Energy-saving motor with power preserver and manufacturing method thereof

By winding insulating tape and applying charge in a vacuum or dry environment, a stable electrostatic field is generated using electrostatic conductors with different charge properties. This solves the problems of low power and high energy consumption in electrostatic motors, realizing energy-saving and environmentally friendly electrostatic motors, which are widely used in many fields.

CN115842486BActive Publication Date: 2026-04-10熊秋运
View PDF 2 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
熊秋运
Filing Date
2022-12-28
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing electrostatic motors have low power, high energy consumption, require continuous power supply, and have limited application range.

Method used

The method of manufacturing the electrostatic protector involves winding insulating tape and applying an electric charge in a vacuum or dry environment. By utilizing electrostatic protectors with different charge properties, a stable electrostatic field is generated. The electrostatic force is then regulated by the shielding shell to achieve stable rotor rotation.

Benefits of technology

It achieves high power, energy saving and environmental protection, and is widely used in industrial, agricultural, national defense and daily life fields, solving the problem of the need for continuous power supply for electrostatic motors.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN115842486B_ABST
    Figure CN115842486B_ABST
Patent Text Reader

Abstract

The present application relates to the technical field of electrostatic motor, especially relates to a power-keeping body energy-saving motor, which comprises a first power-keeping body, a second power-keeping body and a third power-keeping body; a shielding shell, at least one opening is formed on the shell wall of the shielding shell; a rotor, wherein a rotating shaft is arranged, the first power-keeping body is connected to the rotating shaft through a connecting object and is installed in the cavity of the shielding shell; a stator, wherein the second power-keeping body and the third power-keeping body are arranged in the stator and are respectively installed on the outer surface of the shielding shell of the stator through auxiliary materials, and are installed on both sides of the opening. Because the electrostatic field generated by the second power-keeping body and the third power-keeping body can continuously generate electrostatic force on the charge of the first power-keeping body, and the shielding shell can hinder a part of the electrostatic field of the first power-keeping body from giving the shielding to the negative effect electrostatic field of the rotor, the rotor can continuously rotate towards the designed direction and do work to the outside, and the power-keeping body energy-saving motor has the advantages of large power, energy saving, environmental protection, wide application and the like.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of electrostatic motor, in particular to a power body energy-saving motor and a power body manufacturing method. BACKGROUND

[0002] It is known that the existing electrostatic motor, namely electrostatic motor, is generally composed of electrostatic stator, electrostatic rotor, support frame or machine shell, accessories, power supply and other parts. It has the characteristics of simple structure, idle speed and the like. However, it has the problems of small power, small actual application range, large energy consumption during operation, and the need for continuous power supply. SUMMARY

[0003] In view of the deficiencies of the prior art, the present application provides a power body energy-saving motor and a power body manufacturing method, which has the advantages of large power and energy saving and environmental protection, and can solve the problem of the need for continuous power supply of the existing electrostatic motor during operation. Moreover, its actual application range is relatively wide, and it can be widely used in industrial, agricultural, national defense and people's life and other places requiring power or energy.

[0004] The power body manufacturing method of the present application has the following features, including:

[0005] D1. In a vacuum condition or dry environment (the higher the vacuum or dryness, the better), by rotating the core mold of the power body, the applicable insulating adhesive tape or tape can be tightly wound on the core mold. The length, width, thickness and insulation strength, tensile strength and adhesive strength of the adhesive tape or tape must meet the design requirements. The core mold can be made into various shapes, such as cylindrical core mold, semi-cylindrical core mold, cylindrical core mold, sleeper-shaped core mold, door panel-shaped core mold, triangular core mold, brick-shaped core mold, etc. The size of the core mold can be customized according to actual needs, and can be made of hard insulating material;

[0006] D2. While tightly winding the insulating adhesive tape or tape, the non-glued side of the adhesive tape or tape is coated with positive or negative charge using a charge applicator, thereby making a charged body;

[0007] When using the charge applicator to apply charge, the charge applicator is connected to the positive or negative pole of the appropriate DC power voltage with a wire. It is set in a favorable place for applying charge to the surface of the insulating adhesive tape or tape, so that while the core mold is being wound with the insulating adhesive tape or tape, the adhesive tape or tape is being coated with positive or negative charge, and the positive or negative charge is being evenly applied or sprayed, thereby making a charged body with the shape and size meeting the design requirements, and being able to carry a certain amount or a large amount of charge. The charge applicator can be an electric brush or a metal roller and its accessories.

