Faucet device and mineral spring mineralization water purification equipment

By incorporating a pre-filter and a mineralization filter into the faucet, and combining this with a control valve to switch water paths, the problem of existing faucets being unable to switch functional water qualities has been solved, achieving convenient operation and cost reduction.

CN223635400UActive Publication Date: 2025-12-05GUANGDONG LIZI TECH CO LTD
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Patent Information

Application Number
CN202423177681.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-12-05
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

Existing faucets are designed with a single water outlet, making it impossible to switch between different water quality functions according to user needs. Installing multiple filter cartridges is difficult, especially on narrow countertops, resulting in a poor user experience.

Method used

Design a faucet device with a built-in pre-filter and mineralization filter. Switch between the first and second water paths via a control valve to achieve different water quality settings. The mechanical valve facilitates operation and simplifies installation.

Benefits of technology

Users can switch between different water circuits as needed to meet various usage requirements, avoid installing multiple faucets, extend the life of the mineral filter, and reduce operating costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of faucets, in particular to a faucet device and mineral spring mineralization water purification equipment. The faucet device comprises a faucet body which is provided with a water inlet connector and a water outlet channel, a filter element component is arranged in the faucet body, and the filter element component comprises a front filter body and a mineralization filter body; a first water path and a second water path are arranged in the faucet main body and are both arranged between the water inlet connector and the water outlet channel; the first water path only flows through the mineralization filter body or sequentially flows through the front filter body and the mineralization filter body, and the second water path does not flow through the front filter body and the mineralization filter body or only flows through the front filter body, so that a user can switch different water paths as required to meet different use requirements, and a plurality of faucets are not required to be mounted; meanwhile, the service life of the mineralized filter body can be prevented from being too short, and the use cost of a user is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of faucet, concretely relates to a faucet device and mineralized water purification equipment. BACKGROUND

[0002] The faucet used in the market at present is mostly single-path water outlet design. In the prior art, some faucets are connected with single-function filter cartridges for removing impurities in water, but cannot switch different water outlet modes according to the needs of users, and users cannot switch different functional water qualities on one faucet. In particular, the filter cartridges for filtering and the filter cartridges for dissolving mineralizing substances into water flow generally need to be provided with two different faucets respectively, which is inconvenient to install, especially in some narrow countertops, which is more difficult to install. SUMMARY

[0003] Therefore, the utility model provides a faucet and mineralized water purification equipment, which can switch different functional water qualities on one faucet and is convenient to install.

[0004] The utility model provides the following technical scheme:

[0005] A faucet device, comprising a faucet main body, the faucet main body is provided with a water inlet connecting port and a water outlet channel, a filter cartridge component is arranged in the faucet main body, the filter cartridge component comprises a prefilter body and a mineralizing filter body, a first water channel and a second water channel are arranged in the faucet main body, the first water channel and the second water channel are arranged between the water inlet connecting port and the water outlet channel, the first water channel only flows through the mineralizing filter body or flows through the prefilter body and the mineralizing filter body in sequence, and the second water channel does not flow through the prefilter body and the mineralizing filter body or only flows through the prefilter body.

[0006] The faucet main body is connected with a control valve for switching any one of the first water channel and the second water channel to be conducted with the water outlet channel and the water inlet connecting port at the same time.

[0007] Optionally, the control valve is a mechanical valve or an electric control valve.

[0008] Optionally, the faucet main body comprises a longitudinal pipe body and a transverse water outlet part, one end of the transverse water outlet part is connected to the longitudinal pipe body, the other end of the transverse water outlet part is provided with a water outlet port, the water outlet port is communicated with the water outlet channel, the control valve comprises a mechanical valve body and a mechanical control part, the mechanical valve body is arranged in the faucet main body, the mechanical valve body is connected to the water outlet channel, the mechanical valve body is also connected to the first water channel and the second water channel, the mechanical control part at least partially extends out of the faucet main body, the mechanical control part is connected to the mechanical valve body and is used for on-off control or flow control of the first water channel and the second water channel.

[0009] Optionally, the pre-filter and the mineralization filter are integrally arranged or separately arranged.

