Disinfection structure and integrated machine
By using a bracket assembly to partition and install the water circuit board, pump body, and disinfection components in the integrated purification and disinfection machine, combined with a multi-layer support structure and integrated molding design, the problem of long maintenance time for the disinfection structure of the integrated purification and disinfection machine is solved, realizing an efficient and stable liquid transfer and disinfection process, and improving the operational reliability and market competitiveness of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUANGDONG CHENGYU ELECTRICAL APPLIANCE TECHNOLOGY CO LTD
- Filing Date
- 2025-07-16
- Publication Date
- 2026-06-16
AI Technical Summary
The lack of modular layout in the disinfection structure of the integrated disinfection and sterilization machine leads to long maintenance time, affecting equipment use and user experience.
The water circuit board, pump body, and disinfection components are installed in separate bracket sections to form independent installation spaces, enabling efficient connection between liquid transmission and disinfection processes. The multi-layer support structure and one-piece molding design enhance the stability of the components.
It reduces maintenance costs and time, improves system stability and reliability, enhances disinfection efficiency, and its miniaturized and portable design strengthens market competitiveness.
Smart Images

Figure CN224365023U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of electrical appliances, and in particular to a disinfection structure and an integrated disinfection and purification machine. Background Technology
[0002] In existing technologies, the disinfection structure of integrated water purification and disinfection machines is not rationally designed and lacks a modular layout, resulting in significant time consumption when equipment needs to be replaced or maintained. If the maintenance of the disinfection structure takes too long, it will lead to a substantial increase in equipment downtime. While waiting for maintenance, users cannot use the integrated water purification and disinfection machine to obtain safe drinking water, which will cause great inconvenience in case of emergency water use and lead to user dissatisfaction. Utility Model Content
[0003] Therefore, it is necessary to address the lack of modular structural layout in the disinfection structure of integrated disinfection and purification machines by providing a disinfection structure and an integrated disinfection and purification machine.
[0004] A disinfection structure includes: a support assembly having a first installation space and a second installation space; a water circuit board assembly disposed on the support assembly and located in the first installation space; a pump body assembly disposed on the support assembly, having an inlet and an outlet, the inlet communicating with the water circuit board assembly; and a disinfection component disposed on the support assembly and located in the second installation space, communicating with the outlet.
[0005] The above-disclosed disinfection structure is used in an integrated disinfection and purification machine. The bracket assembly has independent first and second installation spaces, allowing for the separate installation of the water circuit board assembly, pump assembly, and disinfection assembly. This not only facilitates individual disassembly and maintenance of each component, eliminating the need for overall disassembly when replacing damaged parts, significantly reducing maintenance costs and time, but also ensures that different functional components perform their respective functions, avoiding mutual interference and improving the stability and reliability of the system operation. Secondly, it achieves efficient integration in the liquid transmission and disinfection process. The inlet of the pump assembly connects to the water circuit board assembly, and the outlet connects to the disinfection assembly, forming a smooth liquid transmission and processing channel. Liquid enters the pump assembly from the water circuit board assembly, is pressurized by the pump assembly, and is rapidly delivered to the disinfection assembly, ensuring that the disinfectant liquid enters the disinfection stage with stable pressure and flow, effectively improving disinfection efficiency and effect. By integrating the core functional components onto the bracket assembly, the overall structural layout is reasonable, ensuring functional integrity while maintaining good space utilization, making miniaturization and portability possible, and enhancing the product's market competitiveness and application range.
[0006] In one embodiment, the support assembly includes a support body, a pump mounting plate, and a disinfection component mounting shell. The pump mounting plate and the disinfection component mounting shell are mounted on the support body. The water circuit board assembly is mounted on the support body, the pump assembly is mounted on the pump mounting plate, and the disinfection assembly is mounted on the disinfection component mounting shell. The support body has a first mounting space, and the disinfection component mounting shell has a second mounting space. By mounting the pump mounting plate and the disinfection component mounting shell on the support body, the support body serves as a basic frame, supporting the weight of the entire disinfection structure with its robust structure. Simultaneously, the first mounting space provides a dedicated area for the water circuit board assembly, facilitating its installation and reducing the risk of pipe loosening or liquid leakage due to vibration during liquid transmission, thus ensuring stable operation of the water system. The pump mounting plate is independent of the support body and specifically designed for the pump assembly; this split installation method achieves precise positioning and efficient vibration reduction. The vibrations generated by the pump assembly during operation are effectively absorbed and dispersed by the pump mounting plate, preventing the vibrations from being transmitted to other components through the support body and affecting the normal operation of the water circuit board assembly or disinfection assembly. Simultaneously, the independent mounting plate makes the installation, commissioning, and maintenance of the pump assembly more flexible, allowing technicians to quickly disassemble and replace the pump, significantly improving equipment maintenance efficiency. The disinfection component mounting shell provides physical isolation and protection for the disinfection assembly through a second installation space, ensuring the normal operation of the disinfection assembly.
