Smart generator

By adopting a double-tube stator structure in the smart generator, the stator spacing is reduced to reduce interfering electromagnetic forces, thereby increasing power production, solving the power supply problem in underdeveloped areas, and achieving efficient and environmentally friendly power production.

CN115102351BActive Publication Date: 2025-09-23权五赞
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Patent Information

Application Number
CN202210161303.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Priority Date
2021-12-22
Filing Date
2022-02-22
Publication Date
2025-09-23
Estimated Expiration
2042-02-22

AI Technical Summary

Technical Problem

In underdeveloped or remote areas, existing power generation methods are costly and unsuitable, making it difficult to provide residents with affordable electricity supply, and traditional generators have energy and environmental problems.

Method used

The intelligent generator adopts a double-tube form. By minimizing the distance between the first stator and the second stator, it reduces the interference electromagnetic force and improves the power output. The rotor wire is used to rotate between the stators to generate current, the collector slip ring transmits the electrical energy, and the brush outputs the electricity.

Benefits of technology

It achieves the goal of generating large amounts of electricity with relatively small rotational force, solves energy and environmental problems, provides economical and efficient electricity supply, replaces fossil fuels, and reduces carbon emissions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to an intelligent generator, and more particularly, to an intelligent generator in which two stators are used for a single rotor, the spacing between the north poles and the south poles of the first and second stators is reduced, and the load of the interfering electromagnetic force affecting the rotor conductor is minimized in accordance with the reduced range of the circular magnetic field, thereby generating more electricity with less power.
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Description

Technical Field

[0001] The present invention relates to an intelligent generator that can generate a lot of electricity with less force by minimizing the interfering electromagnetic force caused by a circular magnetic field when current flows in a rotor conductor, thereby saving energy required for electricity production and being used as an alternative energy source in the future. Background Art

[0002] Electric power generation is generally performed using a generator including a stator and a rotor.

[0003] The power that rotates and drives the rotor of the generator can be obtained from a variety of sources, such as thermal, hydro, wind, tidal, and nuclear energy. Each of these power generation methods has its own advantages and disadvantages.

[0004] In particular, these common power generation methods may not be suitable for underdeveloped or remote areas. For example, in underdeveloped countries, the capital required to build dams or introduce power generation facilities is difficult to raise, making electricity costs unaffordable for individual consumers. Furthermore, the high costs of transmission and power generation equipment are a challenge in providing electricity to people living in deserts, high mountains, and islands.

[0005] For this reason, the development of generators that can replace fossil fuels to solve energy problems and can be used as a substitute for various types of power plants is on the rise.

[0006] Prior art literature

[0007] Patent Literature

[0008] Patent Document 1: Korean Utility Model Publication No. 20-2012-0006841 (published on October 5, 2012) Summary of the Invention

[0009] The present invention is proposed to solve the above-mentioned problems. The purpose of the present invention is to provide a smart generator as follows: using multiple stators in the form of first stators and second stators, the first stators and the second stators are configured in the form of a double tube, and the spacing between the first stator and the second stator is made narrower than before, so that the intensity of the interfering electromagnetic force is reduced, thereby being able to obtain large power with smaller force.

[0010] Other objects and advantages of the present invention will be described below, which can be understood through the embodiments of the present invention. In addition, the objects and advantages of the present invention can be achieved through the means and combinations shown in the scope of the invention claims.

[0011] As a means to solve the above-mentioned problem, the present invention is characterized by comprising: an inner shell 10 having a cylindrical shape and a through hole 11 formed in the center; a first stator 20 of the south pole formed around the outer periphery of the inner shell 10; and an outer shell 30 having a tubular shape and provided outside the inner shell 10;

[0012] The second stator 40 with an N pole is formed around the inner periphery of the housing 30 so as to correspond to the S pole of the first stator 20. The rotating shaft 50 is rotatably inserted into the through hole 11. The rotor bracket 60 is configured to be bent and extended along both sides of the outer periphery of the rotating shaft 50 toward the separation space A between the first stator 20 and the second stator 40.

