Hydrogen-rich kettle

By installing a detection probe and information display module in the hydrogen-rich water bottle, the problem of not being able to obtain the dissolved hydrogen content in the liquid in real time in the existing technology is solved, realizing the real-time display of hydrogen concentration and improving the user experience.

CN223473546UActive Publication Date: 2025-10-28浙江航佳工贸有限公司
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Patent Information

Application Number
CN202423003243.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-06
Publication Date
2025-10-28
Estimated Expiration
2034-12-06

AI Technical Summary

Technical Problem

Existing hydrogen-rich water bottles cannot obtain the dissolved hydrogen content of the liquid in real time, which affects the drinking effect.

Method used

A detection probe and information display module are installed in the hydrogen-rich water container to detect and display the hydrogen content in the liquid in real time, and different light effect information is displayed through LED beads.

Benefits of technology

It enables real-time display of hydrogen concentration in water, making it easier for users to understand the hydrogen content, improving the drinking experience and increasing the product's appeal.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a hydrogen-rich kettle, and belongs to the technical field of household appliances. The device comprises a base and a separable kettle body, the kettle body and the base are electrically coupled through a coupler, a container with an opening in the upper end and used for containing liquid is arranged in the kettle body, a hydrogen production device and a detection probe for detecting the hydrogen content of the liquid are arranged in the container, and the detection probe is electrically connected with an information display module. The information display module can display corresponding information according to different detected hydrogen contents; a heating device used for heating liquid in the cavity and a water inlet connector communicated with the container are further arranged in the kettle body, the water inlet connector is communicated with a water inlet of the water pump through a pipeline, and a water outlet of the water pump is communicated with a water outlet nozzle of the kettle through a pipeline. According to the water kettle, the dissolved hydrogen content of liquid in the water kettle can be displayed in real time through the detection probe and the information display module, and visual hydrogen content information is provided for a user.
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Description

Technical Field

[0001] This utility model relates to the field of household appliance technology, specifically to a hydrogen-rich water kettle. Background Art

[0002] Hydrogen-rich water, as the name suggests, is water rich in hydrogen gas. It is also known as "hydrogen-enriched water." As a selective antioxidant, it has a wide range of applications. In recent years, hydrogen-rich water and hydrogen-enriched water products have become increasingly common in the domestic market, and containers for these products have also appeared.

[0003] Existing technologies already include solutions that integrate hydrogen production and heating functions. For example, electric kettles with hydrogen production and heating functions (publication number CN209678208U) include a kettle body, a hydrogen production device, a heating device, and a connecting base. The kettle body has a base at its bottom, the hydrogen production device is located on the bottom of the kettle body, and the heating device is located in a receiving cavity at the bottom of the hydrogen production device. The connecting base supports the kettle body and has a second connector. This technical solution integrates the hydrogen production device and heating device into a single unit through the covering structure of the kettle body base. The hydrogen production device and heating device are electrically connected to the first connector. When coupled and energized through the second connector on the connecting base, a DC servo output can be provided to both the hydrogen production and heating devices, achieving the effect of both hydrogen production and heating functions. This reasonable integration of hydrogen production and heating functions further improves people's demand for drinking water quality and has broad market potential.

[0004] However, due to factors such as the usage environment, operating method, and kettle structure, existing hydrogen-rich kettles cannot obtain the dissolved hydrogen content of the liquid inside the kettle during use, and the amount of dissolved hydrogen content affects the drinking effect. Utility Model Content

[0005] To address the problem that existing hydrogen-rich water bottles cannot obtain the dissolved hydrogen content of the liquid, this invention provides a hydrogen-rich water bottle that can display the dissolved hydrogen content of the liquid in the bottle in real time through a detection probe and an information display module, providing users with visualized hydrogen content information.

[0006] The present invention adopts the following technical solution:

[0007] A hydrogen-rich water pitcher includes a base and a detachable pitcher body, which are electrically coupled via a coupler. The pitcher body has a container with an opening at the top for holding liquid. The container is equipped with a hydrogen generation device and a detection probe for detecting the hydrogen content of the liquid. The detection probe is electrically connected to an information display module, which can display corresponding information according to the detected hydrogen content.

