A mineralizer and water dispenser

By setting up multiple mineralization sections and containing chambers in the mineralization device, combined with a temperature control module, the problem of uneven mineralization effect is solved, achieving optimal mineralization effect and uniformity of drinking water.

CN223607090UInactive Publication Date: 2025-11-28GREE ELECTRIC APPLIANCE INC OF ZHUHAI
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Patent Information

Application Number
CN202423037157.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-09
Publication Date
2025-11-28
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The mineralization effect of existing mineralization devices is not good, mainly because different minerals have different effects when they combine with water, resulting in uneven mineralization of drinking water.

Method used

Design a mineralization device comprising multiple mineralization sections and a receiving chamber. The temperature and flow rate of drinking water are adjusted by a control module, and the optimal mineralization effect is achieved by combining different minerals with water at different temperatures.

Benefits of technology

Through multiple mineralization processes and temperature control, each mineral is combined with the most suitable water temperature to achieve the best mineralization effect, thereby improving the mineralization efficiency and uniformity of drinking water.

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Abstract

The utility model provides a kind of mineralization device and water dispenser, mineralization device includes: jar body, the jar body has at least two containing cavities;Filter core, at least two mineralization parts are provided in the filter core, at least two the mineralization part with at least two The containing cavity is set up one by one to make the drinking water that enters the containing cavity flows through corresponding mineralization part;At least two water supply lines, at least two water supply lines are communicated one by one with at least two containing cavities, to pass into drinking water in corresponding containing cavity;Control module, the control module is used to control the temperature of drinking water that passes into each water supply line, the mineralization device of the utility model solves the technical problem that mineralization effect of mineralization device in prior art is poor.
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Description

TECHNICAL FIELD

[0001] The utility model relates to drinking water technical field, concretely relates to a kind of mineralization device and water dispenser. BACKGROUND

[0002] With the increasing demand of people on healthy drinking water, the quality of drinking water is also widely concerned, and the demand of functional drinking water such as multifunctional multi-temperature water taking, mineral water and the like is met by using mineralization filter element with multiple microelements, and after hot water mineralization, drinking water rich in human microelements is obtained to supplement the microelements and minerals lacking in normal diet, so as to improve the nutritional status of human body.

[0003] In the prior art, multiple minerals are usually mixed and then combined with water to obtain drinking water. However, since there are many types of minerals, the effects achieved when different minerals are combined with water are different, resulting in poor mineralization effect of drinking water in the prior art.

[0004] Therefore, the prior art needs to be further developed. UTILITY MODEL CONTENT

[0005] The utility model aims at overcoming the above technical deficiencies, and provides a mineralization device and water dispenser to solve the technical problem of poor mineralization effect of the mineralization device in the related art.

[0006] To achieve the above technical purpose, the utility model adopts the following technical scheme: a mineralization device is provided, which comprises:

[0007] A tank body has at least two accommodation cavities.

[0008] A filter element is provided with at least two mineralization parts, and the at least two mineralization parts are arranged in one-to-one correspondence with the at least two accommodation cavities, so that the drinking water entering the accommodation cavities flows through the corresponding mineralization parts.

[0009] At least two water supply pipelines are in one-to-one correspondence with the at least two accommodation cavities and are communicated with the at least two accommodation cavities to introduce drinking water into the corresponding accommodation cavities.

[0010] A control module is used to control the temperature of the drinking water introduced into each water supply pipeline.

[0011] Further, the mineralization device further comprises:

[0012] A partition plate is arranged in the interior of the tank body to divide the at least two accommodation cavities.

[0013] Further, the filter element is provided with a placement cavity for placing mineralization materials, and the partition plate is arranged in the interior of the filter element to divide the at least two mineralization parts.

[0014] Further, the partition plate is movably arranged, so as to communicate or isolate two adjacent accommodation cavities by moving the partition plate.

[0015] Further, at least two of the accommodation cavities are arranged in sequence in the vertical direction.