[0007] In one embodiment, the pump mounting plate includes a first mounting plate and a second mounting plate. Both the first and second mounting plates are disposed on the support body and extend along the length of the support body. One end of the first and second mounting plates abuts against the side wall of the support body, and the other end abuts against the sterilization component mounting shell. The pump assembly is disposed on the first and second mounting plates. By extending the first and second mounting plates along the length of the support body and installing them together, a stable double-support structure is constructed. With both ends abutting against the side wall of the support body and the sterilization component mounting shell respectively, this mechanical layout effectively disperses the forces generated during pump assembly operation, preventing excessive force on a single mounting point that could lead to deformation or loosening. This enhances the stability of the pump assembly installation and provides a reliable guarantee for the continuous and stable operation of the pump assembly. Simultaneously, the two mounting plates are arranged in parallel, forming a regular mounting plane, facilitating precise positioning and installation of the pump assembly, reducing installation errors, ensuring the connection accuracy of the pump assembly's inlet and outlet with the water circuit board assembly and sterilization component, and avoiding liquid leakage or poor transmission problems caused by installation misalignment. Meanwhile, the dual mounting plate design further enhances the buffering effect. When the pump body assembly vibrates during operation, the first and second mounting plates can absorb and buffer the vibration energy from different directions. Compared with a single mounting plate, it can more comprehensively block the vibration transmission path, reduce the spread of vibration to the support body and other components, effectively reduce equipment operating noise, and at the same time avoid the impact of vibration on the liquid transmission stability of the water circuit board assembly and the working performance of the disinfection component.
[0008] In one embodiment, the sterilization component mounting shell includes a support assembly and a mounting assembly. The support assembly is disposed on the support body, the mounting assembly is disposed on the support assembly, and the sterilization component is disposed on the mounting assembly. The mounting assembly has a second mounting space. By directly mounting the support assembly onto the support body, it acts as a stable base. Through a reliable connection with the support body, the weight of the sterilization component and the forces generated during operation are evenly distributed onto the support body, avoiding excessive local stress that could lead to structural deformation. Simultaneously, its stable support characteristics provide a stable foundation for the mounting assembly, ensuring that the mounting assembly will not shake or shift when supporting the sterilization component, thus guaranteeing the stability and reliability of the sterilization component's operation. The mounting assembly, as a dedicated carrier for the sterilization component, provides a precisely fitted mounting environment for the sterilization component through its internal second mounting space.
[0009] In one embodiment, the support assembly includes a support plate and a connecting plate. The support plate is vertically mounted on the support body and extends along the height direction of the support body. The mounting assembly is mounted on the support plate, one end of the connecting plate is mounted on the support body, and the other end of the connecting plate is mounted on the mounting assembly. By vertically mounting the support plate on the support body and extending it along the height direction, a stable vertical support column is formed, providing solid vertical support for the mounting assembly. This vertically extending design can effectively resist the vertical forces generated by the disinfection assembly during operation, uniformly transferring these forces to the support body and enhancing the overall structure's anti-overturning capability. Simultaneously, its longer extension length increases the contact area with the support body and the mounting assembly, further improving the stability of the support and preventing the mounting assembly from tilting or swaying due to uneven force distribution, ensuring stable operation of the disinfection assembly. One end of the connecting plate connects to the support body, and the other end connects to the mounting assembly, also constructing a stable vertical tie structure. The connecting plate can effectively disperse the vibrations or external impacts generated during the operation of the disinfection assembly, preventing the mounting assembly from shifting vertically.
