A net heat all-in-one machine
Patent Information
- Application Number
- CN202521940755.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-09
- Publication Date
- 2026-08-21
- Estimated Expiration
- 2035-09-09
AI Technical Summary
针对现有技术中净饮机一体化设计适配性较差、产品研发成本较高的情况,本实用新型拟提供一种净热一体机,对不同功能模块进行分别集成,并能够形成通用模块,提高通用模块的适配性
(1)本实用新型的净热一体机,提供并排分布的净化骨架和功能骨架,将净化模块集成在净化骨架上,将需要的其他功能模块集成在功能骨架上,且两组骨架之间能够有效拆分,不仅便于各个部件的安装,且能够形成净化通用模块,搭配适用不同的功能模块,提高净化通用模块的通用灵活性,有效降低设备制造和研发成本,降低整机设备改造难度。
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Figure CN224655092U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of water purifier technology, and more specifically, to a water purifier and heat purifier integrated machine. Background Technology
[0002] As people's requirements for drinking water quality increase, water purifiers, which integrate water purification and temperature regulation functions, are widely used in homes, offices, and public places. Existing water purifiers typically consist of filtration modules (such as RO reverse osmosis and ultrafiltration) and auxiliary function modules (such as heating, cooling, UV sterilization, and intelligent control) to meet the diverse needs of different users.
[0003] However, current water purifier designs mostly adopt an integrated structure with highly integrated functional modules, resulting in poor functional compatibility between different models. For example, if the heating power needs to be adjusted or a cooling function added, the entire machine structure often needs to be redesigned, which not only increases R&D costs but also reduces production flexibility. In addition, because the filtration module and auxiliary functional modules are strongly coupled, upgrading or replacing a single function may involve a complete overhaul of the machine, extending product iteration cycles and keeping manufacturing costs high.
[0004] While some water purifiers on the market feature detachable filter designs, the overall functionality of the machine remains limited by its fixed architecture, making rapid adaptation to different auxiliary modules difficult. Therefore, improving the versatility of the core modules and enhancing the configurability of auxiliary functions has become a key concern in the industry. Optimizing the compatibility between modules would help reduce production costs, improve product adaptability, and meet users' personalized needs. Utility Model Content
[0005] 1. Technical problem to be solved by the utility model In view of the poor adaptability and high product development cost of the integrated design of existing water purifiers, this utility model proposes to provide an integrated water purifier and heat purifier that integrates different functional modules separately and can form a universal module, thereby improving the adaptability of the universal module. 2. Technical Solution To achieve the above objectives, the technical solution provided by this utility model is as follows: This utility model discloses an integrated heat purifier and heater, comprising: The purification frame has a filter cartridge frame and a pump mounting frame distributed along the height of the machine body. The filter cartridge frame is equipped with a filter element, and the pump mounting frame is equipped with a booster pump. Both the filter element and the booster pump are arranged laterally along the length of the machine body. One end of the purification frame along the length of the machine body is equipped with a purification water circuit plate that matches the filter element. The functional skeleton has an electronic control skeleton at the top, the electronic control module is installed on the electronic control skeleton, and an inner mounting area is formed below the electronic control skeleton. The purification frame and the functional frame are arranged side by side along the left and right width of the body, and the purification frame and the functional frame are detachably connected.
[0006] Furthermore, the internal installation area of the functional frame is provided with a heating element, a water circuit board II, and a water storage tank in sequence along the length of the machine body, with the heating element and the purification water circuit board located on the same side of the length of the machine body.
[0007] Furthermore, it also includes an adapter, with a front panel at the end of the functional frame away from the purified water circuit board, and the adapter is mounted on the side of the front panel away from the inner mounting area.
[0008] Furthermore, the functional frame has a mounting panel on the side facing the purification frame. The mounting panel has an opening area 1 with a thickness that extends through it. The water channel plate 2 is at least partially embedded in the opening area 1 and is detachably connected to the purification frame.
