Multi-Stage Magnetized Water Rotor Layout for Higher Field Exposure
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Solution Overview
Problem
Conventional magnetized water generators have low magnetization efficiency due to insufficient contact of water with magnets, as water passes through instantaneously and lacks exposure to a magnetized space.
Innovation Solution
A multi-stage magnetized water generator with rotors equipped with magnets that rotate water in opposite directions, creating complex magnetic field lines through repulsive and attractive forces to enhance magnetization efficiency.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Device complexity
If water passes through the housing instantaneously with magnets, then the device structure is simple, but the magnetization efficiency is greatly reduced
Solution Approach 1:
The patent applies the dynamics principle by introducing rotors that rotate water in multiple stages rather than allowing instantaneous passive flow. The rotors actively rotate water to increase contact time and exposure to magnetic fields, transforming the static magnetic field interaction into a dynamic multi-stage process that enhances magnetization efficiency while maintaining reasonable device complexity
Solution Approach 2:
The patent applies segmentation by dividing the magnetization process into multiple stages with multiple rotors arranged in sequence. Each rotor stage provides incremental magnetization, allowing water to be progressively treated rather than attempting single-stage magnetization. This segmented approach increases overall efficiency without requiring excessive complexity in any single component
2Productivity
If water is exposed to magnetic field for longer time, then magnetization efficiency is improved, but the device structure becomes more complex
Solution Approach 1:
The rotors provide dynamic water rotation that extends exposure time to magnetic fields without requiring excessively long flow paths or complex multi-component systems. The rotational mechanism efficiently increases interaction time within a compact multi-stage configuration
Solution Approach 2:
The patent merges multiple functions into the rotor structure, which simultaneously rotates water, positions it through magnetic fields, and enables multi-stage treatment in a single integrated component. This consolidation achieves extended exposure time without proportionally increasing overall device complexity
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 multi-stage design maximizes magnetization efficiency by rotating water in alternating directions, generating magnetized water with improved ionization and molecular structure changes.
Implementation Method 1
Magnetic field lines of the magnetic field come from an N pole and lead to an S pole, and when water passes through such a magnetic field at a right angle, an electromotive force is generated
Implementation Method 2
when water passes through such a magnetic field at a right angle, an electromotive force is generated at a right angle with respect to the direction of the enormous magnetic field lines, thereby causing micro currents to flow
Implementation Method 3
rotating blades which protrude from upper surfaces of the magnet holders and are configured to rotate the rotor body due to a hydraulic pressure of water introduced into the housing
Data Source
AI summary
A multi-stage magnetized water generator, includes: a housing; an inlet cap which is provided at an upper end of the housing and allows water to be introduced into the housing; a rotor provided in the housing to rotate water while being rotated by water inflowing through the inlet cap; a plurality of magnets which are provided in the rotor and come into contact with the water being rotated to magnetize the water; and an outlet cap which is provided at a lower end of the housing and allows the magnetized water to be discharged to an outside.


