213 is further provided on one side of the first pipe member 22 close to the first isolation seat 211, and a limiting groove 214 is further provided on one side of the second pipe member 23 close to the second isolation seat 212. The limiting end 213 and the limiting groove 214 cooperate to fix the relative positions of the first pipe member 22 and the second pipe member 23.
[0033] In the present utility model, by respectively providing a limiting end 213 and a limiting groove 214 on the first pipe member 22 and the second pipe member 23, through the cooperation of the limiting end 213 and the limiting groove 214, it can be ensured that the first pipe member 22 and the second pipe member 23 can maintain relative positions when connected. This setting not only effectively prevents the first pipe member 22 and the second pipe member 23 from being misaligned or loosened during use, but also simplifies the installation process of the first pipe member 22 and the second pipe member 23, such that when installing the first pipe member 22 and the second pipe member 23, there is no need to spend too much time on alignment operations, thus facilitating the user to quickly and accurately complete the assembly and disassembly of the pipe.
[0034] Further, as Figures 1-7 shown in a humidifying structure, a first mating end 26 and a second mating end 27 connected to the first mating end 26 are further provided on one side of the first pipe member 22 close to the second pipe member 23. A mating cavity 28 and a mating hole 29 are further provided on one side of the second pipe member 23 close to the first pipe member 22. The first mating end 26 is tightly mated with the mating cavity 28, and the second mating end 27 is tightly mated with the mating hole 29 to enable the first pipe member 22 and the second pipe member 23 to be detachably connected. A seal 210 is provided on the outer side of the second mating end 27.
[0035] The utility model realizes the convenient detachable connection between the first pipe fitting 22 and the second pipe fitting 23 through the tight fit between the first matching end 26 and the matching cavity 28, and the tight fit between the second matching end 27 and the matching hole 29. This setting enables users to easily assemble and disassemble the pipe connector 2, providing convenience for subsequent separation of the power cord and the wire of the external device. Further, by providing a seal 210 at the second matching end 27, this setting can ensure the airtightness at the connection between the first pipe fitting 22 and the second pipe fitting 23, preventing the problem of water vapor leakage when passing through the pipe connector 2, and ensuring the reliability and stability of the humidifying structure.
[0036] Further, as Figures 1-7 shown in a humidifying structure, wherein the mounting base 1 further includes a base 19 and a connecting pipe 14 connected to the base 19. The first pipe fitting 22 is further provided with an outlet connection end 221 for connecting external devices. The second pipe fitting 23 is further provided with an inlet connection end 231 detachably connected to the connecting pipe 14. The pipe connector 2 is further provided with a water vapor pipe 24 communicating the outlet connection end 221 and the inlet connection end 231. The connecting pipe 14 is detachably connected to the base 19.
[0037] In the utility model, the second pipe fitting 23 is provided with an inlet connection end 231 detachably connected to the connecting pipe 14. This setting enables the connecting pipe 14 to be quickly connected to the second pipe fitting 23, allowing users to quickly install or disassemble the connecting pipe 14, facilitating the cleaning of the pipe connector 2. Further, by providing an outlet connection end 221 for connecting external devices on the first pipe fitting 22, it is ensured that the humidifying structure can be flexibly matched with other external devices. This setting increases the applicability and functionality of the device. Further, the pipe connector 2 is provided with a water vapor pipe 24 communicating the outlet connection end 221 and the inlet connection end 231. This setting ensures that water vapor can smoothly transfer from the driving device 12 to the outlet connection end 221, reducing the loss of water vapor during the transfer process and ensuring the uniformity and stability of the humidifying effect. Further, by making the connecting pipe 14 and the base 19 detachable, users can more conveniently disassemble and clean the connecting pipe 14, improving the user experience.
[0038] Further, as Figures 1-7A humidifying structure is shown, wherein the mounting base 1 further includes a fixing bracket 13 respectively connected to the base 19 and the pipe connector 2. The fixing bracket 13 is provided with a fixing end 15 for fixing the second pipe member 23. The fixing end 15 is provided with a first fixing hole 17. The second pipe member 23 is further provided with a first connection hole 216. The first pipe member 22 is located on one side of the first mating end 26 and is further provided with a second connection hole 217 passing through the first pipe member 22 and matingly connected to an external device. The fixing bracket 13 is detachably connected to the base 19. The first fixing hole 17 and the first connection hole 216 are matingly connected so that the fixing bracket 13 is detachably connected to the pipe connector 2.
