Atomization module mounting structure and atomization tower fan with same
By using the mating structure of the atomizing module, the limiting platform, and the mounting flange, the problems of inconvenient installation and insufficient sealing of the atomizing tower fan module are solved, achieving convenient installation and efficient sealing, and improving the stability and service life of the equipment.
Patent Information
- Application Number
- CN202520432209.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-12
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-03-12
AI Technical Summary
Existing atomizing tower fans have inconvenient atomizing modules that are poorly sealed, affecting user experience and equipment lifespan.
The system employs a mating structure of atomizing module, limiting platform, and mounting flange. By inserting the mounting flange into the insertion gap of the limiting platform and rotating it circumferentially, the atomizing module is connected and fixed to the tower fan body. The sealing performance is improved by sealing rings and mounting ring grooves. Combined with the limiting structure of stop blocks and elastic strips, the system ensures the stability and sealing of the installation.
It enables convenient installation and efficient sealing of the atomization module, improving the service life of the equipment and the user experience.
Smart Images

Figure CN223954312U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of atomization module, in particular to an atomization module mounting structure and an atomization tower fan with the same. BACKGROUND
[0002] The atomization tower fan is a household appliance that combines the functions of tower fan and atomization humidification. In hot summer or dry environment, using the atomization tower fan can effectively improve people's comfort and quality of life.
[0003] The existing atomization tower fan includes a tower fan body, a humidification module, an atomization module, an outflow module and a control component are mounted on the tower fan body. The atomization module is usually used in cooperation with the humidification module. The installation of the atomization module not only needs to be convenient, but also needs to consider the sealing effect after installation. In order to achieve the above effects, the present application provides an atomization module mounting structure. CONTENT OF THE UTILITY MODEL
[0004] In order to improve the convenience and sealing of the atomization module, the present application provides an atomization module mounting structure and an atomization tower fan with the same.
[0005] The atomization module mounting structure and the atomization tower fan with the same provided by the present application adopt the following technical solutions:
[0006] An atomization module mounting structure includes an atomization module, a humidification module has a mounting hole for mounting the atomization module, and the atomization module is detachably fixed in the mounting hole.
[0007] By adopting the above technical solutions, the atomization module is detachably mounted on the humidification module, which facilitates the installation and cleaning of the user and helps to improve the service life of the atomization module.
[0008] Optionally, the atomization module and a plurality of limiting tables, the tower fan body has a mounting hole for mounting the atomization module, the limiting tables are circumferentially spaced along the axis of the mounting hole, the atomization module is provided with at least two mounting flanges on the outside for rotating and inserting into the limiting tables, the adjacent limiting tables have an insertion gap for inserting the mounting flanges, and the atomization module and the mounting hole are sealingly abutted after the mounting flanges and the limiting tables are cooperatively inserted.
[0009] By adopting the technical scheme, the mounting flange of the atomization module is inserted into the insertion gap between the adjacent limiting tables, and then the atomization module is rotated circumferentially, so that the mounting flange is rotationally inserted into the limiting table, the connection and fixation of the atomization module and the tower fan body are realized through cooperation of the limiting table and the mounting flange, and after the atomization module is connected to the tower fan body, the top surface of the atomization module and the mounting hole are sealingly abutted, thereby realizing sealing installation of the atomization module. The atomization module can realize convenient installation and ensure sealing after installation.
[0010] Optionally, the atomization module is provided with a mounting ring groove, and a sealing ring for abutting against the mounting hole is mounted in the mounting ring groove.
[0011] By adopting the technical scheme, the sealing ring is mounted in the mounting ring groove, and the sealing property between the atomization module and the tower fan body is further improved through abutment of the sealing ring and the mounting hole.
[0012] Optionally, the limiting table is provided with a mounting groove for rotationally inserting the mounting flange, and an inclined guide surface is arranged on the opening bottom wall of the mounting groove.
[0013] By adopting the technical scheme, the mounting groove and the mounting flange are cooperated to realize cooperative fixation of the atomization module and the limiting table, and the inclined guide surface is arranged to facilitate insertion of the atomization module into the mounting groove and improve installation efficiency of the atomization module.