[0008] D3. And the charged body is tightly wrapped or tightly packed with the applicable insulating material which has the insulating strength and waterproof and moisture-proof performance and tensile strength meeting the design requirements, thereby making the electricity preserving body which has the shape and size meeting the design requirements. And it can last or long keep or preserve a certain amount or a large amount of static electricity in the normal environment, and the shape of the electricity preserving body can be made into cylindrical electricity preserving body, semi-cylindrical electricity preserving body, cylindrical electricity preserving body, sleeper-shaped electricity preserving body, door panel-shaped electricity preserving body, brick-shaped electricity preserving body, triangular electricity preserving body, etc., and can be selected according to actual needs.

[0009] An electric motor with an electricity preserving body energy saving function, characterized by comprising a first electricity preserving body, a second electricity preserving body and a third electricity preserving body made according to the electricity preserving body manufacturing method described above. The first electricity preserving body, the second electricity preserving body and the third electricity preserving body can each be composed of one or more electricity preserving bodies, and the shape of the electricity preserving bodies can be selected as cylindrical electricity preserving body, cylindrical electricity preserving body or other applicable shape electricity preserving body; the first electricity preserving body is an electricity preserving body with complete positive charge or complete negative charge, and the second electricity preserving body and the third electricity preserving body are electricity preserving bodies with completely different charge properties. It comprises a shielding shell, and at least one or more openings are provided at appropriate positions on the shell wall of the shielding shell, the openings are related to the static electric field passing openings, and the opening shape can be provided as similar to rectangular opening, square opening or other applicable geometric opening. Moreover, the size of the opening can be set according to the specific design requirements. Bearings are fixedly arranged at appropriate positions on the end faces of the shielding shell, and the shielding shell has the functions of electric field shielding and supporting the structure of the electric motor with an electricity preserving body energy saving function. Moreover, the size of the shielding shell can also be set according to the specific design requirements. Moreover, the shielding shell can be selected as cylindrical box type cavity shielding shell, round flat box type cavity shielding shell, oval box type cavity shielding shell, back-shaped cavity box type shielding shell or other applicable form cavity shielding shell. It also comprises a rotor, the rotor has a rotating shaft, the rotating shaft is connected with the first electricity preserving body through the use of applicable connecting material, and the rotor is installed in the cavity of the shielding shell through the connection of the rotating shaft and the bearings, so that the rotor can rotate. Moreover, the shape and size of the rotor are matched with the shape and size of the cavity of the shielding shell. The rotor can be selected as drum type rotor, runner type rotor, oval track type rotor, quadrilateral track type rotor or other applicable form rotor. The connecting material can be preferably made of applicable insulating material.

[0010] Also included is a stator having the second and third charge retainers, and the second and third charge retainers are respectively installed on the outer surface of the shielding shell by using the installation auxiliary materials thereof, and are respectively installed on the corresponding favorable positions on both sides of the opening, which are favorable for driving the rotor to rotate toward the designed or designated direction. That is, the stator can be installed on the corresponding favorable positions on both sides of the opening.

[0011] The above technical solution, because of the stable electrostatic field generated by the second and third charge retainers with different charge properties, can respectively generate electrostatic force on the charge of the first charge retainer, that is, respectively generate electrostatic force on the rotor, and use the shielding shell to shield a part of the negative effect electrostatic field in its electrostatic field that hinders the rotor from rotating toward the designed or designated direction, and let a part of the positive effect electrostatic field pass through the opening to continuously generate positive effect electrostatic force on the rotor, so that the rotor can continuously rotate toward the designed or designated direction and do work to the outside. Moreover, the charge amount of all charge retainers will not be lost, and a power larger power-saving motor can be made, which has the advantages of energy saving, environmental protection and wide application.