[0009] Furthermore, the purification frame includes two sets of filter cartridge frames distributed vertically, with a pump mounting bracket between the two sets of filter cartridge frames. The side of the pump mounting bracket facing the functional frame has a placement opening for inserting a booster pump. Along the length of the machine body, at least a portion of the placement opening overlaps with the opening area.
[0010] Furthermore, on the side of the functional frame facing the purification frame, the area close to the filter cartridge holder has an arc-shaped surface that matches the outer wall of the filter cartridge holder.
[0011] Furthermore, a booster pump mounting area is formed within the pump mounting bracket. The booster pump is fixedly mounted on the side wall of the booster pump mounting area away from the functional frame, and the extension length and width of the booster pump mounting area are both greater than the booster pump.
[0012] Furthermore, the filter cartridge frame has an axially extending positioning rib on the side facing the functional skeleton, and the mounting panel has a corresponding engaging positioning part to restrict the radial movement of the positioning rib.
[0013] Furthermore, the filter cartridge frame is provided with a front end cover and a rear end cover at both axial ends, and the front and rear ends of the mounting panel are respectively formed with limiting walls to restrict the axial movement of the front end cover and the rear end cover.
[0014] Furthermore, the mounting panel is provided with a front positioning part and a rear positioning part that cooperate with the positioning rib plate along the length of the machine body. The front side of the front positioning part forms a front limiting wall surface, and the rear end face of the rear positioning part forms a rear limiting wall surface.
[0015] 3. Beneficial effects Compared with the prior art, the technical solution provided by this utility model has the following advantages: (1) The integrated heat and purification machine of this utility model provides a purification frame and a functional frame arranged side by side. The purification module is integrated on the purification frame and other required functional modules are integrated on the functional frame. The two sets of frames can be effectively separated, which not only facilitates the installation of each component, but also forms a universal purification module. It can be matched with different functional modules, improve the universal flexibility of the universal purification module, effectively reduce the equipment manufacturing and R&D costs, and reduce the difficulty of modifying the whole machine.
[0016] (2) The integrated heat and purifier of this utility model has effective positioning and limiting components along the left and right assembly direction and the length extension direction of the frame between the purification frame and the functional frame, which can ensure the effective positioning and installation of the frame on both sides, ensure the stability of the overall frame, and improve the ease of installation. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the integrated heat and water purifier unit in the embodiment; Figure 2 for Figure 1 A schematic diagram of the structure from the rear side view; Figure 3 for Figure 1 A schematic diagram of the structure from the right side perspective; Figure 4 This is a schematic diagram of the supporting skeleton in the embodiment; Figure 5 for Figure 4 A schematic diagram of the structure from the rear side view; Figure 6 This is a schematic diagram of the purification frame structure in the embodiment; Figure 7 This is a schematic diagram showing the state of the purification frame after assembly in the embodiment; Figure 8 This is a schematic diagram of the functional skeleton in the embodiment; Figure 9 for Figure 8 A schematic diagram of the structure from the right side perspective; Figure 10 for Figure 9 A schematic diagram of the front-view structure.
[0018] Explanation of the labels in the diagram: 100. Purification of the skeleton; 110. Filter cartridge holder; 111. First filter element; 112. Second filter element; 113. Positioning ribs; 114. Rear end cover; 115. Front end cover; 120. Pump mounting bracket; 121. Booster pump mounting area; 122. Booster pump; 130. Purification water circuit board; 131. Pure water outlet; 200. Functional framework; 201. Upper window section; 202. Electrical control frame; 203. Reversing valve; 204. Front panel; 205. Rear panel; 206. Mounting panel; 206a. Upper arc section; 206b. Lower arc section; 207. Opening area one; 208. Opening area two; 209. Opening area three; 210. Heating element; 211. Heating element installation area; 212. Hot water outlet; 213. Mounting plate; 220. Water circuit board 2; 230. Water storage tank; 240. Adapter; 250. Front positioning part; 251. Rear positioning part; 252. Rear limiting wall; 253. Front limiting wall. Detailed Implementation
[0019] To further understand the content of this utility model, a detailed description of this utility model will be provided in conjunction with the accompanying drawings.
