Machine for converting free energy into free energy

Through the principle of combining motion and static force, the electromechanical structure of static energy power is used to solve the problems of energy crisis and natural energy hazards, the creation of free energy is realized, the inexhaustible energy source is provided, and social economy and civilized development is promoted.

CN120165550APending Publication Date: 2025-06-17范兰新
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510362581.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-26
Publication Date
2025-06-17

AI Technical Summary

Technical Problem

The existing technology is difficult to solve the energy crisis, the hazards and unsustainability of natural material energy.

Method used

Using the principle of combining motion and static force, through the structure of static energy power electromechanical components, an inexhaustible and inexhaustible free energy is formed.

Benefits of technology

It has realized the conversion of static energy power into electrical energy, replaced the traditional sports energy power generation, and provided an inexhaustible source of energy, which is of great significance to the development of society, economy and civilization.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120165550A_ABST
    Figure CN120165550A_ABST
Patent Text Reader

Abstract

The invention relates to a machine for converting a free energy source machine into a free energy source. The device structurally comprises a bearing seat, a flange shaft, an auxiliary bent plate, a bent back, a front bent plate, a bent back belt wheel, a supporting seat, a coupler, a hollow static shaft, hollow static gear teeth, a static curved shaft, static curved gear teeth, a static loading inner bearing, a static loading wheel, a static loading bearing, a static loading wheel sleeve and static loading gear teeth, wherein a static crank sliding bearing is arranged on the static loading wheel sleeve; the device comprises a fixed crank wheel, a fixed crank outer bearing, a transverse crank bearing, a transverse crank cam, a transverse crank shaft, a curved-back bearing, a curved-back sleeve seat and a curved-back sleeve hole, fixed curved gear teeth, a fixed curved shaft, a hollow static wheel disc, a hollow static bearing, a hollow static concave wheel groove, fixed static gear teeth, a generator middle shaft and generator middle shaft gear teeth are arranged on the static loading gear teeth, and the hollow static bearing in the hollow static wheel disc is located in the middle of the fixed curved shaft.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to a free energy machine for converting free energy. Background Art

[0002] With the development of mankind and the ever-changing and continuous update of modern science and technology, the material energy existing in nature is far from meeting the needs. The worldwide energy crisis increasingly forces mankind to conduct new explorations. Therefore, the creation and invention of free energy are extremely important. It is the key to the sustainable and stable growth of the economy, the key to the improvement of the living standards of all mankind, and the key to the world entering a new era. Coal is the muscle of the earth, and oil is the blood of the earth. Mankind cuts the flesh and sucks the blood of the earth, and the earth gives mankind various natural disasters. Therefore, the creation and invention of free energy are of great significance for promoting the development of China's national economy and for improving the world economy and the quality of life of all mankind. In the real world, the natural material energy commonly used by mankind has long been recognized as harmful by mankind, but it is still difficult to get rid of the factors affecting the development of human economy and civilization. Therefore, free energy is a great feat that breaks away from natural energy and benefits the human world, with historical significance. Summary of the Invention

[0003] The object of the present invention is to provide a free energy that transcends natural material energy. It adopts the dynamic principle of the extreme opposite of basic science, that is, the principle of combining moving force and static force to form free energy. Its nature is inexhaustible and it is of great significance for the economic and civilized development of all mankind and for saving the earth.

