Purified water dispenser
By rationally arranging the water softening and purification systems of the water purifier, its structure is made compact, solving the problem of excessively large water purifier size and enabling flexible installation and efficient use in narrow spaces.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-24
- Publication Date
- 2026-03-10
AI Technical Summary
Water purifiers are relatively large and take up a lot of space, which makes them inconvenient for subsequent installation.
By rationally arranging the soft water system and the water purification system to make their structure flat, the space occupied in the second direction is reduced, and the soft water system and the water purification system are arranged along the second direction, optimizing the overall structure to facilitate installation in narrow environments.
This design achieves a more compact overall structure for the water purifier, making it easier to arrange in narrow spaces, improving space utilization, and meeting the needs of small and medium-sized households.
Smart Images

Figure CN223983551U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of water purification equipment technology, and in particular to a water purifier / drinking machine. Background Technology
[0002] In related technologies, water purifiers are relatively large in size, thus occupying a lot of space and making subsequent installation difficult. Utility Model Content
[0003] This application provides a water purifier that makes the overall structure of the product more compact, making it easier to flexibly arrange the water purifier in narrow installation environments.
[0004] This application provides a water purifier, including:
[0005] Housing assembly, including the middle shell;
[0006] A water softening system, arranged along a second direction with the middle shell, includes a water softening valve, a resin tank, and a brine tank assembly. The resin tank and the brine tank assembly are arranged along a first direction and connected to each other. The water softening valve is located on one side of the resin tank along a third direction, and the first direction, the second direction, and the third direction are perpendicular to each other.
[0007] A water purification system is disposed in the middle shell. The water purification system includes a filtration system and a water channel plate. The filtration system and the water channel plate are arranged along the first direction, and the water inlet of the filtration system is connected to the resin tank through the water channel plate.
[0008] In some embodiments of this application, the resin tank and the salt tank assembly both extend along the third direction, the filtration system extends along the first direction, and the water circuit board extends along the third direction.
[0009] In some embodiments of this application, the middle shell has an insertion groove and a first mounting groove, the insertion groove extends along the first direction, the filtration system is disposed in the insertion groove, and the water circuit board is disposed in the first mounting groove.
[0010] In some embodiments of this application, the filtration system includes a primary filter element and a secondary filter element, the primary filter element and the secondary filter element are arranged along the third direction, the water inlet of the primary filter element is connected to the resin tank through the water circuit plate, and the water inlet of the secondary filter element is connected to the water outlet of the primary filter element.
[0011] In some embodiments of this application, the middle shell has a second mounting groove located on one side of the filtration system along the third direction;
[0012] The secondary filter element is a reverse osmosis filter element. The water purification system also includes a booster pump installed in the second mounting tank. The outlet of the booster pump is connected to the inlet of the reverse osmosis filter element. The booster pump is used to pressurize the liquid flowing into the reverse osmosis filter element.
[0013] In some embodiments of this application, the resin tank is provided with a first insertion portion on the side facing the middle shell;
[0014] The water circuit board is located on the side of the middle shell away from the soft water system, and a second plug-in part is provided on the side of the middle shell facing the soft water system. The second plug-in part is connected to the first plug-in part.
[0015] In some embodiments of this application, the first insertion portion includes:
[0016] The first slot wall, in conjunction with the side wall of the resin tank, forms the first slot, and the second insertion part is inserted into the first slot;
[0017] A first reinforcing rib is disposed inside the first slot, and along the second direction, the extension height of the first reinforcing rib is less than the height of the slot wall.
[0018] In some embodiments of this application, the second plug-in portion includes:
[0019] The second slot wall, together with the middle shell, forms the second slot;
[0020] The second reinforcing rib is disposed inside the second slot, and along the second direction, the extension height of the second reinforcing rib is less than or equal to the height of the slot wall of the second slot.
[0021] In some embodiments of this application, the middle shell has an insertion slot and an opening communicating with the insertion slot, the insertion slot extending along the first direction, and the filtration system being able to enter and exit the insertion slot through the opening;
[0022] The housing assembly further includes a first cover corresponding to the opening, the first cover being movably connected to the middle shell to open and close the opening.
[0023] In some embodiments of this application, the salt tank assembly includes a tank body and a door body, the door body being connected to the tank body and movable relative to the tank body to open and close the tank body.
