Ozone generator mounting seat
By designing an ozone generator mounting base, the connection between the ozone generator and the integrated water circuit board is simplified, solving the problem of difficult disassembly in the existing technology, realizing convenient disassembly and maintenance, and improving the stability and space utilization of the equipment.
Patent Information
- Application Number
- CN202423281408.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2034-12-30
AI Technical Summary
The existing ozone generator is installed on the integrated water circuit board. Disassembly requires separating the inlet and outlet pipes one by one, which makes disassembly difficult and increases labor costs and maintenance time.
The design includes an ozone generator mounting base, comprising a mounting base housing and a connecting structure. It connects to the integrated water circuit board via a mounting cavity, simplifying the disassembly process of the ozone generator and allowing it to be directly connected to the integrated water circuit board via the inlet and outlet pipes, facilitating disassembly and maintenance.
The process of disassembling and maintaining ozone generators has been simplified, reducing labor costs and time, and improving equipment stability and space utilization.
Smart Images

Figure CN223722913U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of water purification equipment, specifically is ozone generator mounting seat. BACKGROUND
[0002] With the increasing demand for drinking water safety and water purification technology, setting up ozone generator in water purification equipment has become an advanced purification method. Ozone can effectively kill bacteria, viruses and parasites in water due to its strong oxidizing property, remove odors, color and part of organic matter, and improve the safety and purity of water quality. By integrating ozone generator in the water purification process, the comprehensive efficiency of water treatment is enhanced, and the drinking water meets higher health standards.
[0003] The existing ozone generator is often installed on the integrated waterway board. The water inlet pipe and the water outlet pipe on the ozone generator need to be connected with the corresponding pipelines on the integrated waterway board respectively. However, when the user needs to disassemble the ozone generator on the integrated waterway board for maintenance or repair, the pipelines on the integrated waterway board and the water inlet pipe and the water outlet pipe on the ozone generator need to be separated one by one, which not only makes disassembly difficult, but also increases labor cost and maintenance time.
[0004] The utility model is proposed to solve the problems of the prior art. UTILITY MODEL CONTENTS
[0005] In view of the above-mentioned problem that the existing ozone generator is generally installed on the integrated waterway board, and when the user needs to disassemble the ozone generator on the integrated waterway board for maintenance or repair, the pipelines on the integrated waterway board and the water inlet pipe and the water outlet pipe on the ozone generator need to be separated one by one, which not only makes disassembly difficult, but also increases labor cost and maintenance time, the utility model solves the technical problems by adopting the technical scheme of:
[0006] The ozone generator mounting seat comprises a mounting seat shell, the mounting seat shell is provided with a mounting cavity connected with the outside and used for mounting the ozone generator, a first water inlet pipe located on one side of the mounting cavity, and a first water outlet pipe located on the other side of the mounting cavity, the mounting cavity is connected and communicated with the integrated waterway board through the first water inlet pipe and the first water outlet pipe respectively, the mounting seat shell is further provided with a first mounting part, and the mounting seat shell is detachably connected with the integrated waterway board through the first mounting part.
[0007] Further, the mounting cavity comprises a first containing cavity for mounting the water inlet pipe of the ozone generator and communicating with the first water inlet pipe, and a second containing cavity for mounting the water outlet pipe of the ozone generator and communicating with the first water outlet pipe.
[0008] Further, the mounting cavity comprises a third containing cavity for mounting the electrode assembly of the ozone generator.
[0009] Further, the mounting seat housing comprises a side housing arranged in a vertical direction, and a base arranged in a horizontal direction and connected with the side housing, the mounting cavity comprises a main accommodating cavity for mounting the ozone generator main body, the main accommodating cavity is enclosed by the side housing and the base, and a mounting opening is arranged on a side of the side housing away from the base, and the main accommodating cavity is communicated with the outside through the mounting opening.