[0004] To achieve the above object, the technical solution of the present invention is as follows: A free energy machine conversion free energy machine, characterized by including: a curved back, a curved back socket, a curved back socket hole, a curved back bearing, a hollow stationary shaft, hollow stationary gear teeth, a hollow stationary wheel disc, a hollow stationary bearing, a hollow stationary cam groove, a stationary curved shaft, stationary curved gear teeth, a stationary loading wheel, a stationary loading bearing, a stationary loading wheel sleeve, stationary loading gear teeth, a stationary loading bearing, a generator main shaft gear tooth, a fixed curved gear tooth, a fixed curved shaft, a fixed curved gear tooth, a stationary crank wheel, a stationary crank sliding bearing, an outer bearing of the stationary crank wheel, a transverse crank shaft, a transverse crank bearing, a transverse crank cam, a positive curved plate, a secondary curved plate, a flange bearing, a flange shaft, a curved back pulley, a bearing seat, a support seat, bolts, a motor, a generator, a machine foot frame, an electronic switch, and a coupling. Among them, the curved back, the curved back socket, the curved back socket hole, the positive curved plate, the secondary curved plate, the flange shaft, the curved back pulley, the flange bearing, the bolts, the machine foot frame, the electronic switch, the support seat, and the coupling are the external structural component combinations of the free energy machine, and the positive curved plate, the curved back, and the secondary curved plate are connected by bolts. The internal structural component combination of the free energy machine is the curved back, the hollow stationary shaft, the stationary curved shaft, the stationary loading wheel, the fixed curved shaft, the stationary crank wheel, and the transverse crank shaft. The curved back contains a curved back socket, a curved back socket hole, and a curved back bearing. The hollow stationary shaft contains hollow stationary gear teeth, a hollow stationary wheel disc, a hollow stationary bearing, and a hollow stationary cam groove. The stationary curved shaft contains stationary curved gear teeth. The stationary loading wheel contains a stationary loading inner bearing, a stationary loading wheel sleeve, stationary loading gear teeth, and a stationary loading bearing. The fixed curved shaft contains fixed curved gear teeth and fixed stationary gear teeth. The stationary crank wheel contains a stationary crank sliding bearing and an outer bearing of the stationary crank. The transverse crank shaft contains a transverse crank bearing and a transverse crank cam. The curved back bearing is included therein. The transverse crank shaft, the fixed curved shaft, and the stationary curved shaft are formed by two symmetrical combinations. The stationary loading wheel, the stationary crank wheel, and the hollow stationary wheel disc all have two symmetrical round holes, and corresponding bearings are installed in the round holes. This is the internal structural component combination of the free energy machine.

[0005] The described hollow stationary shaft contains hollow stationary gear teeth, a hollow stationary wheel disc, a hollow stationary bearing, and a hollow stationary cam groove. The hollow stationary shaft is cylindrical, and the inside of the cylinder of the cylindrical hollow stationary shaft is hollow. A generator main shaft is installed in the hollow of the cylinder. The right end face of the hollow stationary shaft is disc-shaped, and there are screw holes in the disc shape. The hollow stationary shaft is connected to the support seat by screws. There are hollow stationary gear teeth in the middle section of the hollow stationary shaft, and the hollow stationary gear teeth are in a circumferential tooth shape. There is a hollow stationary wheel disc on the left end face of the hollow stationary shaft. The hollow stationary wheel disc is fixed to the hollow stationary shaft in a disc shape. There is a through hole in the hollow stationary wheel disc, and a hollow stationary bearing is installed in the through hole. A fixed curved shaft is installed in the hollow stationary bearing. There is a hollow stationary cam groove on the right side of the upper end face of the hollow stationary wheel disc, and the hollow stationary cam groove contacts the transverse crank cam. The through hole containing the hollow stationary bearing is symmetrically located in the hollow stationary wheel disc.

[0006] The described curved back contains a curved back socket, a curved back socket hole, and a curved back bearing. The curved back is disc-shaped. On the inner end face of the disc-shaped curved back, there are two symmetrically trapezoidal-structured curved back sockets. On the center face of the trapezoidal curved back socket, there is a cylindrical curved back socket hole, which is divided into a large socket hole and a small socket hole. The small socket hole is located on the inner face of the curved back bearing, and the curved back bearing is installed in the curved back socket hole of the curved back socket.

[0007] The described stationary curved shaft contains stationary curved gear teeth. The stationary curved gear teeth are circular in circumference. The gear teeth are located at the upper end of its protruding face. The stationary curved shaft is installed in symmetrically arranged through holes through the through-hole bearings in the stationary loading wheel and the through-hole bearings in the stationary crank wheel, and the circular gear teeth of the stationary curved shaft are in contact with the hollow stationary gear teeth.

[0008] The described stationary loading wheel contains a stationary loading inner bearing, a stationary loading wheel sleeve, stationary loading gear teeth, and a stationary loading bearing. The stationary loading wheel is disc-shaped with a cylindrical through hole in the middle. On the left end face of the cylinder, its protruding part is a circular gear tooth. The bottom of the disc-shaped stationary loading wheel is equipped with a stationary loading inner bearing. There are symmetrically arranged through holes at the upper end of the stationary loading wheel disc, and stationary loading bearings are installed in the through holes. The stationary curved shaft is installed in the stationary loading bearings. A stationary crank wheel is installed in the stationary loading wheel sleeve in the middle of the stationary loading wheel. The stationary loading wheel sleeve and the stationary crank wheel are matched through the stationary crank wheel inner bearing.