[0010] Optionally, the filter core component further comprises a filter core shell, the pre-filter and the mineralization filter are arranged in the filter core shell, one end of the filter core shell is provided with a first water outlet interface and a second water outlet interface, the first water outlet interface and the second water outlet interface are respectively connected to two water inlet ends of the control valve, and a water outlet end of the control valve is connected to the water outlet channel.

[0011] Optionally, the other end of the filter core shell is provided with a water inlet interface, at least the mineralization filter is arranged between the water inlet interface and the first water outlet interface, and at least the pre-filter is arranged between the water inlet interface and the second water outlet interface.

[0012] Optionally, the pre-filter is in a cylindrical shape, the water inlet interface is communicated with the outside of the pre-filter, the inside of the pre-filter has a central channel, and the central channel is communicated with the second water outlet interface through a central pipe.

[0013] The mineralization filter is in a cylindrical shape, the water inlet interface is communicated with the outside of the pre-filter, and the first water outlet interface is communicated with an internal channel of the mineralization filter.

[0014] Optionally, the mineralization filter and the pre-filter are coaxially arranged in an upper and lower mode along the axial direction of the filter core shell, an end cover is arranged between the mineralization filter and the pre-filter, one end of the central pipe is fixedly connected to the end cover, the other end of the central pipe is communicated with the second water outlet interface, the mineralization filter is sleeved outside the central pipe, the inside of the mineralization filter and the outside of the central pipe have a mineralized water flow channel, and the mineralized water flow channel is communicated with the first water outlet interface.

[0015] Optionally, the faucet device is provided with a water quality information acquisition module for acquiring the PH value and / or TDS value of water flow, the water quality information acquisition module comprises first and second sensors arranged upstream and downstream of the filter core component respectively, and the faucet device is connected with a display screen assembly for displaying the PH value and / or TDS value.

[0016] The utility model also provides a mineral spring mineralization water purification equipment, the mineral spring mineralization water purification equipment includes above-mentioned faucet device, still includes purifier, and the water inlet connecting port of faucet device is connected to the water outlet interface of purifier.

[0017] The utility model provides a kind of faucet device and mineralized water purification equipment of mineral spring, the faucet main part is provided with water inlet connection and water outlet passage, the filter core component is arranged in the faucet main part, the filter core component includes pre-filter body and mineralization filter body;First waterway and second waterway are arranged in the faucet main part, and the first waterway and the second waterway are both arranged between the water inlet connection and the water outlet passage;The first waterway only flows through the mineralization filter body or successively flows through the pre-filter body and mineralization filter body, and the second waterway does not flow through the pre-filter body and mineralization filter body or only flows through the pre-filter body, and any one of the first waterway and the second waterway is switched to the control valve by control valve with the water outlet passage, water inlet connection simultaneously conduction control valve, to realize so that the first waterway flows through mineralization filter body and obtains mineral spring, and it can be realized that the second waterway only flows through pre-filter body and obtains domestic water, user can switch different waterway according to need, satisfy different use demand, need not to install multiple faucets, while mineralization filter body's service life can be avoided to be too short, it is favorable to reduce user's use cost. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to more clearly illustrate the technical scheme of the embodiments of the utility model, the following will be briefly introduced to the drawing needed to be used in implementation, obviously, the drawing in the following description is some implementation of the utility model, for ordinary skilled person in the art, under the premise of not paying creative labor, other drawings can also be obtained according to these drawings.

[0019] Figure 1 The three-dimensional assembly schematic diagram of the faucet device provided by the embodiments of the utility model is shown in the figure.

[0020] Figure 2 The three-dimensional cross-sectional schematic diagram of the faucet device provided by the embodiments of the utility model is shown in the figure.

[0021] Figure 3 The three-dimensional exploded schematic diagram of the faucet device provided by the embodiments of the utility model is shown in the figure.

[0022] Figure 4 The three-dimensional exploded cross-sectional schematic diagram of the faucet device provided by the embodiments of the utility model is shown in the figure.

[0023] Figure 5 Another three-dimensional cross-sectional schematic diagram of the faucet device provided by the embodiments of the utility model is shown in the figure.