[0016] Further, the mineralization device further comprises at least two water outlet pipelines, the at least two water outlet pipelines correspond to the at least two accommodation cavities one by one to lead the drinking water in the corresponding accommodation cavities out of the tank body.

[0017] Further, the mineralization device further comprises:

[0018] a solenoid valve arranged on the water supply pipeline; and / or,

[0019] a liquid level sensor arranged in the accommodation cavity.

[0020] A water dispenser comprising a mineralization device, wherein the mineralization device is the mineralization device as described above.

[0021] Further, the water dispenser comprises:

[0022] a water purifier for outputting drinking water;

[0023] a heating module, a water inlet of the heating module being connected with the water purifier, and a water outlet of the heating module being connected with a water supply pipeline of the mineralization device.

[0024] Further, the water dispenser further comprises:

[0025] a heat exchanger;

[0026] a first heat exchange pipeline, one end of the first heat exchange pipeline being connected with a pipeline between the water purifier and the heating module, and the other end of the first heat exchange pipeline being connected with the heat exchanger;

[0027] a second heat exchange pipeline, one end of the second heat exchange pipeline being connected with the mineralization device, and the other end of the second heat exchange pipeline being connected with the heat exchanger.

[0028] Further, the first heat exchange pipeline comprises:

[0029] a first pipeline for leading drinking water into the heat exchanger;

[0030] a second pipeline for leading drinking water out of the heat exchanger.

[0031] Further, the water dispenser comprises:

[0032] A first output pipeline is connected with the water outlet of the heating module;

[0033] A second output pipeline is connected with the heat exchanger;

[0034] A third output pipeline is connected with the water purifier.

[0035] Beneficial effects:

[0036] The mineralization device of the utility model, include: jar body, the jar body has at least two containing cavities, filter core, at least two mineralization parts are arranged in the filter core, at least two mineralization parts and at least two containing cavities are arranged one by one to make the drinking water that enters the containing cavity flows through the corresponding mineralization part, at least two water supply pipelines, at least two water supply pipelines and at least two containing cavities are communicated one by one to import drinking water into the corresponding containing cavity, control module, the control module is used to control the temperature of the drinking water imported into each water supply pipeline. The above-mentioned setting is adopted, sets up multiple mineralization parts, places different mineralization materials in different mineralization parts, in the process that the mineralization device mineralizes reference water, according to different mineralization and different temperature drinking water combination, so that each mineralization device can correspond to the most suitable water temperature, thereby achieving the best mineralization effect, solve the technical problem of poor mineralization effect of the mineralization device in the prior art. BRIEF DESCRIPTION OF DRAWINGS

[0037] Figure 1 It is the structure schematic diagram of the mineralization device that the utility model embodiment adopts;

[0038] Figure 2 It is the structure schematic diagram of the water dispenser that the utility model embodiment adopts;

[0039] Figure 3 It is the structure schematic diagram of the containing cavity when the baffle of one embodiment of the mineralization device of the utility model embodiment separates;

[0040] Figure 4 It is the structure schematic diagram when the baffle of one embodiment of the mineralization device of the utility model embodiment opens the containing cavity;

[0041] Figure 5 It is the structure schematic diagram when the baffle of another embodiment of the mineralization device provided by the utility model embodiment separates the containing cavity;

[0042] Figure 6 It is the structure schematic diagram when the baffle of another embodiment of the mineralization device provided by the utility model embodiment opens the containing cavity.

[0043] Among them, the above-mentioned drawing includes the following figure marks:

[0044] 1, tank; 11, containing cavity; 111, first containing cavity; 112, second containing cavity; 2, filter core; 21, mineralization part; 211, first mineralization part; 212, second mineralization part; 3, water supply pipeline; 4, partition; 41, flow guide plate; 5, water outlet pipeline; 6, electromagnetic valve;

[0045] 10, water purifier; 20, heating module; 30, heat exchanger; 31, first heat exchange pipeline; 311, first pipeline; 312, second pipeline; 32, second heat exchange pipeline; 40, first output pipeline; 50, second output pipeline; 60, third output pipeline. DETAILED DESCRIPTION

[0046] In order to make the person skilled in the art better understand the scheme of the present application, the technical scheme in the embodiments of the present application will be described clearly and completely in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, not all. Based on the embodiments in the present application, all other embodiments obtained by the person skilled in the art without creative labor should belong to the scope of protection of the present application.