[0024] In some embodiments of this application, the housing assembly further includes a first cover, which is movably connected to the middle shell;
[0025] The door is located on the side of the box away from the resin tank, and the first cover and the door are arranged along the second direction.
[0026] In some embodiments of this application, the housing assembly further includes a panel, a side panel, a back panel, and a top panel. The panel, the side panel, the back panel, and the top panel together enclose a receiving cavity. The middle shell, the water softening system, and the water purification system are all located in the receiving cavity. The top panel is located on one side of the water softening system and the water purification system along the third direction. The side of the top panel facing the first cover and the door is provided with a clearance portion.
[0027] Wherein, the avoidance part and the end of the first cover near the top plate enclose to form a first avoidance space, and / or, the avoidance part and the end of the door near the top plate enclose to form a second avoidance space.
[0028] In some embodiments of this application, the water purifier further includes a hot water system disposed in the middle shell, the hot water system and the water purification system are arranged along the first direction, and the hot water system and the soft water system are arranged along the second direction, and the inlet of the hot water system is connected to the outlet of the water purification system.
[0029] Based on the water purifier in this embodiment, this embodiment rationally arranges the various components in the whole machine, so that the overall structure of the water softening system and the water purification system is roughly flat, reducing the space occupied by the water softening system and the water purification system in the second direction. On this basis, the water softening system and the water purification system are arranged along the second direction, which facilitates the overall layout to be coordinated and consistent. This can reduce the size of the water purifier in the second direction, thereby reducing the overall space occupied by the water purifier in the second direction, improving the space utilization rate, making the whole machine structure more compact, and facilitating the flexible arrangement of the whole machine structure in narrow installation environments, meeting the needs of small and medium-sized households. Attached Figure Description
[0030] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0031] Figure 1 This is a schematic diagram of the structure of a water purifier in one embodiment of this application;
[0032] Figure 2 This is a first-view structural diagram of a water purifier in another embodiment of this application;
[0033] Figure 3 This is an exploded structural diagram of a water purifier in another embodiment of this application;
[0034] Figure 4 This is a second-view structural diagram of a water purifier in another embodiment of this application;
[0035] Figure 5 This is a partially exploded structural diagram of a water purifier in another embodiment of this application.
[0036] Figure label:
[0037] 001. Water purifier;
[0038] 10. Housing assembly; 11. Front panel; 12. Middle shell; 121. Insertion slot; 13. Back plate; 131. Clearance slot; 14. Top plate; 141. Clearance part; 16. Side plate; 18. First cover;
[0039] 002, Soft water system; 010, Resin tank; 017, First insertion part; 0171, First slot wall; 0172, First reinforcing rib; 020, Soft water valve; 021, First connector; 022, Second connector; 030, Brine tank assembly; 032, Tank body; 033, Door;
[0040] 003, Water purification system; 50, Filtration system; 501, Primary filter element; 502, Secondary filter element; 52, Second insertion part; 521, Second slot wall; 522, Second reinforcing rib; 60, Water circuit board; 70, Booster pump;
[0041] 80. Control panel;
[0042] 004. Hot water system;
[0043] X, first direction; Y, second direction; Z, third direction. Detailed Implementation
[0044] To more clearly illustrate the technical solutions in the embodiments of this application or related technologies, a clear and complete description will be provided below with reference to the accompanying drawings in the embodiments of this application. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments in this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.
[0045] In related technologies, water purifiers integrate many water purification functions, which makes the overall product size larger and occupies more installation space, thus making subsequent installation difficult.
[0046] For the above situation, please refer to Figures 1-3This application proposes a water purifier 001, including a housing assembly 10, a water softening system 002, and a water purification system 003.
[0047] The housing assembly 10 includes a middle housing 12. A soft water system 002 is arranged with the middle housing 12 along the second direction Y. The soft water system 002 includes a soft water valve 020, a resin tank 010, and a brine tank assembly 030. The resin tank 010 and the brine tank assembly 030 are arranged along the first direction X and are connected. The soft water valve 020 is located on one side of the resin tank 010 along the third direction Z. The first direction X, the second direction Y, and the third direction Z are perpendicular to each other. A water purification system 003 is located in the middle housing 12. The water purification system 003 includes a filtration system 50 and a water circuit board 60. The filtration system 50 and the water circuit board 60 are arranged along the first direction X, and the inlet of the filtration system 50 is connected to the soft water valve 020 through the water circuit board 60.
