Water purification equipment
By designing a heat exchanger in the water purification equipment to transmit energy to the first tank body and the second tank body in the installation part, the problem of small water output of the existing water purifier is solved, and the function of large flow of hot water or cold water is realized.
Patent Information
- Application Number
- CN202510246631.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-03
- Publication Date
- 2025-05-06
AI Technical Summary
Existing water purifiers are limited by the volume of the water storage tank when cold or hot water is discharged, resulting in a smaller amount of hot water or cold water.
A water purification device is designed, including a housing, a first tank, a second tank and a heat exchanger, and energy is transferred to the first tank and the second tank at the installation part through the heat exchanger, so that it can simultaneously output a large flow of hot or cold water.
The function of hot water or cold water is realized, which solves the problem of small water output of existing water purifiers and improves the water output efficiency of the equipment.
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Figure CN119929936A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of water purifiers, and in particular to a water purifier. Background Art
[0002] A water purifier, also called a water purifier or water purifier, is a water treatment device that deeply filters and purifies water according to the requirements for water use. As the demand for drinking water becomes more and more diversified, drinking cold and hot water is becoming more and more popular. Therefore, water purifiers in related technologies are equipped with cooling and heating functions. However, currently, when a water purifier outputs cold or hot water, it is limited by the volume of the water storage tank, resulting in a small amount of hot or cold water output. Summary of the invention
[0003] In view of this, the present invention provides a water purification device, which can achieve a large flow of hot water or a large flow of cold water.
[0004] The present invention provides the following technical solutions:
[0005] A water purification device comprises: a housing, a first tank body, a second tank body, and a heat exchanger;
[0006] The housing has a containing cavity, a baffle is arranged in the containing cavity, the baffle divides the containing cavity into a first cavity and a second cavity, the first tank body is arranged in the first cavity, and the second tank body is arranged in the second cavity;
[0007] The first tank body and the second tank body both have a mounting portion, and the mounting portion is provided with a heat exchanger, and the heat exchanger is used for cooling or heating.
[0008] Further, it also includes: a heater;
[0009] The heater is disposed in the first tank body and / or the second tank body, and is used to heat the pure water in the first tank body and / or the second tank body.
[0010] Furthermore, it also includes: a heat conduction component;
[0011] The mounting portion is provided with a mounting hole, the heat-conducting component is connected to the heat exchanger, the heat-conducting component extends into the first tank body and / or the second tank body through the mounting hole, and the heat-conducting component is used to conduct the heat of the heat exchanger into the first tank body and / or the second tank body.
[0012] Further, the heat conducting assembly comprises: a heat absorbing member, a plurality of heat conducting sheets;
[0013] A plurality of the heat conducting sheets are arranged on the heat absorbing member at intervals along a first direction. The heat absorbing member is attached to the heat exchanger. The heat absorbing member is used to receive heat from the heat exchanger, and the heat conducting sheets are used to release heat.
[0014] Furthermore, it also includes: a limiting member;
[0015] The limiting member is arranged around the outer circumference of the mounting hole, and the limiting member includes an extension portion and a limiting portion, wherein the limiting portion is arranged on the extension portion, and an angle is formed between the extension portion and the limiting portion; when the heat conductive component is installed in the mounting hole, the limiting portion is parallel to the heat conductive sheet.
[0016] Furthermore, it also includes: a heat dissipation component;
[0017] The heat dissipation component includes: heat dissipation fins, heat sinks, and a driving member, the heat dissipation fins are arranged on the heat sinks, and the driving member is arranged on the heat dissipation fins; the heat exchanger is arranged as a semiconductor refrigerator, the semiconductor refrigerator has a cooling surface or a heating surface, and the heat sink is arranged on the heating surface.
[0018] Furthermore, it also includes: a filter element, a booster pump;
[0019] The boost pump is connected to the filter element, the filter element is connected to the first tank body and / or the second tank body, and the filter element is used to provide pure water to the first tank body and / or the second tank body.
[0020] Furthermore, the water purifier further comprises: a mounting base;
[0021] The shell also has an installation cavity, the installation base is arranged in the installation cavity, the installation base is provided with a groove, the filter element is provided with a guide block, and when the filter element is installed to the installation base, the guide block is located in the groove.