[0010] Further, the mounting seat housing comprises a first mounting housing, a second mounting housing and a third mounting housing, the first mounting housing, the second mounting housing and the third mounting housing are connected with the base and arranged in an extending direction away from the side housing, the first accommodating cavity is arranged in the first mounting housing, the second accommodating cavity is arranged in the second mounting housing, and the third accommodating cavity is arranged in the third mounting housing and communicated with the outside.
[0011] Further, the first mounting portion is a connecting circular hole arranged on the base and used for threaded connection with the integrated waterway board.
[0012] Further, the connecting circular hole comprises a first connecting circular hole arranged on a side of the base close to the first water inlet pipe, and a second connecting circular hole arranged on a side of the base close to the first water outlet pipe.
[0013] Further, the side housing is provided with a second mounting portion, and the side housing is detachably connected with the ozone generator main body through the second mounting portion.
[0014] Further, the second mounting portion comprises a first clamping groove arranged on one side of the side housing, and a second clamping groove arranged on the other side of the side housing and symmetrically arranged with the first clamping groove, and the first clamping groove and the second clamping groove are respectively clamped with the ozone generator main body.
[0015] Further, the side housing is provided with a heat dissipation opening communicated with the main accommodating cavity and the outside.
[0016] The beneficial effects of the utility model are as follows:
[0017] The utility model discloses a mounting seat casing, the mounting seat casing is equipped with the installation cavity that is used for installing ozone generator and is equipped with the first water inlet pipe and the first water outlet pipe with the communication outside, the ozone generator on the installation cavity is connected with the integrated water route board through the first water inlet pipe and the first water outlet pipe respectively, when the user needs to disassemble ozone generator to maintain or repair, only needs to disassemble the ozone generator in the installation cavity, does not need to separate the first water inlet pipe and the first water outlet pipe on the mounting seat casing and the pipeline on the integrated water route board, effectively solved the ozone generator of existing ozone generator generally installs on integrated water route board, however, when the user needs to disassemble ozone generator on integrated water route board to maintain or repair, needs to separate the pipeline on integrated water route board and the water inlet pipe and the water outlet pipe on ozone generator one by one, not only disassembly difficult, also increase manpower cost and maintenance time's problem.
[0018] The utility model will be further explained in connection with the drawings and specific embodiment. DRAWINGS
[0019] Figure 1 It is one of exploded schematic view that the mounting seat casing of the utility model and ozone generator connect;
[0020] Figure 2 It is structural schematic view that the mounting seat casing of the utility model and integrated water route board connect;
[0021] Figure 3 It is the second exploded schematic view that the mounting seat casing of the utility model and ozone generator connect;
[0022] Figure 4 It is one of structural schematic view of the mounting seat casing of the utility model;
[0023] Figure 5 It is the second structural schematic view of the mounting seat casing of the utility model;
[0024] Figure 6 It is the third structural schematic view of the mounting seat casing of the utility model. CONCRETE IMPLEMENTING METHOD
[0025] The embodiment of the utility model will be explained in detail in connection with the drawings.
[0026] As Figures 1 to 6The shown ozone generator mounting seat comprises a mounting seat shell 1, the mounting seat shell 1 is provided with a mounting cavity 3 for installing ozone generator 2 and communicating with the outside, a first water inlet pipe 11 on one side of the mounting cavity 3 and a first water outlet pipe 12 on the other side of the mounting cavity 3, the mounting cavity 3 is connected with the integrated waterway board 9 through the first water inlet pipe 11 and the first water outlet pipe 12 respectively, and the mounting seat shell 1 is further provided with a first mounting part 13, and the mounting seat shell 1 is detachably connected with the integrated waterway board 9 through the first mounting part 13.
