Coupler coupling hydrogen kettle
By separating the space inside the kettle body and connecting the coupler, the problem of the installation of the electrolytic hydrogen-making components is solved by the coupling, and the reliable installation of the electrode assembly and the smooth circuit are achieved to ensure the normal operation of the electrolytic kettle.
Patent Information
- Application Number
- CN202421973581.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-15
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2034-08-15
AI Technical Summary
When the electrolytic water-making hydrogen production component in the existing coupler-coupled kettle is installed in the middle of the chassis inside the kettle, it is hindered by the coupler, resulting in difficulty in installation.
The inner space of the pot body is divided into two parts by the bottom plate of the pot body. The upper part of the bottom plate of the pot body is a water container, and the lower part is a pot body support. The pot body is connected to the control base through a coupler. The connecting parts of the electrolytic water electrode assembly are installed at the opening on the bottom plate of the pot body to avoid the coupler, and the electrode assembly is fixed and conductively connected by using conductive connecting parts and screws.
Reliable installation of electrolytic water electrode assembly is achieved, avoiding obstacles to the coupler, ensuring the unobstructed circuit path, and ensuring the normal operation of electrolytic water hydrogen production function.
Smart Images

Figure CN223304231U_ABST
Abstract
Description
Technical Field
[0001] The invention relates to a coupler-coupled hydrogen kettle, belonging to the technical field of water electrolysis. Background Art
[0002] The present invention provides a coupler-coupled hydrogen kettle, which effectively solves the installation problem of the water electrolysis electrode assembly in coupler-coupled hydrogen kettles. Coupler-coupled kettles are currently popular on the market. Upgrading these kettles by adding a water electrolysis hydrogen production function can allow them to enter the hydrogen health and wellness industry, significantly increasing their added value. However, the vast majority of coupler-coupled kettle modifications encounter a technical bottleneck: the water electrolysis hydrogen production component is generally installed in the middle of the kettle's chassis, but the coupler's location below the chassis hinders the implementation of this installation structure. The technology of the present invention is a relatively simple, low-cost, and reliable method to solve this technical problem. Summary of the Invention
[0003] The basic content of the invention is: a coupler coupled hydrogen kettle, which is characterized by: including a kettle body, a kettle body water container, an electrolytic water electrode assembly, an electrolytic water electrode assembly mounting connection component, and a control base; the control base is used to place the kettle body and control the operation of the hydrogen kettle, and the control base has a controlled electrolytic water power supply; the internal space of the kettle body is divided into two parts by the kettle body bottom plate, the space above the kettle body bottom plate is the water container, and the space below the kettle body bottom plate is the kettle body support, the water container has a water filling port, and the water in the container is isolated by the kettle body bottom plate and cannot enter the kettle body support; the kettle body and the control base are connected. The control bases are coupled through a coupler, which is composed of an upper and lower part. The upper part of the coupler is installed in the kettle body support at the bottom of the kettle body, and the lower part of the coupler is installed on the kettle control base. The upper part of the coupler can be inserted into the lower part of the coupler, so that the corresponding contacts of the upper and lower parts of the coupler are connected, that is, the circuit in the control base is connected with the corresponding circuit of the kettle body; a connecting component of the electrolytic water electrode assembly is fixedly installed at the opening on the bottom plate of the kettle body, and the position of the opening avoids the coupler so that it is not hindered by the coupler; the connecting component is conductive, and the connecting component is in a state of being filled with There is no conductive connection between the water container and the bottom plate of the kettle body. The connecting component is fastened to the bottom plate of the kettle body by a fixing screw and a gasket. The fixing screw passes through the bottom plate of the kettle body, connects one of the wires, and connects to the positive pole of the electrolysis water power supply in the control base through the coupler; the connecting component has a screw hole near the center of the bottom plate of the kettle body, and the screw of the positive pole of the electrolysis water electrode assembly can be screwed into and tightened on the screw hole, so that the electrolysis water electrode assembly is fixedly installed on the connecting component, and the screw of the positive pole of the electrode assembly is conductively connected to the connecting component; the sealing gasket isolates the electrical connection between the fixing screw and the bottom plate of the kettle body. The kettle is connected and acts as a water seal to prevent water in the kettle body from leaking into the kettle body holder; the negative pole of the electrolytic water electrode assembly is connected to the bottom plate of the kettle body through the conductive spring and then connected to the negative pole of the electrolytic water power supply through the coupler through the second wire; when the coupler couples the kettle to produce hydrogen water, the power supply path of the electrolytic water electrode assembly is: the positive pole of the electrolytic water power supply → the corresponding port of the coupler → one of the wires → the tightening screw → the connecting component → the positive pole screw of the electrode assembly → the positive pole of the electrode assembly; the negative pole of the electrolytic water power supply → the corresponding port of the coupler → the second wire → the bottom plate of the kettle body → the conductive spring → the negative pole of the electrode assembly.