[0048] Specifically, the water softening system 002 is used to convert externally input hard water into soft water, the brine tank assembly 030 is used to store softening salt, the resin tank 010 is filled with resin particles, which can effectively remove calcium and magnesium ions from the water, and the external brine tank assembly 030 is connected to regenerate the resin regularly to ensure that the water softening effect is continuous and stable, and the water softening valve 020 can control the direction of water flow; the water purification system 003 is used to purify the soft water output from the water softening system 002 to form pure water and output it. The water purification system 003 is located in the middle shell 12, and the water softening system 002 is arranged along the second direction Y with the middle shell 12. In other words, the water softening system 002 and the water purification system 003 are arranged along the second direction Y. Taking the water purifier 001 in use as an example, the first direction X is the length direction of the water purifier 001, the second direction Y is the width direction of the water purifier 001, and the third direction Z is the height direction of the water purifier 001. The water softening valve 020 can be located on the top of the resin tank 010.
[0049] It should be noted that the resin tank 010 and the brine tank assembly 030, as the parts occupying a large amount of space in the water softening system 002, are arranged closely along the first direction X. This results in the overall structure of the water softening system 002 having a larger length in the first direction X but a smaller length in the second direction Y. In other words, the overall structure of the water softening system 002 is roughly flat, reducing the space occupied by the water softening system 002 in the second direction Y. Similarly, the filtration system 50 and the water circuit board 60 in the water purification system 003 are also arranged closely along the first direction X. This results in the overall structure of the water purification system 003 having a larger length in the first direction X but a smaller length in the second direction Y. In other words, the overall structure of the water purification system 003 is also roughly flat, reducing the space occupied by the water purification system 003 in the second direction Y. Based on this, the water softening system 002 and the water purification system 003 are arranged along the second direction Y, which reduces the size of the water purifier 001 in the second direction Y, thereby reducing the overall space occupied by the water purifier 001 in the second direction Y. This makes the overall structure more compact and allows for flexible arrangement in narrow installation environments, meeting the needs of small and medium-sized households. In addition, the resin tank 010 and the brine tank assembly 030 have approximately the same width in the second direction Y, and the filtration system 50 and the water circuit board 60 also have approximately the same width in the second direction Y, which facilitates a coordinated overall layout and improves space utilization.
[0050] like Figure 3 As shown, both the resin tank 010 and the brine tank assembly 030 extend along the third direction Z. It can be understood that the resin tank 010 is typically a cylindrical tank, and its extension along the third direction Z results in a relatively high height, facilitating the containment of more resin particles and enhancing the softening effect. The brine tank assembly 030, also extending along the third direction Z, can be a cuboid structure, allowing for the storage of sufficient softening salt to ensure efficient resin regeneration. The softening valve 020 is positioned above the resin tank 010. Therefore, the height of the brine tank assembly 030 along the third direction Z is greater than that of the resin tank 010, providing space for the installation of the softening valve 020. This makes the structure of the softening system 002 more compact.
[0051] Since the length of the water softening system 002 in the second direction Y is the sum of the lengths of the resin tank 010 and the brine tank assembly 030, the filtration system 50 extends along the second direction Y to increase its length in this direction. This ensures that the lengths of the water purification system 003 and the water softening system 002 in the second direction Y are similar, thus maintaining the overall structural harmony. The water circuit board 60 extends along the third direction Z, meaning its height in this direction is relatively large. This ensures that the heights of the water circuit board 60 and the water softening system 002 in the third direction Z match, guaranteeing smooth water circuit connections.
[0052] Please see Figure 3 In some embodiments of this application, the filtration system 50 includes a primary filter element 501 and a secondary filter element 502. The primary filter element 501 and the secondary filter element 502 are arranged along the third direction Z. The inlet of the primary filter element 501 is connected to the resin tank 010 through the water circuit plate 60, and the inlet of the secondary filter element 502 is connected to the outlet of the primary filter element 501.