[0027] The mounting seat shell is provided with the mounting cavity for installing the ozone generator, the first water inlet pipe and the first water outlet pipe, the ozone generator on the mounting cavity is connected with the integrated waterway board through the first water inlet pipe and the first water outlet pipe respectively, when the user needs to disassemble the ozone generator for maintenance or repair, only needs to disassemble the ozone generator in the mounting cavity, without separating the first water inlet pipe and the first water outlet pipe on the mounting seat shell from the pipeline on the integrated waterway board, effectively solve the problem that the ozone generator is generally installed on the integrated waterway board, when the user needs to disassemble the ozone generator on the integrated waterway board for maintenance or repair, needs to separate the pipeline on the integrated waterway board from the water inlet pipe and the water outlet pipe on the ozone generator one by one, not only disassembly is difficult, but also increases the labor cost and maintenance time.
[0028] Further, the mounting cavity 3 is arranged on the mounting seat shell 1, so that the ozone generator 2 can be installed in the mounting cavity 3, which is beneficial to better protect the ozone generator 2, reduce the risk of damage of the ozone generator 2 caused by environmental factors, and help improve the stability of equipment operation.
[0029] Optionally, in some embodiments, the first mounting part 13 is a connecting circular groove on the mounting seat shell 1, the integrated waterway board 9 is provided with a connecting convex column, the connecting convex column and the connecting circular groove are insertedly connected, so that the mounting seat shell 1 and the integrated waterway board 9 are detachably connected.
[0030] Optionally, in some embodiments, the first mounting part 13 is a connecting clamping groove on the mounting seat shell 1, the integrated waterway board 9 is provided with a connecting buckle, the connecting clamping groove and the connecting buckle are buckledly connected, so that the mounting seat shell 1 and the integrated waterway board 9 are detachably connected.
[0031] Further, as a preferred mode of the utility model but not limited, the first mounting part 13 is a connecting circular hole on the mounting seat shell 1, the integrated waterway board 9 is provided with a connecting circular column, the connecting circular hole and the connecting circular column are threadedly connected, so that the mounting seat shell 1 and the integrated waterway board 9 are detachably connected.
[0032] As Figures 1 to 6The installation cavity 3 shown includes a first accommodating cavity 31 for installing the ozone generator water inlet pipe 21 and communicating with the first water inlet pipe 11, and a second accommodating cavity 32 for installing the ozone generator water outlet pipe 22 and communicating with the first water outlet pipe 12;
[0033] Further, by installing the ozone generator water inlet pipe 21 in the first accommodating cavity 31 and installing the ozone generator water outlet pipe 22 in the second accommodating cavity 32, the overall structure of the device is more clear, the functional division is more clear, which is beneficial to the user to quickly identify and operate, and effectively reduces the confusion and errors during installation and maintenance.
[0034] Further, the first accommodating cavity 31 and the second accommodating cavity 32 respectively communicate with the first water inlet pipe 11 and the first water outlet pipe 12, so that the ozone generator water outlet pipe 22 and the ozone generator water inlet pipe 21 can be directly connected and communicated with the integrated waterway board 9, without the need for additional pipeline adjustment. When disassembled, the user only needs to take out the ozone generator 2 from the installation cavity 3, without the need to handle complex pipeline connection, which is beneficial to simplify the installation and maintenance process.
[0035] Optionally, annular grooves are arranged on the first accommodating cavity 31 and the second accommodating cavity 32, and rubber sealing rings are arranged on the annular grooves. When the ozone generator water inlet pipe 21 and the ozone generator water outlet pipe 22 are respectively installed into the first accommodating cavity 31 and the second accommodating cavity 32, the end faces of the ozone generator water inlet pipe 21 and the ozone generator water outlet pipe 22 are pressed against the rubber sealing rings, forming a seal to prevent water leakage.
[0036] Optionally, the ozone generator water inlet pipe 21 and the ozone generator water outlet pipe 22 are provided with sealing plates on the side close to the ozone generator main body 24, and the sealing plates are connected with the ozone generator water inlet pipe 21 and the ozone generator water outlet pipe 22. When the ozone generator water inlet pipe 21 and the ozone generator water outlet pipe 22 are respectively installed into the first accommodating cavity 31 and the second accommodating cavity 32, the sealing plates can simultaneously close the first accommodating cavity 31 and the second accommodating cavity 32, forming a seal to prevent water leakage.