[0022] Furthermore, a clamping member is provided in the installation cavity, the clamping member is provided on two opposite side walls of the housing, and a sliding groove is provided on the clamping member;
[0023] The filter element is provided with a guide member, and the guide member cooperates with the slide groove to fix the filter element.
[0024] Further, it also includes: a vane pump;
[0025] The vane pump is disposed in the first cavity or the second cavity, the vane pump is connected to the first tank body and the second tank body, and the vane pump is used to supply water to the water-using equipment.
[0026] The above-mentioned water purification equipment includes a shell, a accommodating cavity is arranged in the shell, and a baffle is arranged in the accommodating cavity, the accommodating cavity is divided into a first cavity and a second cavity by the baffle, a first tank body is arranged in the first cavity, and a second tank body is arranged in the second cavity, mounting parts are arranged on the first tank body and the second tank body, and heat exchangers are arranged on the mounting parts of the first tank body and the second tank body, and energy can be transferred to the first tank body and the second tank body through the mounting part through the heat exchanger, so that the first tank body and the second tank body can produce cold water or hot water, or produce hot water at the same time, or produce cold water at the same time. In this way, when the user is using water, the first tank body and the second tank body can output more hot water or cold water at the same time, so as to realize a large flow of water outflow of the water purification equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] In order to more clearly illustrate the technical solution of the embodiment of the present invention, the drawings required for use in the implementation mode will be briefly introduced below. Obviously, the drawings described below are some implementation modes of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0028] Figure 1 One of the structural schematic diagrams of the water purification device provided by the embodiment of the present invention;
[0029] Figure 2 A schematic diagram of the structure of a first tank body or a second tank body provided in an embodiment of the present invention;
[0030] Figure 3 A schematic diagram of the structure of a heat conducting member provided in an embodiment of the present invention;
[0031] Figure 4 One of the cross-sectional views of the first tank body or the second tank body provided by the embodiment of the present invention;
[0032] Figure 5 for Figure 4 The enlarged view of point A in the middle;
[0033] Figure 6 A second cross-sectional view of the first tank body or the second tank body provided in an embodiment of the present invention;
[0034] Figure 7 A schematic diagram of the structure of a heat dissipation assembly provided in an embodiment of the present invention;
[0035] Figure 8 A second structural schematic diagram of a water purification device provided by an embodiment of the present invention;
[0036] Fig. 9 A schematic diagram of the overall structure of a water purification device provided by an embodiment of the present invention;
[0037] Fig.10for Fig. 9 The enlarged view of point B in the middle;
[0038] Fig.11 for Fig. 9 Enlarged view of point C in the middle.
[0039] Description of reference numerals:
[0040] 100-water purification equipment; 10-housing; 11-accommodating chamber; 12-first chamber; 13-second chamber; 14-filter element; 141-guide block; 142-guide member; 15-boosting pump; 16-installation chamber; 17-baffle; 20-first tank body; 21-second tank body; 22-installation part; 23-installation hole; 30-heat exchanger; 40-heater; 50-heat conduction component; 51-heat absorption component; 52-heat conduction sheet; 60-limiting member; 61-extension part; 62-limiting part; 70-heat dissipation component; 71-heat dissipation fin; 72-heat dissipation sheet; 73-driving member; 80-installation base; 81-groove; 82-clamping member; 821-slide groove; 90-vane pump. DETAILED DESCRIPTION
[0041] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0042] The terms "first", "second", etc. in the specification and claims of the present invention and the above-mentioned drawings are used to distinguish different objects, rather than to describe a specific order. In addition, the terms "including" and "having" and any variations thereof are intended to cover non-exclusive inclusions. For example, a process, method, system, product or device that includes a series of steps or units is not limited to the listed steps or units, but may optionally include steps or units that are not listed, or may optionally include other steps or units that are inherent to these processes, methods, products or devices.
[0043] References to "embodiments" or "implementations" herein mean that a particular feature, structure, or characteristic described in conjunction with the embodiments or implementations may be included in at least one embodiment of the present invention. The appearance of the phrase in various locations in the specification does not necessarily refer to the same embodiment, nor is it an independent or alternative embodiment that is mutually exclusive of other embodiments. It is explicitly and implicitly understood by those skilled in the art that the embodiments described herein may be combined with other embodiments.
