Device for synthesizing and converting object gravity and input power into new power energy

The large friction wheel assembly without a fixed support decomposes the object's gravity into two forces Fa and Fb, and synthesizes the new power Fb·s/t with the input power speed s/t. This solves the problem of converting gravity and power into sustainable energy under the condition of no fixed support, and realizes the sustainability and energy output of the new power energy.

CN120684380APending Publication Date: 2025-09-23董国奇
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Patent Information

Application Number
CN202510943283.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-03
Publication Date
2025-09-23

AI Technical Summary

Technical Problem

Existing technologies make it difficult to effectively synthesize the gravity of an object and input power into a sustainable new power source without a fixed support.

Method used

A large friction wheel assembly without a fixed bracket is used to decompose the gravity of the object into two forces Fa and Fb. The force Fa acts on the shaft and fixed bracket of the small friction wheel assembly, and the force Fb is converted into a new power Fb·s/t. The new power Fb·s/t is synthesized by combining it with the input power speed s/t.

Benefits of technology

Under the condition that the potential energy of the object remains unchanged, the new power Fb·s/t generated is greater than the energy consumed, realizing sustainable new power energy, and the size of the new power changes with the input power speed.

✦ Generated by Eureka AI based on patent content.

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Abstract

According to the device, object gravity and input power are synthesized and converted into new power energy, in the device, component force Fa of gravity W of a combination body C acts on a small friction wheel of a combination body A at a point a, component force Fb of the gravity W acts on gear teeth of a new power gear of a combination body B at a point b, and when a system operates, under the action of the input power N1, the gravity W of the combination body C acts on the gear teeth of the new power gear. Under the action of input power N1, the stress application gear of the combination body A pushes gear teeth of the large gear of the combination body C at a point a to move towards the upper left, under the action of input power N2, the stress application gear of the combination body B pushes gear teeth of the large gear of the combination body C at a point b to move towards the lower right, under the combined action of N1 and N2, the combination body C rotates around the circle center of the combination body C, and in the rotating process, the combination body C rotates around the circle center of the combination body C; new power Fb.s / t can be continuously generated on the gear teeth of the large gear at the point b and is transmitted to a new power gear of the assembly B to do work.
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Description

Technical Field

[0001] The present invention relates to a device which uses a large friction wheel assembly without a fixed support, combines its gravity with input power under the condition that the gravity potential energy of the assembly remains unchanged, and synthesizes and converts it into a new power to become a sustainable energy device. Background Art

[0002] On February 20, 2024, the applicant submitted a patent application to the State Intellectual Property Office entitled "Device for synthesizing the gravity of an object and input power into new power and converting it into electrical energy." The invention uses a sharp elliptical elastic gear ring assembly without a fixed bracket. Under the condition that the gravitational potential energy of the object remains unchanged, the device combines the gravity of the object with the input power and converts it into new power, which is then transmitted to the generator for conversion into electrical energy. Later, the applicant discovered that the application of a large friction wheel assembly without a fixed bracket can also decompose the gravity of the object into two forces (component forces) F a 、F b and the force F a Acting on the shaft and fixed bracket of the small friction wheel assembly, the force F b Convert to new power F b ·s / t. Summary of the Invention

[0003] The purpose of the present invention is to provide a large friction wheel assembly without a fixed bracket, which decomposes the gravity W of the object (large friction wheel assembly) into two forces (component forces) F a 、F b , at point a, the force F a Acting on the shaft and fixed bracket of a small friction wheel assembly with a fixed bracket at the lower left, the force F is applied at point b. b It acts on the new power gear teeth of a new power gear assembly with a fixed bracket on the upper right side. Moreover, the potential energy of the object can remain unchanged when the device is running. The present invention is to operate the system under the condition that the potential energy of the object remains unchanged, and to apply the force F b Combined with the speed s / t of the input power, it is converted into a new power F that can sustain work. b ·s / t, becomes a new sustainable power source, because the force F a It acts on the shaft and fixed bracket of the small friction wheel assembly, and does not require input power to provide a specific force F. a support force, so the energy (new power) generated (converted) when the system is running can be greater than the energy consumed (input power).