[0037] As shown in the figure, Figures 1 to 6 The installation cavity 3 shown includes a third accommodating cavity 33 for installing the ozone generator electrode assembly 23;
[0038] Further, by installing the ozone generator electrode assembly 23 in the third accommodating cavity 33, the overall structure of the ozone generator 2 is more compact and has higher integration, which is helpful to reduce the occupied space of the equipment, is beneficial to improve the space utilization, and is also convenient for installation and arrangement of the equipment.
[0039] Further, by arranging the third accommodating cavity 33 to install the ozone generator electrode assembly 23, the ozone generator electrode assembly 23 is separated from other components, so that the functional division is more clear, and meanwhile, the ozone generator electrode assembly 23 can be prevented from contacting other components, which is beneficial to reduce the risk of damage of the ozone generator electrode assembly 23.
[0040] As shown in Figures 1 to 6 The mounting seat housing 1 includes a side housing 14 arranged in a vertical direction, and a base 15 arranged in a horizontal direction and connected with the side housing 14. The mounting cavity 3 includes a main accommodating cavity 34 for installing the ozone generator main body 24, which is formed by the side housing 14 and the base 15. The side housing 14 is provided with a mounting opening 16 away from the base 15, and the main accommodating cavity 34 is communicated with the outside through the mounting opening 16.
[0041] Further, the side housing 14 is provided with the mounting opening 16 away from the base 15, so that the ozone generator main body 24 can be put into the main accommodating cavity 34 from the outside through the mounting opening 16, which is beneficial to simplify the installation process.
[0042] Further, the side housing 14 is arranged in a vertical direction, and the base 15 is arranged in a horizontal direction and connected with the side housing 14, which is beneficial to provide good stability and support force, and is helpful to ensure the stability of the ozone generator main body 24 during operation.
[0043] As shown in Figures 1 to 6 The mounting seat housing 1 includes a first mounting housing 17, a second mounting housing 18 and a third mounting housing 19, which are all connected with the base 15 and arranged to extend away from the side housing 14. The first accommodating cavity 31 is located in the first mounting housing 17, the second accommodating cavity 32 is located in the second mounting housing 18, and the third accommodating cavity 33 is located in the third mounting housing 19 and communicated with the outside.
[0044] Further, by arranging the first mounting housing 17, the second mounting housing 18 and the third mounting housing 19, the first mounting housing 17, the second mounting housing 18 and the third mounting housing 19 are all connected with the base 15 and arranged to extend away from the side housing 14, so that the functional modules are more compact and reasonable in spatial layout, which is beneficial to reduce the overall volume of the equipment and realize effective use of space.
[0045] As shown in Figures 1 to 6 The first mounting portion 13 is a connecting circular hole located on the base 15 and used for threaded connection with the integrated waterway board 9.
[0046] Further, threaded connection is a very stable connection method, which can provide higher connection strength and stability, avoiding loosening between the mounting seat shell 1 and the integrated waterway plate 9 during use.
[0047] Further, threaded connection can provide additional support and fixation, which is beneficial to enhance the shock resistance and stability of the mounting seat shell 1. During equipment operation, threaded connection can effectively reduce connection loosening caused by vibration or external impact, ensuring long-term stable operation of the equipment.
[0048] Further, threaded connection enables the mounting seat shell 1 to be quickly connected or separated from the integrated waterway plate 9, which is beneficial to user maintenance or repair of the mounting seat shell, and helps to reduce maintenance time and cost.