[0014] Optionally, a positioning surface for abutting against the mounting flange is arranged on the side of the limiting table away from the inclined guide surface.
[0015] By adopting the technical scheme, the positioning surface is arranged to play a positioning role in rotational installation of the limiting table.
[0016] Optionally, the limiting structure further comprises an elastic strip arranged on the limiting table and a plurality of stop blocks arranged circumferentially on the atomization module and used for driving the elastic strip to bend, when the mounting flange abuts against the positioning surface, the elastic strip abuts against the stop blocks on the side away from the positioning surface.
[0017] By adopting the technical scheme, the limiting structure is arranged to play a limiting role in connection of the atomization module and the limiting table, thereby reducing the probability of disconnection of the atomization module from the limiting table; when the mounting flange is inserted into the mounting groove, the stop blocks and the elastic strip are abutted and cooperated, and the elastic strip is driven to bend and deform, the atomization module is continuously rotated, the stop blocks and the elastic strip are staggered when the mounting flange abuts against the positioning surface, and the elastic strip restores deformation and abuts against the side of the stop blocks away from the positioning surface, the limiting structure is simple in structure and convenient to operate.
[0018] Optionally, the elastic strip is provided with a guide arc surface on the side away from the positioning surface.
[0019] By adopting the technical scheme, the guide arc surface is arranged, so that when the atomization module rotates, the elastic strip is driven by the block to be elastically deformed, and the deformation of the elastic strip is more labor-saving.
[0020] Optionally, the block is triangular in cross section along the axis of the atomization module.
[0021] By adopting the technical scheme, the cross section of the block is triangular, the triangular cross section can effectively disperse stress, so that the stress distribution of the overall structure is more uniform, and the overall structural strength of the atomization module is improved.
[0022] Optionally, the tower fan body is provided with four sets of the limiting table, the four sets of the limiting table are uniformly arranged in a circumferential direction along the axis of the mounting hole, and the number of the mounting flanges is consistent with that of the limiting tables.
[0023] By adopting the technical scheme, the number of the limiting tables and the mounting flanges is disclosed in detail, and the cooperation of the four sets of the limiting tables and the mounting flanges makes the connection of the atomization module and the tower fan body more stable, and reduces the probability of falling of the atomization module.
[0024] In the second aspect, an atomization tower fan includes a tower fan body and the atomization module mounting structure.
[0025] In summary, the present application has at least one of the following beneficial technical effects:
[0026] 1. The present application realizes the limiting connection of the atomization module and the tower fan body and the sealing abutment of the atomization module and the mounting hole through the cooperation of the mounting flange and the atomization module, has a simple structure, and is convenient to install.
[0027] 2. The present application improves the sealing between the atomization module and the tower fan body through the arrangement of the sealing ring and the mounting ring groove.
[0028] 3. The present application realizes the circumferential fixation of the mounting flange through the cooperation of the block and the elastic strip, and improves the stability of the atomization module after installation. BRIEF DESCRIPTION OF DRAWINGS
[0029] Figure 1 FIG. 1 is an exploded schematic view of a tower fan body and an atomization module of an embodiment 1.
[0030] Figure 2 FIG. 2 is a cross-sectional view of the tower fan body and the atomization module after cooperation of the embodiment 1.
[0031] Figure 3 FIG. 3 is a structural schematic view of the atomization module of the embodiment 1.
[0032] Figure 4 FIG. 4 is a structural schematic view of a limiting table of the embodiment 1.
[0033] Figure 5 is an exploded schematic view of the atomization module and the humidification module of Example 2.
[0034] Figure 6 is an exploded schematic view of the atomization module of Example 3.
[0035] Figure 7 is an exploded schematic view of the atomization module and the humidification module of Example 4.