[0008] The kettle body is also equipped with a heating device for heating the liquid in the heating chamber and a water inlet interface connected to the container. The water inlet interface is connected to the water inlet of the water pump through a pipe, and the water outlet of the water pump is connected to the water outlet of the kettle through a pipe.

[0009] Furthermore, the information display module includes a processing module and a group of LED beads electrically connected to it. The LED beads can generate different light effect information according to different detected hydrogen content. The LED beads are located in the light-transmitting area of ​​the pot body.

[0010] Furthermore, the kettle body has a handle on one side, the information display module is sealed in the handle, and the LED beads are distributed along the vertical direction of the handle.

[0011] Furthermore, the tail of the detection probe is integrally connected with a threaded rod, the diameter of which is smaller than that of the detection probe, and a stop surface is formed at the connection with the detection probe. The threaded rod extends into the through hole of the container wall, and a sealing ring is fitted on the threaded rod. The sealing ring is located between the stop surface and the container wall to form an elastic compression seal. A nut is connected to the threaded rod and is tightly fastened to the outside of the container wall.

[0012] Furthermore, the kettle body also includes a lid that can be closed onto the opening of the container, and a filter cylinder is connected to the bottom of the lid via a detachable structure.

[0013] Furthermore, the detachable structure includes a circular boss located at the bottom of the lid and a filter cylinder opening adapted to the circular boss, the side wall of the cylinder opening having an inwardly convex arc-shaped piece; when the circular boss mates with the cylinder opening, the arc-shaped piece elastically presses against the side wall of the circular boss to form a detachable connection.

[0014] Furthermore, the detachable structure consists of a pair of mutually magnetic magnets located on the lid and the filter cartridge, respectively.

[0015] The advantages of this utility model compared to the prior art are as follows:

[0016] This device incorporates a detection probe and an electrically connected information display module. The display module shows corresponding information based on the detected hydrogen content, allowing users to easily obtain information about the hydrogen concentration in the water and improving drinking experience. Furthermore, by using LED displays, different light effects are emitted according to the detected hydrogen content, adding to the user's enjoyment of the product while providing information about the hydrogen concentration. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the structure of a hydrogen-rich water bottle according to an embodiment of this utility model;

[0018] Figure 2 yes Figure 1 A schematic diagram of the cross-sectional structure;

[0019] Figure 3 yes Figure 2 A magnified view of a portion of point I in the middle;

[0020] Figure 4 yes Figure 2 A magnified view of a section at point II;

[0021] Figure 5 This is a schematic diagram of a detachable structure according to an embodiment of the present utility model.

[0022] Explanation of reference numerals in the attached drawings: 100, vessel body; 101, container; 102, lid; 102a, circular boss; 102b, magnet; 103, handle; 104, spout; 105, outer shell; 106, storage space; 107, water pump; 108, control panel; 109, water inlet; 110, tray; 200, base; 300, hydrogen production device; 400, information display module; 401, processing module; 402, LED bead; 500, detection probe; 501, threaded rod; 502, stop surface; 503, sealing ring; 504, nut; 600, filter cartridge; 601, cartridge opening; 602, arc-shaped plate; 700, heating device. DETAILED DESCRIPTION

[0023] To make this utility model clearer, the following description, in conjunction with the accompanying drawings, further illustrates a hydrogen-rich water jug ​​according to this utility model. The specific embodiments described herein are for illustrative purposes only and are not intended to limit this utility model.

[0024] like Figure 1 , Figure 2As shown, a hydrogen-rich water bottle includes a bottle body 100 and a base 200 with a connector. The bottle body 100 can be placed on the base 200 to form an electrical connection. The electrical connection between the two can be achieved using a conventional coupler method. Specifically, a lower coupler is provided on the upper surface of the base 200 and a lower coupler is provided on the lower bottom surface of the bottle body 100. The upper and lower couplers are correspondingly inserted to form a positioning and also to achieve electrical coupling. The bottle body 100 includes an open-top container 101 for holding drinking liquids (e.g., water). The container 101 can be a cylindrical shape with an open top, formed by bonding a glass cylinder to a metal bottom. The container 101 is installed in a plastic outer shell 105, which covers the bottom and side walls of the container 101. A certain accommodating space 106 exists between the bottom and lower side of the container 101 and the outer shell 105 for accommodating related components. The outer casing 105 also has a viewing hole on its side, allowing observation of the interior area of ​​the container 101. A hinged lid 102 is attached to the opening of the container 101. The body 100 also has a C-shaped handle 103 on one side and a spout 104 on the other side, with a tray 110 below the spout 104.