[0047] Referring to Figures 1 to 6 According to the embodiments of the present application, a mineralization device is provided, which comprises: a tank 1, the tank 1 has at least two containing cavities 11; a filter core 2, the filter core 2 is provided with at least two mineralization parts 21, at least two mineralization parts 21 and at least two containing cavities 11 are arranged one by one to make the drinking water entering the containing cavity 11 flow through the corresponding mineralization part 21; at least two water supply pipelines 3, at least two water supply pipelines 3 and at least two containing cavities 11 are communicated one by one to introduce drinking water into the corresponding containing cavity 11; a control module, the control module is used to control the temperature of the drinking water introduced into each water supply pipeline 3.

[0048] With the above arrangement, a plurality of mineralization parts 21 are arranged, different mineralization materials are placed in different mineralization parts 21, and in the process of mineralizing the reference water by the mineralization device, different mineralization materials are combined with drinking water at different temperatures, so that each mineralization device can correspond to the most suitable water temperature, thereby achieving the best mineralization effect, and solving the technical problem of poor mineralization effect of the mineralization device in the prior art.

[0049] Referring to Figures 1 to 6 In the mineralization device of the present embodiment, the mineralization device further comprises: a partition 4, the partition 4 is arranged in the interior of the tank 1 to divide into at least two containing cavities 11.

[0050] With the above arrangement, the space inside the tank body 1 can be divided into different holding cavities 11, which is simple in structure and low in cost.

[0051] In the mineralization device of the embodiment, the filter core 2 is internally provided with a placement cavity for placing mineralization materials, and the partition plate 4 is arranged in the filter core 2 to divide the filter core 2 into at least two mineralization parts 21.

[0052] With the above arrangement, the partition plate 4 can divide the holding cavities and the mineralization parts 21 at the same time, which improves the utilization efficiency of the structure.

[0053] In the mineralization device of the embodiment, referring to Figures 3 to 6 , the partition plate 4 is movably arranged, so that the adjacent two holding cavities 11 are communicated or blocked by moving the partition plate 4.

[0054] With the above arrangement, the holding cavities 11 can be communicated by moving the partition plate 4 when needed, thereby improving the mineralization efficiency.

[0055] Specifically, referring to Figure 3 , Figure 4 , when it is needed to communicate the holding cavities 11, the partition plate 4 is moved to allow the upper drinking water to enter the lower holding cavity.

[0056] In some embodiments, referring to Figure 5 , Figure 6 , a flow guide plate 41 is arranged below the partition plate 4, and the flow guide plate 41 is provided with a communication hole, so that the amount of drinking water entering the communication hole is controlled by moving the partition plate 4, thereby controlling the water flow.

[0057] Referring to Figures 3 to 6 , in the mineralization device of the embodiment, the at least two holding cavities 11 are arranged in a vertical direction.

[0058] In the mineralization device of the embodiment, referring to Figures 1 to 6 , the mineralization device further comprises at least two water outlet pipelines 5, and the at least two water outlet pipelines 5 correspond to the at least two holding cavities 11 one by one to lead the drinking water in the corresponding holding cavities 11 out of the tank body 1.

[0059] In this way, the drinking water in the holding cavities 11 is mineralized by the mineralization materials and is led out of the tank body 1 through the water outlet pipelines 5 for drinking.

[0060] In the mineralization device of the embodiment, referring to Figures 1 to 6 , the mineralization device further comprises an electromagnetic valve 6 arranged on the water supply pipeline 3 and / or a liquid level sensor arranged in the holding cavity.