[0009] The described fixed curved shaft contains fixed curved gear teeth and fixed stationary gear teeth. The fixed curved shaft is cylindrical. There are gear teeth on the protruding part of the circumference of the right end face of the cylinder, which are the fixed curved gear teeth. And on the left end face, its matching circular fixed stationary gear teeth are installed. The fixed stationary gear teeth are in contact with the generator main shaft gear teeth, and the fixed curved shaft is in contact with the stationary loading gear teeth. At the same time, the fixed curved shaft is installed in the hollow stationary bearing in the through hole of the hollow stationary wheel disc in the hollow stationary shaft.

[0010] The described stationary crank wheel contains a stationary crank sliding bearing and a stationary crank outer bearing. The stationary crank wheel is disc-shaped. There are two symmetrically arranged circular through holes in the stationary crank wheel, and stationary crank outer bearings are installed in the circular through holes. The middle through hole of the stationary crank wheel is matched with the stationary loading wheel sleeve, and a stationary crank sliding bearing is installed in the middle through hole. At the same time, on the upper end face of the stationary crank wheel, there are two symmetrically arranged cylindrical holes, and transverse crank bearings are installed in the holes.

[0011] The described horizontal crankshaft includes a horizontal crank bearing, a horizontal crank cam, and a curved-back bearing. The horizontal crankshaft is cylindrical. A curved-back bearing is installed on the upper end face of the horizontal crankshaft. The upper cylinder of the horizontal crankshaft is within the curved-back bearing. The bottom of the lower end face of the horizontal crankshaft is a lower cylinder. A horizontal crank bearing is installed on the lower cylinder of the horizontal crankshaft. The horizontal crank cam is on the outer circular surface at the bottom of the horizontal crankshaft, and the horizontal crank cam matches with a hollow stationary concave cam.

[0012] The advantages of the present invention are as follows: This free energy machine can be divided into two parts: the external structure and the internal structure. Its external structure is simple, consisting of a closed motion structure, while the internal structure is composed of electromechanical component structures with static energy power. Therefore, the core technology of the free energy machine is static energy power. Since static energy power is a new type of static energy power that can generate energy, its main function is to directly apply static energy power to power generation, thus directly replacing kinetic energy power. And the current power generation system in the world is determined by kinetic energy power. Therefore, the invention and application of static energy power is a change in perception, because in all perceptions, static components cannot generate energy power. In order to break through the dream of the world scientific community of combining two extremely opposite aspects of basic science, just like the invention of electricity, which contains the combination of the relativity of positive and negative poles, thus generating electric energy. The invention of the free energy machine contains kinetic force and static force, and they both have the principle of combining two extremely opposite aspects: positive and negative, moving and static. It is the key to breaking through the extreme opposite aspects of basic science and also a great feat for the free energy to replace natural energy and benefit the human world. The working principle of the free energy machine adopts the principle of relativity between kinetic energy power and static energy power, that is, motion and static, and at the same time adopts the principle of static relativity, including passive static power, active static power, moving-static power, fixed static power, horizontal static power, and vertical static power, loaded static power and unloaded static power. Among them, passive static power is the source of static power in electromechanical equipment, active static power is the generation of static power in electromechanical equipment, moving-static power is the conversion center point of static power in electromechanical equipment, fixed static power is set up for the overall motion to cope with load weight extrusion without rotation, horizontal static power is used to cope with the linear vertical extrusion motion of the load, and its role in electromechanical equipment is to disrupt the load, vertical static power is the direction of static power movement in electromechanical equipment, loaded static power is the loading space for the load in electromechanical equipment, and its independent loading space plays a role in loading the load, unloaded static power is used to set up an overhead structure inside and outside the loading space for the load in electromechanical equipment, playing an overhead truncation role. And through the electric energy of the motor, free energy machine, and generator, the electric energy is switched to the motor through the electronic switch, enabling the three units to achieve the circulation of electric energy. And the generated electric energy for external output is free energy, and free energy is inexhaustible and can be used continuously, which is of great significance for the social economy and civilization development of all mankind and for saving the earth. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 It is a schematic structural diagram of the present invention; Figure 2 is Figure 1 an installation schematic diagram; Figure 3 For Figure 2 Front view; Figure 4 Schematic structural diagram of the curved back, hollow stationary shaft, stationary curved shaft, stationary loading wheel; fixed curved shaft, stationary crank wheel, and transverse crank shaft of the present invention; Figure 5 For Figure 4 Cross-sectional view.