[0049] As shown in Figures 1 to 6 the connecting round holes include a first connecting round hole 131 located on one side of the base 15 close to the first water inlet pipe 11, and a second connecting round hole 132 located on one side of the base 15 close to the first water outlet pipe 12;
[0050] Further, by setting the first connecting round hole 131 on one side of the first water inlet pipe 11 and the second connecting round hole 132 on one side of the first water outlet pipe 12, the integrated waterway plate 9 is provided with connecting cylinders respectively threaded with the first connecting round hole 131 and the second connecting round hole 132, and the first connecting round hole 131 and the second connecting round hole 132 are respectively located on both sides of the base 15, so that the connection of the base 15 and the integrated waterway plate 9 is more evenly distributed, which is beneficial to enhance the connection stability.
[0051] As shown in Figures 1 to 6 the side shell 14 is provided with a second mounting part 141, and the side shell 14 is detachably connected with the ozone generator main body 24 through the second mounting part 141;
[0052] Specifically, the user can put the ozone generator 2 into the main containing cavity 34 along the vertical direction through the installation opening 16, and the ozone generator 2 is provided with a fixing part connected with the second mounting part 141, so that the ozone generator main body 24 and the side shell 14 are detachably connected.
[0053] Alternatively, in some embodiments, the fixing part is an elastic member located on the ozone generator 2 and a column connected with the elastic member, and the second mounting part 141 is a slot located on the side shell 14. During installation, the user presses the elastic member, the elastic member is compressed to drive the column to shrink to the middle part of the ozone generator 2, so that the ozone generator main body 24 is installed into the main containing cavity 34. When the elastic member is released, the elastic member restores the elastic deformation, so that the column is inserted into the slot to realize the detachable connection between the ozone generator 2 and the side shell 14.
[0054] Furthermore, as a preferred embodiment of this utility model and not a limitation thereof, the fixing part is an elastic element located on the ozone generator 2 and a buckle connected to the elastic element, and the second mounting part 141 is a slot located on the side housing 14. During installation, the user presses the elastic element, and the elastic element compresses, causing the buckle to contract towards the middle of the ozone generator 2, thereby allowing the ozone generator body 24 to be installed into the main receiving cavity 34. When the elastic element is released, the elastic element restores its elastic deformation, so that the buckle and the slot engage, realizing the detachable connection between the ozone generator 2 and the side housing 14.
[0055] Furthermore, by providing the second mounting part 141, the ozone generator body 24 can be easily connected to or separated from the side housing 14, which simplifies the installation and disassembly process. Users can quickly install and disassemble the ozone generator body 24 without using complicated tools, which helps to reduce installation costs and time.
[0056] like Figures 1 to 6 The second mounting part 141 shown includes a first slot 1411 located on one side of the side housing 14 and a second slot 1412 located on the other side of the side housing 14 and symmetrically arranged with the first slot 1411. The first slot 1411 and the second slot 1412 are respectively snapped together with the ozone generator body 24.
[0057] Furthermore, the first slot 1411 and the second slot 1412 are symmetrically arranged and evenly distributed, providing multiple support points. This helps to ensure a stable connection between the side housing 14 and the ozone generator body 24, reducing the risk of loosening or falling off due to uneven force on a single connection point, and effectively improving the reliability of the connection.
[0058] Furthermore, the symmetrical arrangement of the first slot 1411 and the second slot 1412 makes it easier to align and insert the ozone generator body 24 during installation, thereby simplifying the installation process.
[0059] like Figures 1 to 6 The side housing 14 shown is provided with a heat dissipation port 341 that communicates with the main accommodating cavity 34 and the outside.
[0060] Furthermore, the placement of the heat dissipation vent 341 effectively increases the heat dissipation surface area of the equipment, which is conducive to promoting air circulation and thus improving heat dissipation efficiency. The placement of the heat dissipation vent 341 also helps to dissipate the heat in the main accommodating cavity 34 in a timely manner, preventing the equipment from overheating.
[0061] Furthermore, by setting up heat dissipation vents 341, the heat inside the equipment can be effectively dissipated, thereby keeping the equipment operating within the normal operating temperature range, which helps to extend the service life of the equipment and reduce failures caused by overheating.
[0062] Specifically, the heat dissipation port 341 includes a first heat dissipation port located on one side of the side shell 14 and a second heat dissipation port located on the other side of the side shell 14.