[0044] A water purifier, also called a water purifier or water purifier, is a water treatment device that deeply filters and purifies water according to the requirements for water use. As the demand for drinking water becomes more and more diversified, drinking cold and hot water is becoming more and more popular. Therefore, water purifiers in related technologies are equipped with cooling and heating functions. However, currently, when a water purifier outputs cold or hot water, it is limited by the volume of the water storage tank, resulting in a small amount of hot or cold water output.
[0045] In view of this, the present embodiment provides a water purification device 100, which can achieve a large flow rate of hot water or a large flow rate of cold water.
[0046] See also Figure 1 , a water purification device 100, comprising: a housing 10, a first tank body 20, a second tank body 21, and a heat exchanger 30;
[0047] The housing 10 has a receiving cavity 11, and a baffle 17 is disposed in the receiving cavity 11. The baffle 17 divides the receiving cavity 11 into a first cavity 12 and a second cavity 13. The first tank body 20 is disposed in the first cavity 12, and the second tank body 21 is disposed in the second cavity 13.
[0048] The first tank body 20 and the second tank body 21 both have a mounting portion 22 , and the mounting portion 22 is provided with the heat exchanger 30 , and the heat exchanger 30 is used for cooling or heating.
[0049] The above-mentioned water purification device 100 includes a shell 10, a accommodating chamber 11 is arranged in the shell 10, and a baffle 17 is arranged in the accommodating chamber 11, the accommodating chamber 11 is divided into a first cavity 12 and a second cavity 13 by the baffle 17, a first tank body 20 is arranged in the first cavity 12, and a second tank body 21 is arranged in the second cavity 13, and mounting parts 22 are arranged on the first tank body 20 and the second tank body 21, and heat exchangers 30 are arranged on the mounting parts 22 of the first tank body 20 and the second tank body 21. The heat exchanger 30 can transfer energy to the first tank body 20 and the second tank body 21 through the mounting part 22, so that the first tank body 20 and the second tank body 21 can produce cold water or hot water, or produce hot water at the same time, or produce cold water at the same time. In this way, when the user is using water, the first tank body 20 and the second tank body 21 can output more hot water or cold water at the same time, so as to realize a large flow of water out of the water purification device 100.
[0050] It can be understood that the housing 10 is provided with a receiving chamber 11, and a baffle 17 is provided in the receiving chamber 11, and the receiving chamber 11 is divided into a first chamber 12 and a second chamber 13 by the baffle 17. The first chamber 12 and the second chamber 13 can be distributed in the left and right manner, or in the form of being distributed up and down. A first tank body 20 is provided in the first chamber 12, and a second tank body 21 is provided in the second chamber 13. The first tank body 20 and the second tank body 21 are both used to store pure water, and the first tank body 20 and the second tank body 21 are both provided with a first tank body 20 and a second tank body 21. An installation portion 22 is provided, and the installation portion 22 is used to install the heat exchanger 30. After the heat exchanger 30 is installed on the installation portion 22, the heat exchanger 30 can perform cooling or heating according to the user's settings. Specifically, when the user needs cooling, the heat exchanger 30 cools the first tank body 20 and the second tank body 21. After the cold energy is transferred to the first tank body 20 and the second tank body 21, the cold energy can cool down the pure water in the first tank body 20 and the second tank body 21, so that the first tank body 20 and the second tank body 21 can output cold water.
[0051] Or when the user needs heating, the heat exchanger 30 heats the first tank body 20 and the second tank body 21. After the heat is transferred to the first tank body 20 and the second tank body 21, the heat can heat the pure water in the first tank body 20 and the second tank body 21, so that the first tank body 20 and the second tank body 21 can output hot water.
[0052] When the user needs cooling or heating at the same time, the heat exchanger 30 cools down the first tank body 20 by cooling, and heats the second tank body 21 by heating. In this way, the first tank body 20 can produce cold water and the second tank body 21 can produce hot water, so that the water purification device 100 can output pure water or hot water at the same time.
[0053] Optionally, the heat exchanger 30 may be a semiconductor refrigerator, through which the cooling surface or heating surface of the semiconductor refrigerator contacts the mounting portion 22 to transfer heat or cold to the first tank body 20 or the second tank body 21, thereby achieving cooling or heating.
[0054] See also Figure 1 , in some embodiments, further comprising: a heater 40;
[0055] The heater 40 is disposed in the first tank body 20 and / or the second tank body 21 , and the heater 40 is used to heat the purified water in the first tank body 20 and / or the second tank body 21 .