[0024] Figure 6 The three-dimensional cross-sectional schematic diagram of the filter core component in the faucet device provided by the embodiments of the utility model is shown in the figure. DETAILED DESCRIPTION

[0025] Clearly, the described embodiments are merely a part of the embodiments of the present application, but not all the embodiments. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0026] The terms "first", "second", and the like in the description and claims of the present application and the above drawings are used to distinguish different objects, and are not used to describe a specific order. 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 is not limited to the listed steps or units, but can optionally include steps or units not listed or can optionally include other steps or units inherent to the process, method, product or device.

[0027] In this document, the term "embodiment" or "implementation" means that the specific features, structures or characteristics described in connection with the embodiment or implementation can be included in at least one embodiment of the present application. The appearance of this phrase in various places in the specification does not necessarily refer to the same embodiment, nor is it mutually exclusive or alternative to other embodiments. It is explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.

[0028] At present, the water faucet used in the market is mostly designed as single-way water outlet. In the prior art, some water faucets are connected with single-function filter cartridges for removing impurities in water, but cannot switch different water outlet modes according to the needs of users, and users are difficult to switch different functional water quality on one water faucet. Especially, the filter cartridges for filtering and the filter cartridges for dissolving mineral substances into water flow generally need to be respectively provided with two different faucets, which are inconvenient to install, especially in some narrow countertops, the installation is more difficult, and the user experience is poor.

[0029] In view of this, the present embodiment provides a water faucet device, such as Figures 1 to 6As shown, the faucet body 100 is provided with a water inlet connecting port 101 and a water outlet channel 102, the faucet body 100 is provided with a filter core component 300, the filter core component 300 comprises a pre-filter body 310 and a mineralization filter body 320; the faucet body 100 is provided with a first water channel and a second water channel, both of which are arranged between the water inlet connecting port 101 and the water outlet channel 102; the first water channel only flows through the mineralization filter body 320 or flows through the pre-filter body 310 and the mineralization filter body 320 in sequence, and the second water channel does not flow through the pre-filter body 310 and the mineralization filter body 320 or only flows through the pre-filter body 310; the faucet body 100 is connected with a control valve 400 for switching any one of the first water channel and the second water channel to be conducted with the water outlet channel 102 and the water inlet connecting port 101 at the same time. The faucet body 100 is provided with a water inlet connecting port 101 and a water outlet channel 102, the faucet body 100 is provided with a filter core component 300, the filter core component 300 comprises a pre-filter body 310 and a mineralization filter body 320; the faucet body 100 is provided with a first water channel and a second water channel, both of which are arranged between the water inlet connecting port 101 and the water outlet channel 102; the first water channel only flows through the mineralization filter body 320 or flows through the pre-filter body 310 and the mineralization filter body 320 in sequence, and the second water channel does not flow through the pre-filter body 310 and the mineralization filter body 320 or only flows through the pre-filter body 310, and the control valve 400 is used to switch any one of the first water channel and the second water channel to be conducted with the water outlet channel 102 and the water inlet connecting port 101 at the same time, so that the first water channel flows through the mineralization filter body 320 to obtain mineral water, and the second water channel only flows through the pre-filter body 310 to obtain domestic water, the user can switch different water channels according to needs to meet different use requirements, multiple faucets do not need to be installed, the service life of the mineralization filter body 320 can be avoided to be too short, and the use cost of the user can be reduced.

[0030] Optionally, the control valve 400 is a mechanical valve, the user can manually control the water outlet channel, which is easy to use, compared with complex electric control operation, children and the elderly can also easily master the use method, and the mechanical control valve 400 has the advantages of reliability and low cost, and the faucet can be installed without being connected to electricity, which further facilitates installation.

[0031] Optionally, the faucet body 100 comprises a longitudinal pipe body 110 and a transverse water outlet 120, one end of the transverse water outlet 120 is connected to the longitudinal pipe body 110, the other end of the transverse water outlet 120 is provided with a water outlet, the water outlet is in communication with the water outlet channel 102, the control valve 400 comprises a mechanical valve body and a mechanical control part, the mechanical valve body is arranged in the faucet body 100, the mechanical valve body is connected to the water outlet channel 102, the mechanical valve body is also connected to the first waterway and the second waterway, the mechanical control part at least partially extends out of the faucet body 100, the mechanical control part is connected to the mechanical valve body, and is used for on-off control or flow control of the first waterway and the second waterway. Optionally, the mechanical control part can be a knob type, handle type or key type structure.