[0063] The implementation of the embodiment 1 is as follows:
[0064] The ozone generator mounting seat includes a mounting seat shell 1, the mounting seat shell 1 is provided with a mounting cavity 3 communicating with the outside and used for mounting the ozone generator 2, a first water inlet pipe 11 located on one side of the mounting cavity 3, and a first water outlet pipe 12 located on the other side of the mounting cavity 3, the mounting seat shell 1 includes a side shell 14 arranged in the vertical direction and a base 15 arranged in the horizontal direction and connected with the side shell 14, the mounting cavity 3 includes a main accommodating cavity 34 used for mounting an ozone generator main body 24, a first accommodating cavity 31 used for mounting an ozone generator water inlet pipe 21, a second accommodating cavity 32 used for mounting an ozone generator water outlet pipe 22, and a third accommodating cavity 33 used for mounting an ozone generator electrode assembly 23, when the ozone generator main body 24 is mounted into the main accommodating cavity 34, the ozone generator water inlet pipe 21 and the ozone generator water outlet pipe 22 are respectively mounted into the first accommodating cavity 31 and the second accommodating cavity 32, the first accommodating cavity 31 and the first water inlet pipe 11 communicate with each other, the second accommodating cavity 32 and the first water outlet pipe 12 communicate with each other, and the first water inlet pipe 11 and the first water outlet pipe 12 are connected with and communicate with the integrated waterway board 9, so that the ozone generator water inlet pipe 21 and the ozone generator water outlet pipe 22 are connected with and communicate with the integrated waterway board 9.
[0065] The mounting seat shell 1 is further provided with a first mounting part 13, the first mounting part 13 is a connecting circular hole located on the base 15 and used for threadedly connecting with the integrated waterway board 9, so that the mounting seat shell 1 is detachably connected with the integrated waterway board 9.
[0066] The side shell 14 is provided with a second mounting part 141, the side shell 14 is detachably connected with the ozone generator main body 24 through the second mounting part 141, the ozone generator 2 is provided with an elastic member and a buckle connected with the elastic member, the second mounting part 141 is a clamping groove located on the side shell 14, during installation, a user presses the elastic member, the elastic member is compressed to drive the buckle to shrink into the middle part of the ozone generator 2, so that the ozone generator main body 24 is mounted into the main accommodating cavity 34, the elastic member is released to restore the elastic deformation, so that the buckle is buckled with the clamping groove, and the detachable connection between the ozone generator 2 and the side shell 14 is realized.
[0067] The implementation of the embodiment 2 is as follows:
[0068] The difference between the embodiment 2 and the embodiment 1 is that the mounting seat shell 1 is further provided with a first mounting part 13, the first mounting part 13 is a connecting circular groove on the mounting seat shell 1, the integrated waterway plate 9 is provided with a connecting convex column, the connecting convex column and the connecting circular groove are in slot connection, so that the mounting seat shell 1 and the integrated waterway plate 9 are detachably connected.
[0069] The embodiment 3 is implemented as follows:
[0070] The difference between the embodiment 3 and the embodiment 1 is that the mounting seat shell 1 is further provided with a first mounting part 13, the first mounting part 13 is a connecting clamping groove on the mounting seat shell 1, the integrated waterway plate 9 is provided with a connecting buckle, the connecting clamping groove and the connecting buckle are in buckle connection, so that the mounting seat shell 1 and the integrated waterway plate 9 are detachably connected.
[0071] The embodiment 4 is implemented as follows:
[0072] The difference between the embodiment 4 and the embodiment 1 is that the side shell 14 is provided with a second mounting part 141, the side shell 14 is detachably connected with the ozone generator main body 24 through the second mounting part 141, the ozone generator 2 is provided with an elastic piece and a column connected with the elastic piece, the second mounting part 141 is a slot on the side shell 14, when mounting, the user presses the elastic piece, the elastic piece is compressed to drive the column to shrink to the middle part of the ozone generator 2, so that the ozone generator main body 24 is mounted to the main containing cavity 34, the elastic piece is released, the elastic piece restores the elastic deformation, so that the column and the slot are in plug-in cooperation, and the detachable connection between the ozone generator 2 and the side shell 14 is realized.