[0004] Technical solution of the present invention

[0005] The invention comprises: a small friction wheel assembly, a new power gear assembly and a large friction wheel assembly.

[0006] The small friction wheel assembly consists of two identical small friction wheels with smaller diameters and two identical boosting gears assembled on the same shaft, and has a fixed bracket. The two small friction wheels are respectively arranged at both ends of the shaft and can rotate around the shaft. The two boosting gears are respectively fixed on the shaft on the inner sides of the two small friction wheels.

[0007] The new power gear assembly consists of two identical new power gears and two identical boost gears assembled on the same shaft, and has a fixed bracket. These four gears are the same as the two boost gears in the aforementioned small friction wheel assembly. The two new power gears are fixed at both ends of the shaft, and the two boost gears are connected as one, configured on the inner side of the two new power gears, and can rotate around the shaft.

[0008] The large friction wheel assembly consists of two identical large friction wheels with larger diameter and larger gravity and two identical large gears arranged on the same shaft. There is no fixed bracket. The two large friction wheels are fixed at both ends of the shaft and the component force F of the weight W of the large friction wheel assembly is a Acting on the two small friction wheels, the two large gears are fixed on the shaft close to the inner sides of the two large friction wheels, meshing with the two boosting gears of the small friction wheel assembly at point a, and meshing with the two new power gears and two boosting gears of the new power gear assembly at point b, and at point b, the component force F of the weight W of the large friction wheel assembly is applied to the gears. b Acting on the two new power gear teeth at point b of the new power gear assembly.

[0009] The purpose of the present invention is achieved in this way

[0010] On the circle representing the end face of the large friction wheel, draw two diameters sp and ab with a smaller angle, where the diameter sp is the horizontal diameter, the end point a of the diameter ab is below the point s, and the end point b is above the point p. The component force F of the weight W of the large friction wheel assembly a , acts on the small friction wheel at point a, because the force F a The line of action of the friction wheel assembly is too small, so the force F a The supporting force can be provided by the shaft and fixed bracket of the small friction wheel assembly, and the force F b Acting on the teeth of the new power gear at point b, the direction of the force is perpendicular to the diameter ab.

[0011] When the same speed power is input to the boost gear of the small friction wheel assembly and the boost gear of the new power gear assembly at the same time, the large friction wheel assembly will rotate around its own center. During the rotation, a force F will be generated on the teeth of the large gear at point b. b The new power F converted by synthesizing the speed s / t of the input power b ·s / t is transmitted to the teeth of the new power gear at point b, pushing the new power gear to rotate and do work.

[0012] Beneficial effects of the present invention

[0013] 1. Because the spatial position of the object (large friction wheel assembly) remains unchanged during the operation of the device of the present invention, the magnitude of the object's potential energy remains unchanged, and the object's gravity always exists, therefore, the force F b Able to continuously synthesize the input power speed s / t into new power F b ·s / t, becoming a new sustainable power energy.

[0014] 2. Because of the new power F b The speed s / t is not the free fall speed of the object, but the speed of the input force. Therefore, here, the new force F b The size of s / t is not only related to the size of the object's gravity, but also changes with the change of the input power speed. The greater the speed, the greater the new power F generated. b The larger the s / t ratio is.

[0015] 3. Component force F of the weight W of the large friction wheel assembly a Significantly greater than the component force F b , but because F a It acts on the shaft and fixed bracket of the small friction wheel assembly, so the system does not need to input power to provide the force F when it is running. a The supporting force, thus, the energy generated by the device during operation (new power F b ·s / t), which can be greater than the energy lost (consumed) when the system is running. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic diagram of the present invention.