[0032] Optionally, the pre-filter 310 and the mineralization filter 320 are integrally arranged or separately arranged, and the pre-filter 310 and the mineralization filter 320 can both be in the form of a carbon rod. In the embodiment, the mineralization filter 320 and the pre-filter 310 are arranged in an upper-lower split manner. Of course, in some embodiments, the mineralization filter 320 and the pre-filter 310 can also be arranged in an upper-lower integral manner or an inner-outer integral manner.

[0033] Optionally, the filter core component 300 further comprises a filter core shell 330, the pre-filter 310 and the mineralization filter 320 are arranged in the filter core shell 330, forming an assembly type filter core component 300, so as to facilitate maintenance and overall replacement of the filter core component 300. One end of the filter core shell 330 is provided with a first water outlet interface 331 and a second water outlet interface 332, the first water outlet interface 331 and the second water outlet interface 332 are respectively connected to two water inlet ends of the control valve 400, and a water outlet end of the control valve 400 is connected to the water outlet channel 102. Of course, in some applications, the mineralization filter 320 and the pre-filter 310 can also be respectively packaged in different filter shells, and the two filter shells are respectively connected in series to the first waterway and the second waterway.

[0034] Optionally, the other end of the filter core shell 330 is provided with a water inlet interface 333, the water inlet interface 333 and the first water outlet interface 331 at least pass through the mineralization filter 320, the first waterway can be used for mineralized water to flow through, and the water inlet interface 333 and the second water outlet interface 332 at least pass through the pre-filter 310, the second waterway can be used for domestic water to flow through.

[0035] Optionally, the pre-filter 310 is in a cylindrical shape, the water inlet 333 is communicated with the outside of the pre-filter 310, the inside of the pre-filter 310 has a central passage, the central passage is communicated with the second water outlet 332 through the central tube 340; the mineralization filter 320 is in a cylindrical shape, the water inlet 333 is communicated with the outside of the pre-filter 310, and the first water outlet 331 is communicated with the internal passage of the mineralization filter 320. The water inlet 333 and the first water outlet 331 only pass through the mineralization filter 320, and do not pass through the pre-filter 310. The water inlet 333 and the second water outlet 332 only pass through the pre-filter 310, and do not pass through the mineralization filter 320. In daily water, for example, when washing vegetables and fruits, daily water can be used, so that all water passes through the mineralization filter 320, and the design is more conducive to prolonging the service life of the mineralization filter 320.

[0036] Optionally, the mineralization filter 320 and the pre-filter 310 are coaxially arranged along the axial direction of the filter core shell 330, an end cover 350 is arranged between the mineralization filter 320 and the pre-filter 310, the end cover 350 is fixedly connected to one end of the central tube 340, the other end of the central tube 340 is communicated with the second water outlet 332, the mineralization filter 320 is sleeved outside the central tube 340, and the inside of the mineralization filter 320 and the outside of the central tube 340 have a mineralized water flow passage communicated with the first water outlet 331. The structure is ingenious, the mineralization filter 320 and the pre-filter 310 are integrated in the same filter core shell 330, different water paths are designed, the water inlet 333 and the first water outlet 331 pass through the mineralization filter 320 and do not pass through the pre-filter 310. The water inlet 333 and the second water outlet 332 pass through the pre-filter 310 and do not pass through the mineralization filter 320.

[0037] The utility model also provides a kind of mineral spring mineralization water purification equipment, the mineral spring mineralization water purification equipment includes the faucet device described above, and further include water purifier, and the water inlet connection 101 of the faucet device is connected to the water outlet of the water purifier.