[0053] Specifically, the soft water flowing out of resin tank 010 enters the primary filter element 501 through water circuit plate 60 for filtration. The primary filter element 501 is mainly used to remove large particulate impurities from the soft water. The water that has undergone preliminary filtration then enters the secondary filter element 502 for further purification, thereby ensuring that the impurity content in the final output water meets the standards. The primary filter element 501 and the secondary filter element 502 are arranged along the third direction Z to ensure that the length of the filtration system 50 in the first direction X and the second direction Y is minimized.
[0054] Furthermore, such as Figure 3 As shown, the middle shell 12 has a second mounting groove (not shown in the figure), which is located on the side of the filtration system 50 along the third direction Z; the secondary filter element 502 is a reverse osmosis filter element, and the water purification system 003 also includes a booster pump 70 disposed in the second mounting groove. The outlet of the booster pump 70 is connected to the inlet of the reverse osmosis filter element. The booster pump 70 is used to pressurize the liquid flowing into the reverse osmosis filter element to provide sufficient pressure so that the liquid flowing out of the primary filter element 501 can pass through the reverse osmosis filter element more quickly.
[0055] It should be noted that the pre-filter and post-filter can be integrated into the primary filter 501 to reduce the space occupied by the pre-filter and post-filter. The second mounting slot on the middle shell 12 can be used to fix the booster pump 70, ensuring its stable and vibration-free operation. The booster pump 70 and the filtration system 50 are arranged along the third direction Z, thereby preventing the overall structure of the water purification system 003 from increasing in the second direction Y. The booster pump 70 is preferably a variable frequency booster pump 70. At the same time, the filtration system 50 and the water circuit board 60 have a height difference in the third direction Z. The booster pump 70 can be set in the height difference space between the filtration system 50 and the water circuit board 60, which saves space and ensures the stable operation of the booster pump 70, further optimizing the overall structural layout of the water purification system 003, improving space utilization, and making the structure of the water purification system 003 more compact.
[0056] Please continue reading Figure 3 In some embodiments of this application, the middle shell 12 has an insertion groove 121 and a first mounting groove. The insertion groove 121 extends along a first direction X. The filter system 50 is disposed in the insertion groove 121, and the water circuit board 60 is disposed in the first mounting groove.
[0057] Specifically, the middle shell 12 provides installation space and a foundation for both the filtration system 50 and the water circuit board 60, thereby ensuring that the components in the water purification system 003 work efficiently and collaboratively within a limited space. The middle shell 12 and the soft water system 002 are arranged along the second direction Y, and both the filtration system 50 and the water circuit board 60 are embedded in the middle shell 12, improving space utilization to form a compact structure and reducing the space occupied by the water purification system 003. At the same time, the depth of the insertion groove 121 matches the length of the filtration system 50 in the first direction X, ensuring that the filtration system 50 is securely embedded. Since the water circuit board 60 extends along the third direction Z, the first mounting groove can be set at the bottom of the middle shell 12, so that the bottom of the water circuit board 60 is located in the first mounting groove, and the water circuit board 60 is fixed to the side wall of the middle shell 12 by bolts and other fasteners, thereby ensuring that the water circuit board 60 is stable and not easily displaced.
[0058] Please see Figure 2 In some embodiments of this application, the water softener valve 020 has a first side facing away from the resin tank 010; the water purifier 001 also includes a control board 80, which is disposed on the side of the water softener system 002 and the water purification system 003 along the third direction Z, and the control board 80 has a second side facing away from the water softener system 002 and the water purification system 003, the second side being located in the same plane as the first side.
[0059] Specifically, the control board 80 is equipped with a control circuit, which is responsible for receiving user input commands and controlling the operation of the soft water valve 020 and the water purification system 003. The first side and the second side are flush, that is, the top surfaces of the control board 80 and the soft water valve 020 can contact the top plate 14 in the housing assembly 10, so as to make full use of the installation space in the housing assembly 10, thereby improving the space utilization rate and making the structure of the soft water system 002 more compact.
[0060] In some embodiments, the control board 80 is also equipped with a display screen for displaying the real-time operating status of the water purifier 001, such as water pressure and water temperature, so that users can monitor it at any time. In this way, the water purifier 001 can achieve intelligent management, which improves the user's convenience and the system's reliability.