[0036] BRIEF DESCRIPTION OF THE DRAWINGS: 1, tower fan body; 11, humidification module; 111, mounting hole; 12, limiting table; 121, mounting groove; 122, guide slope; 123, positioning surface; 124, elastic strip; 1241, guide curved surface; 13, insertion gap; 14, positioning groove; 15, fixed column; 16, locking column; 2, atomization module; 21, mounting flange; 22, mounting ring groove; 23, stop block; 24, atomization body; 241, fixed through hole; 25, control board; 26, mounting shell; 261, first connecting column; 262, second connecting column; 3, sealing ring. DETAILED DESCRIPTION
[0037] The following description will be made in conjunction with the accompanying drawings. Figures 1-7 The present application is further described in detail.
[0038] The embodiments of the present application disclose an atomization module mounting structure and an atomization tower fan with the structure.
[0039] Example 1:
[0040] With reference to Figure 1 and Figure 2 An atomization tower fan includes a tower fan body 1 and an atomization module 2 detachably mounted on the tower fan body 1. The tower fan body 1 has a humidification module 11 mounted in cooperation with the atomization module 2. The atomization module 2 and the humidification module 11 are sealingly connected through a mounting structure. The humidification module 11 has mounting holes 111 for corresponding installation of the atomization module 2.
[0041] With reference to Figure 3 The humidification module 11 is integrally provided with a plurality of limiting tables 12 outside the mounting holes 111. The atomization module 2 is mounted from bottom to top, so the limiting tables 12 are located at the bottom of the mounting holes 111. The outer side wall of the atomization module 2 is integrally provided with a plurality of mounting flanges 21 cooperating with the limiting tables 12. In this embodiment, the limiting tables 12 and the mounting flanges 21 each have four groups, and the four groups of limiting tables 12 are evenly arranged circumferentially along the axis of the mounting holes 111.
[0042] The mounting flange 21 is integrally arranged on the atomization module 2, and the mounting flange 21 is in the shape of an arc protruding away from the axis of the atomization module 2. The adjacent limiting platform 12 has an insertion gap 13 for the vertical insertion of the mounting flange 21, and the curvature of the insertion gap 13 is greater than the curvature of the mounting flange 21.
[0043] In combination Figure 4 The limiting platform 12 has a mounting groove 121 for the rotational insertion of the mounting flange 21, and the outer side of the mounting flange 21 abuts against the inner side wall of the mounting groove 121. The mounting flange 21 is rotatably inserted, so that the mounting groove 121 is in an open state at one end of the limiting platform 12, and the limiting platform 12 is provided with a guide inclined surface 122 for the insertion of the mounting flange 21 at the bottom wall of the open mounting groove 121. The guide inclined surface 122 gradually inclines upward along the rotational insertion direction of the mounting flange 21.
[0044] The limiting platform 12 has a positioning surface 123 at the side wall of the end of the mounting groove 121 away from the opening, for abutting against the mounting flange 21. Through the arrangement of the positioning surface 123, the rotation of the atomization module 2 can be limited.
[0045] When the mounting flange 21 abuts against the positioning surface 123, the top of the atomization module 2 and the bottom surface of the mounting hole 111 are sealingly abutted. In order to further improve the sealing performance of the atomization module 2 and the humidification module 11, the top of the atomization module 2 has an annular mounting ring groove 22. The atomization module 2 is fixedly installed with a sealing ring 3 in the mounting ring groove 22, and the sealing ring 3 is an annular ring made of silica gel. The bottom of the mounting hole 111 is in the structure of a counterbore, and the sealing ring 3 and the inner wall of the mounting hole 111 are sealingly abutted.
[0046] When the atomization module 2 and the humidification module 11 are connected, the sealing ring 3 is inserted into the mounting hole 111 and sealingly abutted against the inner wall of the mounting hole 111, and the top surface of the atomization module 2 and the bottom of the mounting hole 111 are abutted.
[0047] The present application also has a limiting structure for locking the atomization module 2 and the limiting platform 12, which includes an elastic strip 124 arranged on the limiting platform 12 and a plurality of stop blocks 23 arranged circumferentially on the atomization module 2 and used for driving the elastic strip 124 to bend.
[0048] The elastic strip 124 is integrally arranged on the side of the limiting platform 12 facing the mounting hole 111. The elastic strip 124 is in the shape of an arc strip and extends away from the positioning surface 123. The side wall of the elastic strip 124 has a guide arc surface 1241 for abutting against the stop block 23. In the present embodiment, the elastic strip 124 is arranged only on one of the four limiting platforms 12.