[0010] In one embodiment, the mounting assembly includes a first mounting member and a second mounting member. The first mounting member is disposed on the support assembly, and the second mounting member is disposed on the support assembly and / or the first mounting member. The second mounting space includes a limiting space and an extending space. The first mounting member has the limiting space, and the second mounting member has the extending space. The limiting space and the extending space are connected. The disinfection assembly is disposed in the limiting space and passes through the extending space. By providing a limiting space in the first mounting member, precise positioning and fixing functions are provided for the disinfection assembly. The shape and size of the limiting space are adapted to the outer contour of the disinfection assembly. Through the structure of the inner wall, the disinfection assembly can be limited in multiple dimensions to ensure that it will not shift or shake during operation. This precise positioning not only ensures the connection stability of the outlet of the disinfection assembly and the pump body assembly, avoiding liquid leakage, but also reduces component wear caused by positional misalignment, extending the service life of the equipment. The extending space further provides protection for the disinfection assembly, ensuring stable operation of the disinfection assembly during disinfection and improving the reliability of system operation.
[0011] In one embodiment, the bracket body, the pump mounting plate, and the disinfection component mounting shell are integrally formed. This integral design improves the performance of the disinfection structure in several ways. It eliminates gaps and weak points between components, forming a complete load-bearing system, effectively dispersing pump vibrations, and ensuring stable installation of all components. It also simplifies the production process, avoids errors from manual assembly, and ensures precise matching between installation spaces and components.
[0012] In one embodiment, the water circuit board assembly includes a water circuit board body and pipes. The water circuit board body is mounted on the support assembly and located in the first mounting space. Multiple pipes are mounted on the water circuit board body and can communicate with the liquid inlet. By mounting the water circuit board body in the first mounting space of the support assembly, a stable support is provided for the entire water circuit system. Its close cooperation with the support assembly ensures that there will be no shaking due to external forces or liquid pressure during liquid transmission, guaranteeing the stability of liquid flow. Multiple pipes mounted on the water circuit board body form a flexible and efficient liquid distribution network. These pipes can precisely communicate with the liquid inlet of the pump assembly, realizing multi-channel liquid input and flexibly distributing liquid flow rate and direction according to different usage scenarios and disinfection requirements. At the same time, the combination of multiple pipes also enhances the redundancy of the water circuit system; even if some pipes fail, other pipes can still maintain the basic operation of the system, ensuring the continuity of disinfection work.
[0013] In one embodiment, the pump assembly includes a pump body and a pump body mounting bracket. The pump body is mounted on the pump body mounting bracket, which is mounted on a support assembly. The support assembly has a partition space along its length. The pump body is positioned opposite the partition space along its length. The pump body has an inlet and an outlet. By mounting the pump body on the pump body mounting bracket, which acts as a bridge connecting the pump body and the support assembly, a reliable mounting foundation is provided for the pump body. Its close connection to the support assembly effectively disperses the vibrations and forces generated during pump operation, preventing excessive vibration from affecting performance or causing component loosening. The pump body's mounting on the pump body mounting bracket and its opposition to the support assembly via the partition space, which extends along the length of the support assembly, not only provides a dedicated installation area for the pump body but also effectively utilizes the lateral space of the equipment, making the overall disinfection structure layout more compact and rational. The partition space separates the pump body from other components, reducing the interference of pump vibrations on surrounding components. The pump body itself has an inlet and an outlet, which are key interfaces for realizing liquid power transmission. The inlet is connected to the water circuit board assembly through a pipeline, which can stably draw in liquid, while the outlet delivers the pressurized liquid to the disinfection component, providing a stable liquid flow and pressure for the disinfection process, ensuring the consistency and reliability of the disinfection effect.
[0014] In one embodiment, the disinfection component includes an electrolysis module and a connecting module. The electrolysis module is disposed on the connecting module, which is also disposed on the support assembly. The second installation space includes a limiting space and an extension space. The limiting space communicates with the extension space, the connecting module abuts against the limiting space, and the electrolysis module is located in the extension space. By cooperating with the structure of the inner wall of the limiting space, the connecting module can achieve precise positioning and firm fixation, ensuring that the electrolysis module will not be displaced due to vibration or external force during operation, thus guaranteeing the stability of the electrolysis reaction. As the core functional component of the disinfection component, the electrolysis module is located within the extension space, a layout that provides adaptation space for its complex internal structure and operational requirements.
[0015] The second aspect of this application discloses an integrated disinfection and purification machine, which includes: a disinfection structure as described in any one of the claims; a housing, on which the disinfection structure is disposed; a water purification filter element, on which the water purification filter element is disposed; and an electronic control device, on which the electronic control device is disposed in the housing and / or the support assembly.