[0017] The following combination Figure 1 The present invention is further described in detail with reference to the following specific embodiments. DETAILED DESCRIPTION

[0018] Figure 1 The device shown includes: an assembly A, an assembly B, and an assembly C.

[0019] The assembly A is composed of two identical small friction wheels and two identical boosting gears assembled on the same shaft, and has a fixed bracket. The two small friction wheels are respectively arranged at both ends of the shaft and can rotate around the shaft. The two boosting gears are respectively fixed on the shaft on the inner sides of the two small friction wheels. The diameter of the pitch circle of the two boosting gears is equal to or less than the diameter of the two small friction wheels, so as not to affect their normal engagement with the large gear of the assembly C.

[0020] The assembly B consists of two identical new power gears and two identical boost gears assembled on the same shaft, with a fixed bracket. These four gears are exactly the same as the two boost gears in the aforementioned assembly A. The two new power gears are fixed at both ends of the shaft and mesh with the two large gears of assembly C at point b. The two boost gears are connected as one, and are arranged close to the inner side of the two new power gears. They can rotate around the shaft and also mesh with the two large gears of assembly C at point b.

[0021] The assembly C is composed of two identical large friction wheels with larger diameter and larger gravity and two identical large gears arranged on the same shaft, without a fixed bracket. The two large friction wheels are fixed at both ends of the shaft and the component force F of the gravity W of the assembly C is converted to a Acting on the two small friction wheels, the two large gears are fixed on the shaft close to the inner sides of the two large friction wheels, meshing with the two boosting gears of assembly A at point a, and meshing with the two new power gears and two boosting gears of assembly B at point b. The diameter of the pitch circle of the two large gears is equal to or less than the diameter of the two large friction wheels, so as not to affect their normal meshing with the two boosting gears of assembly A, and the tooth width of the large gear is not less than the sum of the tooth width of a new power gear and one boosting gear of assembly B.

[0022] When the system is running at point b, the teeth of the booster gear of assembly B transmit the input power N2 to the teeth of the large gear, and at the same time the teeth of the large gear transfer the new power F generated on the teeth of the large gear. b ·s / t is transmitted to the new power gear teeth.

[0023] The reason why there are two friction wheels and two gears with different functions in the three assemblies mentioned above is mainly to ensure the stability of the operation of the device. Therefore, the distance between the two friction wheels with the same function and the two gears with the same function should be appropriate.

[0024] When the system is running, the power N1 input to the boost gear of assembly A pushes the large gear teeth of assembly C at point a in a direction perpendicular to the diameter ab and moves away from point a and toward the upper left. The power N2 input to the boost gear of assembly B acts on the large gear teeth of assembly C at point b at point b, and the component force F of gravity W is bCombined together, the synthesis is transformed into a new power F b ·s / t is transmitted to the teeth of the new power gear in a direction perpendicular to the diameter ab, pushing the new power gear to rotate and do work.

[0025] exist Figure 1 When there is no power input to the device shown, the force F acting on the small friction wheel of the assembly A at point a is a The line of action of passes through the axis of the assembly A, so the force F a The support force is provided by the shaft and fixed bracket of the assembly A, and the force F b At point b, it acts on the new power gear teeth of assembly B at point b. However, because the new power gear teeth act on the force F b There is no supporting force, so a weight equal to F can be hung on the right end of the new power gear. b ′ and is equal to the force F b The weight is used to provide the force F b The supporting force keeps assembly C stationary and does not separate from assembly B.

[0026] When the same speed of power N1 and N2 is input to the boost gears of assembly A and assembly B at the same time, assembly C will rotate around its own center. The magnitude of the input power N1 only needs to be enough to push the teeth of the large gear at point a away from point a in a direction perpendicular to the diameter ab, and the magnitude of the input power N2 only needs to be enough to destroy the force F. b The gravity F of the weight hanging on the right end of the new power gear b ′, so that the teeth of the large gear at point b move away from point b in a direction perpendicular to the diameter ab.