[0039] In the present utility model, by providing a fixing end 15 on the fixing bracket 13 for restricting the height of the second pipe member 23, it is ensured that when the second pipe member 23 is placed on the fixing bracket 13, the fixing end 15 can effectively support the second pipe member 23 and prevent it from moving downward further. This setting enables the pipe connector 2 to be firmly positioned through the fixing end 15, facilitating subsequent connection and fixation to an external device. Further, preferably, the first fixing hole 17 and the first connection hole 216 are mated by means of a threaded connection. This setting ensures that the second pipe member 23 can be stably installed on the mounting base 1, enhancing the stability of the overall structure. Further, the first pipe member 22 is provided with a second connection hole 217 facilitating connection to an external device. This setting improves the compatibility and flexibility of the humidifying structure, enabling the user to connect the humidifying structure to different external devices according to actual needs, thereby adapting to different usage scenarios and requirements. Further, by making the fixing bracket 13 and the base 19 detachable, the user can more conveniently disassemble the fixing bracket 13, facilitating subsequent disassembly and cleaning of the connecting pipe 14, and enhancing the user experience.
[0040] Further, as Figures 1-7 A humidifying structure is shown, wherein the limiting end 213 is provided with a third fixing hole 215. One side of the fixing bracket 13 is further provided with a third connection hole 131. The third fixing hole 215 and the third connection hole 131 are matingly connected so that the fixing bracket 13 is matingly connected to the first pipe member 22.
[0041] In the present utility model, the connection between the third fixing hole 215 and the third connection hole 131 preferably adopts a threaded manner, which enhances the overall connection stability between the fixing bracket 13 and the pipe connector 2; further, through this connection, on the premise that the second pipe member 23 is connected to the fixing bracket 13 and the first pipe member 22 is connected to the second pipe member 23 through a tight fit, the first pipe member 22 is also firmly connected to the fixing bracket 13, thereby overall strengthening the connection stability between the fixing bracket 13 and the pipe connector 2; further, in this embodiment, by only providing one third fixing hole 215 and one third connection hole 131 and adopting a threaded connection, the disassembly and assembly process of the fixing bracket 13 and the pipe connector 2 is simplified, so that when the user performs pipe cleaning, the first pipe member 22 and the second pipe member 23 can be disassembled and assembled more conveniently and quickly, improving the operation efficiency.
[0042] Further, as Figures 1-7 shown in a humidifying structure, wherein the fixing bracket 13 is further provided with an isolation cavity 18 for placing wires, and the isolation cavity 18 is used to isolate the wires and the connecting pipe 14.
[0043] In the present utility model, by providing the isolation cavity 18 for placing wires on the fixing bracket 13, this setting effectively isolates the wires and the connecting pipe 14, preventing the possibility of the wires coming into contact with water vapor, thereby reducing the risk of the wires getting damp and improving the safety of the device; further, the setting of the isolation cavity 18 also provides a dedicated space for the layout of the wires, making the internal structure of the humidifying structure more tidy, facilitating maintenance and inspection, and improving the aesthetics and reliability of the device.
[0044] Further, as Figures 1-7 shown in a humidifying structure, wherein the driving device 12 includes an ultrasonic generator 121 located at one end of the connecting pipe 14 away from the pipe connector 2, a focusing ring 122 located between the ultrasonic generator 121 and the pipe connector 2, and a fan 123 for promoting the water vapor on the focusing ring 122 to enter the connecting pipe 14. The mounting base 1 is further provided with a storage cavity 11 for storing liquid and a conveying channel 16 for conveying the liquid to the ultrasonic generator 121.
[0045] In the present utility model, the driving device 12 is composed of an ultrasonic generator 121, a concentrator ring 122, and a blower 123. After the liquid in the storage cavity 11 reaches the ultrasonic generator 121 through the conveying channel 16, the ultrasonic generator 121 can efficiently atomize the liquid into water vapor. Subsequently, the water vapor is enhanced under the concentrating effect of the concentrator ring 122, and is smoothly pushed by the blower 123 into the connecting pipe 14 and the water vapor pipe 24, and finally sprayed out from one side of the outlet connection end 221. This setting realizes the efficient generation and transmission of water vapor; further, the setting of the concentrator ring 122 helps to concentrate the dispersed water vapor generated by the ultrasonic generator 121, thereby increasing the amount of water vapor reaching the inside of the connecting pipe 14 and improving the humidifying effect; further, the setting of the blower 123 helps to push the water vapor concentrated by the concentrator ring 122, so that it enters the connecting pipe 14 more quickly, thereby further improving the efficiency of water vapor transmission.