[0014] In the figure: 1, curved back; 2, curved back sleeve seat; 3, curved back sleeve hole; 4, curved back bearing; 5, hollow stationary shaft; 6, hollow stationary gear teeth; 7, hollow stationary wheel disc; 8, hollow stationary bearing; 9, hollow stationary concave wheel groove; 10, stationary curved shaft; 11, stationary curved shaft gear teeth; 12, stationary loading wheel; 13, stationary loading bearing; 14, stationary loading wheel sleeve; 15, stationary loading wheel gear teeth; 16, stationary loading inner bearing; 17, generator main shaft; 18, generator main shaft gear teeth; 19, fixed curved gear teeth; 20, fixed curved shaft; 21, fixed stationary gear teeth; 22, stationary crank wheel; 23, stationary crank sliding bearing; 24, stationary crank outer bearing; 25, transverse crank shaft; 26, transverse crank bearing; 27, transverse crank cam; 28, positive curved plate; 29, negative curved plate; 30, flange bearing; 31, flange shaft; 32, curved back pulley; 33, bearing seat; 34, support seat; 35, bolt; 36, motor; 37, generator; 38, machine foot frame; 39, electronic switch; 40, coupling. Specific implementation method

[0015] The present invention will be further described with reference to the structural implementation of the attached drawings: Figure 1They respectively include: a curved back 1, a hollow stationary shaft 5, a hollow stationary wheel disc 7, a hollow stationary cam groove 9, a stationary curved shaft 10, a stationary loading wheel 12, a stationary loading wheel sleeve 14, a generator main shaft 17, a fixed curved shaft 20, a stationary crank wheel 22, a transverse crank shaft 25, a transverse crank cam 27, a positive curved plate 28, a negative curved plate 29, a flange shaft 31, a curved back belt pulley 32, a bearing seat 33, and a support seat 34. Among them, the curved back 1, the negative curved plate 29, and the positive curved plate 28 are connected by bolts. The hollow stationary shaft 5 and the support seat 34 are connected by screws. The positive curved plate 28 and the curved back belt pulley 32 are connected by screws. The negative curved plate 29 and the flange shaft 31 are connected by screws. And in the curved back 1, there are a curved back sleeve seat, a curved back sleeve hole, and a curved back bearing that are symmetric. The upper end face of the transverse crank shaft 25 is connected to the curved back bearing in the curved back 1, and the lower end face of the transverse crank shaft 25 is connected to the transverse crank bearing on the upper end face of the stationary crank wheel 22. The stationary loading wheel 12 and the stationary crank wheel 22 are respectively installed on the corresponding positions of the hollow stationary shaft 5 through a stationary loading inner bearing and a stationary crank wheel sliding bearing. The stationary curved teeth in the stationary curved shaft 10 are in contact with the hollow stationary teeth in the hollow stationary shaft 5. The stationary loading teeth in the stationary loading wheel 12 are in contact with the fixed curved teeth in the fixed curved shaft 20. The fixed stationary teeth in the fixed curved shaft 20 are in contact with the generator main shaft teeth in the generator main shaft 17. The stationary curved shaft 10 is respectively installed in two symmetric circular through holes of the stationary loading wheel 12 and the stationary crank wheel 22 through bearings. The fixed curved shaft 20 is respectively installed in two symmetric circular through holes of the hollow stationary wheel disc 7 in the hollow stationary shaft 5 through bearings. The hollow stationary cam groove 9 on the position of the hollow stationary wheel disc 7 in the hollow stationary shaft 5 matches the transverse crank cam 27 in the transverse crank shaft 25. The left end face of the hollow stationary shaft 5 extends into the internal movement of the free energy machine.

[0016] Figure 2 In Figure 3, the curved back 1, the positive curved plate 28, and the negative curved plate 29 are connected by a bolt 35. The positive curved plate 28 and the curved back belt pulley 32 are connected by screws. The negative curved plate 29 and the flange shaft 31 are connected by screws. The hollow stationary shaft 5 and the support seat 34 are connected by screws. A bearing seat 33 is installed on the left surface of the machine foot frame 38, and a support seat 34, an electronic switch 39, and a coupling 40 are installed on the right surface of the machine foot frame 38. Among them, the motor 36, the free energy machine, the generator 37, and the electronic switch 39 form a unit circulation system, and the externally transmitted electric energy is free energy.