[0056] It can be understood that since water is less efficient when heated, a heater 40 is provided in order to enable the water purification device 100 to output hot water more quickly; the heater 40 can be provided in the first tank body 20 and the second tank body 21, or separately in the first tank body 20 or the second tank body 21. In this way, when a user needs to use hot water, the heater 40 and the heat exchanger 30 can be used for heating at the same time, so that the pure water in the first tank body 20 and the second tank body 21 can be quickly heated, thereby achieving the purpose of improving the heating effect of the water purification device 100.
[0057] Optionally, the heater 40 may heat the first tank body 20 or the second tank body 21 separately, or may heat the first tank body 20 and the second tank body 21 simultaneously, and may be adjusted according to user settings.
[0058] See also Figure 2 and Figure 3 , in some embodiments, further comprising: a heat conducting component 50;
[0059] The mounting portion 22 is provided with a mounting hole 23, and the heat-conducting component 50 is connected to the heat exchanger 30. The heat-conducting component 50 extends through the mounting hole 23 into the first tank body 20 and / or the second tank body 21. The heat-conducting component 50 is used to conduct the heat of the heat exchanger 30 to the first tank body 20 and / or the second tank body 21.
[0060] It can be understood that the heat conductive component 50 is connected to the heat exchanger 30. In order to enable the heat conductive component 50 to better conduct energy to the first tank body 20 or the second tank body 21, a mounting hole 23 is provided in the mounting portion 22. The heat conductive component 50 extends through the mounting hole 23 to the first tank body 20 and the second tank body 21. In this way, the heat conductive component 50 can directly contact the pure water in the first tank body 20 and the second tank body 21. In this way, the heat loss during the heat conduction process can be reduced, and the energy can be directly conducted to the first tank body 20 and the second tank body 21. By heating the pure water in the first tank body 20 and the second tank body 21, the energy can be more efficiently conducted to the first tank body 20 and the second tank body 21, so as to improve the efficiency of the water purification equipment 100 in preparing cold water or preparing hot water.
[0061] See also Figure 2 and Figure 3 , in some embodiments, the heat conducting assembly 50 includes: a heat absorbing member 51, a plurality of heat conducting sheets 52;
[0062] The plurality of heat conducting sheets 52 are spaced apart along a first direction on the heat absorbing member 51 . The heat absorbing member 51 is attached to the heat exchanger 30 . The heat absorbing member 51 is used to receive heat from the heat exchanger 30 , and the heat conducting sheets 52 are used to release heat.
[0063] It can be understood that the heat-conducting component 50 includes a heat-absorbing component 51 and a heat-conducting sheet 52, wherein the heat-absorbing component 51 is connected to the heat exchanger 30, and the heat-absorbing component 51 is used to collect the heat generated by the heat exchange component. A plurality of heat-conducting sheets 52 are arranged at intervals on the heat-absorbing component 51, and the heat-conducting sheets 52 are arranged perpendicular to the heat-absorbing component 51. At the same time, the heat-conducting sheets 52 extend into the first tank body 20 and the second tank body 21, so that the heat on the heat-absorbing component 51 can be transferred to the first tank body 20 and / or the second tank body 21 through the heat-conducting component 50 to achieve heat transfer of the heat exchanger 30. Multiple heat-conducting components 50 can accelerate the efficiency of energy transfer, so that energy can enter the first tank body 20 and / or the second tank body 21 faster and more evenly, realize heat exchange, and then realize heat conduction.
[0064] See also Figure 4 and Figure 5 , in some embodiments, further comprising: a stopper 60;
[0065] The limiting member 60 is arranged around the outer circumference of the mounting hole 23, and the limiting member 60 includes an extension portion 61 and a limiting portion 62, wherein the limiting portion 62 is arranged on the extension portion 61, and an angle is formed between the extension portion 61 and the limiting portion 62; when the heat conductive component 50 is installed in the mounting hole 23, the limiting portion 62 is parallel to the heat conductive sheet 52.
[0066] It can be understood that a limiting member 60 is provided on the periphery of the mounting hole 23, and the limiting member 60 is used to cooperate with the heat conductive component 50, and the limiting member 60 includes an extension portion 61 and a limiting portion 62, wherein the extension portion 61 extends in a direction away from the mounting hole 23 (i.e., extends to the outside of the first tank body 20 or the second tank body 21), and the limiting portion 62 is provided on the extension portion 61, and the limiting portion 62 can be vertically provided on the extension portion 61, or can form an angle with the limiting portion 62, so that the limiting portion 62 can limit the installation position of the heat conductive component 50, so that the heat conductive component 50 can be installed more conveniently.