[0016] The second aspect disclosed above discloses an integrated water purification and disinfection machine. The disinfection structure is mounted on the outer casing, providing physical protection and spatial integration for the internal components. The combination of the water purification filter and the support assembly achieves synergistic dual functions of water purification and disinfection, allowing users to choose between these functions based on their needs, thus improving the user experience. The inclusion of an electronic control device endows the integrated water purification and disinfection machine with intelligent control capabilities. Its connection to the outer casing or support assembly facilitates wiring layout and fixation, ensuring stable operation of the electrical system. Attached Figure Description
[0017] Figure 1 This is the first 3D view of the integrated air purification and disinfection machine;
[0018] Figure 2 This is a second 3D view of the integrated disinfection and purification machine;
[0019] Figure 3 This is a first three-dimensional view of the disinfection structure;
[0020] Figure 4 This is a first perspective view of the support assembly;
[0021] Figure 5 This is a second perspective view of the support assembly;
[0022] Figure 6 This is a third perspective view of the support assembly;
[0023] Figure 7 This is the fourth perspective view of the support assembly;
[0024] Figure 8 This is the fifth perspective view of the support assembly;
[0025] Figure 9 This is a cross-sectional view of the support assembly;
[0026] Figure 10 This is a second perspective view of the disinfection structure;
[0027] Figure 11 This is a third-dimensional view of the disinfection structure;
[0028] Figure 12 This is a 3D view of the disinfection components.
[0029] The correspondence between the reference numerals and the component names is as follows:
[0030] 1. Bracket assembly; 11. Bracket body; 12. Pump body mounting plate; 121. First mounting plate; 122. Second mounting plate; 13. Sterilization component mounting shell; 131. Support assembly; 1311. Support plate; 1312. Connecting plate; 132. Mounting assembly; 1321. First mounting component; 1322. Second mounting component; 101. First mounting space; 102. Second mounting space; 1021. Limiting space; 1022. Extension space; 103. Dividing space.
[0031] 2. Water circuit board assembly; 21. Water circuit board body; 22. Pipeline.
[0032] 3. Pump body assembly, 31. Pump body, 32. Pump body mounting bracket, 301. Liquid inlet, 302. Liquid outlet;
[0033] 4. Disinfection components, 41. Electrolysis module, 42. Connection module. Detailed Implementation
[0034] To better understand the above-mentioned objectives, features, and advantages of this utility model, the present utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.
[0035] Many specific details are set forth in the following description in order to provide a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the scope of protection of the present invention is not limited to the specific embodiments disclosed below.
[0036] The disinfection structure and integrated disinfection and purification machine of this utility model are described below with reference to the accompanying drawings.
[0037] Example 1
[0038] like Figures 1 to 12As shown, this embodiment discloses a disinfection structure, including: a support assembly 1, which has a first installation space 101 and a second installation space 102; a water circuit board assembly 2, which is disposed on the support assembly 1 and located in the first installation space 101; a pump body assembly 3, which is disposed on the support assembly 1 and has an inlet 301 and an outlet 302, the inlet 301 being connected to the water circuit board assembly 2; and a disinfection assembly 4, which is disposed on the support assembly 1 and located in the second installation space 102, and is connected to the outlet 302.
[0039] This application discloses a disinfection structure for an integrated disinfection and purification machine. The support assembly 1 has independent first installation space 101 and second installation space 102, allowing for the separate installation of the water circuit board assembly 2, pump assembly 3, and disinfection assembly 4. This not only facilitates individual disassembly and maintenance of each component, eliminating the need for complete disassembly when replacing damaged parts, significantly reducing maintenance costs and time, but also ensures that different functional components perform their respective functions, avoiding mutual interference and improving the stability and reliability of the system operation. Secondly, it achieves efficient integration of the liquid transmission and disinfection processes. The inlet 301 of the pump assembly 3 is connected to the water circuit board assembly 2, and the outlet 302 is connected to the disinfection assembly 4, forming a smooth liquid transmission and processing channel. Liquid enters the pump assembly 3 from the water circuit board assembly 2, is pressurized by the pump assembly 3, and is rapidly delivered to the disinfection assembly 4, ensuring that the disinfectant liquid enters the disinfection stage with stable pressure and flow rate, effectively improving disinfection efficiency and effect. By integrating the core functional components onto the bracket assembly 1, the overall structure is rationally laid out, ensuring both functional integrity and good space utilization. This enables the miniaturization and portability of the equipment, enhancing the product's market competitiveness and application scope.