[0017] Figure 4In 1-5, the bent back 1 is disc-shaped and contains a bent back socket 2, a bent back socket hole 3, and a bent back bearing 4. The bent back socket 2 is of a trapezoidal structure in two symmetrical parts. On the central plane of the trapezoidal bent back 2, there is a cylindrical bent back socket hole 3. The cylindrical bent back socket hole 3 is divided into a large socket hole and a small socket hole. The small socket hole is on the inner surface of the bent back bearing 4, and the large socket hole matches the bent back bearing 4. A transverse crankshaft 25 is installed in the bearing inner hole of the bent back bearing 4. The transverse crankshaft 25 is cylindrical. Its upper end surface is in the inner hole of the bent back bearing 4, and its lower end surface is between the two symmetrical circular hole positions of the stationary crank wheel 22 and the bearing inner hole of the transverse crank bearing 26. Moreover, bearings match both the upper and lower shaft surfaces of the transverse crankshaft 25. The transverse crank cam 27 in the transverse crankshaft 25 contacts the hollow stationary concave groove 9 in the hollow stationary shaft 5 during movement, causing the transverse crankshaft 25 to move horizontally during movement. At the same time, when the bent back 1 moves forward, it forms a fusion of horizontal and vertical stationary power. The stationary crank wheel 22 is disc-shaped and contains a stationary crank sliding bearing 23 and a stationary crank outer bearing 24. There are two symmetrical circular holes on the upper end surface of the stationary crank wheel 22, and a transverse crank bearing 26 is installed in the circular hole positions. A stationary crank sliding bearing 23 is installed in the central circular hole of the stationary crank wheel 22. Stationary crank outer bearings 24 are installed in the two symmetrical circular through-holes on the stationary crank wheel 22. A stationary curved shaft 10 is installed in the bearing inner hole of the stationary crank outer bearing 24. The hollow stationary shaft 5 is cylindrical, and its interior is hollow. A generator main shaft 17 is installed in the hollow interior of the cylinder. The right end surface of the hollow stationary shaft 5 is disc-shaped with screw holes. The hollow stationary shaft 5 is connected to the support seat 34 by screws. There is a hollow stationary gear tooth 6 in the middle of the hollow stationary shaft. The hollow stationary gear tooth 6 is in a circumferential gear shape. The stationary curved shaft gear tooth 11 contacts the hollow stationary gear tooth 6 to form stationary energy power during working movement. A stationary loading wheel 12 is installed on the middle plane between the stationary crank wheel 22 and the stationary curved shaft gear tooth 11. The stationary loading wheel 12 is disc-shaped. There are two symmetrical through-holes at the upper end of the stationary loading wheel 12, and a stationary loading bearing 13 is installed in the through-holes. Moreover, the stationary curved shaft 10 is fixed in the bearing inner hole through the stationary loading bearing 13. The stationary curved shaft 10 is respectively fixedly connected to the two symmetrical through-hole bearings of the stationary loading wheel 12 and the stationary crank wheel 22. The bottom of the stationary loading wheel 12 is cylindrical. The circumferential teeth of the protruding part on the left end surface of the cylinder are stationary loading wheel teeth 15. The stationary loading wheel teeth 15 contact the fixed curved shaft gear teeth. A stationary loading inner bearing 16 is installed in the bottom through-hole of the stationary loading wheel 12. The stationary crank wheel 22 is installed on the stationary loading wheel sleeve 14 and matches through the stationary crank sliding bearing 23. There is a hollow stationary wheel disc 7 on the left end surface of the hollow stationary shaft 5. The hollow stationary wheel disc 7 is disc-shaped and fixed on the left end surface of the hollow stationary shaft 5. There are two symmetrical through-holes in the hollow stationary wheel disc 7,A hollow stationary bearing 8 is installed in the through hole, and a fixed curved shaft 20 is installed in the hollow stationary bearing 8. On the right side of the upper end surface of the hollow stationary disk 7, there is a hollow stationary cam groove 9, which is in contact with the transverse crank cam 27 to form a stationary transverse energy power. The fixed curved shaft 20 is installed as a cylinder in the corresponding through hole bearing of the hollow stationary disk 7. The fixed curved gear teeth 19 at the right end of the fixed curved shaft 20 are in contact with the stationary loading gear teeth 15, and the fixed stationary gear teeth 21 at its left end are in contact with the generator main shaft gear teeth 18 to form a fixed stationary energy power, that is, the fixed stationary principle of moving without rotating.,