[0013] A rotor conductor 70 is disposed along the outer circumference of the rotor bracket 60 in the longitudinal direction and is located between the first stator 20 and the second stator 40. The rotating shaft 50 rotates between the first stator 20 and the second stator 40, causing current to flow. A collector slip ring 80 is integrally formed on the outer circumference of one end of the rotating shaft 50 within the housing 30 and is electrically connected to the rotor conductor 70 to receive electrical energy. A brush 90 is fixedly mounted on a side surface of the housing 30 in contact with the collector slip ring 80 to transmit electrical energy to an external user. The double-tube configuration of the first and second stators 20 and 40 minimizes the spacing between the south and north poles in the space A, thereby reducing the range of the circular magnetic field within the space A. This reduces the intensity of the interfering electromagnetic force, which acts as a load interfering with the circular magnetic field, thereby increasing and improving power generation.

[0014] As described above, the present invention has the following effects: it can obtain large electric power with small rotational force, thereby replacing the engine with a motor in various power devices such as electric vehicles and electric ships, which can not only solve energy problems but also solve environmental problems.

[0015] Furthermore, the present invention has the following effects: a large generator is operated by a small motor connected to a battery, a part of the electricity is used to charge the battery, and most of the electricity can be used for power.

[0016] Also, the present invention has the following effects: it is possible to produce a unique alternative energy source that can replace existing fossil fuels, reduce carbon to zero, which is a serious energy problem and the culprit of global warming, thereby being able to solve energy and environmental problems. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 A conceptual diagram illustrating the power generation principle of the smart generator according to the present invention.

[0018] Figure 2FIG1 is a diagram showing an embodiment of a shape of a magnetic field generated when current flows in a rotor wire in a smart generator according to the present invention.

[0019] Figure 3 This is a diagram showing an example of the shape of a magnetic field when current flows during power generation in a conventional generator.

[0020] Figure 4 It is a front cross-sectional view showing an embodiment of a smart generator according to the present invention.

[0021] Figure 5 for Figure 4 Exploded diagram of .

[0022] Figure 6 A diagram showing changes in the magnetic field due to the distance between the north pole and the south pole. DETAILED DESCRIPTION

[0023] Before describing in detail multiple embodiments of the present invention, it should be understood that the details of the structure and arrangement of the multiple structural elements described in the following detailed description or shown in the accompanying drawings do not limit their application. The present invention can be implemented and implemented by other multiple embodiments and can be performed by various methods. In addition, it is understood that the expressions and predicates of multiple terms such as "front", "back", "up", "down", "top", "bottom", "left", "right", "lateral" used in this application are only used to simplify the description of the present invention and do not indicate or mean that the relevant devices or elements should have a specific direction. In addition, for the purpose of description, terms such as "first", "second" and the like are used in this application and the scope of the invention claims, and are not intended to indicate or mean relative importance or purpose.

[0024] In order to achieve the above-mentioned object, the present invention has the following features.

[0025] The following describes in detail preferred embodiments of the present invention with reference to the accompanying drawings. Prior to this, the terms and words used in this specification and the scope of the claims should not be interpreted in a restricted manner based on conventional or dictionary meanings. Instead, they should be interpreted based on the principle that the inventor can appropriately define the concept of the term in order to best describe his or her invention, and should be interpreted in a manner consistent with the technical concept of the present invention.

[0026] Therefore, the embodiments recorded in this specification and the structures shown in the accompanying drawings are merely the most preferred embodiments of the present invention, and do not represent all the technical ideas of the present invention. Therefore, it should be understood that at the time of this application, there may be multiple equivalent technical solutions and variations that can replace these.

[0027] Below, we will refer to Figures 1 to 6 , a detailed description of the smart generator according to a preferred embodiment of the present invention.

