Magnetic force slope

A barrier-free magnetic slope smooths out magnetic force variations to convert potential energy into kinetic energy, addressing the inefficiency of existing technologies and offering a sustainable energy solution.

JP2025120080APending Publication Date: 2025-08-15澤田 東
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Patent Information

Application Number
JP2024025002
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-02-02
Publication Date
2025-08-15

AI Technical Summary

Technical Problem

Existing technologies fail to effectively utilize the conversion of gravitational and magnetic forces into kinetic energy in daily life applications.

Method used

A barrier-free magnetic slope is introduced to smooth out friction, unevenness, and changes in magnetic force, creating a difference in potential energy or force between the centripetal and centrifugal sides, enabling conversion of ferromagnetic materials into kinetic energy.

Benefits of technology

The force imbalance around a permanent magnet's point of maximum attractive force is utilized to move objects, converting potential energy into kinetic energy, providing a sustainable energy source.

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Abstract

To provide a concept of converting attractive force, especially attractive force as magnetic force to kinetic energy and a method thereof in a current situation where a Gaussian accelerator or a planet swing-by is a technique to convert a difference in potential energy or a difference in attractive force to kinetic energy on a centripetal (incidence and approach) side and a centrifugal (ejection and departure) side around the maximum point of the attractive force, but the technique is not efficiently used in our everyday life.SOLUTION: A difference in potential energy or a difference in force is generated on a centripetal (incidence and approach) side and a centrifugal (ejection and departure) side by introducing a magnetic force slope in consideration of a barrier-free state so that changes in friction, convexoconcave, and magnetic force like Fig.1, Fig.3, and Fig.4 become smooth. Accordingly, conversion to kinetic energy is possible by moving a ferromagnetic body such as an iron ball and a permanent magnet.SELECTED DRAWING: Figure 1
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Description

[Technical Field]

[0001] The present invention relates to a concept and method for converting attractive force, particularly magnetic attractive force, into kinetic energy. Summary of the Invention [Problem to be solved by the invention]

[0002] Gaussian accelerators and planetary swing-bys are technologies that convert the difference in potential energy or the difference in gravitational force between the centripetal (entrance, approach) side and the centrifugal (ejection, departure) side, with the point of maximum gravitational force as the center, into kinetic energy, but the reality is that this technology is not effectively utilized in our daily lives. The object of this invention is to provide a concept for converting gravitational force, especially magnetic force, into kinetic energy, and a method for doing so. [Means for solving the problem]

[0003] Figure 5(a) is an illustration of gravity in general relativity, and shows that because the gravitational force is symmetrical around the point of maximum gravitational force, it is not possible to obtain kinetic energy using points equidistant from the center. Figures 5(b) and 5(c) are illustrations in which the gravitational force is biased around the point of maximum gravitational force, and because a difference in potential energy or gravitational force occurs at points equidistant from the center, this can be obtained as kinetic energy.

[0004] With the aim of performing work W with a small force on the ground (within the gravitational field), we take into consideration F=μN and devise ways to perform work W with a small force, such as making the path of travel flat or smooth, introducing wheels, or using a gentle slope when moving an object to a high position.However, in the case of magnetic forces, the reality is that not many efforts have been made to perform work W with a small force. By introducing a barrier-free magnetic slope that takes friction, unevenness, and changes in magnetic force into consideration and smooths them out as shown in Figures 1, 3, and 4, a difference in potential energy or attractive force is created between the centripetal (entrance, approach) side and the centrifugal (exit, departure) side, which then moves ferromagnetic materials such as iron balls and permanent magnets, converting them into kinetic energy. [Effects of the Invention]

[0005] According to the present invention, a force imbalance occurs around the point of maximum attractive force of the permanent magnet, and this difference in potential energy or force can be utilized to move an object, which can then be converted into kinetic energy and obtained. [Brief explanation of the drawings]

[0006] [Figure 1] Magnetic slope using ferromagnetic material. [Figure 2] An example of the shape of a magnetic slope using a ferromagnetic material. [Figure 3] Magnetic slope using non-magnetic material. [Figure 4] A magnetic slope with an innovative magnetization method. [Figure 5] Illustration of gravitational force. (a) is an example of no bias in gravitational force. (b) and (c) are examples of bias in gravitational force. [Figure 6] An example of a magnetic slope alone. [Figure 7] An example of a magnetic slope alone. [Figure 8] An example of a magnetic slope alone. [Figure 9] Example. DETAILED DESCRIPTION OF THE INVENTION

[0007] Figures 6, 7, and 8 show examples of a single component consisting of a cylindrical permanent magnet and a steel sheet as a magnetic slope. Figure 7 shows that when the iron ball (9) in the left image is released from its position relative to the cylindrical permanent magnet (7), it moves downward due to gravity, but as shown in the right image, the iron ball (9) remains attached to the cylindrical permanent magnet (7) and does not fall. Figure 8 shows that when the hand is released from the position of the iron ball (9) in the left figure, due to the effect of the magnetic force slope (8), the iron ball (9) in the right figure completely detaches from the cylindrical permanent magnet (7) and falls.

