Detachable Electrolytic Module for Hydrogen Water Containers
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Solution Overview
Problem
Existing hydrogen water devices have fixed structures and are unable to be used if their internal components or containers are damaged, limiting their convenience and usability.
Innovation Solution
An electrolytic hydrogen-water container with a detachable electrolytic hydrogen-water module that can be mounted into a container with different styles and types, using circular electrodes connected to a power source for electrolysis to generate hydrogen-rich water.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If hydrogen water devices have fixed structure, then the device structure is simple, but the device cannot be used if internal components or container are damaged
Solution Approach 1:
The device is divided into a container and a detachable electrolytic hydrogen-water module. The module can be separated from the container, allowing the container to be replaced or repaired independently without damaging the electrolysis function. This segmentation improves reliability by isolating the critical electrolysis components from the container structure.
Solution Approach 2:
The electrolytic hydrogen-water module is designed with universal mounting interfaces that can be attached to different types of containers. The module serves multiple functions: electrolysis, hydrogen dissolution, and compatibility with various container styles. This universality allows the same module to work with different containers, improving device usability and reducing the need for multiple specialized devices.
2Reliability
If hydrogen water devices have fixed container structure, then the manufacturing process is simple, but the device cannot be used if container is damaged
Solution Approach 1:
The device is segmented into a reusable electrolytic hydrogen-water module and a replaceable container. The container can be manufactured separately using standard processes, and the module is pre-assembled with electrolysis components. This segmentation allows for simpler manufacturing of individual components and easier replacement of damaged containers.
3Ease of operation
If electrolytic hydrogen-water module is made detachable, then the ease of operation is improved, but the device complexity increases
Solution Approach 1:
The detachable module is segmented into distinct components with standardized mounting interfaces. The assembly structure includes a module housing with connection ports and a container with corresponding mounting features. This segmentation enables easy attachment and detachment while maintaining structural integrity through standardized interfaces.
Solution Approach 2:
The electrolytic hydrogen-water module is designed to be nested within the container when attached. The module fits into a designated space within the container, with external mounting features that allow for easy attachment and detachment. This nesting arrangement simplifies the overall structure while maintaining detachability for ease of operation.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
The detachable module allows for easy mounting and use with various container styles, enhancing convenience and reducing the risk of device malfunction due to container damage.
Implementation Method 1
The electrolytic hydrogen-water module generates hydrogen-rich water by electrolysis of water introduced
Data Source
AI summary
An electrolytic hydrogen-water container is provided. The electrolytic hydrogen-water container includes a container and an electrolytic hydrogen-water module. The electrolytic hydrogen-water module generates hydrogen-rich water by electrolysis of water introduced. An assembly part and circular electrodes connected with a power source for conducting electricity are mounted in a bottom of the electrolytic hydrogen-water module while a bottom surface of the container is provided with a through hole for mounting the electrolytic hydrogen-water module. An assembly portion is disposed around the through hole for being connected with the assembly part of the electrolytic hydrogen-water module. Thereby the electrolytic hydrogen-water module can be mounted into the container with different styles and types and the electrolytic hydrogen-water container is more convenient to use.