[0061] Specifically, by setting the electromagnetic valve 6, the on-off of each pipeline can be controlled, thereby controlling the passage of reference water, and the combination of drinking water can be adjusted.

[0062] By setting the liquid level sensor, the water level in each containing cavity 11 is controlled, thereby controlling the water flow in each containing cavity 11, and ensuring the mineralization effect and taste.

[0063] The water dispenser of the embodiment, see Figure 2 , comprising a mineralization device, which is the mineralization device described above.

[0064] Specifically, the water dispenser of the embodiment has a plurality of mineralization parts 21, different mineralization materials are placed in different mineralization parts 21, and during the mineralization of the reference water by the mineralization device, different mineralization materials are combined with drinking water at different temperatures, so that each mineralization device can correspond to the most suitable water temperature, thereby achieving the best mineralization effect and solving the technical problem of poor mineralization effect of the mineralization device in the prior art.

[0065] In the water dispenser of the embodiment, see Figure 2 , the water dispenser comprises a water purifier 10 for outputting drinking water, and a heating module 20, wherein the water inlet of the heating module 20 is connected with the water purifier 10, and the water outlet of the heating module 20 is connected with the water supply pipeline 3 of the mineralization device.

[0066] See Figure 2 , in the water dispenser of the embodiment, the water dispenser further comprises a heat exchanger 30, a first heat exchange pipeline 31, one end of the first heat exchange pipeline 31 being connected with the pipeline between the water purifier 10 and the heating module 20, and the other end of the first heat exchange pipeline 31 being connected with the heat exchanger 30, and a second heat exchange pipeline 32, one end of the second heat exchange pipeline 32 being connected with the mineralization device, and the other end of the second heat exchange pipeline 32 being connected with the heat exchanger 30.

[0067] Specifically, by setting the first heat exchange pipeline 31, the drinking water in the water purifier 10 can be mixed with the drinking water in the heat exchanger 30, thereby adjusting the water temperature.

[0068] Specifically, by setting the second heat exchange pipeline 32, the drinking water flowing out of the mineralization device can be mixed with the drinking water in the heat exchanger 30, thereby adjusting the water temperature.

[0069] In the water dispenser of the embodiment, see Figure 2 , the first heat exchange pipeline 31 comprises a first pipeline 311 for passing drinking water into the heat exchanger 30, and a second pipeline 312 for leading drinking water out of the heat exchanger 30.

[0070] SeeFigure 2 In the water dispenser of the embodiment, the water dispenser comprises a first output pipeline 40 connected with the water outlet of the heating module 20, a second output pipeline 50 connected with the heat exchanger 30, and a third output pipeline 60 connected with the water purifier 10.

[0071] In this way, the water dispenser can output three different temperature drinking water according to the different water temperature in different components, improve the heat exchange efficiency, and save energy.

[0072] In one embodiment, by connecting the first containing cavity 111 and the second containing cavity 112, drinking water can be injected into multiple containing cavities 11 through one pipeline, and the water flow is heated while being injected, so that the water flow increases the water temperature while being injected into each containing cavity 11 in turn from bottom to top, thereby improving the water supply speed of the water dispenser.

[0073] Similarly, for different mineralization requirements of water, when the soaking time of the lower mineralization is required to be longer, the first containing cavity 111 and the second containing cavity 112 are connected, so that the water flow flows through each containing cavity 11 in turn, and the lower mineralization is soaked first, and then the upper mineralization is soaked, thereby improving the water supply speed of the water dispenser.

[0074] The mineralization device of the embodiment can extract drinking water rich in essential macroelements and trace elements of the human body, such as calcium, magnesium, sodium, potassium, strontium, metasilicic acid, and total dissolved solids, meet the needs of trace elements of the human body, and provide normal temperature water, warm boiled water, and boiled water.