[0061] Please see Figure 1 and Figure 4In some embodiments of this application, the housing assembly 10 further includes a panel 11, a side plate 16, a back plate 13, and a top plate 14. The panel 11, side plate 16, back plate 13, and top plate 14 together enclose a receiving cavity. The middle shell 12, the soft water system 002, and the water purification system 003 are all located in the receiving cavity. The panel 11 and the back plate 13 are arranged along the first direction X. The back plate 13 is provided with a relief groove 131. The soft water valve 020 includes a first connector 021 for water inlet and a second connector 022 for water outlet. The first connector 021 and the second connector 022 are disposed in the relief groove 131.
[0062] Specifically, the recessed groove 131 on the back plate 13 is recessed. The recessed groove 131 can provide installation space for the first connector 021 and the second connector 022 of the soft water valve 020, reducing the length of the first connector 021 and the second connector 022 protruding from the back plate 13, thereby reducing the space occupied by the whole machine. At the same time, the setting of the recessed groove 131 can also reduce the conflict between the first connector 021 and the second connector 022 and external components. Therefore, the design of the recessed groove 131 takes into account the maximization of space utilization, while ensuring that the connector part of the soft water valve 020 will not be accidentally interfered with or damaged during operation.
[0063] Please see Figure 5 In some embodiments of this application, a first plug-in portion 017 is provided on the side of the resin tank 010 facing the middle shell 12; the water circuit board 60 is located on the side of the middle shell 12 away from the soft water system 002, and a second plug-in portion 52 is provided on the side of the middle shell 12 facing the soft water system 002. The second plug-in portion 52 is connected to the first plug-in portion 017, thereby fixing the resin tank 010 and the middle shell 12 together and preventing relative movement between the resin tank 010 and the middle shell 12.
[0064] Specifically, the water circuit board 60 is located on the side of the middle shell 12 away from the soft water system 002, which prevents the water circuit board 60 from interfering with the connection between the middle shell 12 and the resin tank 010, and facilitates the snap-fit connection between the middle shell 12 and the resin tank 010. In addition, a connecting hole is provided on the side wall of the middle shell 12 facing the soft water system 002, through which the water circuit board 60 can be connected to the resin tank 010 via the connecting hole. Furthermore, multiple bolts can be provided between the resin tank 010 and the middle shell 12, so that in addition to the connection between the first insertion part 017 and the second insertion part 52, the resin tank 010 and the middle shell 12 are further secured by multiple bolts, further improving the stability of the connection between the resin tank 010 and the middle shell 12.
[0065] Furthermore, in some embodiments of this application, the first insertion part 017 includes a first slot wall 0171, which cooperates with the resin tank 010 to form a first slot. That is, if the first insertion part 017 is disposed on the resin tank 010, the space enclosed by the side wall of the resin tank 010 and the first slot wall 0171 is the first slot. If the first insertion part 017 is disposed between two resin tanks 010, the space enclosed by the side walls of the two resin tanks 010 and the first slot wall 0171 is the first slot. The second insertion part 52 is inserted into the first slot to achieve the purpose of the first insertion part 017 and the second insertion part 52 being inserted into each other. At the same time, by using the gap position on the middle shell 12 and the resin tank 010 for connection, the volume of the whole machine can be reduced.
[0066] The first insertion part 017 further includes a first reinforcing rib 0172. Preferably, multiple first reinforcing ribs 0172 are configured and interconnected, all located inside the first slot. Both ends of each first reinforcing rib 0172 are fixedly connected to the first slot wall 0171. The first reinforcing ribs 0172 significantly increase the load-bearing capacity, bending resistance, and torsional resistance of the first slot wall 0171, preventing loosening or failure of the connection due to deformation of the first slot wall 0171. This ensures the connection accuracy and stability between the first insertion part 017 and the second insertion part 52. Furthermore, it allows for a more uniform distribution of stress within the first slot, improving the reliability and safety of the first insertion part 017.
[0067] It is understandable that, along the second direction Y, the extension height of the first reinforcing rib 0172 is less than the height of the first slot wall 0171, thereby leaving enough space for the insertion of the second plug part 52, ensuring that the plugging process proceeds smoothly, and enabling the two plug parts to fit tightly together to achieve a good connection function.