[0073] The above is only to further illustrate the technical content of the utility model by means of embodiments, so that the reader can more easily understand, but it does not mean that the implementation mode of the utility model is limited to this, any technical extension or re-creation made according to the utility model is protected by the utility model. The protection scope of the utility model is subject to the claims.
Claims
1. Ozone generator mounting base comprising a mounting base housing (1), characterized in that: The mounting seat shell (1) is provided with a mounting cavity (3) for mounting the ozone generator (2) and communicating with the outside, a first water inlet pipe (11) on one side of the mounting cavity (3), and a first water outlet pipe (12) on the other side of the mounting cavity (3), the mounting cavity (3) is connected and communicated with the integrated waterway board (9) through the first water inlet pipe (11) and the first water outlet pipe (12) respectively, and the mounting seat shell (1) is further provided with a first mounting portion (13), and the mounting seat shell (1) is detachably connected with the integrated waterway board (9) through the first mounting portion (13).
2. The ozone generator mount of claim 1, wherein: The mounting cavity (3) includes a first containing cavity (31) for mounting the ozone generator water inlet pipe (21) and communicating with the first water inlet pipe (11), and a second containing cavity (32) for mounting the ozone generator water outlet pipe (22) and communicating with the first water outlet pipe (12).
3. The ozone generator mount of claim 2, wherein: The mounting cavity (3) includes a third containing cavity (33) for mounting the ozone generator electrode assembly (23).
4. The ozone generator mount of claim 3, wherein: The mounting seat shell (1) includes a side shell (14) arranged in the vertical direction, and a base (15) arranged in the horizontal direction and connected with the side shell (14), the mounting cavity (3) includes a main containing cavity (34) for mounting the ozone generator main body (24), the main containing cavity (34) is formed by the side shell (14) and the base (15), and a mounting opening (16) is arranged on the side of the side shell (14) away from the base (15), and the main containing cavity (34) communicates with the outside through the mounting opening (16).
5. The ozone generator mount of claim 4, wherein: The mounting seat shell (1) includes a first mounting shell (17), a second mounting shell (18) and a third mounting shell (19), the first mounting shell (17), the second mounting shell (18) and the third mounting shell (19) are connected and communicated with the base (15) and extend away from the side shell (14), the first containing cavity (31) is located in the first mounting shell (17), the second containing cavity (32) is located in the second mounting shell (18), and the third containing cavity (33) is located in the third mounting shell (19) and communicates with the outside.
6. The ozone generator mount of claim 4, wherein: The first mounting portion (13) is a connecting circular hole arranged on the base (15) and used for threaded connection with the integrated waterway board (9).
7. The ozone generator mount of claim 6, wherein: The connecting circular hole includes a first connecting circular hole (131) arranged on the side of the base (15) close to the first water inlet pipe (11), and a second connecting circular hole (132) arranged on the side of the base (15) close to the first water outlet pipe (12).
8. The ozone generator mount of claim 4, wherein: The side shell (14) is provided with a second mounting portion (141), and the side shell (14) is detachably connected with the ozone generator main body (24) through the second mounting portion (141).
9. The ozone generator mount of claim 8, wherein: The second mounting part (141) comprises a first clamping groove (1411) on one side of the side shell (14) and a second clamping groove (1412) on the other side of the side shell (14) and symmetrically arranged with the first clamping groove (1411), and the first clamping groove (1411) and the second clamping groove (1412) are respectively buckled with the ozone generator main body (24).
10. The ozone generator mount of claim 4, wherein: The side shell (14) is provided with a heat dissipation opening (341) which is communicated with the main containing cavity (34) and communicated with the outside.