[0025] A hydrogen production device 300 is provided at the bottom inner side of the container 101. The hydrogen production device 300 produces hydrogen by electrolysis. This structure is conventional technology and has been fully disclosed in patent document CN209678208U, so it will not be described again here. A heating device 700 for heating the liquid inside the chamber and a water inlet 109 communicating with the interior of the container 101 are provided in the containing space 106. Preferably, the heating device 700 and the water inlet 109 are located in the space directly below the container 101. Here, the heating surface of the heating device 700 is attached to the bottom of the container 101 or shared with the bottom of the container 101. The water inlet 109 is connected to the inlet of a water pump 107 in the containing space 106 via a pipe, and the outlet of the water pump 107 is connected to the outlet 104 via a pipe. A control board 108 is also provided in the outer casing 105. The control board 108 is electrically connected to the hydrogen production device 300, the heating device 700 and the water pump 107, and can control the kettle's heating, hydrogen production and water dispensing actions.

[0026] A detection probe 500 is also provided in the container 101. The detection probe 500 is used to detect the hydrogen content in the liquid (water) and is commonly used as the detection head of a hydrogen testing pen in the prior art. The detection end of the detection probe 500 is located inside the container 101, and the other end is located outside the container 101. Its outer end is electrically connected to the information display module 400 via a wire. The information display module 400 is electrically connected to the control board 108, and it can display corresponding information according to the detected hydrogen content.

[0027] Preferably, the information display module 400 includes a processing module 401 and a set of electrically connected LED beads 402. The LED beads 402 can emit different light effects according to different detected hydrogen contents, and the LED beads 402 can be located in the light-transmitting area of ​​the kettle body 100. For example, the information display module 400 is sealed in a handle 103 with a transparent area, and the set of LED beads 402 is distributed along the vertical direction of the handle 103. This allows for a direct display of the range of hydrogen contents in the water and defines the color of the LED beads 402 at different hydrogen concentrations. For example, a hydrogen concentration of 500-800 ppb is displayed as orange, 800-1200 ppb as yellow, and 1200-1400 ppb as green.

[0028] Combination Figure 2 , Figure 3 As shown, to improve the sealing stability between the detection probe and the container, this solution provides the following structure: A threaded rod 501 is integrally connected to the tail of the detection probe 500. The diameter of the threaded rod 501 is smaller than the diameter of the detection probe 500 body. A stop surface 502 is formed at the connection between the threaded rod 501 and the detection probe. The threaded rod 501 extends into a through hole in the side wall of the container 101. A sealing ring 503 is fitted onto the threaded rod 501. The sealing ring 503 is located between the stop surface 502 and the container 101 wall, forming an elastic compression that ensures both sides of the sealing ring are sealed and fitted to the corresponding contact surfaces. A nut 504 is connected to the threaded rod 501 and is tightly fastened to the outside of the container 101 wall. Considering the operating environment and lifespan of the sealing ring 503, a high-temperature resistant food-grade silicone material is preferably used for the sealing ring 503.

[0029] Furthermore, since the ozone generated by the electrolytic hydrogen production method may affect the taste of the drink, this embodiment also provides a filter cartridge 600, which can be filled with substances to optimize the taste. For ease of use, the filter cartridge 600 is detachably connected to the lid 102, and the filter cartridge 600 can extend into the container 101 and come into contact with the liquid.

[0030] In some implementations, such as Figure 2 , Figure 4 As shown, the detachable structure includes a circular boss 102a located at the bottom of the lid 102 and a filter cylinder 600 with an opening 601 that matches the circular boss 102a. The side wall of the opening 601 has an inwardly convex arc-shaped piece 602, which can be formed by metal stamping. When the circular boss 102a matches the shape of the opening 601 of the filter cylinder 600, the arc-shaped piece 602 elastically presses against the side wall of the circular boss 102a, thereby forming a detachable connection.