[0040] like Figure 3 , Figure 4 and Figure 5As shown, in addition to the features of the above embodiments, this embodiment further defines: the support assembly 1 includes a support body 11, a pump mounting plate 12, and a disinfection component mounting shell 13. The pump mounting plate 12 and the disinfection component mounting shell 13 are disposed on the support body 11. The water circuit board assembly 2 is disposed on the support body 11. The pump assembly 3 is disposed on the pump mounting plate 12. The disinfection component 4 is disposed on the disinfection component mounting shell 13. The support body 11 has a first installation space 101, and the disinfection component mounting shell 13 has a second installation space 102. By disposing of the pump mounting plate 12 and the disinfection component mounting shell 13 on the support body 11, the support body 11 serves as a basic frame, bearing the weight of the entire disinfection structure with its robust structure. At the same time, the first installation space 101 provides a dedicated area for the water circuit board assembly 2, which not only facilitates the installation of the water circuit board assembly 2 but also utilizes the rigidity of the support body 11 to reduce the risk of pipe loosening or liquid leakage caused by vibration during liquid transmission, ensuring the stable operation of the water system. The pump mounting plate 12 is independent of the bracket body 11 and is specifically designed for the pump assembly 3. This split installation method achieves precise positioning and efficient vibration reduction. Vibrations generated during the operation of the pump assembly 3 are effectively absorbed and dispersed by the pump mounting plate 12, preventing vibration from being transmitted through the bracket body 11 to other components and affecting the normal operation of the water circuit board assembly 2 or the disinfection assembly 4. Simultaneously, the independent mounting plate makes the installation, commissioning, and maintenance of the pump assembly more flexible, allowing technicians to quickly disassemble and replace the pump, significantly improving equipment maintenance efficiency. The disinfection component mounting shell 13 provides physical isolation and protection for the disinfection assembly 4 through the second installation space 102, ensuring the normal operation of the disinfection assembly 4.
[0041] like Figure 4 and Figure 6As shown, in addition to the features of the above embodiments, this embodiment further defines: the pump body mounting plate 12 includes a first mounting plate 121 and a second mounting plate 122. Both the first mounting plate 121 and the second mounting plate 122 are disposed on the support body 11 and extend along the length direction of the support body 11. One end of the first mounting plate 121 and the second mounting plate 122 abuts against the side wall of the support body 11, and the other end of the first mounting plate 121 and the second mounting plate 122 abuts against the sterilization component mounting shell 13. The pump body assembly 3 is disposed on the first mounting plate 121 and the second mounting plate 122. By extending the first mounting plate 121 and the second mounting plate 122 along the length direction of the support body 11 and installing them together, a stable double-support structure is constructed. With both ends abutting against the side wall of the support body 11 and the sterilization component mounting shell 13 respectively, this mechanical layout can effectively disperse the force generated during the operation of the pump body assembly 3, avoiding excessive force on a single mounting point leading to deformation or loosening, enhancing the stability of the pump body assembly 3 installation, and providing a reliable guarantee for the continuous and stable operation of the pump body assembly 3. Meanwhile, the two mounting plates are set in parallel, forming a regular mounting plane, which facilitates precise positioning and installation of the pump body assembly 3, reduces installation errors, and ensures the connection accuracy between the inlet 301 and outlet 302 of the pump body assembly 3 and the water circuit board assembly 2 and disinfection assembly 4, avoiding liquid leakage or transmission problems caused by installation misalignment. Furthermore, the dual mounting plate design further enhances the buffering effect. When the pump body assembly 3 vibrates during operation, the first and second mounting plates can absorb and buffer vibration energy from different directions. Compared to a single mounting plate, this more comprehensively blocks the vibration transmission path, reduces the diffusion of vibration to the support body 11 and other components, effectively reduces equipment operating noise, and prevents vibration interference from affecting the liquid transmission stability of the water circuit board assembly 2 and the working performance of the disinfection assembly.
[0042] like Figure 5 and Figure 6 As shown, in addition to the features of the above embodiments, this embodiment further defines: the sterilization component mounting shell 13 includes a support component 131 and a mounting component 132. The support component 131 is disposed on the support body 11, the mounting component 132 is disposed on the support component 131, and the sterilization component 4 is disposed on the mounting component 132. The mounting component 132 is provided with a second mounting space 102. By directly mounting the support component 131 on the support body 11, it acts as a stable base. Through a reliable connection with the support body 11, the weight of the sterilization component 4 and the force generated during operation are evenly distributed on the support body 11, avoiding excessive local stress that could lead to structural deformation. At the same time, its stable support characteristics provide a stable foundation for the mounting component 132, ensuring that the mounting component 132 will not shake or shift when carrying the sterilization component 4, thus ensuring the stability and reliability of the sterilization component 4 during operation. The mounting component 132 serves as a dedicated carrier for the sterilization component 4, and the second mounting space 103 inside provides a precisely fitted installation environment for the sterilization component 4.
