Ultraviolet control method utilizing characteristics of magnetic force (magnetic energy)

Magnetic energy is used to generate a strong magnetic field to block ultraviolet rays, addressing the limitations of traditional materials in controlling ultraviolet radiation and improving equipment performance and health safety.

JP2025146554APending Publication Date: 2025-10-03パテントフレア株式会社
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Patent Information

Application Number
JP2024074099
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-03-22
Publication Date
2025-10-03

AI Technical Summary

Technical Problem

Controlling ultraviolet rays to prevent health damage and enhancing the performance of equipment using ultraviolet rays for sterilization and virus inactivation is challenging, as traditional methods rely on materials like sunscreens and light-blocking structures.

Method used

Utilizing magnetic energy to block ultraviolet rays by generating a strong magnetic field through a mixture of strong magnetic materials, electromagnetic materials, and highly conductive metals, converting magnetic energy into electrical energy and vice versa, effectively acting as a barrier against ultraviolet rays.

Benefits of technology

Magnetic energy effectively blocks ultraviolet rays, providing a novel and efficient method to control ultraviolet radiation without relying on conventional materials, enhancing equipment performance and health protection.

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Abstract

To provide a method different from the conventional way of thinking to enhance the effectiveness of ultraviolet ray control, in order to solve such a problem that, in a conventional technique, in a case of controlling health damage caused by ultraviolet rays contained in sunlight or controlling ultraviolet rays with a device or the like for performing sterilization or inactivating a virus by using the characteristics of ultraviolet rays, material functions such as chemicals, walls, or mirrors have been used.SOLUTION: Magnetic force (magnetic energy) has the characteristic of blocking ultraviolet rays (preventing transmission). The invention solves the above-mentioned problem by a method of controlling ultraviolet rays by utilizing the energy characteristics inherent in magnetic force (magnetic energy), instead of controlling ultraviolet rays by utilizing conventional material functions.SELECTED DRAWING: None
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Description

[Technical Field]

[0001] The present invention relates to the characteristics of magnetic energy and the application technology of the mutual conversion between magnetic energy and electric energy. [Background technology]

[0002] Electromagnetic wave transmission characteristics of magnetic energy (magnetic force)

[0003] Mutual conversion between magnetic energy and electrical energy Summary of the Invention [Problem to be solved by the invention]

[0004] Controlling ultraviolet rays is a challenge when it comes to preventing health damage caused by the ultraviolet rays contained in sunlight and improving the performance of equipment that uses the properties of ultraviolet rays to sterilize and inactivate viruses. Traditionally, these issues have been addressed by utilizing the functions of materials such as sunscreens, light-blocking walls, and light-reflecting mirrors. In response to this, we offer a method that differs from conventional thinking and approaches by using the functions of energy rather than matter to control ultraviolet rays, thereby contributing to solving the problem. [Means for solving the problem]

[0005] Magnetic force (magnetic energy) has the property of blocking (not transmitting) most of the ultraviolet wavelength range. When a strong magnetic field is in operation, ultraviolet rays are blocked by the magnetic force and do not spread beyond the magnetic field. This means that magnetic force (magnetic energy) acts as a barrier against ultraviolet rays. The characteristics of this magnetic force (magnetic energy) can be used to solve problems related to controlling ultraviolet rays. A method for artificially generating a strong magnetic field is to mix "strong magnetic materials such as neodymium magnets," "electromagnetic materials such as pure iron," and "highly conductive metals such as copper and aluminum, or good carbon-based conductors such as carbon allotropes" in powder or liquid form. This mixture has the ability to convert magnetic energy into electrical energy and vice versa, generating an extremely strong magnetic field. Furthermore, even if a ferromagnetic material such as a neodymium magnet is used alone, it will generate a constant magnetic field and therefore produce the desired effect. This problem is solved by using magnetic energy functions to control ultraviolet rays, rather than using conventional material functions such as chemicals, walls, and mirrors.

Claims

1. Magnetic force (magnetic energy) has the property of blocking most of the ultraviolet wavelength range of light (its transmittance of ultraviolet wavelength light is low). When there is an area where strong magnetic force exists (magnetic field), much of the ultraviolet light is blocked. Ultraviolet rays are repelled by magnetic force (magnetic energy) and cannot pass through the magnetic field. When a strong magnetic field is applied, it acts like a barrier to ultraviolet wavelengths of light, reducing the amount of light that can penetrate the field. This is due to the ultraviolet blocking properties of magnetic force (magnetic energy). Strong magnetic force (magnetic energy) can be generated by mixing ferromagnetic materials such as neodymium magnets, electromagnet materials such as pure iron, and good conductors such as metals and carbon allotropes in powder or liquid form. (Interconversion between magnetic energy and electrical energy) Magnetic force (magnetic energy) with these characteristics is generated by a device and released into space, or the mixture is processed into a solution and applied as a coating to transparent roofs and walls such as glass. This method blocks only the ultraviolet rays contained in sunlight, reducing the risk of health damage.

2. The method according to claim 1 utilizes the characteristics of ultraviolet wavelength light to apply a coating to the inside (inner wall, etc.) of a device for sterilization or virus inactivation, thereby reflecting ultraviolet wavelength light and amplifying the ultraviolet wavelength light inside the device. A method to block the absorption of ultraviolet wavelength light by the inner walls of the device, improving performance.

3. An apparatus or facility using the method according to claim 1 or 2.

4. A service or business using the device or facility according to claim 3.