[0031] In other embodiments, combined Figure 5As shown, the detachable structure consists of a magnet 102b located inside the lid 102 and another magnet covering the filter cartridge 600. The pair of magnets attract each other, thereby making the filter cartridge 600 detachably connected to the bottom of the lid 102.

[0032] During operation, this device heats the liquid in container 101 to produce hydrogen. The detection probe 500 transmits the detection information to the information display module 400 for processing, and the corresponding hydrogen concentration is displayed through the color change of the LED bead 402. In addition, this device is equipped with a detachable filter cartridge 600, which facilitates the insertion and replacement of filter elements to improve taste and enhance product performance.

[0033] The above embodiments of this utility model are merely examples for clearly illustrating the present utility model, and are not intended to limit the implementation of the present utility model. Those skilled in the art can make other variations or modifications based on the above description. It is neither necessary nor possible to exhaustively list all embodiments here. However, obvious variations or modifications derived from the essential spirit of this utility model still fall within the protection scope of this utility model.

Claims

1. A hydrogen-rich water pitcher, comprising a base (200) and a detachable pitcher body (100), wherein the pitcher body (100) and the base (200) are electrically coupled via a coupler, and the pitcher body (100) has a container (101) with an opening at the top for containing liquid, characterized in that: The container (101) is equipped with a hydrogen production device (300) and a detection probe (500) for detecting the hydrogen content of the liquid. The detection probe (500) is electrically connected to an information display module (400), and the information display module (400) can display corresponding information according to the different hydrogen contents detected. The kettle body (100) is also provided with a heating device (700) for heating the liquid in the heating chamber and a water inlet (109) connected to the container (101). The water inlet (109) is connected to the water inlet of the water pump (107) through a pipe, and the water outlet of the water pump (107) is connected to the water outlet (104) of the kettle through a pipe.

2. The hydrogen-rich water jug ​​according to claim 1, characterized in that: The information display module (400) includes a processing module (401) and a set of LED beads (402) electrically connected to each other. The LED beads (402) can generate different light effect information according to the different hydrogen content detected. The LED beads (402) are located in the light-transmitting area of ​​the pot body (100).

3. A hydrogen-rich water pitcher according to claim 2, characterized in that: The kettle body (100) has a handle (103) on one side, the information display module (400) is sealed in the handle (103), and the lamp beads (402) are distributed along the vertical direction of the handle (103).

4. A hydrogen-rich water jug ​​according to claim 3, characterized in that: The tail of the detection probe (500) is integrally connected with a threaded rod (501). The diameter of the threaded rod (501) is smaller than that of the detection probe (500), and a stop surface (502) is formed at the connection with the detection probe (500). The threaded rod (501) extends into the through hole of the container (101) wall. A sealing ring (503) is fitted on the threaded rod (501). The sealing ring (503) is located between the stop surface (502) and the container (101) wall to form an elastic compression seal. A nut (504) is connected to the threaded rod (501). The nut (504) is tightly fastened to the outside of the container (101) wall.

5. A hydrogen-rich water jug ​​according to claim 1 or 2, characterized in that: The pot body (100) also includes a lid (102) that can be closed on the opening of the container (101), and the bottom of the lid (102) is connected to a filter cylinder (600) via a detachable structure.

6. A hydrogen-rich water jug ​​according to claim 5, characterized in that: The detachable structure includes a circular boss (102a) located at the bottom of the lid (102) and a filter cylinder (600) with a cylinder opening (601) adapted to the circular boss (102a). The side wall of the cylinder opening (601) has an inwardly convex arc-shaped piece (602). When the circular boss (102a) is engaged with the cylinder opening (601), the arc-shaped piece (602) elastically presses against the side wall of the circular boss (102a) to form a detachable connection.

7. A hydrogen-rich water jug ​​according to claim 5, characterized in that: The detachable structure is a pair of magnets (102b) that attract each other, located on the lid (102) and the filter cartridge (600) respectively.

Citation Information

Patent Citations

  • Electric kettle with heating hydrogen production function

    CN209678208U