[0043] like Figure 6 and Figure 7 As shown, in addition to the features of the above embodiments, this embodiment further defines: the support component 131 includes a support plate 1311 and a connecting plate 1312. The support plate 1311 is vertically mounted on the support body 11 and extends along the height direction of the support body 11. The mounting component 132 is mounted on the support plate 1311. One end of the connecting plate 1312 is mounted on the support body 11, and the other end of the connecting plate 1312 is mounted on the mounting component 132. By vertically mounting the support plate 1311 on the support body 11 and extending it along the height direction, a stable vertical support column is formed, providing solid vertical support for the mounting component 132. This vertically extended design can effectively resist the vertical force generated by the disinfection component 4 during operation, uniformly transferring these forces to the support body 11, and enhancing the overall structure's anti-overturning ability. At the same time, its longer extension length increases the contact area with the support body 11 and the mounting component 132, further improving the stability of the support, preventing the mounting component 132 from tilting or shaking due to uneven force, and ensuring the stable operation of the disinfection component 4. One end of the connecting plate 1312 is connected to the main body of the bracket 11, and the other end is connected to the mounting component 132, thus forming a stable vertical tie structure. The connecting plate 1312 can effectively disperse the vibration or external impact generated during the operation of the disinfection component 4, and prevent the mounting component 132 from shifting in the vertical direction.
[0044] like Figure 3 , Figure 6 , Figure 8 and Figure 9As shown, in addition to the features of the above embodiments, this embodiment further defines: the mounting component 132 includes a first mounting member 1321 and a second mounting member 1322. The first mounting member 1321 is disposed on the support component 131, and the second mounting member 1322 is disposed on the support component 131 and / or the first mounting member 1321. The second mounting space 102 includes a limiting space 1021 and an extending space 1022. The first mounting member 1321 has a limiting space 1021, and the second mounting member 1322 has an extending space 1022. The limiting space 1021 and the extending space 1022 are connected. The disinfection component 4 is disposed in the limiting space 1021 and passes through the extending space 1022. By setting the limiting space 1021 in the first mounting member 1321, the disinfection component 4 is provided with precise positioning and fixing functions. The shape and size of the limiting space 1021 are adapted to the outer contour of the disinfection component 4. Through the structure of the inner wall, the disinfection component 4 can be limited in multiple dimensions to ensure that it will not shift or shake during operation. This precise positioning not only ensures the stability of the connection between the disinfection component 4 and the outlet 302 of the pump body component 3, preventing liquid leakage, but also reduces component wear caused by positional misalignment, extending the service life of the equipment. The extended space 1022 further provides protection for the disinfection component 4, ensuring stable operation during disinfection and improving the reliability of the system.
[0045] like Figure 4 As shown, in addition to the features of the above embodiments, this embodiment further specifies that the bracket body 11, the pump body mounting plate 12, and the disinfection component mounting shell 13 are integrally formed. By designing the bracket body 11, the pump body mounting plate 12, and the disinfection component mounting shell 13 as an integral unit, the performance of the disinfection structure can be improved in many ways. It eliminates connection gaps and weak points between components, forming a complete load-bearing system, effectively dispersing pump body vibration during operation, and ensuring stable installation of each component; it simplifies the production process, avoids errors in manual assembly, and ensures precise matching between each installation space and component.
[0046] like Figure 2 , Figure 5 and Figure 10As shown, in addition to the features of the above embodiments, this embodiment further defines: the water circuit board assembly 2 includes a water circuit board body 21 and pipes 22. The water circuit board body 21 is mounted on the support assembly 1 and located in the first installation space 101. Multiple pipes 22 are mounted on the water circuit board body 21 and can communicate with the liquid inlet 301. By mounting the water circuit board body 21 in the first installation space 101 of the support assembly 1, a stable support is provided for the entire water circuit system. Its close cooperation with the support assembly 1 ensures that there will be no shaking due to external forces or liquid pressure during liquid transmission, guaranteeing the stability of liquid flow. Multiple pipes 22 mounted on the water circuit board body 2 form a flexible and efficient liquid distribution network. These pipes 22 can be precisely connected to the liquid inlet 301 of the pump body assembly 3, realizing multi-channel liquid input, and can flexibly allocate liquid flow rate and direction according to different usage scenarios and disinfection requirements. At the same time, the combination of multiple pipes 22 also enhances the redundancy of the water system. Even if some pipes 22 fail, other pipes 22 can still maintain the basic operation of the system and ensure the continuity of disinfection work.