[0038] The utility model provides a kind of faucet device and mineralized water purification equipment of mineral spring, the faucet main body 100 is provided with water inlet connection 101 and outlet passage 102, the filter element component 300 is arranged in the faucet main body 100, the filter element component 300 includes pre-filter body 310 and mineralization filter body 320;The first waterway and second waterway are arranged in the faucet main body 100, and the first waterway and second waterway are both arranged between the water inlet connection 101 and outlet passage 102;The first waterway only flows through the mineralization filter body 320 or successively flows through the pre-filter body 310 and mineralization filter body 320, and the second waterway does not flow through the pre-filter body 310 and mineralization filter body 320 or only flows through the pre-filter body 310, and any one of the first waterway and second waterway is switched to the control valve 400 with the outlet passage 102, water inlet connection 101 simultaneously conducting control valve 400, to realize so that the first waterway flows through mineralization filter body 320 and obtains mineral spring, and it can be realized that the second waterway only flows through pre-filter body 310 and obtains domestic water, and user can switch different waterway according to need, satisfy different use demand, without installing multiple faucets, while mineralization filter body 320's service life can be avoided to be too short, conducive to reducing user's use cost.

[0039] In specific application, the mineralization filter body 320 can be an integrally-formed carbon rod filter body, or the first filter material 110 and the second filter material 120 can be in a cylindrical shape and connected in a sleeved manner, and the flow of the mineralized waterway can flow through the first filter material 110 and the second filter material 120 in a radial direction.

[0040] As the first optional solution of the mineralization filter body 320, the mineralization filter body 320 includes a first filter material and a second filter material. The first filter material can be a zinc-containing filter material, and the second filter material can be a weakly alkaline filter material. Both the first filter material and the second filter material can be in a cylindrical shape, the first filter material is sleeved on the outside of the second filter material, and the flow of water can flow from the outside of the first filter material to the inside of the second filter material, i.e., the flow of the first waterway flows through the first filter material and the second filter material in sequence. The first filter material can dissolve zinc ions in water, the second filter material can be a weakly alkaline filter material, the mineralization filter body 320 can provide weakly alkaline water containing zinc, when the first waterway is connected and water is discharged, when the flow of the first waterway flows through the first filter material and the second filter material in sequence, the zinc element of the first filter material can be normally dissolved, when the faucet is closed, the water in the filter element shell 330 cannot be discharged, and the first filter material and the second filter material are in a soaking state, when the mineralization filter body 320 is in the soaking state, if the soaking water is pure water or tap water, the amount of zinc element dissolved in a certain period of time will exceed the safety limit value of the national standard, i.e., the zinc concentration of the soaking water does not meet the drinking standard. By setting the second filter material as an alkaline filter material, the soaking water can be weakly alkaline, thereby inhibiting the excessive dissolution of the zinc element in the first filter material, and the zinc concentration in the soaking water also meets the national standard. Taking smithsonite as an example of the mineralization filter material in the first filter material, the dissolution reaction of smithsonite in water is: ZnCO3=Zn2+ +CO3 2- 。Zn 2+ The saturated solubility in pure water can reach 6.0 mg / L, far exceeding the limit of 1.0 mg / L of the national standard; when the water quality does not change, Zn 2+ and CO3 2- are precipitated synchronously, and the concentration of CO3 2- is controlled at the minimum level, so that the saturated precipitation concentration of Zn 2+ is controlled at a lower level; when the pH value is about 8.3, the concentration of CO3 2- is at the minimum level, and at this time, the immersion water concentration of Zn 2+ is also at the minimum level, which is 0.36 mg / L in theoretical calculation, meeting the standard limit. By setting the second filter material, the PH value of the water in the immersion filter core can be adjusted to about 8.3, which can avoid the zinc element in the water from exceeding the set range under the immersion condition. By using the mechanism of inhibiting the dissolution of zinc element in alkaline water, the zinc element can be normally dissolved in the mineralized water flow (normal water flow), and the technical difficulty of zinc element exceeding the standard caused by the immersion of the zinc-containing filter material is overcome.