[0012] The periphery of the stator is covered with an outer shell and is fixedly connected with the outer surface of the shielding shell. It has the functions of electric field shielding and internal protection.

[0013] At the opening of the shielding shell, by using necessary accessories, a shielding cover plate that can move and can completely cover or completely close the opening, and can be completely opened, is provided. The shielding cover plate has the function of electric field shielding. Moreover, the shielding cover plate is connected with a control device that can control the shielding cover plate. The control device is installed on the shell beside the opening or on the appropriate place of the object, so that the shielding cover plate can move to close the opening, and can open the opening. The control device can select hydraulic telescopic rod or electric telescopic rod and its accessories.

[0014] This technical solution, because of the movement of the shielding cover plate, the opening state can be controlled, so that the size of the electrostatic force generated by the electrostatic field of the second and third charge retainers on the first charge retainer can be controlled, that is, the size of the force acting on the rotor can be controlled, and the on-off state of the charge retainer power-saving motor can also be controlled.

[0015] The edges on both sides of the opening can be preferably set as axe-shaped slopes, and the slopes are directed outward. The purpose is to facilitate the installation of the second and third charge retainers on the corresponding more favorable positions, so as to generate greater positive effect electrostatic force on the first charge retainer and make the rotor rotate more powerfully. That is, the negative effect of the thickness of the edges on both sides of the opening can be reduced.

[0016] The electricity-preserving body in the first electricity-preserving body is arranged in parallel with the electricity-preserving body in the second electricity-preserving body and the electricity-preserving body in the third electricity-preserving body.

[0017] The shielding shell is provided with a grounding wire, which is a shell conductive wire for temporarily or long-time grounding to eliminate adverse electrostatic charge on the shell. Moreover, the conductive wire can be retracted or removed when it is not needed.

[0018] The shielding shell, the outer shell and the shielding cover plate are made of hard conductor or hard metal material.

[0019] Compared with the prior art, the application has the following advantages.

[0020] The electricity-preserving body energy-saving motor can generate electrostatic force on the electricity-preserving body and the rotor by using the second electricity-preserving body and the third electricity-preserving body with different electrostatic properties, and the shielding shell can shield part of the negative electrostatic field to hinder the rotation of the rotor, and the positive electrostatic field can generate positive electrostatic force on the rotor through the opening, so that the rotor can continuously rotate in the designed direction and do work. Moreover, the charge of all electricity-preserving bodies is not lost, and the motor has the advantages of energy saving, environmental protection, large power and wide application. It can be widely used in industry, agriculture, national defense and people's life, and can solve the problem of continuous power supply of the existing electrostatic motor during operation. BRIEF DESCRIPTION OF DRAWINGS

[0021] The schematic drawings and their descriptions provided herein are used to help understand and understand the application, and form part of the patent application. The preferred embodiments and their descriptions in the patent application are used to explain the application, and cannot limit the scope of the claims of the application. In the drawings:

[0022] Fig. 1 It is a schematic diagram of the front view structure of the application;

[0023] Fig. 2 It is a schematic diagram of the side view structure of the application;

[0024] Fig. 3 It is a schematic diagram of the front view half-section structure of the application.

[0025] Fig. 1: 1, outer shell; 2, shielding shell; 21, opening; 3, stator; 31, mounting auxiliary material; 32, second electric field protector; 33, third electric field protector; 4, rotor; 41, rotating shaft; 42, connector; 43, first electric field protector; 5, shielding cover plate; 6, regulating device; 7, bearing; 8, grounding wire. DETAILED DESCRIPTION

[0026] The specific embodiments of the present application will be described below with preferred embodiments and drawings. For the purpose of clear illustration, some specific details will be described in the following description. However, it should be noted that these specific details are not used to limit the scope of the claims of the present application. That is, in the specific embodiments of the present application, some specific details are not necessary. In addition, for the purpose of simplifying the drawings, some conventional and commonly used structures and components will be shown in the drawings in a simple schematic manner.