[0075] Embodiment one:

[0076] The mineralization normal temperature water is produced by the water purifier 10, the water pressure flow is increased by the booster pump, the water inflow of the heating module 20 is adjusted by the regulating valve, the flow into the heat exchanger is adjusted, the water temperature (65-75℃) is adjusted by the heating module 20 according to the temperature sensing bag, the water inflow into the mineralization device, the boiled water outflow, and the heat exchange of the heat exchanger 30 are adjusted by the regulating valve according to the temperature sensing bag (20-30℃), and then supplied from the second output pipeline 50.

[0077] Embodiment two:

[0078] Mineralization hot water, water purification machine 10 water production, booster pump to improve water pressure flow, regulating valve distribution adjustment heating module 20 water inflow, heating module 20 according to the temperature regulating outlet temperature (65-75 ℃), regulating valve distribution adjustment into the mineralization device water inflow, boiling water outlet flow, heat exchanger 30 according to the temperature (40-50 ℃, regulating valve regulating outlet flow, while part 40-50 ℃ water temperature into heating module 20 can also play a role in energy saving and consumption problem), water outlet.

[0079] Example three:

[0080] Boiling water, water purification machine 10 water production, booster pump to improve water pressure flow, regulating valve distribution adjustment heating module 20 water inflow, heating module 20 according to the temperature regulating outlet temperature (95-100 ℃), regulating valve adjustment directly to the water outlet, hot water from the first output pipe 40 outflow.

[0081] Example four:

[0082] The mineralization device of the present embodiment has the function of adjusting calcium, magnesium, sodium, potassium, strontium, metasilicic acid drinking water. Through the second output pipe 50, the outlet water temperature is controllable at 40-60 ℃. According to the different water taking functions, the input temperature, water level and extraction time are different. The water level is controlled by the liquid level sensor. For example, if calcium and magnesium drinking water is extracted, the heating module 20 inputs 45-50 ℃ water temperature into the bottom of the mineralization device, the water level is 30 mm, the time is 2 minutes, and the water volume is 500 ml. If sodium and potassium drinking water is extracted, the heating module inputs 55-60 ℃ water temperature into the middle of the mineralization device, the water level is 50 mm, the time is 3 minutes, and the water volume is 1000 ml. If strontium and metasilicic acid drinking water is extracted, the heating module inputs 65-70 ℃ water temperature into the upper part of the mineralization device, the water level is 100 mm, the time is 4 minutes, and the water volume is 1500 ml.

[0083] Example five:

[0084] Referring to Figure 1 The mineralization part 21 of the present embodiment is three, divided into upper, middle and bottom, respectively, with fixed extraction inner cavity and storage water volume, water taking function, water volume and water temperature (40-65 ℃) are selected by the outlet nozzle. The corresponding electromagnetic valve switch acts. The concentration of each extracted water quality is guaranteed to be above 0.5 mg. The filter core is replaced after the service life reaches 2000 L of water. The filter core can be disassembled and replaced through the structure of the mineralization device.

[0085] Example six:

[0086] The heating module inputs water at 45-50 DEG C into the bottom of the mineralization device, the water level is 30mm, the time is 2 minutes, and the water volume is 500ml; if extracting sodium and potassium drinking water, the heating module inputs water at 55-60 DEG C into the middle of the mineralization device, the water level is 50mm, the time is 3 minutes, and the water volume is 1000ml; if extracting strontium and metasilicic acid drinking water, the heating module inputs water at 65-70 DEG C into the upper part of the mineralization device, the water level is 100mm, the time is 4 minutes, and the water volume is 1500ml;

[0087] The bottom extracts calcium and magnesium components to achieve the best taste; the middle extracts sodium and potassium components to achieve the best taste; the upper part extracts strontium and metasilicic acid components to achieve the best taste, according to the selection of the function of the water, the corresponding best taste of the mineralized water is extracted, the water temperature can be set to adjust the temperature suitable for different seasons and groups, according to the function of the extraction, the temperature and water volume extraction area is automatically entered into the cavity.