[0067] It can be understood that after the heat conductive component 50 is installed in the limiting portion 62, a seal can be set between the limiting portion 62 and the heat conductive component 50 to prevent water leakage from the mounting hole 23; the heat conductive component 50 can be directly fixed on the limiting portion 62, specifically, the mounting hole 23 can be set on the limiting portion 62, and the connection between the limiting portions 62 can be achieved by connecting the heat conductive component 50 to the mounting hole 23.
[0068] See also Figure 6 and Figure 7 , in some embodiments, further comprising: a heat dissipation component 70;
[0069] The heat dissipation assembly 70 includes: a heat dissipation fin 71, a heat sink 72, and a driving member 73, wherein the heat dissipation fin 71 is arranged on the heat sink 72, and the driving member 73 is arranged on the heat dissipation fin 71; the heat exchanger 30 is arranged as a semiconductor refrigerator, and the semiconductor refrigerator has a cooling surface or a heating surface, and the heat sink 72 is arranged on the heating surface.
[0070] It is understandable that when the heat exchanger 30 is a semiconductor refrigerator, the other side of the semiconductor refrigerator will generate a large amount of heat when the semiconductor cooling surface is cooling, so it is necessary to set a heat dissipation component 70 to dissipate heat on the heating surface of the semiconductor refrigerator; the heat dissipation component 70 includes a heat dissipation fin 71, a heat dissipation fin 72, and a driving member 73; wherein the heat dissipation fin 72 is arranged on the heating surface, the heat dissipation fin 71 is arranged on the heat dissipation fin 72, and a plurality of heat dissipation fins 71 are arranged vertically on the side of the heat dissipation fin 72 away from the heating surface; in this way, the heat can be transferred to the heat dissipation fin 71 through the heat dissipation fin 72, and the driving member 73 arranged on the heat dissipation fin 71 can drive the airflow on the heat dissipation fin 71, so that efficient heat dissipation can be achieved. Specifically, when the heating surface of the semiconductor refrigerator generates heat, the heat is transferred to the heat dissipation fin 72, and then to the heat dissipation fin 71. The driving member 73 on the heat dissipation fin 71 can accelerate the airflow near the heat dissipation fin 71, thereby achieving the purpose of cooling the semiconductor refrigerator.
[0071] See also Figure 8 , in some embodiments, further comprising: a filter element 14, a booster pump 15;
[0072] The boost pump 15 is connected to the filter element 14 , and the filter element 14 is connected to the first tank body 20 and / or the second tank body 21 . The filter element 14 is used to provide pure water to the first tank body 20 and / or the second tank body 21 .
[0073] It can be understood that it also includes: a booster pump 15, a filter element 14, the booster pump 15 and the filter element 14 are installed in the housing 10, specifically, a mounting cavity 16 can be set on the housing 10 to install the filter element 14 and the booster pump 15, the booster pump 15 is connected to the filter element 14, the municipal water supply is connected to the booster pump 15, the municipal water supply enters the filter element 14 after being pressurized by the booster pump 15, and flows into the first tank body 20 or the second tank body 21 after being filtered by the filter element 14, and then the heat exchanger 30 performs heat treatment on the purified water in the first tank body 20 and the second tank body 21. Heating or cooling (the user can preset the temperature in the first tank body 20 and / or the second tank body 21. When the preset temperature is above 20°, the heat exchanger 30 heats the first tank body 20 and / or the second tank body 21. When the preset temperature is lower than 20°, the heat exchanger 30 cools the first tank body 20 and / or the second tank body 21). After heating or cooling, the heat exchanger 30 can also keep the pure water in the first tank body 20 and the second tank body 21 warm. When the user needs to use hot water, it can be transported to the water-using equipment through the water outlet of the heat storage tank.
[0074] It can be understood that the booster pump 15 is used to increase the pressure of the raw water. This is because the filter element 14 is provided with an RO filter element 14 (Reverse Osmosis) and the water pressure of the municipal water supply is not sufficient to allow the water to pass through the RO filter element 14 when the water flow is purified. In order to allow the water flow to pass through the filter element 14 smoothly, a booster pump 15 is provided to ensure that the water flow can flow into the filter element 14 while ensuring the purification efficiency of the filter element 14.