[0020] In the description of this utility model, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0021] Furthermore, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to fixed connections, detachable connections, or integral connections; they can refer to mechanical connections or electrical connections; they can refer to direct connections or indirect connections through an intermediate medium; and they can refer to the internal connection of two components. The terms "first," "second," "third," and "fourth" should also be interpreted broadly, merely to distinguish feature names and not to indicate a specific sequential relationship. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0022] The present invention will be further described below with reference to the embodiments.
[0023] Example Combination Figures 1-10 As shown, this embodiment provides an integrated air purifier and heater, including: The purification frame 100 has a filter cartridge frame 110 and a pump mounting frame 120 distributed along the height direction of the machine body. The filter cartridge frame 110 is equipped with a filter element, and the pump mounting frame 120 is equipped with a booster pump 122. Both the filter element and the booster pump 122 are arranged laterally along the length direction of the machine body. One end of the purification frame 100 in the length direction is provided with a purification water circuit plate 130 that matches the filter element. The functional skeleton 200 has an electrical control skeleton 202 at its top. The electrical control module is installed on the electrical control skeleton 202. An inner mounting area is formed below the electrical control skeleton 202. The inner mounting area is used to install functional modules for processing purified water, such as heating modules, cooling modules, and sparkling water modules. In this embodiment, a heating element 210 is specifically provided in the inner mounting area. The electrical control module specifically refers to an electrical control box or adapter 240. The electrical control box or adapter 240 can be optionally installed on the top electrical control skeleton 202 to effectively achieve water and electricity separation. The purification frame 100 and the functional frame 200 are arranged side by side along the left and right width direction of the machine body, and the purification frame 100 and the functional frame 200 are detachably connected. Specifically, they can be fastened with bolts at the four corners.
[0024] In this embodiment, the internal support frame of the machine body is divided into a purification frame 100 and a functional frame 200 that can be independently disassembled. The electronic control module, heating element 210 and other functional components are integrated and installed on the functional frame 200. The purification frame 100 integrates the components required for basic purification functions, including filter element, booster pump, and purification water circuit board 130. The filter element and booster pump are connected to the purification water circuit board 130 to form a universal purification module that can be compatible with other models. When upgrading or replacing different models, it is not necessary to completely modify the whole machine. Only the corresponding functional frame 200 and functional components need to be redesigned and matched. This effectively improves the universality of the purification frame 100 and the purification components on it, has high application flexibility, effectively reduces R&D and production costs, and improves product adaptability.
[0025] This embodiment uses the integration of heating and insulation components on the functional frame 200 as an example. The functional frame 200 has an electrical control frame 202 at its top, and an electrical control module (not shown in the attached diagram) is installed on the electrical control frame 202. In this embodiment, the electrical control box is specifically installed in the electrical control installation area enclosed by the electrical control frame 202. An inner installation area is formed below the electrical control frame 202. A hot water outlet 212 is provided at the rear end of the functional frame 200. Along the front-to-back length of the machine body, the inner installation area sequentially includes a heating element 210, a water circuit board 220, and a water storage tank 230. The water storage tank 230 serves as an insulation tank, storing the hot water heated by the heating element 210 and reheating it, thus achieving rapid, high-flow-rate hot water output and ensuring accurate hot water temperature. The inlet end of the heating element 210 is connected to the outlet end of the water storage tank 230, and the outlet end of the heating element 210 is connected to both the inlet end of the water storage tank 230 and the hot water outlet 212 of the machine body.