[0027] In addition, in the present application, the description such as "first", "second", etc. is intended to facilitate the differentiation of similar components arranged in different positions or places and having different purposes, and is not intended to specifically indicate the order or sequence, nor to limit the present application, nor to be understood as indicating or implying the number of certain technical features. Furthermore, the two embodiments described below are related and can be understood in combination, but must be based on the ability of a person skilled in the art to implement them.

[0028] Embodiment One

[0029] A method for manufacturing an electric field protector according to the present application, characterized by the following process, comprising:

[0030] D1. Under vacuum conditions or in a dry environment (the higher the vacuum or dryness, the better), by rotating the core mold of the electric field protector, the applicable insulating adhesive tape or adhesive tape can be tightly wound on the core mold. The length, width, thickness, and insulation strength, tensile strength, and adhesive strength of the adhesive tape or adhesive tape must meet the design requirements. The core mold can be made into various different shapes for selection, such as cylindrical core mold, semi-cylindrical core mold, cylindrical core mold, sleeper-shaped core mold, door panel-shaped core mold, triangular core mold, brick-shaped core mold, etc. The size of the core mold can be customized according to actual needs and can be preferably made of hard insulating material;

[0031] D2. While tightly winding the insulating adhesive tape or adhesive tape, the non-adhesive side of the adhesive tape or adhesive tape can be brushed with positive or negative electric charge using a charge brusher, thereby manufacturing an electrified body.

[0032] In the process of charging with the charge brusher, the charge brusher is connected with the positive pole or negative pole of the direct current power supply through a wire. The charge brusher is placed at a favorable position on the surface of the insulating tape or adhesive tape to charge the tape. When the tape is wound around the core, the tape is charged with positive or negative charges. The tape is evenly charged or sprayed with positive or negative charges gradually. The charged body with the designed shape and size can carry a certain amount or a large amount of charges. The charge brusher can be an electric brush or a metal roller and its accessories.

[0033] D3. The charged body is tightly wrapped or packaged with an insulating material with the designed insulation strength, waterproof and moisture-proof performance, and tensile strength. The electric storage body with the designed shape and size can carry a certain amount or a large amount of static charges for a long time in a normal environment. The shape of the electric storage body can be cylindrical, semi-cylindrical, cylindrical, sleeper-shaped, door-shaped, brick-shaped, triangular, and other shapes according to the actual needs.