[0028] The smart generator according to the present invention is a substitute for fossil fuels in today's urgent energy problem. It is a measure that uses pollution-free electricity for modern power, which not only has economic benefits but also can solve environmental problems. By using a smart generator equipped with a generator in a car or ship to replace existing rechargeable batteries and electric vehicles, it has high economic value, can solve environmental problems, prevent global warming, and solve energy problems. The above-mentioned smart generator includes an inner shell 10, a first stator 20, an outer shell 30, a second stator 40, a rotating shaft 50, a rotor bracket 60, a rotor conductor 70, a collector slip ring 80, and a brush 90.

[0029] The inner housing 10 has a through hole 11 formed at the center thereof in the longitudinal direction, and has a shell in the shape of a cylindrical tube.

[0030] The first stator 20 is a stator having an S pole formed around the outer periphery of the inner housing 10 .

[0031] The outer shell 30 is a tubular shell that is disposed outside the inner shell 10 and forms a double tubular shape together with the inner shell 10 , with a hollow space formed on one side of the interior to accommodate the collector slip ring 80 and brush 90 described later.

[0032] The second stator 40 is a stator having north poles formed around the inner periphery of the housing 30 so as to correspond to the south poles of the first stator 20 .

[0033] Of course, in the case of the first stator 20 and the second stator 40, as shown in FIG. Figure 4 、 5 As shown, correspondingly, the first stator 20 can form an S pole and the second stator 40 can form an N pole, but according to various embodiments of the user, such as Figure 2 As shown, the mutually separated N pole and S pole of the above-mentioned first stator 20 can be formed on one side and the other side of the outer periphery of the inner shell 10, respectively, and the S pole and N pole of the above-mentioned second stator 40 can be formed on one side and the other side of the outer periphery of the outer shell 30 in a manner corresponding to the N pole and S pole of the above-mentioned first stator 20, respectively.

[0034] Furthermore, in the present invention, according to the user's embodiment, in the above-mentioned first stator 20 and the second stator 40, the surfaces corresponding to each other in the separation space A can be in the form of ordinary flat plates. On the contrary, they can also be formed with threaded concave and convex portions 100 in the length direction (the surface is arranged at 45° like a "∧∧" triangle), so that the magnetic field shape in the separation space A is in the shape of a circular arc that bends in the same direction as the rotation direction of the above-mentioned rotor conductor 70, which can reduce the generation of interfering electromagnetic forces. Figure 2 In the figure, the concave-convex portion 100 is formed only in a portion. However, depending on the user, it can be formed throughout the first stator 20 and the second stator 40, or in a portion. For the sake of convenience in illustrating the drawings, the concave-convex portion 100 is formed only in a portion. (That is, the concave-convex portion 100 generates a curved magnetic field, which is aligned with the circular magnetic field generated by the current flowing in the rotor conductor 70, thereby reducing the interference electromagnetic force. In order to minimize the space between the concave and convex portions, the surface angle at this time is 45°. The angle of the concave and convex portions can also be changed according to various user embodiments.)

[0035] In this case, the semicircular magnetic field generated in the first stator 20 and the second stator 40 is substantially identical to the circular magnetic field generated in the rotor conductor 70, eliminating the aforementioned concave and convex portion 100. This further minimizes the interfering electromagnetic force caused by the linear magnetic field generated in the first stator 20 and the second stator 40. The magnetic field within the inner housing 10 remains balanced regardless of whether current flows in the rotor conductor 70.

[0036] The rotating shaft 50 is a shaft that extends through the through hole 11 along its length and projects toward the ends of the housing 30. The shaft is rotatably inserted into the through hole 11. Of course, one end of the rotating shaft 50 can be connected to various external rotating devices via a pulley 51 on the outside of the housing 30 to receive rotational force.

[0037] The rotor holder 60 is configured to bend and extend from both sides of the outer periphery of the rotating shaft 50 toward the separation space A between the first stator 20 and the second stator 40 in a “┓” shape.