[0041] As the second optional scheme of the mineralization filter body 320, the mineralization filter body 320 can be an alkaline filter core, which can form weak alkaline drinking water in the first water path. In the embodiment, the first filter material is a strong alkaline filter material, and the second filter material is a weak alkaline filter material. The strong alkaline filter material has an inhibiting effect on the dissolution of the alkaline mineralization of the weak alkaline filter material, which is beneficial to improve the overall service life of the mineralization filter body 320. The water flow flows through the first mineralization filter material 110, and the PH value of the outlet water is relatively high, which can meet the design requirement that the PH value is between 7 and 9 in the early stage. However, because of the fast dissolution, it is difficult to meet the requirement of the alkaline water quality requirement interval in the later stage. The weak alkaline material in the second mineralization filter material 120 forms weak alkaline outlet water, and the initial PH value is relatively low. The weak alkaline material itself has a slow dissolution rate and poor alkalization water quality ability. However, because the weak alkaline material on the surface is gradually dissolved, the pores in the weak alkaline material gradually become connected from being closed. The water flow can not only pass through the weak alkaline material surface, but also pass through the weak alkaline material inside, which improves the contact area of water molecules and the weak alkaline material and improves the dissolution rate of the alkaline material. Therefore, the PH value can meet the alkaline water quality requirement interval in the later stage. The problem of low service life of a single alkaline filter material is overcome, the design purpose of long service life of the mineralization filter body 320 is well met, and the PH value of the outlet water can meet the set interval range in the whole service life interval. The shortcomings of a single alkaline filter material are overcome, and the use cost of the user is reduced.

[0042] In a specific application, the faucet device can be provided with a water quality information acquisition module, which is arranged on the first waterway and is used to acquire the PH value or TDS value of the first waterway, and can include a first sensor and a second sensor; the first sensor is arranged upstream of the filter element component 300 (e.g., the water inlet channel), and is used to acquire the PH value and / or TDS value of the water flow; the second sensor is arranged downstream of the filter element component 300 (e.g., the water outlet channel 102), and is used to acquire the PH value and / or TDS value of the water outlet flow. The faucet device can be connected with a display screen assembly, which can be provided with a first display area and a second display area; the first display area is used to display the PH value and / or TDS value of the water inlet flow, and the second display area is used to display the PH value and / or TDS value of the water outlet flow; the user can directly experience the dynamic change of the PH value and / or TDS value of the water inlet and outlet, and the user experience is better.

[0043] In a specific application, the pre-filter body 310 can be a pure carbon rod or a ceramic filter body, or can be a carbon fiber filter body or a granular carbon filter body, and can be used to adsorb impurities in water and remove odors.

[0044] The utility model discloses still provide a kind of mineral water mineralization water purification equipment, the mineral water mineralization water purification equipment includes above-mentioned faucet device, still including water purifier, the water inlet connection 101 of faucet device is connected in the water outlet interface of the water purifier by water inlet channel.The faucet main body 100 is provided with water inlet connection 101 and water outlet channel 102, the filter element component 300 is arranged in the faucet main body 100, and the filter element component 300 includes pre-filter body 310 and mineralization filter body 320;The first waterway and the second waterway are arranged in the faucet main body 100, and the first waterway and the second waterway are both arranged between the water inlet connection 101 and the water outlet channel 102;The first waterway only flows through the mineralization filter body 320 or successively flows through the pre-filter body 310 and mineralization filter body 320, and the second waterway does not flow through the pre-filter body 310 and mineralization filter body 320 or only flows through the pre-filter body 310, and any one of the first waterway and the second waterway is switched to the control valve 400 with the water outlet channel 102, water inlet connection 101 simultaneously conduction control valve 400, to realize so that the first waterway flows through mineralization filter body 320 and obtains mineral water, and can realize that the second waterway only flows through pre-filter body 310 and obtains domestic water, user can switch different waterway according to need, satisfy different use demand, without installing multiple faucets, when using domestic water, water flow does not pass through mineralization filter body 320, can avoid that the service life of mineralization filter body 320 is too short, facilitate to reduce the use cost of user.

[0045] In the present utility model, the "embodiment" "embodiment" means that the specific features, structures or characteristics described in combination with the embodiment can be contained in at least one embodiment of the present utility model. The appearance of the phrase in the specification is not necessarily all referring to the same embodiment, nor is it an independent or alternative embodiment that is not mutually exclusive with other embodiments. It is explicitly and implicitly understood by those skilled in the art that the embodiments described in the present utility model can be combined with other embodiments. Furthermore, it should be understood that the features, structures or characteristics described in the embodiments of the present utility model can be combined with each other without contradiction, forming another embodiment that does not depart from the spirit and scope of the technical scheme of the present utility model.