[0068] In some embodiments, the second insertion portion 52 includes a second slot wall 521 and a second reinforcing rib 522. The second slot wall 521 cooperates with the middle shell 12 to form a second slot. The second reinforcing rib 522 is disposed inside the second slot. Similarly, it is preferable that multiple second reinforcing ribs 522 are configured, and the multiple second reinforcing ribs 522 are staggered and connected, and all of the multiple second reinforcing ribs 522 are disposed inside the second slot. Along the second direction Y, the extension height of the second reinforcing rib 522 is less than or equal to the height of the slot wall of the second slot wall 521.
[0069] The second reinforcing rib 522 effectively enhances the overall structural strength of the second insertion part 52, improving its ability to resist various external forces and reducing the risk of deformation, twisting, or even damage caused by external forces, ensuring its stable structural form under complex working conditions. Simultaneously, it distributes the stress acting on the second insertion part 52 more evenly, preventing excessive stress accumulation in a localized area, reducing the likelihood of fatigue cracks and fractures, and extending the service life of the second insertion part 52. Furthermore, while ensuring the structural strength and stability of the second insertion part 52, it also reduces the amount of material used, effectively reducing its weight and lowering raw material and manufacturing costs.
[0070] In some embodiments, the resin tank 010 includes multiple outer cylinders arranged along a first direction X. A first mounting cavity can be provided in the gap between the multiple outer cylinders, meaning the first mounting cavity can be inserted into space to save space. Preferably, the first mounting cavity and the second mounting cavity are racetrack-shaped. A slot is provided on the racetrack-shaped periphery of the first mounting cavity, and a protrusion is also provided on the racetrack-shaped periphery of the second mounting cavity. When the second mounting cavity is inserted into the first mounting cavity, the protrusion on the periphery is fully inserted into the slot on the periphery, to better fix the resin tank 010 and the middle shell 12.
[0071] Please see Figure 3 In some embodiments of this application, the middle shell 12 also has an opening communicating with the insertion groove 121, the insertion groove 121 extends along the first direction X, and the filtration system 50 can enter and exit the insertion groove 121 through the opening; the housing assembly 10 also includes a first cover 18 corresponding to the opening, the first cover 18 being movably connected to the middle shell 12 to open and close the opening.
[0072] Specifically, the filter system 50 is detachably connected to the middle shell 12. When the first cover 18 is opened, the opening is open, and the filter system 50 can be detached from the insertion slot 121. For example, the inner wall of the insertion slot 121 can be provided with internal threads, and the outer surface of the filter system 50 can be provided with external threads. After the filter system 50 is inserted into the insertion slot 121, the filter system 50 is rotated to fix the filter system 50 in the insertion slot 121. The connection between the first cover 18 and the middle shell 12 can be a magnetic connection, a rotating connection, a snap-fit connection, or a screw connection, etc.
[0073] Please continue reading Figure 3 In some embodiments of this application, the salt box assembly 030 includes a box body 032 and a door body 033. The door body 033 is connected to the box body 032 and is movable relative to the box body 032 to open and close the box body 032.
[0074] Specifically, the interior of the housing 032 can have a salt-containing chamber, and the top of the housing 032 can have a salt inlet communicating with the salt-containing chamber, allowing salt particles to be stored in the salt-containing chamber. When the resin tank 010 of the water softening system 002 needs to be replenished with salt, the salt particles in the salt-containing chamber can be drawn into the resin tank 010, enabling the resin tank 010 to continuously soften water. When the salt particles in the salt-containing chamber are used up, salt particles can be replenished into the salt-containing chamber through the salt inlet. The connection between the door 033 and the housing 032 can be a magnetic connection, a rotating connection, a snap-fit connection, or a screw connection, etc.
[0075] Furthermore, the door 033 is located on the side of the housing 032 away from the resin tank 010, and the first cover 18 and the door 033 are arranged along the second direction Y, so that the opening positions of the first cover 18 and the door 033 are both located on the same side of the housing assembly 10, and the opening directions of the first cover 18 and the door 033 are the same, thereby reducing the opening operation space reserved for the water purifier 001.