[0075] See also Fig. 9 , in some embodiments, the water purifier further comprises: a mounting base 80;
[0076] The housing 10 also has an installation cavity 16, the installation base 80 is arranged in the installation cavity 16, the installation base 80 is provided with a groove 81, and the filter element 14 is provided with a guide block 141. When the filter element 14 is installed to the installation base 80, the guide block 141 is located in the groove 81.
[0077] It can be understood that the shell 10 is provided with an installation cavity 16, and a mounting base 80 is provided in the installation cavity 16. The mounting base 80 is used to install the filter element 14. The mounting base 80 is detachably connected to the filter element 14. A water channel structure compatible with the filter element 14 is provided on the mounting base 80. When the filter element 14 is installed on the mounting base 80, the filter element 14 can be used normally.
[0078] It can be understood that in order to facilitate the installation of the filter element 14 on the mounting base 80, a groove 81 is provided on the mounting base 80, and the groove 81 runs through the top of the mounting base 80; a guide block 141 is provided on the side of the filter element 14 away from the handle, and the guide block 141 is adapted to the size of the groove 81, and the guide block 141 is used to cooperate with the groove 81. When the filter element 14 is installed on the base, the guide block 141 can be inserted into the groove 81 to achieve the positioning of the filter element 14. At the same time, the cooperation between the filter element 14 and the guide block 141 can also limit the rotation of the filter element 14 along its circumferential direction, which can improve the stability of the filter element 14 after installation, ensure that the filter element 14 will not move during normal use, and thereby improve the stability of the water purifier.
[0079] See also Figures 9 to 11 In some embodiments, a clamping member 82 is disposed in the installation cavity 16, and the clamping member 82 is disposed on two opposite side walls of the housing 10, and a slide groove 821 is disposed on the clamping member 82;
[0080] The filter element 14 is provided with a guide member 142 , and the guide member 142 cooperates with the slide groove 821 to fix the filter element 14 .
[0081] It can be understood that the mounting cavity 16 is disposed on the housing 10, and a clamping member 82 is disposed in the mounting cavity 16. The clamping member 82 is disposed at a position such as Fig. 9 or Fig.11 The upper part of the installation cavity 16 shown in the figure is arranged on the side walls on both sides of the installation cavity 16; a slide groove 821 is arranged on the clamping member 82, and a guide member 142 is arranged on the two opposite side walls of the filter element 14. The guide member 142 on the filter element 14 is adapted to the slide groove 821. Therefore, when the filter element 14 is installed in the installation cavity 16, the guide member 142 can be stuck in the slide groove 821 and cooperate with the installation cavity 16. In this way, the horizontal displacement of the filter element 14 in the installation cavity 16 can be limited by the clamping member 82, and due to gravity, it will not move in the vertical direction of the filter element 14. In this way, the stability of the filter element 14 after installation can be improved, ensuring that the filter element 14 will not move during normal use, thereby improving the stability of the water purifier.
[0082] See also Figure 8 , in some embodiments, further comprising: a vane pump 90;
[0083] The vane pump 90 is disposed in the first cavity 12 or the second cavity 13 . The vane pump 90 is connected to the first tank 20 and the second tank 21 . The vane pump 90 is used to supply water to the water-using equipment.
[0084] It can be understood that the vane pump 90 can be set at any position in the shell 10, such as in the first cavity 12 or the second cavity 13, and the vane pump 90 is connected to the first tank body 20 and the second tank body 21, so that the vane pump 90 can pressurize the pure water from the first tank body 20 and the second tank body 21, and the water flow in the first tank body 20 and / or the second tank body 21 can be delivered to the user end after pressurization to realize the water supply of the water purification equipment 100; specifically, the hot water in the heat storage tank flows out through the water outlet of the heat storage tank and flows to the vane pump 90, and the vane pump 90 delivers the hot water to the user end after pressurizing the hot water for user use. The vane pump 90 can ensure that the setting position of the heat storage tank is not affected by the water pressure, and can smoothly deliver the hot water in the heat storage tank to the water-using equipment to improve the user experience.