[0049] The stop block 23 is located below the mounting flange 21, and the stop block 23 is integrally formed with the atomization module 2. In the embodiment, the atomization module 2 has a total of eight stop blocks 23, and the stop blocks 23 are uniformly arranged along the axis of the atomization module 2, so that each mounting flange 21 has a stop block 23 below. When the mounting flange 21 is rotated towards the mounting groove 121 in the insertion gap 13, the stop block 23 drives the elastic strip 124 to be elastically deformed, and the elastic strip 124 is bent away from the axis of the mounting hole 111. Continue to rotate the atomization module 2, and after the stop block 23 and the elastic strip 124 are staggered, the elastic strip 124 is automatically reset, and the elastic strip 124 abuts against the side of the stop block 23 towards the slot of the mounting groove 121. Through the cooperation of the stop block 23 and the elastic strip 124, the fixation of the atomization module 2 on the limiting table 12 is realized, and the probability of slippage of the atomization module 2 is reduced.
[0050] The stop block 23 is triangular in cross section along the axis of the atomization module 2, so the stop block 23 also has the effect of a strong rib, improving the overall structural strength of the atomization module 2.
[0051] The mounting method of the atomization module 2 in the embodiment is that the atomization module 2 is mounted from bottom to top, the atomization module 2 corresponds to the mounting hole 111, the mounting flange 21 is inserted into the insertion gap 13, the top surface of the atomization module 2 abuts against the bottom surface of the mounting hole 111, and then the atomization module 2 is horizontally rotated so that the mounting flange 21 is inserted into the mounting groove 121; when the mounting flange 21 is rotated, the stop block 23 drives the elastic strip 124 to be bent and deformed, and when the mounting flange 21 abuts against the positioning surface 123, the stop block 23 and the elastic strip 124 are staggered, and the elastic strip 124 restores the deformation to abut against the side wall of the stop block 23, realizing the circumferential limiting of the atomization module 2; when it is necessary to dismount the atomization module 2, the elastic strip 124 is pressed, and the atomization module 2 is reversely rotated, and after the mounting flange 21 corresponds to the insertion gap 13, the atomization module 2 is axially pulled out.
[0052] Embodiment 2: In the embodiment, the dismounting structure of the atomization module 2 and the humidification module 11 is different from that of the embodiment 1, and the remaining tower fan body 1 structure is consistent with that of the embodiment 1.
[0053] Reference Figure 5, the atomization module 2 includes an atomization body 24 and a control electric board 25 which are integrally fixed. The humidification module 11 is provided with a positioning groove 14 for inserting the atomization body 24 at the mounting hole 111, and is provided with a plurality of fixed columns 15 on the outer side of the positioning groove 14 in a circumferential direction, and the bottom end surface of the fixed column 15 is provided with a screw hole. The atomization body 24 has a fixed through hole 241 corresponding to the fixed column 15. When the atomization body 24 is positioned and inserted into the positioning groove 14, the atomization module 2 is rotated so that the fixed through hole 241 corresponds to the fixed column 15, and then the atomization module 2 and the humidification module 11 are fixedly connected by screws. In this embodiment, the humidification module 11 has four fixed columns 15, and the four fixed columns 15 are arranged in a circumferential direction along the axis of the mounting hole 111.
[0054] Embodiment 3: In this embodiment, the dismounting structure of the atomization module 2 and the humidification module 11 is different from that of Embodiment 1, and the remaining tower fan body 1 structure is consistent with Embodiment 1
[0055] Referring to Figure 6 and Figure 7 , the atomization module 2 includes an atomization body 24, a control electric board 25 and a mounting shell 26, and the atomization body 24 and the control electric board 25 are integrally fixed. The humidification module 11 is provided with a positioning groove 14 for inserting the atomization body 24 at the mounting hole 111. The atomization body 24 is provided with a plurality of fixed through holes 241 which are spaced apart in a circumferential direction along the axis of the atomization body 24, and the fixed through holes 241 penetrate the two side end surfaces of the atomization body 24.