[0076] Further, please see Figures 1-3 In some embodiments of this application, the top plate 14 is located on the side of the soft water system 002 and the water purification system 003 along the third direction Z. A clearance portion 141 is provided on the side of the top plate 14 facing the first cover 18 and the door 033. The clearance portion 141 and the end of the first cover 18 near the top plate 14 enclose each other to form a first clearance space, that is, a gap is formed between the top plate 14 and the first cover 18, so that the user can easily open the first cover 18 from the gap; or, the clearance portion 141 and the end of the door 033 near the top plate 14 enclose each other to form a second clearance space, that is, a gap is formed between the top plate 14 and the door 033, so that the user can easily open the door 033 from the gap.
[0077] The first cover 18 and the door 033 are both located on the same side as the panel 11. When the first cover 18 and the door 033 are in the closed state, they are flush with the panel 11. In some embodiments, the height of the first cover 18 and the door 033 may exceed the top plate 14, so that the height difference between the first cover 18 and the top plate 14, and the height difference between the door 033 and the top plate 14, can facilitate the opening and closing of the cover.
[0078] Furthermore, such as Figure 3As shown, a first inclined surface is provided on the end of the first cover 18 near the top plate 14. The first inclined surface and the clearance part 141 together form a first clearance space. The side of the first inclined surface away from the top plate 14 and the outer side of the top plate 14 away from the receiving cavity are located in the same plane. That is to say, the top surface of the first cover 18 along the third direction Z is in the same plane as the top surface of the top plate 14. The height of the first cover 18 is flush with the top plate 14, which can reduce the space occupied by the first cover 18, thereby improving the space utilization rate and making the structure of the whole machine more compact.
[0079] A second inclined surface is provided on the end of the door body 033 near the top plate 14. The second inclined surface and the clearance part 141 together form a second clearance space. The side of the second inclined surface away from the top plate 14 is in the same plane as the outer side of the top plate 14 away from the receiving cavity. That is to say, the top surface of the door body 033 along the third direction Z is in the same plane as the top surface of the top plate 14. The height of the door body 033 is flush with the top plate 14, which can reduce the space occupied by the door body 033, thereby improving the space utilization rate and making the structure of the whole machine more compact.
[0080] Please see Figure 3 In some embodiments of this application, the water purifier 001 further includes a hot water system 004 disposed in the middle shell 12. The hot water system 004 and the water purification system 003 are arranged along the first direction X, and the hot water system 004 and the soft water system 002 are arranged along the second direction Y. The inlet of the hot water system 004 is connected to the outlet of the water purification system 003.
[0081] Specifically, the middle shell 12 has a heated tank cavity for installing the hot water system 004. The hot water system 004 and the water purification system 003 are arranged side by side on the middle shell 12 along the first direction X, so that the structure of the middle shell 12 is generally flat, reducing the space occupied by the middle shell 12 in the second direction Y, thereby reducing the size of the hot water system 004 and the water purification system 003 in the second direction Y. The purified water flowing out of the water purification system 003 can be introduced into the hot water system 004 to heat the purified water, so that the water purifier 001 can finally output hot purified water.
[0082] In summary, the overall working principle of the water purifier 001 in this embodiment is as follows:
[0083] The first connector 021 of the water softener valve 020 is used to receive raw water, which is then passed into the resin tank 010 for softening treatment. The second connector 022 of the water softener valve 020 can directly output a portion of the softened water after treatment. Alternatively, the water softener valve 020 can also pass a portion of the softened water through the water circuit board 60 into the primary filter element 501 of the filtration system 50 for preliminary filtration before outputting it. Alternatively, the water softener valve 020 can pass a portion of the softened water through the water circuit board 60 into the primary filter element 501 and the reverse osmosis filter element for multiple filtrations, and then the water purification system 003 outputs pure water that can be directly consumed. Alternatively, the pure water output by the water purification system 003 can be passed into the hot water system 004, and after being heated by the hot water system 004, hot pure water is output.
[0084] In the accompanying drawings of this embodiment, the same or similar reference numerals correspond to the same or similar components. In the description of this application, it should be understood that if terms such as "upper," "lower," "left," and "right" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, they are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the components or elements referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the terms used to describe positional relationships in the drawings are only for illustrative purposes and should not be construed as limiting this application. For those skilled in the art, the specific meaning of the above terms can be understood according to the specific circumstances.
[0085] The above are merely preferred embodiments of this application and are not intended to limit this application. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this application should be included within the protection scope of this application.