[0046] Finally, it should be noted that the above embodiments are only used to illustrate the technical scheme of the present utility model and are not limited. Although the present utility model has been described in detail with reference to the above preferred embodiments, it should be understood by those skilled in the art that the technical scheme of the present utility model can be modified or replaced by the same without departing from the spirit and scope of the technical scheme of the present utility model.

Claims

1. A faucet device, characterized by, The faucet body is provided with a water inlet connecting port and a water outlet channel, a filter core component is arranged in the faucet body, the filter core component comprises a pre-filter body and a mineralization filter body, a first water channel and a second water channel are arranged in the faucet body, the first water channel and the second water channel are arranged between the water inlet connecting port and the water outlet channel, the first water channel only flows through the mineralization filter body or flows through the pre-filter body and the mineralization filter body in sequence, and the second water channel does not flow through the pre-filter body and the mineralization filter body or only flows through the pre-filter body. The faucet body is connected with a control valve for switching any one of the first water channel and the second water channel to be in conduction with the water outlet channel and the water inlet connecting port at the same time.

2. The faucet device of claim 1, wherein, The control valve is a mechanical valve.

3. The faucet device of claim 1, wherein, The faucet body comprises a longitudinal pipe body and a transverse water outlet part, one end of the transverse water outlet part is connected to the longitudinal pipe body, the other end of the transverse water outlet part is provided with a water outlet port, the water outlet port is in communication with the water outlet channel, the control valve comprises a mechanical valve body and a mechanical control part, the mechanical valve body is arranged in the faucet body, the mechanical valve body is connected to the water outlet channel, the mechanical valve body is also connected to the first water channel and the second water channel, the mechanical control part at least partially extends out of the faucet body, the mechanical control part is connected to the mechanical valve body and is used for on-off control or flow control of the first water channel and the second water channel.

4. The faucet device of claim 3, wherein, The pre-filter body and the mineralization filter body are integrally arranged or separately arranged.

5. The faucet device of claim 1, wherein, The filter core component further comprises a filter core shell, the pre-filter body and the mineralization filter body are arranged in the filter core shell, one end of the filter core shell is provided with a first water outlet interface and a second water outlet interface, the first water outlet interface and the second water outlet interface are respectively connected to two water inlet ends of the control valve, and a water outlet end of the control valve is connected to the water outlet channel.

6. The faucet device of claim 5, wherein, The other end of the filter core shell is provided with a water inlet interface, at least the mineralization filter body passes between the water inlet interface and the first water outlet interface, and at least the pre-filter body passes between the water inlet interface and the second water outlet interface.

7. The faucet device of claim 6, wherein, The pre-filter body is in a cylindrical shape, the water inlet interface is in communication with the outside of the pre-filter body, the inside of the pre-filter body has a central channel, and the central channel is in communication with the second water outlet interface through a central pipe. The mineralization filter body is in a cylindrical shape, the water inlet interface is in communication with the outside of the pre-filter body, and the first water outlet interface is in communication with an internal channel of the mineralization filter body.

8. The faucet device of claim 7, wherein, The mineralization filter body and the pre-filter body are coaxially arranged in an axial direction of the filter core shell, an end cover is arranged between the mineralization filter body and the pre-filter body, one end of the central pipe is fixedly connected to the end cover, the other end of the central pipe is in communication with the second water outlet interface, the mineralization filter body is sleeved outside the central pipe, the inside of the mineralization filter body and the outside of the central pipe have a mineralized water flow channel, and the mineralized water flow channel is in communication with the first water outlet interface.

9. The faucet device of claim 1, wherein, The water faucet device is provided with a water quality information acquisition module for acquiring PH value and / or TDS value of water flow, the water quality information acquisition module comprises a first sensor and a second sensor arranged respectively on upstream and downstream of the filter core component, and the water faucet device is connected with a display screen assembly for displaying PH value and / or TDS value.

10. A mineral spring mineralization water purification device, characterized by, The mineral spring mineralization water purification equipment comprises the water faucet device according to any one of claims 1-9, and further comprises a water purifier, and a water inlet connecting port of the water faucet device is connected to a water outlet interface of the water purifier.