[0026] In this embodiment, the heating element 210 and the water storage tank 230 serve as the main high-temperature components within the machine body. The heating element 210 and the water storage tank 230 are separated and located at the front and rear ends of the machine body, respectively. A water circuit board 220 is installed between them. The water circuit board 220 is equipped with water circuit components such as valve groups, pump groups, and pipes, primarily used for distributing the purified water drawn from the purification water circuit board 130. As a low-temperature component within the machine body, the water circuit board 220 is positioned between the high-temperature components at both ends, forming an alternating layout of a main high-temperature zone, a low-temperature zone, and a secondary high-temperature zone within the machine body. This greatly avoids heat concentration in the high-temperature zone, facilitates rapid heat dissipation from the high-temperature components at both ends, prevents adverse effects on other components due to heat concentration, and improves the reliability and operational stability of the machine body.
[0027] Specifically, in this embodiment, the water purification circuit board 130 and the hot water outlet 212 are both located at the rear end of the machine body, and the heating element 210 is located at the rear end of the machine body, corresponding to the position of the hot water outlet 212. This not only effectively saves pipe length and promotes a compact and simple layout inside the machine body, but also helps to reduce temperature loss, ensure the accuracy of hot water outlet temperature, and improve user experience.
[0028] In addition, this embodiment installs the electronic control module at the top of the machine body, which helps to achieve water and electricity separation, avoids the risk of water ingress into the electronic control module, and uses the electronic control frame 202 to separate it from the inner mounting area below, so that the electronic control module is distributed relatively independently and separated from the high-temperature components in the mounting area below, further reducing heat transfer to the electronic control module and ensuring service life and stability.
[0029] Furthermore, the electronic control frame 202 extends along the length of the machine body, and at least a portion of the electronic control frame 202 covers the extended length of the lower water channel plate 220, preferably mainly covering the low-temperature zone where the lower water channel plate 220 is located, further reducing heat transfer from the high-temperature zone to the electronic control module. Specifically, in conjunction with... Figure 1 As shown, the length of the electronic control frame 202 mainly covers the area above the water circuit board 220, with its tail end located in front of the heating element 210 and offset from the main high-temperature zone. The front part covers the area above the water storage tank 230.
[0030] This embodiment also includes an adapter 240. More preferably, the front end of the functional frame 200 has a front plate 204, and the adapter 240 is mounted on the front side of the front plate 204 facing away from the inner mounting area. The adapter 240 also serves as a secondary high-temperature component. The front plate 204 separates the water tank 230 from the adapter 240, reducing heat transfer and heat concentration between them. Furthermore, placing the adapter 240 at the very front of the unit facilitates direct heat dissipation to the outside of the unit. Similarly, the mounting positions of the adapter 240 and the electrical control box can be interchanged; that is, the electrical control box can be mounted on the front side of the front plate 204, and the adapter 240 can be mounted on the electrical control frame 202. Furthermore, placing both the adapter 240 and the electrical control module on the outside of the inner mounting area facilitates the separation and routing of electrical wires within the unit. In particular, high-voltage lines can be routed from the outside of the supporting frame, while low-voltage lines are concentrated on the inside of the inner mounting area, ensuring separation of high and low voltage circuits and further improving the reliability and stability of the system operation.
[0031] In practice, the heating element 210 can be specifically designed as follows: a rear plate 205 is provided at the rear end of the functional frame 200, and a heating element mounting area 211 is formed on the front side of the rear plate 205. More specifically, a mounting plate 213 can be provided in front of the rear plate 205. The mounting plate 213 and the rear plate 205 together form the heating element mounting area 211, and the heating element 210 is located in the heating element mounting area 211. The hot water outlet 212 is located at the top of the rear end of the functional frame 200 and is connected to the outlet end of the heating element 210. The mounting plate 213 can be provided at the upper and lower ends of the heating element 210 to form an effective positioning support for the heating element 210 and to form a relatively independent heating element mounting area 211, separating the heating element 210 from other surrounding components and effectively reducing the heat diffusion of the main high-temperature area inward.