[0056] The mounting shell 26 is a rectangular shell with one end open, and the mounting shell 26 has a first connecting column 261 corresponding to the fixed through hole 241 in the inside, and the end surface of the first connecting column 261 is provided with a screw hole. The inside four corners of the mounting shell 26 are also provided with a second connecting column 262, and the second connecting column 262 has a through hole penetrating the two side end surfaces. The humidification module 11 is integrally provided with a locking column 16 corresponding to the second connecting column 262 at the outer edge of the mounting hole 111, and the end surface of the locking column 16 is provided with a screw hole which is a countersunk hole structure, facilitating the positioning of the locking column 16 inserted into the locking column 16 to realize positioning.
[0057] Before installing the atomization module 2, the atomization body 24 and the mounting shell 26 are fixed by screws, and then the open end of the mounting shell 26 is installed towards the mounting hole 111. When the atomization body 24 and the positioning groove 14 cooperate, the second connecting column 262 and the locking column 16 are positioned and inserted, and finally the second connecting column 262 and the locking column 16 are threadedly connected by screws, so as to realize the fixed connection of the atomization module 2 and the humidification module 11.
[0058] The above are all preferred embodiments of the present application, and do not limit the protection scope of the present application, so that: all equivalent changes made according to the structure, shape, principle of the present application should be covered in the protection scope of the present application.
Claims
1. An atomizing module mounting structure, characterized in that, Includes an atomizing module (2), and a humidifying module (11) having a mounting hole (111) for mounting the atomizing module (2), wherein the atomizing module (2) is detachably fixed in the mounting hole (111).
2. The atomizing module mounting structure according to claim 1, characterized in that, The humidification module (11) is provided with a plurality of limiting platforms (12) in the mounting hole (111). The limiting platforms (12) are circumferentially spaced along the axis of the mounting hole (111). The atomizing module (2) is provided with at least two mounting flanges (21) for rotating insertion into the limiting platforms (12) on its outer side. There is an insertion gap (13) between adjacent limiting platforms (12) for the mounting flanges (21) to be inserted. When the mounting flanges (21) and the limiting platforms (12) are engaged and inserted, the atomizing module (2) and the mounting hole (111) are sealed and abutted. The atomizing module (2) has an installation ring groove (22), and a sealing ring (3) for abutting the installation hole (111) is installed in the installation ring groove (22).
3. The atomizing module mounting structure according to claim 2, characterized in that, The limiting platform (12) has an installation groove (121) for the installation flange (21) to be rotated and inserted, and the bottom wall of the opening of the installation groove (121) has a guide slope (122).
4. The atomizing module mounting structure according to claim 3, characterized in that, The limiting platform (12) has a positioning surface (123) on the side away from the guide slope (122) for the mounting flange (21) to abut.
5. The atomizing module mounting structure according to claim 4, characterized in that, It also includes a limiting structure for preventing the atomizing module (2) from disengaging; The limiting structure includes an elastic strip (124) disposed on the limiting platform (12) and a plurality of blocks (23) circumferentially disposed on the atomizing module (2) for driving the elastic strip (124) to bend. When the mounting flange (21) abuts against the positioning surface (123), the elastic strip (124) abuts against the block (23) on the side away from the positioning surface (123).
6. The atomizing module mounting structure according to claim 5, characterized in that, The elastic strip (124) has a guide arc surface (1241) on the side away from the positioning surface (123).
7. The atomizing module mounting structure according to claim 5, characterized in that, The cross section of the block (23) along the axis of the atomizing module (2) is triangular.
8. The atomizing module mounting structure according to claim 2, characterized in that, The tower fan body (1) is provided with four sets of limiting platforms (12). The four sets of limiting platforms (12) are evenly spaced along the axis of the mounting hole (111). The number of mounting flanges (21) is the same as that of the limiting platforms (12).
9. A misting tower fan, comprising a tower fan body (1), characterized in that, It also includes the atomizing module mounting structure as described in any one of claims 1-8.