[0034] Example Two

[0035] Please refer to Figs. 1-3A kind of energy-saving motor of electric body protector, its characteristics include: the first electric body protector 43 and the second electric body protector 32 and the third electric body protector 33 are made according to the electric body protector making method described above.The first electric body protector 43 and the second electric body protector 32 and the third electric body protector 33 can be respectively composed of one or more electric body protectors, and the shape of the electric body protector among them can be selected as cylindrical electric body protector, or cylindrical electric body protector, or other suitable shape electric body protector;And the first electric body protector 43 is the electric body protector with complete positive charge or complete negative charge, and the second electric body protector 32 and the third electric body protector 33 are the electric body protector with completely different electric charge properties.The shielding shell 2 is included, and at least one or more openings 21 are formed on the appropriate place of the shielding shell 2 shell wall, the opening 21 is relevant to the opening of electrostatic field, and the opening 21 can be formed as similar rectangular opening 21, or square opening 21, or other suitable geometric opening 21.The size of the opening 21 can be set according to the specific design requirements.The bearing 7 is fixed on the appropriate place of the two end surfaces of the shielding shell 2, and the shielding shell 2 has the function of electric field shielding and the function of supporting the structure of the electric body protector energy-saving motor.The size of the shielding shell 2 can also be set according to the specific design requirements.The shielding shell 2 can be selected as cylindrical cavity shielding shell, or round flat cavity shielding shell, or oval cavity shielding shell, or back-shaped cavity box shielding shell, or other suitable form cavity shielding shell.The rotor 4 is also included, the rotor 4 has the rotating shaft 41, the rotating shaft 41 is connected with the first electric body protector 43 by using suitable connecting material 42, and the rotor 4 is installed in the cavity of the shielding shell 2 by connecting the rotating shaft 41 with the bearing 7, so that the rotor 4 can rotate.The shape and size of the rotor 4 are matched with the shape and size of the cavity of the shielding shell 2.The rotor 4 can be selected as drum type rotor, or runner type rotor, or oval track type rotor, or quadrilateral track type rotor, or other suitable form rotor.The connecting material 42 can be preferably used with suitable insulating material.The stator 3 is also included, the stator 3 has the second electric body protector 32 and the third electric body protector 33, and the second electric body protector 32 and the third electric body protector 33 are respectively installed on the outer surface of the shielding shell 2 by using the installation auxiliary material 31, and are respectively installed on the corresponding advantageous position of the opening 21 on both sides, which is beneficial to driving the rotor 4 to rotate to the designed or designated direction.The above technical solution, because of the use of the second electric charge body 32 and the third electric charge body 33 with different electric charge properties, the stable electrostatic field generated can continuously generate electrostatic force on the electric charge of the first electric charge body 43, that is, continuously generate electrostatic force on the rotor 4, and use the shielding shell 2 to shield part of the negative effect electrostatic field of the rotor 4 to the designed or designated direction of rotation, and let part of the positive effect electrostatic field pass through the opening 21 to continuously generate positive effect electrostatic force on the rotor 4, so that the rotor 4 can continuously rotate to the designed or designated direction and do work to the outside. Moreover, the charge amount of all electric charge bodies will not be lost, and a power-saving electric motor with a larger power can be made, which has the advantages of energy saving, environmental protection and wide application.

[0036] The outer periphery of the stator 3 is covered with an outer shell 1 and is fixedly connected with the outer surface of the shielding shell 2. It has an electric field shielding function and an internal protection effect.

[0037] At the opening 21 of the shielding shell 2, a shielding cover plate 5 that can move and completely cover or completely close the opening 21 and can be completely opened is provided by using necessary accessories. The shielding cover plate 5 has an electric field shielding function. Moreover, the shielding cover plate 5 is connected with a control device 6 that can control the shielding cover plate 5. The control device 6 is installed on the shell beside the opening 21 or on the appropriate place of the object, so that the shielding cover plate 5 can move to close the opening 21 and open the opening 21. The control device 6 can be a hydraulic telescopic rod or an electric telescopic rod and its accessories. This technical solution, by moving the shielding cover plate 5, the opening and closing state of the opening 21 can be controlled, so that the electrostatic field of the second electric charge body 32 and the third electric charge body 33 can control the size of the electrostatic force generated on the first electric charge body 43, that is, the size of the force acting on the rotor 4, and the on-off state of the electric charge body energy-saving motor can also be controlled.

[0038] The edges on both sides of the opening 21 can be preferably set as an axe-shaped slope, and the slope faces outward. The purpose is to facilitate the fixing of the second electric charge body 32 and the third electric charge body 33 in the corresponding more favorable place, which is beneficial to generate larger positive effect electrostatic force on the first electric charge body 43 and make the rotor 4 rotate more powerfully. That is, the negative effect of the thickness of the edges on both sides of the opening 21 can be reduced.

[0039] The electric charge bodies in the first electric charge body 43 are respectively arranged in parallel with the electric charge bodies in the second electric charge body 32 and the electric charge bodies in the third electric charge body 33.

[0040] The shielding shell 2 is provided with a grounding wire 8, which is a shell conductive wire for eliminating adverse static charge on the shell. The conductive wire can be retracted or removed when not in use.

[0041] The shielding shell 2, the outer shell 1 and the shielding cover plate 5 are made of hard conductor or hard metal material.