[0018] When the free energy machine is working, the external structure of the free energy machine, the curved-back pulley 32, is driven by the motor 36 to operate. The overall external structure moves forward. The curved-back sleeve seat 2, the curved-back sleeve hole 3, the curved-back bearing 4 in the curved-back 1, the transverse crankshaft 25, the transverse crank bearing 26, and the transverse crank cam 27 in the curved-back bearing are in contact with the hollow stationary cam groove 9, forming the operation of the transverse stationary power. Since the load is transmitted in a straight line of motion to the curved-back 1, to break this rule, only by disturbing its transmission route and making it reverse and turn horizontally when it rotates forward can the load weight be reduced and the purpose of eliminating the load be achieved. When the curved-back bearing 4 in the curved-back 1 is in electromechanical motion, the outer edge of the curved-back bearing 4 is the force-receiving point of the moving force. When the transverse crankshaft 25 moves vertically forward in the electromechanical system, it rotates horizontally, and under the action of the movement of the steel balls in the curved-back bearing 4, the load is blocked by the rotation of the transverse crankshaft 25 and the curved-back bearing 4 in the curved-back 1.It is also the watershed between the moving force and the static force, and it is also the key to blocking and eliminating the load. The static crank wheel 22, the inner bearing 23 of the static crank wheel, and the outer bearing 24 of the static crank wheel are an integral part of the static crank wheel 22. Its upper end face is connected to the transverse crankshaft 25, but is restricted by the transverse crank bearing 26. The static crank wheel 22 can only move forward. And in the symmetric round holes of the static crank wheel 22, there is the outer bearing 24 of the static crank. In the outer bearing 24 of the static crank, there is a static crankshaft 10 installed. Since the teeth 11 of the static crankshaft and the hollow static teeth 6 will generate static energy power during operation, therefore, when the static crank wheel 22 is working and moving, the load in the static crank wheel 22 is affected by the independent operation of the static crankshaft 10 and its load transmission is blocked, playing a blocking efficiency. At the same time, the static crank wheel 22 is the moving and static power, and is the conversion center point of the static power. The static crank wheel 22 is not directly starting the generator 37 in the electromechanical core, but is a part of the moving and static power. And on the right side of the static crank wheel 22, there is a static loading wheel 12. In the static loading wheel 12, there are a static loading bearing 13, a static loading wheel sleeve 14, and static loading teeth 15. Among them, in the two symmetric round holes of the static loading wheel 12, there is a static loading bearing 13 installed. In the inner hole of the bearing of the static loading bearing 13, there is a static crankshaft 10. Since the static crankshaft 10 has independent operation and static power energy, therefore, the static loading bearing 13 in the static loading wheel 12 moves by itself due to the operation of the static crankshaft 10. Since the static loading teeth 15 are in contact with the fixed crank teeth 19, the load will be transmitted along the static loading teeth 15 to the entire static loading wheel 12. Therefore, from the structure of the static loading wheel 12, it can be seen that the static loading wheel 12 is a structure in an independent form. The static crank wheel 22 in the static loading wheel sleeve 14 is isolated by a static loading inner bearing 16. Therefore, the static loading wheel 12 is generated by following the vehicle-mounted principle, such as the principles of a human-powered unicycle, a bicycle, a four-wheeled vehicle, etc. Its form principle is that human power is the moving force base point, the ground is the static force base point, the central axis in the wheel is the static power base point, and the carrier is the load loading base point. Therefore, the human load will be lower than using vehicle load. Based on the above principle, in the static loading wheel 12, the static crank wheel is the moving force, the hollow static shaft 5 is the static force, the static crankshaft 10 is the static energy power, and the static loading wheel 12 is the carrier.The stationary loading bearing 13 functions to isolate the load. At the same time, the outer circumference of the stationary loading wheel 12 does not come into extrusion contact with other components. It exists in an independent form. Therefore, the mechanical and electrical load can be loaded. A stationary crankshaft 10 is installed on the right side surface of the stationary loading wheel 12. The teeth of the stationary crankshaft 11 are in contact with the hollow stationary gear teeth 6. The stationary crankshaft 10 is connected to the stationary loading wheel 12 and the stationary crank wheel 22 through the stationary loading bearing 13 and the stationary crank outer bearing 24. When the machine operates, the teeth of the stationary crankshaft 11 will perform a circumferential movement along the hollow stationary gear teeth 6 to generate stationary energy power. The rotating stationary crankshaft 10 drives the stationary loading bearing 13 and the stationary crank outer bearing 24, thereby producing an isolation effect on the load. At the same time, it is the source and generation of stationary energy power. On the left side surface of the stationary crank wheel 22, a fixed crankshaft 20 is installed. There are fixed crankshaft gear teeth 19 and fixed stationary gear teeth 21 in the fixed crankshaft 20. Among them, the fixed stationary gear teeth 21 are in contact with the generator main shaft gear teeth 18. The generator main shaft 17 is installed in the through hole in the middle circular hole of the hollow stationary shaft 5 and is positioned on the left end surface of the hollow stationary shaft 5. The fixed crankshaft 20 is fixed in the hollow stationary bearing 8 through the hollow stationary bearings 8 in the symmetrically arranged circular holes in the hollow stationary wheel disc 7. The fixed crankshaft gear teeth 19 are in contact with the stationary loading gear teeth 15. Since the hollow stationary shaft 5 and the hollow stationary wheel disc 7 are an integral whole and are in a stationary state, the fixed crankshaft 20 is in a fixed state and moves on a single point surface during the operation of the machine, rather than a revolving motion. This is the fixed stationary power. Among them, the hollow stationary shaft 5 and the fixed crankshaft 20, including the related components, are in a stationary fixed structure. The components in common machines usually perform circumferential rotation along the generator central shaft 17 to generate electricity. This will cause load-bearing extrusion transmission. Moreover, the greater the load, the heavier the load-bearing extrusion, including the entire core circumference of the machine. Therefore, the fixed stationary power point surface power operation plays a crucial role in reducing the load. The power of the free energy machine works from the outside to the inside, while the generation of the load follows the principle of transmission from the inside to the outside. Then, in the free energy machine, the process experienced by the load consists of the point surface elimination of the fixed stationary power, the loading elimination of the loaded stationary power, the no-load interception of the no-load stationary power, the lateral killing of the lateral stationary power, etc. In summary, this is the principle explanation of the core technology power system of the free energy machine.