[0032] Regarding the specific design of the purification frame 100, further, it combines... Figure 1 and Figure 3 As shown, the purification frame 100 includes a filter cartridge frame 110 and a pump mounting frame 120 distributed along the height of the machine body. Internally, a horizontally arranged filter element and a booster pump 122 are respectively installed. A purification water circuit board 130, which is fitted to the filter element, is installed at the rear end of the purification frame 100. The purification water circuit board 130 integrates valve groups, pump group components, etc., required for filtration and purification (details omitted), including connection to the booster pump 122, which pumps pre-filtered water into the RO membrane filter element. The top of the purification water circuit board 130 has a water inlet area, including a pure water outlet 131, a raw water inlet, and a wastewater outlet. The pure water outlet 131 can be used as a pipeline machine interface, etc. The purification water circuit board 130, together with the installed filter element and booster pump 122, forms a basic universal module for filtration and purification.
[0033] More specifically, in practice, a dual-filter structure can be set up. The purification frame 100 has filter cartridge holders 110 at both the top and bottom along the height direction. The top filter cartridge holder 110 houses a first filter cartridge 111, which combines pre-filters and post-filters. The bottom filter cartridge holder 110 houses an RO membrane filter cartridge. A pump mounting bracket 120 is located between the two filter cartridge holders 110. The pump mounting bracket 120 encloses a booster pump mounting area 121, and the booster pump 122 is horizontally mounted within the booster pump mounting area 121. Specifically, combined with... Figure 3 As shown, the right side of the booster pump mounting area 121, away from the functional frame 200, is the mounting and fixing side, and the booster pump 122 is fixed on this side plate. Furthermore, there is a gap between the rear end of the pump mounting bracket 120 and the purified water circuit board 130, allowing the necessary valve groups, pump components, etc., to be installed on the front side plate of the purified water circuit board 130.
[0034] Furthermore, combining Figures 4 to 6 As shown, the pump mounting bracket 120 has an open area on the side facing the functional frame 200, providing an opening for the placement of the booster pump 122. A mounting panel 206 is provided on the side of the functional frame 200 facing the purification frame 100. The mounting panel 206 is connected to the purification frame 100 and covers at least a portion of the placement opening. The mounting panel 206 and the pump mounting bracket 120 together form the mounting chamber for the booster pump 122. The mounting panel 206 and the pump mounting bracket 120 are located on different sides of the frame, and the detachable design of the purification frame 100 and the functional frame 200 helps reduce vibration transmission and noise from the booster pump 122. In practice, it is further preferred that the front-to-back extension length and width of the booster pump mounting area 121 are greater than the length and width of the booster pump 122 itself, allowing for the use of a higher-power booster pump 122 as needed, further improving the versatility of the purification frame 100 and meeting user adjustment requirements.
[0035] In this embodiment, the hot water outlet 212 is preferably located at the top rear end of the functional frame 200. The top rear end of the functional frame 200 may also be provided with a normal temperature water outlet, etc., which, together with the interface area at the top rear end of the purification frame 100, form an interface concentration area at the top rear end of the body, which facilitates the centralized distribution of pipelines.
[0036] In practice, the outlet end of the heating element 210 needs to be connected to both the water storage tank 230 and the hot water outlet 212. This can be achieved using a reversing valve 203, combined with... Figure 1 and Figure 2As shown, more specifically, a reversing valve 203 is also provided above the heating element 210 within the functional framework 200. The outlet end of the heating element 210 is connected to the inlet of the reversing valve 203. The first outlet of the reversing valve 203 is connected to the inlet end of the water storage tank 230, and the second outlet of the reversing valve 203 is connected to the hot water outlet 212 above. By placing the reversing valve 203 above the heating element 210, directly on the communication path between the heating element 210 and the hot water outlet 212, the shortest pipeline design between the outlet end of the heating element 210 and the hot water outlet 212 is achieved. The heated hot water can reach the hot water outlet 212 directly via the shortest path, effectively reducing heat loss and ensuring the accuracy of the hot water outlet temperature. Specifically, the reversing valve 203 is located above the mounting plate 213, which separates it from the heating element 210.