Claims
1. A water purifier, characterized by comprising: The application relates to a water purifying system, comprising: a shell assembly, comprising a middle shell; a soft water system arranged along a second direction with the middle shell, the soft water system comprising a soft water valve, a resin tank and a salt tank assembly, the resin tank and the salt tank assembly being arranged along a first direction, and the resin tank being connected with the salt tank assembly, the soft water valve being arranged on one side of the resin tank along a third direction, the first direction, the second direction and the third direction being perpendicular to each other; and a water purifying system arranged in the middle shell, the water purifying system comprising a filtering system and a water circuit board, the filtering system being arranged along the first direction with the water circuit board, and a water inlet of the filtering system being communicated with the soft water valve through the water circuit board.
2. The water distiller as claimed in claim 1, wherein The resin tank and the salt tank assembly both extend along the third direction, the filtering system extends along the first direction, and the water circuit board extends along the third direction.
3. The water distiller as claimed in claim 1, wherein, The middle shell has an insertion slot and a first mounting slot, the insertion slot extending along the first direction, the filtering system being arranged in the insertion slot, and the water circuit board being arranged in the first mounting slot.
4. The water distiller as claimed in claim 1, wherein, The filtering system comprises a primary filter element and a secondary filter element, the primary filter element and the secondary filter element being arranged along the third direction, a water inlet of the primary filter element being communicated with the resin tank through the water circuit board, and a water inlet of the secondary filter element being communicated with a water outlet of the primary filter element.
5. The water distiller as claimed in claim 4, wherein, The middle shell has a second mounting slot, the second mounting slot being located on one side of the filtering system along the third direction; the secondary filter element is a reverse osmosis filter element, the water purifying system further comprising a booster pump arranged in the second mounting slot, a water outlet of the booster pump being communicated with a water inlet of the reverse osmosis filter element, and the booster pump being used for boosting the liquid flowing into the reverse osmosis filter element.
6. The water distiller as claimed in claim 1, wherein, The resin tank is provided with a first plug-in part on one side facing the middle shell; the water circuit board is located on one side of the middle shell away from the soft water system, the middle shell is provided with a second plug-in part on one side facing the soft water system, and the second plug-in part is connected with the first plug-in part.
7. The water distiller as claimed in claim 6, wherein The first plug-in part comprises: a first plug-in slot wall cooperated with a side wall of the resin tank to form a first plug-in slot, the second plug-in part being inserted into the first plug-in slot; a first reinforcing rib arranged in the interior of the first plug-in slot and along the second direction, and the extension height of the first reinforcing rib being smaller than the slot wall height of the first plug-in slot wall.
8. The water distiller as claimed in claim 6, wherein, The second plug-in part comprises: a second plug-in slot wall cooperated with the middle shell to form a second plug-in slot; a second reinforcing rib arranged in the interior of the second plug-in slot and along the second direction, and the extension height of the second reinforcing rib being smaller than or equal to the slot wall height of the second plug-in slot wall.
9. The water distiller as claimed in claim 1, wherein, The middle shell has an insertion slot and an opening part communicated with the insertion slot, the insertion slot extending along the first direction, and the filtering system being capable of entering and exiting the insertion slot through the opening part; the shell assembly further comprises a first cover body arranged corresponding to the opening part, and the first cover body is movably connected with the middle shell to open and close the opening part.
10. The water purifier as claimed in claim 1 wherein, The salt tank assembly comprises a tank body and a door body, the door body being connected with the tank body and being movable relative to the tank body to open and close the tank body.
11. The water distiller according to claim 10, wherein, The shell assembly further comprises a first cover body, which is movably connected with the middle shell; The door body is located on a side of the box body away from the resin tank, and the first cover body and the door body are arranged along the second direction.
12. The water distiller of claim 11, wherein, The shell assembly further comprises a face plate, a side plate, a back plate and a top plate, which together enclose a containing cavity, the middle shell, the soft water system and the water purification system are located in the containing cavity, the top plate is located on a side of the soft water system and the water purification system along the third direction, and a position-avoiding part is arranged on a side of the top plate facing the first cover body and the door body; The position-avoiding part and an end of the first cover body close to the top plate enclose a first position-avoiding space, and / or the position-avoiding part and an end of the door body close to the top plate enclose a second position-avoiding space.