[0047] like Figure 3 , Figure 4 and Figure 11As shown, in addition to the features of the above embodiments, this embodiment further defines: the pump body assembly 3 includes a pump body 31 and a pump body mounting bracket 32. The pump body 31 is mounted on the pump body mounting bracket 32, and the pump body mounting bracket 32 is mounted on the bracket assembly 1. The bracket assembly 1 has a partition space 103, which is arranged along the length direction of the bracket assembly 1. The pump body 31 is arranged opposite to the partition space 103 along the length direction of the partition space 103. The pump body 31 has an inlet 301 and an outlet 302. By mounting the pump body 31 on the pump body mounting bracket 32, the pump body mounting bracket 32 acts as a bridge connecting the pump body 31 and the bracket assembly 1, providing a reliable mounting foundation for the pump body 31. It is tightly connected to the bracket assembly 1, which can effectively disperse the vibration and force generated by the pump body 31 during operation, preventing the pump body 31 from being affected by excessive vibration or causing components to loosen. The pump body 31 is mounted on the pump body mounting bracket 32 and faces the support assembly 1 via the partition space 103. The partition space 103 extends along the length of the support assembly 1, providing a dedicated installation area for the pump body 31 and effectively utilizing the lateral space of the equipment, making the overall disinfection structure layout more compact and rational. The partition space 103 separates the pump body 31 from other components, reducing the interference of vibrations generated by the pump body 31 during operation on surrounding components. The pump body 31 itself has an inlet 301 and an outlet 302, which are key interfaces for realizing liquid power transmission. The inlet 301 is connected to the pipeline of the water circuit board assembly 2, which can stably draw in liquid, while the outlet 302 delivers the pressurized liquid to the disinfection assembly 4, providing a stable liquid flow and pressure for the disinfection process, ensuring the consistency and reliability of the disinfection effect.
[0048] like Figure 9 and Figure 12 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the disinfection component 4 includes an electrolysis module 41 and a connecting module 42. The electrolysis module 41 is disposed on the connecting module 42, and the connecting module 42 is disposed on the support component 1. The second installation space 102 includes a limiting space 1021 and an extension space 1022. The limiting space 1021 and the extension space 1022 are connected. The connecting module 42 abuts against the limiting space 1021, and the electrolysis module 41 is located in the extension space 1022. By cooperating with the structure of the inner wall of the limiting space 1021, the connecting module 42 can achieve precise positioning and firm fixation, ensuring that the electrolysis module 41 will not be displaced due to vibration or external force during operation, thus ensuring the stability of the electrolysis reaction. As the core functional component of the disinfection component 4, the electrolysis module 41 is disposed in the extension space 1022. This layout provides adaptation space for its complex internal structure and operational requirements.
[0049] Example 2
[0050] like Figures 1 to 12As shown, this embodiment discloses an integrated disinfection and purification machine, including: the above-mentioned disinfection structure; a shell on which the disinfection structure is disposed; a water purification filter element on which the water purification filter element is disposed on the support assembly 1; and an electronic control device on which the electronic control device is disposed on the shell and / or the support assembly 1.
[0051] The second aspect of this application discloses an integrated water purification and disinfection machine. The disinfection structure is mounted on the outer casing, providing physical protection and spatial integration for the internal components. The combination of the water purification filter cartridge and the support assembly enables the synergistic use of both water purification and disinfection functions, allowing users to choose between these functions based on their needs, thus improving the user experience. The inclusion of an electronic control device endows the integrated water purification and disinfection machine with intelligent control capabilities. Its connection to the outer casing or support assembly facilitates wiring layout and fixation, ensuring stable operation of the electrical system.
[0052] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0053] The embodiments described above are merely illustrative of several implementations of this utility model, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.
Claims
1. A disinfecting structure, characterized by, The disinfection structure comprises: A bracket assembly (1) provided with a first mounting space (101) and a second mounting space (102); A waterway plate assembly (2) arranged on the bracket assembly (1) and located in the first mounting space (101); A pump body assembly (3) arranged on the bracket assembly (1), the pump body assembly (3) being provided with a liquid inlet (301) and a liquid outlet (302), the liquid inlet (301) being in communication with the waterway plate assembly (2); A disinfection assembly (4) arranged on the bracket assembly (1) and located in the second mounting space (102), the disinfection assembly (4) being in communication with the liquid outlet (302).