[0004] Basic technical solution: A coupler coupled hydrogen kettle, characterized by: comprising a kettle body, a kettle body water container, an electrolytic water electrode assembly, an electrolytic water electrode assembly mounting connection component, and a control base; the control base is used to place the kettle body and control the operation of the hydrogen kettle, and the control base has a controlled electrolytic water power supply; the inner space of the kettle body is divided into two parts by the kettle body bottom plate, the upper part of the kettle body bottom plate is the water container, and the lower part of the kettle body bottom plate is the kettle body support, the water container has a water filling port, and the water in the container is isolated by the kettle body bottom plate and cannot enter the kettle body support; the kettle body and the control base are connected. The control bases are coupled through a coupler, which is composed of an upper and lower part. The upper part of the coupler is installed in the kettle body support at the bottom of the kettle body, and the lower part of the coupler is installed on the kettle control base. The upper part of the coupler can be inserted into the lower part of the coupler, so that the corresponding contacts of the upper and lower parts of the coupler are connected, that is, the circuit in the control base is connected with the corresponding circuit of the kettle body; a connecting component of the electrolytic water electrode assembly is fixedly installed at the opening on the bottom plate of the kettle body, and the position of the opening avoids the coupler so that it is not hindered by the coupler; the connecting component is conductive, and the connecting component is in a state of being filled with There is no conductive connection between the water container and the bottom plate of the kettle body. The connecting component is fastened to the bottom plate of the kettle body by a fixing screw and a gasket. The fixing screw passes through the bottom plate of the kettle body, connects one of the wires, and connects to the positive pole of the electrolysis water power supply in the control base through the coupler; the connecting component has a screw hole near the center of the bottom plate of the kettle body, and the screw of the positive pole of the electrolysis water electrode assembly can be screwed into and tightened on the screw hole, so that the electrolysis water electrode assembly is fixedly installed on the connecting component, and the screw of the positive pole of the electrode assembly is conductively connected to the connecting component; the sealing gasket isolates the electrical connection between the fixing screw and the bottom plate of the kettle body. The kettle is connected and acts as a water seal to prevent water in the kettle body from leaking into the kettle body holder; the negative pole of the electrolytic water electrode assembly is connected to the bottom plate of the kettle body through the conductive spring and then connected to the negative pole of the electrolytic water power supply through the coupler through the second wire; when the coupler couples the kettle to produce hydrogen water, the power supply path of the electrolytic water electrode assembly is: the positive pole of the electrolytic water power supply → the corresponding port of the coupler → one of the wires → the tightening screw → the connecting component → the positive pole screw of the electrode assembly → the positive pole of the electrode assembly; the negative pole of the electrolytic water power supply → the corresponding port of the coupler → the second wire → the bottom plate of the kettle body → the conductive spring → the negative pole of the electrode assembly. BRIEF DESCRIPTION OF THE DRAWINGS
[0005] The present invention will be further explained below with reference to the accompanying drawings.
[0006] Figure 1 This is a coupler coupled to a hydrogen kettle in accordance with embodiment 1 of the present invention. DETAILED DESCRIPTION
[0007] The following is in conjunction with Example 1 Figure 1 The basic structure and basic working principle of the embodiment are described.
[0008] Example 1
[0009] like Figure 1The coupler-coupled hydrogen kettle is characterized by comprising a kettle body 2, a water container 7 for the kettle body 2, an electrolytic water electrode assembly 3, a mounting connection component 15 for the electrolytic water electrode assembly 3, and a control base 5; the control base 5 is used to place the kettle body 2 and control the operation of the hydrogen kettle, and the control base 5 has a controlled electrolytic water power supply 14; the internal space of the kettle body 2 is divided into two parts by the kettle body bottom plate 6, the space above the kettle body bottom plate 6 is the water container 7, and the space below the kettle body bottom plate 6 is the kettle body support 8, the water container 7 has a water filling port 9, and the water in the container 7 is isolated by the kettle body bottom plate 6 and cannot enter the kettle body support 8; the kettle body 2 and the control base 5 are coupled via a coupler 10 The coupler 10 is composed of two parts, the upper part 11 of the coupler is installed in the kettle body support 8 at the bottom of the kettle body, and the lower part 12 of the coupler is installed on the kettle control base 5. The upper part 11 of the coupler can be inserted into the lower part 12 of the coupler, so that the corresponding contacts of the upper and lower parts of the coupler are connected, that is, the circuit in the control base 5 is connected to the corresponding circuit of the kettle body 2; a connecting component 15 of the electrolytic water electrode assembly 3 is fixedly installed at the opening 24 on the bottom plate 6 of the kettle body, and the position of the opening 24 avoids the coupler 10 so that it is not obstructed by the coupler 10; the connecting component 15 is conductive, and the connecting component 15 is in the water container 7 and has no conductive connection with the bottom plate 6 of the kettle body. The connecting component 15 is fastened to the bottom plate 6 of the kettle body by a fastening screw 22 and a gasket 25. The fastening screw 22 passes through the bottom plate 6 of the kettle body and connects one of the wires 18. 