[0038] The rotor conductor 70 is provided on the outer circumference of the rotor holder 60 along the longitudinal direction and is located between the first stator 20 and the second stator 40 . The rotor conductor 70 is rotated between the first stator 20 and the second stator 40 by the rotating shaft 50 to allow current to flow.

[0039] The above-mentioned collector slip ring 80 is a slip ring as follows: it is made of a metal material such as carbon, and is integrally formed on the outer periphery of one end of the rotating shaft 50 in the housing 30. It is electrically connected to the above-mentioned rotor conductor 70 to receive electrical energy. The above-mentioned brush 90 is fixed to one side of the housing 30 and is arranged in contact with the collector slip ring 80 in a non-rotating state to transmit electrical energy to an external user.

[0040] As described above, in the intelligent generator having the above structure, the rotor wire 70 rotates in one direction through the rotor support 60 and the rotating shaft 50 in the space A between the first stator 20 and the second stator 40. A magnetic field is generated between the first stator 20 and the second stator 40. When the rotor wire 70 rotates in this magnetic field, it twists. This twisting force generates an induced electromotive force, which causes current to flow. Of course, the direction of current flow can be determined by applying the well-known Fleming's right-hand rule.

[0041] Furthermore, in the present invention, two stators are used in this structure. By using the above-mentioned first stator 20 and second stator 40 in a double-tube form, the spacing of the separation space A between the S pole and the N pole is further minimized compared to the separation distance of the previous generator, thereby reducing the range of the circular magnetic field within the separation space A, so that the intensity of the interfering electromagnetic force that manifests as a load that interferes with the generation of the circular magnetic field is also reduced, thereby increasing and improving the power production.

[0042] from Figure 6 As can be seen in the figure, as the spacing between the north and south poles increases, the position of the rotor conductor 70 and the current intensity remain the same, but the magnitude of the magnetic field changes. Therefore, the present invention minimizes the interfering electromagnetic force caused by the magnetic field by minimizing the spacing between the north and south poles.

[0043] As described above, although the present invention is illustrated by limited embodiments and drawings, the present invention is not limited thereto. Of course, ordinary technicians in the technical field to which the present invention belongs can make various modifications and changes within the scope equivalent to the technical ideas of the present invention and the scope of protection of the invention described below.

Claims

1. An intelligent generator, characterized in that: include: The inner shell is cylindrical and has a through hole formed in the center; A first stator of the S pole is formed around the outer periphery of the inner shell; a tubular outer shell disposed outside the inner shell; A second stator with an N pole is formed around the inner periphery of the housing in a manner corresponding to the S pole of the first stator; A rotating shaft is rotatably inserted into the through hole; The rotor support is configured to be bent and extended along both sides of the outer periphery of the rotating shaft toward the separation space between the first stator and the second stator; A rotor conductor is provided on the outer peripheral surface of the rotor support along the length direction and is located between the first stator and the second stator, and the current flows when the rotating shaft rotates between the first stator and the second stator; a collector slip ring integrally formed on an outer periphery of one end of the rotating shaft within the housing and electrically connected to the rotor conductor to receive electrical energy; and The brush is fixed on one side of the housing in contact with the collector slip ring to transmit electrical energy to the external user. By using the double-tube structure of the first and second stators, the spacing between the south pole and the north pole is minimized, thereby reducing the range of the circular magnetic field within the separation space. This reduces the intensity of the interfering electromagnetic force that interferes with the circular magnetic field, thereby increasing and improving power generation. In the first and second stators, corresponding surfaces in the partitioned space are formed with screw-shaped concave and convex portions in the longitudinal direction, so that the magnetic field in the partitioned space has an arc shape that curves in the same direction as the rotation direction of the rotor conductor, thereby reducing the generation of interfering electromagnetic forces. The first stator has a north pole and an south pole separated from each other formed on one side and the other side of the outer periphery of the inner shell, and the second stator has a south pole and a north pole formed on one side and the other side of the outer periphery of the outer shell in a manner corresponding to the north pole and the south pole of the first stator.

Citation Information

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