Claims

1. A free energy machine for converting free energy, characterized in that: The free energy machine for converting free energy comprises a curved back (1), a curved back sleeve seat (2), a curved back sleeve hole (3), a curved back bearing (4), a hollow stationary shaft (5), a hollow stationary gear tooth (6), a hollow stationary wheel disc (7), a hollow stationary bearing (8), a hollow stationary concave wheel groove (9), a stationary curved shaft (10), a stationary curved gear tooth (11), a stationary loading wheel (12), a stationary loading bearing (13), a stationary loading wheel sleeve (14), a stationary loading gear tooth (15), a stationary loading inner bearing (16), a generator main shaft (17), a generator main shaft Gear teeth (18), fixed curved gear teeth (19), fixed curved shaft (20), fixed stationary gear teeth (21), stationary crank wheel (22), stationary crank sliding bearing (23), stationary crank wheel outer bearing (24), transverse crank shaft (25), transverse crank bearing (26), transverse crank cam (27), positive curved plate (28), auxiliary curved plate (29), flange bearing (30), flange shaft (31), curved back pulley (32), bearing seat (33), support seat (34), machine stand (38), electronic switch (39), coupling (40); The positive curved plate (28), the curved back (1), and the auxiliary curved plate (29) are connected by bolts (35), and the flange bearing (30) in the central inner hole of the flange shaft (31) matches the main shaft (17) of the generator; wherein the support seat (34) is located in the middle of the free energy machine, the right end face of the hollow stationary shaft (5) is connected to the support seat (34) by screws, and the left end face of the hollow stationary shaft (5) extends into the internal movement of the free energy machine.

2. A free energy machine for converting free energy according to claim 1, characterized in that: The curved back (1) comprises a curved back sleeve seat (2), a curved back sleeve hole (3) and a curved back bearing (4), wherein the curved back (1) is disc-shaped, and on the inner end surface of the disc-shaped curved back, there are two symmetrical curved back sleeve seats (2) with a trapezoidal structure, and on the central point surface of the trapezoidal curved back sleeve seat (2) there is a cylindrical curved back sleeve hole (3), wherein the cylindrical curved back sleeve hole is divided into a large sleeve hole and a small sleeve hole, and the small sleeve hole is located on the inner surface of the curved back bearing (4), and the curved back bearing (4) is installed in the curved back sleeve hole of the curved back sleeve seat (2).