[0008] "Bishop Wilkins' magnetic perpetual motion" is often cited as an example of the failure of a perpetual motion machine using magnets, and the justification given is that "if the magnetic force is strong, the ball will stick to the magnet instead of falling into the hole." However, by using a magnetic slope, it is possible to control the magnetic force and use gravity to pull the iron ball away from the permanent magnet, where "magnetic force > gravity."

[0009] Figure 9 shows an example of an improved idea based on the same concept as Bishop Wilkins' magnetic perpetual motion, but with the introduction of a magnetic slope. The intervals between the permanent magnets (10) in Figure 9 become shorter as they move upward, making the gradient of the magnetic force greater than that of gravity, thereby lifting the iron ball (12). At the highest point, the magnetic slope makes the gradient of the magnetic force smaller than that of gravity, allowing it to fall under gravity, rotating an impeller-equipped generator (14) and generating electricity. [Industrial Applicability]

[0010] This invention is a technology that takes in the difference in potential energy or the difference in gravitational force from the "outside" on the centripetal (entrance, approach) side and the centrifugal (emission, departure) side, centered on the point of maximum gravitational force, and converts it into kinetic energy. Therefore, it is simply an energy conversion device and does not fall under the category of a perpetual motion machine, which is defined as "a device that continues to perform work on the outside forever without receiving energy from the outside."

[0011] This invention solves the fundamental cause of failure of the many magnet-based perpetual motion machines that have been proposed up until now, and by introducing this invention, it is possible that these machines will be able to operate. This will provide a sustainable energy source that does not use fossil fuels, such as permanent magnets and gravity, and will help solve environmental and food problems.

[0012] A Gaussian accelerator converts the difference in potential energy into kinetic energy, and is expressed mathematically as "W = W1 - W2." This does not require collisions in particular, and is thought to be primarily used as a "non-colliding Gaussian accelerator."

[0013] The Gaussian accelerator works on the principle of utilizing the gravitational force of "magnetic force," but in principle, it may be possible to generate similar phenomena using other gravitational forces such as "gravity," "strong force," and "weak force," and these may actually occur in nature. It may be possible that humanity will be able to intentionally utilize these forces in the future.

[0014] A Gaussian accelerator uses gravitational force to repel objects, a phenomenon that at first glance appears to be a repulsive force. Phenomena such as dark energy and black hole jets are also recognized as unknown repulsive forces. It is possible that dark energy and black hole jets, including other "forces" such as gravitational force, may be based on the same principle as a Gaussian accelerator.

[0015] The device in Figure 9 converts the difference between magnetic and gravitational forces into kinetic energy. The magnetic system receives an external energy input from gravity, and the gravitational system receives an external energy input from magnetic force, and each behaves like the other's "Maxwell's demon." Because each receives an external energy input and is an "open system," it is unrelated to the "law of conservation of energy," which states that "the total amount of energy in an isolated system does not change," and does not qualify as a perpetual motion machine. The device in Figure 9 further predicts that "a system constructed by appropriately combining multiple conservative forces becomes an open system," and therefore it is possible that other devices that combine multiple conservative forces may also be able to obtain sustainable energy. [Explanation of symbols]

[0016] 1. A barrier-free rail or boundary. It does not need to be a physical object. 2. Permanent magnet. A single or multiple permanent magnets grouped together. 3 Magnetic slope: A ferromagnetic material that adheres closely to a permanent magnet and magnetizes it. 3a-3c Examples of shape patterns of ferromagnetic materials. 4 The magnitude and direction of the attractive force on the permanent magnet (2). 5. Magnetic slope: A non-magnetic material that gradually weakens the magnetic force by maintaining an appropriate distance from the permanent magnet (2). 6 Magnetic force slope: When creating a permanent magnet, the magnet is magnetized so that the magnetic force gradually weakens. 7 Cylindrical permanent magnet. 8 Magnetic slope. 9 Iron ball. 10 permanent magnets. 11 Magnetic slope. 12 Iron ball. 13 rails. 14 Impeller generator.

Claims

1. This magnetic slope has a ferromagnetic material (3) such as iron that is magnetized by coming into close contact with the permanent magnet (2) in Figure 1 and whose magnetic force gradually weakens, and aims to make force (4a) smaller than force (4b), thereby creating a barrier-free slope that smooths out friction, unevenness, and changes in magnetic force. The ferromagnetic material (3) such as iron has a shape as shown in FIG. 2 or a shape similar to that shown in FIG.

2. This magnetic slope has a permanent magnet (2) as shown in Figure 3 and a non-magnetic material (5) such as aluminum or plastic with a flat or curved surface that is spaced apart from it to gradually weaken the magnetic force, with the aim of making force (4a) smaller than force (4b), and is designed to be barrier-free so that friction, unevenness, and changes in magnetic force are smooth.

3. When creating the permanent magnet (2) in Figure 4, the magnet is magnetized so that the magnetic force gradually weakens, and the force (4a) is smaller than the force (4b). This magnetic slope is designed to be barrier-free so that friction, unevenness, and changes in magnetic force are smooth.

4. A magnetic ramp that combines

1. ,

2. , and

3. and is designed to be barrier-free by smoothing out friction, unevenness, and changes in magnetic force.