[0037] In this embodiment, the machine body is equipped with two sets of water circuit boards, including a purification water circuit board 130 and a second water circuit board 220. The purification water circuit board 130 mainly integrates the valve groups, pump groups and other components required for the purification function. The second water circuit board 220 is mainly distributed inside the functional skeleton 200, located between the heating element 210 and the water storage tank 230. The second water circuit board 220 mainly integrates various valve groups, pump groups, sensor detection and other components required for the purified water circuit system. For example, a diaphragm pump 1 pumps water from the water storage tank 230 to the heating element 210, a diaphragm pump 2 directly sends the purified water to the heating element 210, and an outlet valve for controlling the water output is provided, etc., which will not be described in detail. Water circuit board 220 and purification water circuit board 130 are vertically distributed, and their independent arrangement not only saves more space and facilitates a compact layout, but also allows purification water circuit board 130 to serve as a general purification water circuit board, together forming a general purification module. As needed, only the functional components on water circuit board 220 need to be adjusted to achieve the application of different models.
[0038] To further optimize the internal layout and improve space compactness, combined with Figure 8 and Figure 9 As shown, the functional frame 200 has a mounting panel 206 on the side facing the purification frame 100. The mounting panel 206 has an opening 207 extending through its thickness. The water channel plate 220 is at least partially embedded within the opening 207. More precisely, the surface of the water channel plate 220 can be completely embedded within the opening 207 and detachably connected to the purification frame 100, specifically by bolts to the filter cartridge holder 110. The left side of the water channel plate 220 serves as a component mounting surface, where the main components are distributed within the inner mounting area of the functional frame 200. Similarly, the right side of the water channel plate 220 can also serve as a component mounting surface, allowing for the installation of some components and making full use of the space on both sides.
[0039] In this embodiment, opening area 207 is located on the rear side closer to the heating element 210 along the length of the body, and at least part of the placement opening of the booster pump 122 overlaps with opening area 207 along the length of the body. Since the booster pump 122 is shorter than the filter element and is preferably positioned closer to the front of the body, there is sufficient clearance space between the rear side of the booster pump 122 and the purified water circuit board 130. This embodiment utilizes opening area 207 to fully utilize the side space between the upper and lower filter cartridge holders 110, especially the rear side space, to embed the water circuit board 220 from opening area 207. Components can be installed on both sides of the water circuit board 220, with the main components concentrated in the mounting area within the functional frame 200 on the right side. This reduces the water circuit board 220's footprint in the width direction of the body, correspondingly reducing the width of the functional frame 200, resulting in a smaller body width and a more compact design. Furthermore, the right side of the water circuit board 220 is fixed on the filter cartridge frame 110, which will not put pressure on the thin plate-shaped mounting panel 206, and also improves the installation stability of the water circuit board 220.
[0040] Secondly, in conjunction with the detachable design of the functional frame 200 and the purification frame 100, this embodiment fixes the water circuit board 220 to the purification frame 100. When water circuit maintenance is required, simply remove the fixing bolts at the four corners of the functional frame 200 and remove a few obstructing pipes on the water circuit board 220, and the entire functional frame 200 connected to the components installed on top can be directly removed. Figure 7 As shown in the diagram, this allows for thorough inspection of the water circuit board 220. Compared to fixing the water circuit board 220 to the functional frame 200, this effectively reduces the complexity of disassembly and makes actual operation easier.