18 is connected to the positive electrode 20 of the electrolysis water power supply 14 in the control base 5 through the coupler 10. The connecting component 15 has a screw hole 17 near the center of the bottom plate of the kettle body. The screw 16 of the positive electrode 1 of the electrolysis water electrode assembly 3 can be screwed into and tightened on the screw hole 17, and the electrolysis water electrode assembly 3 is fixedly installed on the connecting component 15, and the screw 16 of the positive electrode 1 of the electrode assembly 3 is electrically connected to the connecting component 15. The sealing gasket 23 isolates the electrical connection between the fastening screw 22 and the bottom plate 6 of the kettle body, and serves to The water sealing effect prevents the water in the kettle body 7 from leaking into the kettle body holder 8; the negative electrode 4 of the electrolytic water electrode assembly 3 is connected to the kettle body bottom plate 6 through the conductive spring 13 and then connected to the negative electrode 21 of the electrolytic water power supply through the coupler 10 through the second wire 19; when the coupler couples the kettle to produce hydrogen water, the power supply path of the electrolytic water electrode assembly 3 is: the positive electrode 20 of the electrolytic water power supply 14 → the corresponding port of the coupler 10 → one of the wires 18 → the fastening screw 22 → the connecting component 15 → the positive electrode screw 16 of the electrode assembly 3 → the positive electrode 1 of the electrode assembly; the negative electrode 21 of the electrolytic water power supply → the corresponding port of the coupler 10 → the second wire 19 → the kettle body bottom plate 6 → the conductive spring 13 → the negative electrode 4 of the electrode assembly.
[0010] The present invention is not limited to the specific structural process adopted in Example 1, and can be applied to various water electrolysis devices with the same or equivalent technical features.
Claims
1. A coupler coupled to a hydrogen kettle, characterized by: The invention comprises a kettle body (2), a kettle body water container (7), an electrolytic water electrode assembly (3), an electrolytic water electrode assembly (3) mounting connection component (15), and a control base (5); the control base (5) is used to place the kettle body (2) and control the operation of the hydrogen kettle, and the control base (5) has a controlled electrolytic water power supply (14); the inner space of the kettle body (2) is divided into two spaces by the kettle body bottom plate (6), the space above the kettle body bottom plate (6) is the water container (7), and the space below the kettle body bottom plate (6) is the kettle body support (8), and the water container (7) has a water container. The kettle body (2) and the control base (5) are coupled via a coupler (10). The coupler (10) is composed of two parts, the upper part (11) of the coupler is installed in the kettle body support (8) at the bottom of the kettle body, and the lower part (12) of the coupler is installed on the kettle control base (5). The upper part (11) of the coupler can be inserted into the lower part (12) of the coupler, so that the corresponding contacts of the upper and lower parts of the coupler are connected, that is, the control base (5) is connected. The circuit is connected to the corresponding circuit of the kettle body (2); a connecting component (15) of the electrolytic water electrode assembly (3) is fixedly installed at the opening (24) on the kettle body bottom plate (6), and the opening (24) is located away from the coupler (10) so as not to be obstructed by the coupler (10); the connecting component (15) is conductive, the connecting component (15) is located in the water container (7), and has no conductive connection with the kettle body bottom plate (6), and the connecting component (15) is fixed to the kettle body bottom plate (6) by a fixing screw (22) and a gasket (25), and the fixing screw (22) passes through the kettle body. The bottom plate (6) is connected to one of the wires (18), and one of the wires (18) is connected to the positive electrode (20) of the electrolysis water power supply in the control base (5) through the coupler (10); the connecting component (15) has a screw hole (17) near the center of the bottom plate of the kettle body, and the screw (16) of the positive electrode (1) of the electrolysis water electrode assembly can be screwed into and tightened on the screw hole (17), so that the electrolysis water electrode assembly (3) is fixedly installed on the connecting component (15), and the screw (16) of the positive electrode (1) of the electrolysis water electrode assembly is electrically connected to the connecting component (15); The sealing gasket (23) isolates the electrical connection between the fastening screw (22) and the kettle body bottom plate (6), and plays a water-tight role, so that the water in the kettle body water container (7) will not leak into the kettle body support (8); the negative electrode (4) of the electrolytic water electrode assembly is connected to the kettle body bottom plate (6) through the conductive spring (13) and then connected to the negative electrode (21) of the electrolytic water power supply through the second wire (19) via the coupler (10); when the electric kettle is working to produce hydrogen water, the electrolytic water electrode assembly (3) The power supply path is: positive electrode of the electrolytic water power supply (20) → corresponding port of the coupler (10) → one of the wires (18) → fastening screw (22) → connecting component (15) → positive screw of the electrolytic water electrode assembly (16) → positive electrode of the electrolytic water electrode assembly (1); negative electrode of the electrolytic water power supply (21) → corresponding port of the coupler (10) → second wire (19) → bottom plate of the kettle body (6) → conductive spring (13) → negative electrode of the electrolytic water electrode assembly (4).