Induction Coil Heating Plates Magnetized Water Conductivity
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Solution Overview
Problem
Existing magnetized water generation methods face challenges in achieving high magnetization ratios due to the difficulty in determining the magnetization degree of water, which limits the production of magnetized water with sufficient electrical conductivity.
Innovation Solution
A magnetized water generating device is designed with an induction coil and heating plates around it, applying high-frequency power to convert water into micro-cluster magnetized water, which then passes through a divided tube between N-pole and S-pole magnets, and includes a system for multiple magnetization treatments based on pH, conductivity, and residual chlorine concentration.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Manufacturing precision
If water is subjected to magnetization treatment multiple times to achieve high magnetization ratio, then the magnetization degree improves, but the process complexity and time consumption increase
Solution Approach 1:
The patent replaces conventional mechanical magnetization methods with electromagnetic induction technology. An induction coil generates a high-frequency magnetic field that directly induces magnetic properties in water molecules, eliminating the need for multiple mechanical magnetization passes and complex handling procedures. This substitution achieves high magnetization ratios more efficiently.
Solution Approach 2:
The patent utilizes high-frequency electromagnetic fields (typically 27.12 MHz or similar resonant frequencies) to induce magnetic properties in water. By changing the frequency parameter to match the resonant frequency of water molecules, the system achieves enhanced magnetization effects in a single pass, avoiding the need for repeated treatments.
2Ease of operation
If conventional magnetization methods are used, then the process is simple, but the magnetization degree remains low
Solution Approach 1:
The patent replaces simple mechanical magnetization approaches with electromagnetic induction technology. The induction coil generates a high-frequency magnetic field that penetrates the water and induces magnetic properties at the molecular level, achieving high magnetization degrees without significantly complicating the operational process.
Solution Approach 2:
The patent employs periodic high-frequency electromagnetic oscillations at specific frequencies (such as 27.12 MHz) that resonate with water molecules. This periodic action at the molecular level efficiently induces and maintains magnetic properties, achieving high magnetization degrees through a straightforward periodic field application.
3Manufacturing precision
If high-frequency power is applied to induction coil to heat heating plates, then water is converted into micro-cluster magnetized water with high electrical conductivity, but energy consumption increases
Solution Approach 1:
The patent utilizes the phase transition concept by converting regular water into micro-cluster magnetized water through high-frequency electromagnetic heating. This phase transition creates highly conductive water structures that maintain magnetic properties, achieving high electrical conductivity through controlled electromagnetic energy input.
Solution Approach 2:
The patent employs periodic high-frequency electromagnetic oscillations that efficiently transfer energy to water molecules, inducing micro-cluster formation and magnetic properties. The periodic nature of the electromagnetic field at resonant frequencies maximizes energy transfer efficiency, reducing overall energy consumption while achieving the desired micro-cluster magnetized water state.
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
This approach effectively generates magnetized water with high electrical conductivity and allows for repeated magnetization treatments to achieve a high magnetization ratio, improving the quality of magnetized water.
Implementation Method 1
applying high-frequency power to the induction coil causing the induction coil to induce this high-frequency power to the plurality of heating plates
Implementation Method 2
the plurality of heating plates are heated, so that the water filling the interior of the tube body is heated
Implementation Method 3
causing the plurality of streams to pass through an N-pole and an S-pole resulting from the pair of magnets
Data Source
AI summary
A device includes a tube body 110 being filled with water; an induction coil 120 installed at a center inside the tube body 110; and a plurality of heating plates 130, 140 arranged around the induction coil 120. The device further includes a high frequency generator 180 for applying high-frequency power to the induction coil 120 to heat the plurality of heating plates 130, 140, resulting in that the water in the tube body 110 is heated and converted into micro-cluster magnetized water; and a tube 150, positioned between a pair of magnets 160, 170 for causing the micro-cluster magnetized water to pass through an N-pole and an S-pole resulting from the pair of magnets 160, 170, thereby providing it as magnetized water exhibiting a high degree of electric conductivity.