[0041] In addition, combined Figure 9 As shown, in practice, it is further preferred that the upper arc-shaped surface 206a and the lower arc-shaped surface 206b are respectively provided on the upper and lower parts of the mounting panel 206, so as to adapt and fit with the outer wall surfaces of the two sets of filter cartridge frames 110 distributed vertically, ensuring the tight fit between the functional frame 200 and the purification frame 100. The mounting panel 206 is also provided with a through-thickness opening area 208 and an opening area 209. The opening area 208 is located in the front part of the lower arc-shaped surface 206b, that is, between the water storage tank 230 and the lower filter cartridge frame 110, which can effectively avoid the filter cartridge frame 110, making the distribution of the water storage tank 230 more compact in the limited space. The opening area 3 209 is located in the front part of the middle of the mounting panel 206, which is adapted to the front end position of the booster pump 122. Part of the booster pump 122 can be exposed through the opening area 3 209, which is convenient for inspection and maintenance of the booster pump 122. It can also avoid the front end area of the booster pump 122, saving space and avoiding contact between the water storage tank 230 and the booster pump 122, thus reducing vibration transmission.
[0042] Furthermore, combining Figure 2 As shown, the electronic control frame 202 is preferably located closer to the rear end of the functional frame 200. An upper window 201 is formed at the top of the functional frame 200 in front of the electronic control frame 202. The upper window 201 exposes at least a portion of the lower water tank 230. More precisely, the front area of the water tank 230 is equipped with components such as a water level detector. The upper window 201 serves as a maintenance window, facilitating the replacement and maintenance of the detection components in the water tank 230 without disassembling the entire frame.
[0043] To ensure the precise installation of the functional frames 200 and the purification frame 100 on both sides, it is preferable to have an axial (i.e., front-to-back length direction) positioning component and a radial (i.e., left-to-right width direction) positioning component between the functional frames 200 and the purification frame 100.
[0044] In practice, the radial positioning component can be selected as follows: the filter cartridge frame 110 is provided with a positioning rib 113 extending axially on the side facing the functional skeleton 200, and the mounting panel 206 is provided with a corresponding engaging positioning part to restrict the radial movement of the positioning rib 113.
[0045] Specifically, in combination Figure 6 As shown, axially extending positioning ribs 113 are provided on the right side of both the upper and lower filter cartridge frames 110, combined with... Figure 9 and Figure 10 As shown, the mounting panel 206 has two sets of front positioning portions 250 near its front end along its length, and two sets of rear positioning portions 251 near its rear end. The front positioning portions 250 have a flared opening in the middle to guide and effectively limit the positioning ribs 113. The positioning ribs 113 are inserted into the opening to prevent wobbling in the width direction. The rear positioning portions 251 can similarly use openings or other structural forms for limiting movement.
[0046] In practice, the following methods can be selected for axial positioning components, combined with... Figure 6 As shown, the filter cartridge frame 110 has a front end cover 115 and a rear end cover 114 at its axial ends, respectively. Both the front end cover 115 and the rear end cover 114 extend radially outward from the arc-shaped wall of the filter cartridge frame 110 by a certain length. The front and rear ends of the mounting panel 206 are respectively provided with limiting walls to restrict the axial movement of the front end cover 115 and the rear end cover 114.
[0047] More specifically, in combination Figure 9 and Figure 10As shown, in this embodiment, a front limiting wall 253 is formed on the front side of the front positioning part 250, and a rear limiting wall 252 is formed on the rear end face of the rear positioning part 251. More precisely, the front end face of the mounting panel 206 forms the front limiting wall 253, the front end cover 115 of the filter cartridge frame 110 is close to the front limiting wall 253 from front to back, the rear end face of the rear positioning part 251 forms the rear limiting wall 252, and the rear end cover 114 of the filter cartridge frame 110 is close to the rear limiting wall 252 from back to front, so as to limit the displacement and sway of the filter cartridge frame 110 along the front and rear axial direction, fully ensuring the accurate positioning of the functional frame 200 and the purification frame 100, and also providing convenience for installation operations.
[0048] The integrated air purifier and heat pump in this embodiment, with the parallel design of the functional frame 200 and the purification frame 100, distinguishes and centrally arranges different functional components, improves the versatility and adaptability of the purification functional components, and effectively improves the space utilization of each component through reasonable layout, meeting users' higher requirements for compact and miniaturized machine.
