Radiation-ray control method using magnetic force (magnetic energy) characteristic
Magnetic energy is used to generate a strong field using a neodymium magnet and conductive metal mixture to block radiation, addressing the inefficiency of material-based radiation control methods and enhancing radiation suppression.
Patent Information
- Application Number
- JP2024074100
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-03-22
- Publication Date
- 2025-10-03
AI Technical Summary
Existing methods for controlling radiation in the presence of human exposure rely on materials with high radiation absorption properties, such as metals and hydrogen-rich substances, which are not effective in blocking radiation penetration.
Utilizing magnetic energy to generate a strong magnetic field using a mixture of neodymium magnets, electromagnets, and conductive metals to block radiation by converting magnetic energy into electrical energy and vice versa, creating a barrier against radiation spread.
The strong magnetic field effectively suppresses radiation spread by blocking it from penetrating beyond the magnetic field, providing a more efficient method of radiation control.
Abstract
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] Traditionally, when controlling radiation in areas where radiation that affects the human body is present, the method has been to utilize the properties of materials that have a high ability to absorb radiation, such as metals such as lead and stainless steel, and substances that contain a lot of hydrogen, such as water and concrete. In response to this, we provide a method to control radiation by utilizing the functions of energy rather than matter, thereby contributing to solving the problem. [Means for solving the problem]
[0005] Magnetic force (magnetic energy) has the property of blocking (not allowing penetration of) many areas of radiation (X-rays, gamma rays, etc.). When a strong magnetic field is in operation, radiation is blocked by the magnetic force and does not spread beyond the magnetic field. This means that magnetic force (magnetic energy) acts as a barrier against radiation. The properties of this magnetic force (magnetic energy) can be used to solve problems related to radiation control. By generating a strong magnetic field around the radiation source, the spread of radiation can be suppressed. A strong magnetic field can be generated by processing a strong magnetic material such as a neodymium magnet, electromagnet material such as pure iron, highly conductive metals such as copper or aluminum, or good carbon-based conductors such as carbon allotropes into powder or liquid form and mixing them together. This mixture has the ability to convert magnetic energy into electrical energy and vice versa, generating an extremely strong magnetic field. The problem is solved by using this mixture to control radiation.
Claims
1. Magnetic force (magnetic energy) has the property of blocking (not transmitting) many wavelengths of radiation (such as X-rays and gamma rays). In areas where strong magnetic fields exist, radiation is repelled by the magnetic field, and the magnetic field acts as a barrier to radiation, preventing it from penetrating. Strong magnetic force (magnetic energy) can be generated by the mutual conversion of magnetic energy and electrical energy in a mixture made by processing ferromagnetic materials such as neodymium magnets, electromagnet materials such as pure iron, and good conductors such as metal-carbon allotropes into powder or solution form and mixing them together. This method generates a magnetic force (magnetic energy) with these characteristics around a radiation source to prevent the radiation from spreading. A method of suppressing the spread of radiation by generating a strong magnetic field in the surrounding area of or inside a device or facility that generates radiation and utilizing the properties of this magnetic field.
2. In the method described in claim 1, a mixture having the ability to convert magnetic energy and electrical energy into one another is processed into a solution and applied (coated) to the body of an artificial satellite or planetary probe, which is operated in an area where there is a lot of cosmic rays (radiation), to prevent malfunctions due to the effects of cosmic rays (radiation). Alternatively, a sheet or film coated with the mixture solution is attached to the satellite or probe body. This method generates a strong magnetic field around a satellite or probe, and utilizes the properties of magnetic force (magnetic energy) to block cosmic rays (radiation) and suppress their effects.
3. In the method described in claim 1, a mixture having the ability to convert magnetic energy and electrical energy into each other is processed into a solution and applied (coated) to fabrics and threads used in radiation protection clothing used in areas where high levels of radiation are present. Alternatively, fabric or thread is dyed with the solution, and protective clothing is made using the fabric or thread. Conventionally, this has been achieved by utilizing the properties of lead plates, which have a high radiation absorption capacity, but this method improves the functionality of radiation protection clothing by utilizing the radiation blocking properties of magnetism (magnetic energy). (Magnetic fields have little effect on the human body, but electricity can be dangerous if you get an electric shock, so wear underwear made of insulating materials (such as rubber) to prevent electric shock.)
4. A product, device, or facility using the method according to claim 1, claim 2, or claim 3.
5. A service or business using the product, device or facility according to claim 4.