[0046] Further, as Figures 1-8 shown, a humidifying fan further includes a blowing device 41, a connecting bracket 42 connecting the blowing device 41 and the first pipe member 22, a water outlet 43 located at the air outlet of the blowing device 41, and an output channel 44 connecting the water outlet 43 and the outlet connection end 221.
[0047] The humidifying fan in the present utility model includes a blowing device 41, a connecting bracket 42, a water outlet 43, and an output channel 44. This setting enables the humidifying fan not only to generate water vapor, but also to effectively mix the water vapor with air through the blowing device 41, so that the blowing device 41 blows the water vapor passing through the output channel 44 from the water outlet 43, realizing the dual effects of humidifying and blowing; further, this setting not only improves the air circulation in the room, enhances the humidifying effect, but also creates a more comfortable environmental experience for users; further, the setting of the connecting bracket 42 ensures the firm connection between the blowing device 41 and the first pipe member 22, and thus realizes the stable combination of the blowing device 41 and the mounting base 1, ensuring the stability of the entire humidifying fan structure.
[0048] As Figures 1-8 shown, the implementation manner of this embodiment is as follows:
[0049] Embodiment 1:
[0050] In this embodiment, the power cord is connected to an external device in a plug manner.
[0051] During the disassembly and assembly process, the user first loosens the screw of the third connection hole 131, pulls out the first pipe fitting 22 from the second pipe fitting 23. At this time, the plug is exposed, and then the user disconnects the power cord. Next, the user loosens the screw between the fixing bracket 13 and the second pipe fitting 23 to separate the two, and removes the fixing bracket 13. Finally, the user pulls out the connecting pipe 14 from the base 19 and the second pipe fitting 23. During the whole disassembly and assembly process, the wires are safely stored in the isolation cavity 18, avoiding direct contact with water vapor and ensuring the safety of the operation.
[0052] During the installation process, the user first passes the connecting pipe 14 through the fixing bracket 13 and connects it to the inlet connection end 231 on the base 19 and the second pipe fitting 23. Subsequently, the user installs the fixing bracket 13 on the base 19 and fixes the second pipe fitting 23 on the fixed end 15 of the fixing bracket 13, ensuring stability through threaded connection. Then, the user places the plug with the power cord inserted on the second isolation seat 212. At this time, the first pipe fitting 22 can be connected to the external device through the second connection hole 217, and then the first pipe fitting 22 is inserted into the second pipe fitting 23. The plug is fixed between the first pipe fitting 22 and the second pipe fitting 23 and the mating connection of the first pipe fitting 22 and the second pipe fitting 23 is completed. Finally, the third fixing hole 215 and the third connection hole 131 are connected by thread to firmly connect the first pipe fitting 22 and the fixing bracket 13.
[0053] During the operation process, the liquid in the storage cavity 11 is sent to the ultrasonic generator 121 through the delivery channel 16, and the ultrasonic generator 121 atomizes the liquid into water vapor. The water vapor is concentrated and enhanced under the action of the energy-gathering ring 122, and then is pushed by the fan 123, passes through the connecting pipe 14 and the water vapor pipe 24, and finally is output from one side of the outlet connection end 221, realizing the effective humidification of the indoor air.
[0054] Embodiment 2:
[0055] The humidification structure in this embodiment is the same as that in Embodiment 1 in terms of installation, disassembly process and operation principle. In addition, this embodiment also adds technical features such as a blowing device 41, a connecting bracket 42, a water outlet 43 and an output channel 44.
[0056] During the disassembly process, after pulling out the first pipe fitting 22 from the second pipe fitting 23, the first pipe fitting 22 is removed from the connecting bracket 42, and the connecting bracket 42 is separated from the blowing device 41. Then, the user pulls out the output channel 44 from the water outlet 43 and the outlet connection end 221 for further maintenance and cleaning.
[0057] During the installation process, the user first passes the output channel 44 through the connection bracket 42 and connects it to the water outlet 43 and the outlet connection end 221 respectively. Subsequently, the user fixedly connects the connection bracket 42 to the blowing device 41, fixedly connects the first pipe fitting 22 to the connection bracket 42, and then proceeds with the subsequent installation steps of the humidification structure.
[0058] During the operation process, water vapor is output from the side of the outlet connection end 221 and is transported to the water outlet 43 through the output channel 44. The blowing device 41 then blows out the water vapor, achieving the dual effects of humidification and air supply, thereby improving the air circulation and humidification efficiency in the room.
[0059] The above only further illustrates the technical content of the present invention with embodiments to make it easier for readers to understand, but it does not mean that the implementation manners of the present invention are limited to this. Any technical extension or re-creation based on the present invention is protected by the present invention. The protection scope of the present invention is subject to the claims.