[0042] The energy-saving motor provided by the application can generate electrostatic force on the first electric charge body 43 by using the second electric charge body 32 and the third electric charge body 33, which have different electric charge properties, and can generate electrostatic force on the rotor 4. The shielding shell 2 can shield the negative electrostatic field of the rotor 4 and allow the positive electrostatic field to generate positive electrostatic force on the rotor 4 through the opening 21, so that the rotor 4 can rotate in the designed direction and do work. The charge of all electric charge bodies is not lost, and the motor has the advantages of energy saving, environmental protection, large power and wide application.

[0043] The above-mentioned embodiments are preferred embodiments of the application and are not used to limit the scope of the claims of the application. For those skilled in the art, the application has other various embodiments, so any other equivalent replacement or change based on the idea and principle of the application should be included in the scope of the claims of the application.

Claims

1. An energy-saving electric motor with a power-saving body, characterized in that: It comprises: The first electric field protector (43) and the second electric field protector (32) and the third electric field protector (33), and the first electric field protector (43) is a completely positively charged or completely negatively charged electric field protector, and the second electric field protector (32) and the third electric field protector (33) are completely different electric field protectors in charge property; It comprises a shielding shell (2), at least one or more openings (21) are provided on the shell wall of the shielding shell (2), and bearings (7) are fixedly arranged on the end surface of the shielding shell (2); It also comprises a rotor (4), the rotor (4) has a rotating shaft (41), the first electric field protector (43) is connected to the rotating shaft (41) by a connecting member (42), and the rotor (4) is installed in the cavity of the shielding shell (2) by connecting the rotating shaft (41) and the bearings (7); It also comprises a stator (3), the stator (3) has the second electric field protector (32) and the third electric field protector (33), and the second electric field protector (32) and the third electric field protector (33) are respectively installed on the outer surface of the shielding shell (2) by using the installation auxiliary material (31), and are respectively installed on both sides of the opening (21); The manufacturing of the first electric field protector (43), the second electric field protector (32) and the third electric field protector (33) comprises the following steps: D1. Under vacuum condition or dry environment, the insulating adhesive tape or tape is wound on the core mold of the electric field protector by rotating the core mold; D2. The insulating adhesive tape or tape can be wound while the electric charge brusher is used to brush positive or negative charge on the adhesive tape or tape, so as to manufacture the charged body; D3. The charged body is wrapped or packaged with insulating material, so as to manufacture the electric field protector.

2. A power preserving energy efficient motor as claimed in claim 1, wherein: The periphery of the stator (3) is covered with an outer shell (1) and is fixedly connected with the outer surface of the shielding shell (2).

3. A power preserving energy efficient motor as claimed in claim 1, wherein: At the opening (21) of the shielding shell (2), a shielding cover plate (5) which can move and completely cover or close the opening (21) and can completely open is arranged, and the opening and closing state of the opening (21) can be controlled, and the shielding cover plate (5) is connected with a control device (6) which can control the shielding cover plate (5).

4. A power preserving energy efficient motor as claimed in claim 3, wherein: The control device (6) is installed on the shell or object beside the opening (21), and the shielding cover plate (5) can be closed and opened by moving the shielding cover plate (5), and the control device (6) can select hydraulic telescopic rod or electric telescopic rod and its accessories.

5. A power preserving energy efficient motor as claimed in claim 1, wherein: The edges on both sides of the opening (21) can be preferably provided with axe-shaped slope surfaces.

6. A power preserving energy efficient motor as claimed in claim 1, wherein: The electric field protectors in the first electric field protector (43), the second electric field protector (32) and the third electric field protector (33) are respectively arranged in parallel with each other.

7. A power preserving energy efficient motor as claimed in claim 1, wherein: The shielding shell (2) is provided with a grounding wire (8).

Citation Information

Patent Citations

  • Energy-saving motor with electricity protection body

    CN219247728U

  • Vibration power generation cable, manufacturing method therefor, and vibration power generation body

    WO2014017172A1