[0085] Mentioning "embodiment" and "implementation method" in the present invention means that the specific features, structures or characteristics described in conjunction with the embodiment may be included in at least one embodiment of the present invention. The appearance of the phrases in various places in the specification does not necessarily refer to the same embodiment, nor is it an independent or alternative embodiment that is mutually exclusive with other embodiments. It is explicitly and implicitly understood by those skilled in the art that the embodiments described in the present invention can be combined with other embodiments. In addition, it should be understood that the features, structures or characteristics described in the various embodiments of the present invention can be arbitrarily combined to form another embodiment without departing from the spirit and scope of the technical solution of the present invention, provided that there is no contradiction between them.
[0086] Finally, it should be noted that the above implementation modes are only used to illustrate the technical solution of the present invention rather than to limit it. Although the present invention has been described in detail with reference to the above preferred implementation modes, those skilled in the art should understand that the technical solution of the present invention can be modified or replaced by equivalents without departing from the spirit and scope of the technical solution of the present invention.
Claims
1. A water purification device, characterized in that: It includes: a shell, a first tank body, a second tank body, and a heat exchanger; The housing has a containing cavity, a baffle is arranged in the containing cavity, the baffle divides the containing cavity into a first cavity and a second cavity, the first tank body is arranged in the first cavity, and the second tank body is arranged in the second cavity; The first tank body and the second tank body both have a mounting portion, and the mounting portion is provided with a heat exchanger, and the heat exchanger is used for cooling or heating.
2. The water purification device according to claim 1, characterized in that: Also includes: Heater; The heater is disposed in the first tank body and / or the second tank body, and is used to heat the pure water in the first tank body and / or the second tank body.
3. The water purification device according to claim 2, characterized in that: Also includes: Thermally conductive components; The mounting portion is provided with a mounting hole, the heat-conducting component is connected to the heat exchanger, the heat-conducting component extends into the first tank body and / or the second tank body through the mounting hole, and the heat-conducting component is used to conduct the heat of the heat exchanger into the first tank body and / or the second tank body.
4. The water purification device according to claim 3, characterized in that: The heat conduction component comprises: a heat absorbing component and a plurality of heat conduction sheets; A plurality of the heat conducting sheets are arranged on the heat absorbing member at intervals along a first direction. The heat absorbing member is attached to the heat exchanger. The heat absorbing member is used to receive heat from the heat exchanger, and the heat conducting sheets are used to release heat.
5. The water purification device according to claim 4, characterized in that: Also includes: Limiting parts; The limiting member is arranged around the outer circumference of the mounting hole, and the limiting member includes an extension portion and a limiting portion, wherein the limiting portion is arranged on the extension portion, and an angle is formed between the extension portion and the limiting portion; when the heat conductive component is installed in the mounting hole, the limiting portion is parallel to the heat conductive sheet.
6. The water purification device according to claim 4, characterized in that: Also includes: Heat dissipation components; The heat dissipation assembly comprises: a heat dissipation fin, a heat sink, and a driving member, wherein the heat dissipation fin is arranged on the heat sink, and the driving member is arranged on the heat dissipation fin; The heat exchanger is configured as a semiconductor refrigerator, the semiconductor refrigerator has a cooling surface or a heating surface, and the heat sink is arranged on the heating surface.
7. The water purification device according to claim 1, characterized in that: Also includes: Filter element, booster pump; The boost pump is connected to the filter element, the filter element is connected to the first tank body and / or the second tank body, and the filter element is used to provide pure water to the first tank body and / or the second tank body.
8. The water purification device according to claim 7, characterized in that: The water purifier further comprises: a mounting base; The shell also has an installation cavity, the installation base is arranged in the installation cavity, the installation base is provided with a groove, the filter element is provided with a guide block, and when the filter element is installed to the installation base, the guide block is located in the groove.
9. The water purification device according to claim 8, characterized in that: A clamping piece is arranged in the installation cavity, the clamping piece is arranged on two opposite side walls of the housing, and a sliding groove is arranged on the clamping piece; The filter element is provided with a guide member, and the guide member cooperates with the slide groove to fix the filter element.
10. The water purification device according to claim 7, characterized in that: Also includes: Vane pump; The vane pump is disposed in the first cavity or the second cavity, the vane pump is connected to the first tank body and the second tank body, and the vane pump is used to supply water to the water-using equipment.
Citation Information
Patent Citations
Kitchen water purifier
CN221093777U