Electric power generation device

The nested neodymium magnet system addresses high costs and pollution in power generation by converting rotational movement to electricity, providing decentralized clean energy.

WO2025165321A1PCT designated stage Publication Date: 2025-08-07ÇETİN ERGÜN
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Patent Information

Application Number
PCT/TR2024/050447
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-05-06
Publication Date
2025-08-07

AI Technical Summary

Technical Problem

Current methods of electric power generation involve high costs, transmission costs, and environmental pollution, and lack of decentralized power generation capabilities.

Method used

An electric power generation device utilizing nested neodymium magnets that convert rotational movement into electricity, with a cooling mechanism to prevent overheating and ensure continuous power generation.

Benefits of technology

Reduces generation and transmission costs, eliminates environmental pollution, and enables decentralized clean energy production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention is an electric power generation device. In the induction medium created by arrangement of an annular neodymium magnet and a spherical neodymium magnet in a nested manner, the spherical magnet starts to rotate, and the resulting movement is converted into electric power.
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Description

[0001] ELECTRIC POWER GENERATION DEVICE

[0002] Field of the Invention

[0003] The present invention is an Electric Power Generation Device and relates to electrical devices generating the electric power that they need themselves.

[0004] Background of the Invention

[0005] Electric power is currently generated in power plants after which it is delivered to the users via power transmission lines and distribution networks, or can be used upon being stored in batteries or accumulators. This method, which imposes huge costs on governments and users, will be completely abandoned, and thanks to the present invention, every electrical device will have its own electric power generation source.

[0006] Object of the Invention

[0007] Thanks to the present invention, which will significantly reduce electric power generation costs and eliminate electric power transmission costs, disadvantages caused by energy generation will be eliminated, clean energy will be generated, environmental pollution will not be caused, energy wars will end, and each electrical device will have its own electric power supply designed according to its own needs.

[0008] Description of the Figures

[0009] Figure 1 : Electric Power Generation Device

[0010] Description of the References in the Figures

[0011] Figure, la : Annular neodymium magnet.

[0012] Figure, lb : Spherical neodymium magnet.

[0013] Figure.1c : Distance between the magnets.

[0014] Figure. Id : Aluminum rod fixed to the spherical neodymium magnet.

[0015] Figure, le : Assembly converting the rotational movement into electric power. Figure. If : Thermostat fixed on the magnet.

[0016] Figure.1g : Aluminum screen preventing rotation when the magnets are overheated.

[0017] Figure. Ih : The rail that allows movement of the aluminum screen up and down so that the screen is interposed between the magnets and comes down after cooling.

[0018] Figure, li : Sockets providing electricity output from the assembly of le.

[0019] Figure. Ik: Display showing the generated electric voltage.

[0020] Figure.11: The rod connecting the aluminum screen to the rail that makes it movable.

[0021] Description of the Invention

[0022] The present invention comprises an annular neodymium magnet (figure, la) and a spherical neodymium magnet (figure, lb) fixed to be within the annulus, and an aluminum rod (figure. Id) fixed in the middle of the spherical magnet, and an assembly (figure. le) that converts the rotational movement into electric power by the aluminum rod fixed to the magnet.

[0023] Magnets arranged in a nested manner at a certain distance (figure.1c) from each other cause rotation while trying to attract or repel each other, and this rotational movement is converted into electric power by means of auxiliary elements.

[0024] The overheating of the magnets is controlled by a thermostat (Figure. If), and in case of overheating, the aluminum screen (Figure.1g) moves along the rail line (Figure. Ih) and is interposed between the magnets, thereby stopping the rotation and enabling cooling, and after the magnets cool down sufficiently, the screen is withdrawn by means of the rail line and the rotational movement resumes upon which electric power generation continues, thus providing infinite electric power.

[0025] Different values of voltage will be obtained depending on the size of the magnets to be used.

[0026] Industrial Applicability of the Invention

[0027] The present invention is an electric power generation device, which can be produced by any company with the relevant industrial equipment. While it can be produced to be integrated in the electrical devices to meet their own electric power needs, it can also be designed and produced according to the spatial electric power needs from homes to factories.

Claims

CLAIMS1. Electric power generation device comprising an assembly (figure, le) that converts the rotational movement resulting upon induction of a spherical neodymium magnet (figure. lb) arranged within an annular neodymium magnet (figure. la).

2. Electric power generation device according to Claim 1, comprising a thermostat (figure. If) controlling overheating of the magnets, and an aluminum screen (figure.1g), which, in case of overheating, is interposed between the magnets by means of the rail system (figure. Ih).

3. Electric power generation device according to Claim 1, wherein, after the magnets cool down, with the signal coming from the thermostat, the aluminum screen slides via the rail system, allowing induction again, and as a result of which, the spherical neodymium magnet starts to rotate again, and thus electric power generation continues.

4. Electric power generation device, which is capable of generating power at different values including low current and high voltages depending on the diameter of the neodymium magnets to be used.

Citation Information

Patent Citations

  • Power generator under permanent magnet

    KR1020100019925A

  • Power generator under permanent or electro magnet and terrestrial magnetism

    KR1020100030540A