[0049] The scope of protection of this utility model is defined only by the claims. Thanks to the teachings of this utility model, those skilled in the art will readily recognize that alternative structures to the disclosed structure can be used as feasible alternative implementations, and that the disclosed implementations can be combined to produce new implementations, which also fall within the scope of the appended claims.
Claims
1. A combined air purifier and heater, characterized in that, include: The purification frame (100) has a filter cartridge frame (110) and a pump mounting frame (120) distributed along the height direction of the machine body. The filter cartridge frame (110) is equipped with a filter element, and the pump mounting frame (120) is equipped with a booster pump (122). The filter element and the booster pump (122) are both arranged laterally along the length direction of the machine body. One end of the purification frame (100) in the length direction is provided with a purification water circuit plate (130) that matches the filter element. The functional skeleton (200) has an electronic control skeleton (202) at its top, and the electronic control module is installed on the electronic control skeleton (202). An inner mounting area is formed below the electronic control skeleton (202). The purification frame (100) and the functional frame (200) are arranged side by side along the left and right width direction of the body, and the purification frame (100) and the functional frame (200) are detachably connected.
2. The integrated air purifier and heat pump according to claim 1, characterized in that: The inner installation area of the functional frame (200) is provided with a heating element (210), a water circuit board (220) and a water storage tank (230) in sequence along the length of the body. The heating element (210) and the purification water circuit board (130) are located on the same side along the length of the body.
3. The integrated air purifier and heater according to claim 1, characterized in that: It also includes an adapter (240), and the functional frame (200) has a front plate (204) at one end away from the water purification plate (130), and the adapter (240) is mounted on the side of the front plate (204) away from the inner mounting area.
4. The integrated air purifier and heater according to claim 2, characterized in that: The functional frame (200) has a mounting panel (206) on the side facing the purification frame (100). The mounting panel (206) has an opening area (207) with a through thickness. The water channel plate (220) is at least partially embedded in the opening area (207) and is detachably connected to the purification frame (100).
5. The integrated heat purifier and water heater according to claim 4, characterized in that: The purification frame (100) includes two sets of filter cartridges (110) distributed vertically, with a pump mounting bracket (120) between the two sets of filter cartridges (110). The pump mounting bracket (120) has a placement opening for inserting a booster pump (122) on the side facing the functional frame (200). Along the length of the body, at least a portion of the placement opening coincides with opening area one (207).
6. The integrated air purifier and heat pump according to claim 1, characterized in that: The functional frame (200) has an arc-shaped surface on the side facing the purification frame (100) and close to the filter cartridge holder (110) that is adapted to the outer wall of the filter cartridge holder (110).
7. A combined air purifier and heat dissipation unit according to any one of claims 1-6, characterized in that: A booster pump mounting area (121) is formed inside the pump mounting bracket (120). The booster pump (122) is fixedly installed on the side wall of the booster pump mounting area (121) away from the functional frame (200). The extension length and width of the booster pump mounting area (121) are both greater than those of the booster pump (122).
8. A combined air purifier and heat dissipation unit according to claim 4, characterized in that: The filter cartridge frame (110) is provided with a positioning rib (113) on the side facing the functional frame (200), and a corresponding positioning part is provided on the mounting panel (206) to restrict the radial movement of the positioning rib (113).
9. A combined air purifier and heat dissipation unit according to claim 4, characterized in that: The filter cartridge holder (110) has a front end cover (115) and a rear end cover (114) at its axial ends respectively. The front and rear ends of the mounting panel (206) form corresponding limiting walls to restrict the axial movement of the front end cover (115) and the rear end cover (114).
10. A combined air purifier and heat dissipation unit according to claim 8, characterized in that: The mounting panel (206) is provided with a front positioning part (250) and a rear positioning part (251) that cooperate with the positioning rib plate (113) along the length of the body. The front positioning part (250) has a front limiting wall surface (253) on its front side, and the rear end surface of the rear positioning part (251) has a rear limiting wall surface (252).