Claims
1. A humidifying structure, comprising a mounting seat (1), and a pipe connector (2) connected to the mounting seat (1) and used to discharge water vapor, characterized in that: A power supply cavity (25) is provided on one side of the pipe connector (2); the mounting seat (1) comprises a driving device (12) connected to the pipe connector (2) and used to generate water vapor; the power supply cavity (25) is used to accommodate a circuit to supply power to an external device; and the pipe connector (2) is detachably connected to the mounting seat (1).
2. A humidification structure according to claim 1, characterized in that: The pipeline connector (2) comprises a first pipeline member (22) and a second pipeline member (23) detachably connected to the first pipeline member (22); a first isolation seat (211) is provided on one side of the first pipeline member (22); a second isolation seat (212) is provided on one side of the second pipeline member (23); the first isolation seat (211) and the second isolation seat (212) enclose a power supply cavity (25).
3. A humidification structure according to claim 2, characterized in that: A limiting end (213) is further provided on a side of the first pipe member (22) close to the first isolation seat (211), and a limiting groove (214) is further provided on a side of the second pipe member (23) close to the second isolation seat (212), wherein the limiting end (213) and the limiting groove (214) cooperate to fix the relative positions of the first pipe member (22) and the second pipe member (23).
4. A humidification structure according to claim 3, characterized in that: The first pipe member (22) is further provided with a first mating end (26) and a second mating end (27) connected to the first mating end (26) on a side close to the second pipe member (23); the second pipe member (23) is further provided with a mating cavity (28) and a mating hole (29) on a side close to the first pipe member (22); the first mating end (26) is tightly fitted with the mating cavity (28), and the second mating end (27) is tightly fitted with the mating hole (29), so that the first pipe member (22) and the second pipe member (23) are detachably connected; a sealing member (210) is provided on the outer side of the second mating end (27).
5. A humidifying structure according to claim 4, characterized in that: The mounting base (1) further comprises a base (19) and a connecting pipe (14) connected to the base (19); the first pipe member (22) further comprises an outlet connecting end (221) for connecting to an external device; the second pipe member (23) further comprises an inlet connecting end (231) detachably connected to the connecting pipe (14); the pipe connector (2) further comprises a water vapor pipe (24) connecting the outlet connecting end (221) and the inlet connecting end (231); and the connecting pipe (14) is detachably connected to the base (19).
6. A humidification structure according to claim 5, characterized in that: The mounting seat (1) further comprises a fixing bracket (13) connected to the base (19) and the pipe connecting member (2) respectively, the fixing bracket (13) being provided with a fixing end (15) for fixing the second pipe member (23), the fixing end (15) being provided with a first fixing hole (17), the second pipe member (23) being further provided with a first connecting hole (216), the first pipe member (22) being further provided with a second connecting hole (217) penetrating the first pipe member (22) and being connected to an external device on one side of the first matching end (26), the fixing bracket (13) being detachably connected to the base (19), the first fixing hole (17) being connected to the first connecting hole (216) in a matching manner, so that the fixing bracket (13) and the pipe connecting member (2) are detachably connected.
7. A humidifying structure according to claim 6, characterized in that: The limiting end (213) is provided with a third fixing hole (215), and one side of the fixing bracket (13) is also provided with a third connecting hole (131), and the third fixing hole (215) and the third connecting hole (131) are matched and connected, so that the fixing bracket (13) is matched and connected with the first pipe member (22).
8. A humidifying structure according to claim 6, characterized in that: The fixing bracket (13) is also provided with an isolation cavity (18) for accommodating electric wires, and the isolation cavity (18) is used to isolate the electric wires and the connecting pipe (14).
9. A humidifying structure according to claim 5, characterized in that: The driving device (12) comprises an ultrasonic generator (121) located at an end of the connecting pipe (14) away from the pipe connecting piece (2), an energy-gathering ring (122) located between the ultrasonic generator (121) and the pipe connecting piece (2), and a fan (123) for promoting water vapor on the energy-gathering ring (122) to enter the connecting pipe (14). The mounting seat (1) is also provided with a storage cavity (11) for storing liquid, and a delivery channel (16) for delivering liquid to the ultrasonic generator (121).
10. A humidifying fan, characterized in that: The humidification structure comprises the humidification structure according to any one of claims 1 to 9, and further comprises a blowing device (41), a connecting bracket (42) connecting the blowing device (41) and a first pipe member (22), a water outlet (43) located at the air outlet of the blowing device (41), and an output channel (44) connecting the water outlet (43) and an outlet connection end (221).