2. The sanitizing structure of claim 1, wherein, The bracket assembly (1) comprises a bracket main body (11), a pump body mounting plate (12) and a disinfection component mounting shell (13), the pump body mounting plate (12) and the disinfection component mounting shell (13) being arranged on the bracket main body (11), the waterway plate assembly (2) being arranged on the bracket main body (11), the pump body assembly (3) being arranged on the pump body mounting plate (12), the disinfection assembly (4) being arranged on the disinfection component mounting shell (13), the bracket main body (11) being provided with the first mounting space (101), and the disinfection component mounting shell (13) being provided with the second mounting space (102).
3. The sanitization structure of claim 2, wherein, The pump body mounting plate (12) comprises a first mounting plate (121) and a second mounting plate (122), the first mounting plate (121) and the second mounting plate (122) being arranged on the bracket main body (11) and extending along the length direction of the bracket main body (11), one end of the first mounting plate (121) and the second mounting plate (122) abutting against the side wall of the bracket main body (11), and the other end of the first mounting plate (121) and the second mounting plate (122) abutting against the disinfection component mounting shell (13), the pump body assembly (3) being arranged on the first mounting plate (121) and the second mounting plate (122).
4. The sanitization structure of claim 2, wherein, The disinfection component mounting shell (13) comprises a support assembly (131) and a mounting assembly (132), the support assembly (131) being arranged on the bracket main body (11), the mounting assembly (132) being arranged on the support assembly (131), the disinfection assembly (4) being arranged on the mounting assembly (132), and the mounting assembly (132) being provided with the second mounting space (102).
5. The disinfection structure according to claim 4, characterized in that, The support assembly (131) includes a support plate (1311) and a connecting plate (1312). The support plate (1311) is vertically mounted on the support body (11) and extends along the height direction of the support body (11). The mounting assembly (132) is mounted on the support plate (1311). One end of the connecting plate (1312) is mounted on the support body (11), and the other end of the connecting plate (1312) is mounted on the mounting assembly (132). And / or the mounting component (132) includes a first mounting member (1321) and a second mounting member (1322), the first mounting member (1321) is disposed on the support component (131), the second mounting member (1322) is disposed on the support component (131) and / or the first mounting member (1321), the second mounting space (102) includes a limiting space (1021) and an extending space (1022), the first mounting member (1321) is provided with the limiting space (1021), the second mounting member (1322) is provided with the extending space (1022), the limiting space (1021) and the extending space (1022) are connected, and the disinfection component (4) is disposed in the limiting space (1021) and passes through the extending space (1022).
6. The sanitization structure of claim 2, wherein, The bracket body (11), the pump mounting plate (12), and the disinfection component mounting shell (13) are integrally formed.
7. The sanitization structure of claim 1, wherein, The water circuit board assembly (2) includes a water circuit board body (21) and pipes (22). The water circuit board body (21) is disposed on the bracket assembly (1) and located in the first installation space (101). There are multiple pipes (22), which are disposed on the water circuit board body (21) and can communicate with the liquid inlet (301).
8. The sanitization structure of claim 1, wherein, The pump body assembly (3) includes a pump body (31) and a pump body mounting bracket (32). The pump body (31) is disposed on the pump body mounting bracket (32), and the pump body mounting bracket (32) is disposed on the bracket assembly (1). The bracket assembly (1) is provided with a partition space (103). The partition space (103) is disposed along the length direction of the bracket assembly (1). The pump body (31) is disposed opposite to the partition space (103) along the length direction of the partition space (103). The pump body (31) is provided with the inlet (301) and the outlet (302).
9. The sanitization structure of claim 1, wherein, The disinfection assembly (4) comprises an electrolysis module (41) and a connecting module (42), the electrolysis module (41) is arranged on the connecting module (42), the connecting module (42) is arranged on the support assembly (1), the second mounting space (102) comprises a limiting space (1021) and an extension space (1022), the limiting space (1021) is communicated with the extension space (1022), the connecting module (42) is abutted with the limiting space (1021), and the electrolysis module (41) is located at the extension space (1022).
10. A water purifying and waste disposal integrated machine characterized in that, The integrated machine for water purification and disinfection comprises: The disinfection structure according to any one of claims 1 to 9; A shell, wherein the disinfection structure is arranged on the shell; A water purification filter core, wherein the water purification filter core is arranged on the support assembly (1); An electric control device, wherein the electric control device is arranged on the shell and / or the support assembly (1).