3. A free energy machine for converting free energy according to claim 2, characterized in that: The hollow stationary shaft (5) comprises hollow stationary gear teeth (6), a hollow stationary wheel disc (7), a hollow stationary bearing (8), and a hollow stationary concave wheel groove (9), wherein the hollow stationary shaft (5) is cylindrical, the cylinder of the hollow stationary shaft (5) is hollow, the inner hollow of the cylinder is provided with a generator main shaft (17), the right end face of the hollow stationary shaft (5) is disc-shaped, a screw hole is provided in the disc, the disc screw hole of the hollow stationary shaft (5) is connected to the support seat (34) by screws, the middle section of the hollow stationary shaft (5) is provided with hollow stationary gear teeth (6), the hollow stationary gear teeth (6) are round tooth-shaped, and the left end face of the hollow stationary shaft (5) is provided with a hollow stationary wheel disc (7), the hollow stationary wheel disc (7) is disc-shaped and fixed on the hollow stationary shaft (5), and the hollow stationary wheel disc (7) is fixed on the hollow stationary shaft (5). ) contains a through hole, a hollow stationary bearing (8) is installed in the through hole, a fixed crankshaft (20) is installed in the hollow stationary bearing, and a hollow stationary concave groove (9) is provided on the upper end surface of the hollow stationary wheel disc (7), and the hollow stationary concave groove (9) contacts the transverse crank cam (27), wherein the through hole in which the hollow stationary bearing (8) is installed is symmetrically located in the hollow stationary wheel disc (7), the stationary crankshaft (10) contains stationary curved gear teeth (11), the stationary curved gear teeth (11) are circumferentially shaped, and the gear teeth are located at the upper end of the protruding surface thereof, the stationary curved shaft (10) is installed in the symmetrical through hole bearings through the through hole bearings in the stationary loading wheel (12) and the through hole bearings in the stationary crank wheel (22), and the circumferential gear teeth of the stationary curved shaft (10) contact the hollow stationary gear teeth (6).

4. A free energy machine for converting free energy according to claim 3, characterized in that: The stationary loading wheel (12) comprises a stationary loading inner bearing (16), a stationary loading wheel sleeve (14), stationary loading gear teeth (15) and a stationary loading bearing (13), wherein the stationary loading wheel (12) is in the shape of a disc, has a cylindrical through hole in the middle, the cylindrical part is on the left end face of the stationary loading wheel (12), and its protruding part is a circumferential gear tooth, the stationary loading inner bearing (16) is installed at the bottom of the disc of the stationary loading wheel (12), symmetrical through holes are provided at the upper end of the wheel disc of the stationary loading wheel (12), the stationary loading bearing (13) is installed in the through hole, and the stationary crank shaft (10) is installed in the stationary loading bearing (13), and a stationary crank wheel (22) is installed in the stationary loading wheel sleeve (14) in the middle of the stationary loading wheel (12), and the stationary loading wheel sleeve (14) and the stationary crank wheel (22) are matched through the stationary crank inner bearing (23).

5. The free energy machine for converting free energy according to claim 4, characterized in that: The fixed curved shaft (20) comprises fixed curved gear teeth (19) and fixed stationary gear teeth (21), wherein the fixed curved gear (20) is cylindrical, and has gear teeth on the circumferential protrusion of the right end surface of the cylinder, which are fixed curved gear teeth (19), and the left end surface is provided with matching circumferential fixed stationary gear teeth (21), wherein the fixed stationary gear teeth (21) are in contact with the gear teeth (18) of the generator main shaft, and the fixed curved gear teeth (19) are in contact with the stationary loading gear teeth (15), and the fixed curved shaft (20) is installed in a hollow stationary bearing (8) in a through hole of a hollow stationary wheel disc (7) in a hollow stationary shaft (5).

6. The free energy machine for converting free energy according to claim 5, characterized in that: The stationary crank wheel (22) comprises a stationary crank sliding bearing (23) and a stationary crank outer bearing (24), wherein the stationary crank wheel (22) is in the shape of a disc, and has two symmetrical circular through holes in the stationary crank wheel (22), and the stationary crank outer bearing (24) is installed in the circular through holes, and a stationary loading wheel sleeve (14) is matched in the middle through hole of the stationary crank wheel (22), and the stationary crank sliding bearing (23) is installed in the middle through hole, and two symmetrical cylindrical holes are provided on the upper end surface of the stationary crank wheel (22), and the transverse crank bearing (26) is installed in the holes.

7. A free energy machine for converting free energy according to claim 6, characterized in that: The transverse crank shaft (25) contains a transverse crank bearing (26), a transverse crank cam (27), and a crank back bearing (4), wherein the transverse crank shaft (25) is cylindrical, and the crank back bearing (4) is installed on the upper end surface of the transverse crank shaft (25), the upper cylinder of the transverse crank shaft (25) is in the crank back bearing (4), and the lower end surface of the transverse crank shaft (25) is a lower cylinder, and the transverse crank bearing (26) is installed on the lower cylinder of the transverse crank shaft (25), and the transverse crank cam (27) is provided on the bottom outer circumferential surface of the transverse crank shaft (25), and the transverse crank cam (27) matches the hollow stationary concave wheel groove (9); the electric switch (39) is installed at the electric energy switching point between the motor (36) and the generator (37), forming an electric energy circulation system of the motor (36) free energy machine and the generator (37), and the external electric energy is free energy.