[0088] It should be noted that the terms "first", "second", and the like in the description and claims of the application and the above drawings are used to distinguish similar objects, and do not necessarily indicate a specific order or sequence. It should be understood that the data used in this way can be interchanged under appropriate circumstances, so that the embodiments of the application described herein can be implemented in an order other than those illustrated or described herein. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion, for example, a process, method, system, product or device including a series of steps or units does not necessarily limit to those steps or units clearly listed, but can include other steps or units not clearly listed or inherent to these processes, methods, products or devices.

[0089] Alternatively, the specific examples in the embodiments can refer to the examples described in the above embodiments, and the embodiments will not be described here.

[0090] The above application embodiment serial number is only for description, not representing the advantages and disadvantages of the embodiments.

[0091] In the above embodiments of the application, the description of each embodiment has its own emphasis, and the parts not described in detail in a certain embodiment can be referred to the related description of other embodiments.

[0092] The above is only the preferred embodiment of the application, and it should be pointed out that for ordinary skilled in the art, without departing from the principles of the application, a number of improvements and refinements can be made, which should be considered as the protection scope of the application.

Claims

1. A mineralization device, characterized in that, The mineralization device comprises: a tank body (1) having at least two containing cavities (11); a filter core (2) having at least two mineralization parts (21) arranged inside the filter core (2), the at least two mineralization parts (21) being arranged in one-to-one correspondence with the at least two containing cavities (11) so that the drinking water entering the containing cavities (11) flows through the corresponding mineralization parts (21); at least two water supply pipelines (3) in one-to-one correspondence with the at least two containing cavities (11) to introduce drinking water into the corresponding containing cavities (11); a control module for controlling the temperature of the drinking water introduced into each water supply pipeline (3).

2. The mineralization device of claim 1, wherein, The mineralization device further comprises: a partition plate (4) arranged inside the tank body (1) to divide the tank body (1) into the at least two containing cavities (11).

3. The mineralization device of claim 2, wherein, The filter core (2) is provided with a placement cavity for placing mineralization materials, and the partition plate (4) is arranged inside the filter core (2) to divide the filter core (2) into the at least two mineralization parts (21).

4. The mineralization device of claim 2, wherein, The partition plate (4) is movably arranged so as to communicate or isolate two adjacent containing cavities (11) by moving the partition plate (4).

5. The mineralization device of claim 4, wherein, The at least two containing cavities (11) are arranged in sequence in a vertical direction.

6. The mineralization device of claim 1, wherein, The mineralization device further comprises at least two water outlet pipelines (5) in one-to-one correspondence with the at least two containing cavities (11) to lead the drinking water in the corresponding containing cavities (11) out of the tank body (1).

7. The mineralization device of claim 1, wherein, The mineralization device further comprises: a solenoid valve (6) arranged on the water supply pipeline (3); and / or a liquid level sensor arranged in the containing cavity.

8. A water dispenser comprising a mineralization device, characterized in that, The mineralization device is the mineralization device according to any one of claims 1 to 7.

9. The water dispenser of claim 8, wherein, The water dispenser comprises: a water purifier (10) for outputting drinking water; a heating module (20) having a water inlet connected to the water purifier (10) and a water outlet connected to the water supply pipeline (3) of the mineralization device.

10. The water dispenser of claim 9, wherein, The water dispenser further comprises: a heat exchanger (30); a first heat exchange pipeline (31) having one end connected to a pipeline between the water purifier (10) and the heating module (20) and the other end connected to the heat exchanger (30); a second heat exchange pipeline (32) having one end connected to the mineralization device and the other end connected to the heat exchanger (30).

11. The water dispenser of claim 10, wherein, The first heat exchange pipeline (31) comprises: a first pipeline (311) for introducing drinking water into the heat exchanger (30); a second pipeline (312) for leading drinking water out of the heat exchanger (30).

12. The water dispenser of claim 11, wherein, The water dispenser comprises: a first output pipeline (40) connected to the water outlet of the heating module (20); A second output pipeline (50) is connected with the heat exchanger (30); A third output pipeline (60) is connected with the water purifier (10).