[0027] When the system is running under the combined action of input power N1 and N2, the force F b The power N2 input to the booster gear of the assembly B also acts on the new power gear teeth at point b through the large gear teeth at point b. Therefore, the two will inevitably be continuously synthesized and converted into a new power F on the large gear teeth at point b. b ·s / t, is transmitted to the teeth of the new power gear at point b, pushing the new power gear to continue to rotate and do work. In this way, the weight hanging on the right end of the new power gear will move upward and do work. However, because this way of doing work is unsustainable, the new power F b · The s / t is transferred to a generator and converted into electrical energy for external output.

[0028] When the system is running, the input power N1 and N2 required by the boost gears of assemblies A and B can be provided by the same motor through a suitable transmission method, or they can be provided separately. However, no matter which method is used, it is necessary to ensure that the spatial position of assembly C remains unchanged.

[0029] Assembly A can also be composed of two small friction wheels fixed on the same axis, with a fixed bracket. When the system is running, power N1 is input to the two small friction wheels of assembly A, which push the particles of the two large friction wheels of assembly C at point a to leave point a in a direction perpendicular to the diameter ab and move to the upper left.

[0030] The device of the present invention can adjust the dead weight of the object (assembly C) by hanging a heavy object on the axis of the assembly C, so that the device of the present invention can be miniaturized to meet the needs of different groups of people.

[0031] The device of the present invention can also be equipped with a generator to directly convert the new power generated (converted) during system operation into electrical energy and then transmit part of the electrical energy to the motor to provide the energy (input power) required for system operation.

[0032] The device of the present invention can also decompose the elastic force or other effective force of an object into two forces (component forces) F a 、F b and the force F b Combined with the speed s / t of the input power, it is converted into a new power F b ·s / t, becoming a new sustainable power energy.

[0033] The energy generated by the device of the present invention (new power F b s / t) is the component force F of the gravity W when the system is running under the condition that the potential energy of the object (combination C) remains unchanged. b and the speed s / t of the input power N2 are combined on the teeth of the large gear at point b to synthesize (convert) a new energy, which can be continuously transmitted to the teeth of the new power gear at point b, pushing the new power gear to rotate and do work, which conforms to the law of conservation of energy that energy can neither be created nor destroyed out of thin air, but can only be transferred from one object to another.

[0034] When the device of the present invention is running, the potential energy of the object (assembly C) remains unchanged, and the force F exerted by the object's gravity on the teeth of the new power gear at point b is b It always exists, so when the system is running, as long as there are input forces N1 and N2 at points a and b that continuously push the assembly C to rotate around its own center, then during this rotation process, a new force F will continue to be generated on the teeth of the large gear at point b. b·s / t, which is a sustainable energy and a permanent energy source.

Claims

1. A device for converting the gravity of an object and input power into a new power source, characterized by: The device comprises a combination (A), a combination (B), and a combination (C); The assembly (A) is composed of two identical small friction wheels and two identical boosting gears arranged on the same shaft, and has a fixed bracket. The two identical small friction wheels can rotate around the shaft, and the two identical boosting gears are fixed to the shaft. The assembly (B) is composed of two identical new power gears and two identical boosting gears arranged on the same shaft, and has a fixed bracket, the two identical new power gears are fixed on the shaft, and the two identical boosting rollers are rotatable around the shaft; The assembly (C) consists of two identical large friction wheels and two identical large gears fixed on the same shaft, without a fixed bracket. The two large friction wheels are fixed at both ends of the shaft, and the component force Fa of the weight W of the large friction wheel assembly acts on the two small friction wheels at point a. The two large gears are engaged with the two boosting gears of the assembly (A) at point a on the upper right of the assembly (A), and are engaged with the two new power gears and two boosting gears of the assembly (B) at point b on the lower left of the assembly (B).

2. The device according to claim 1, characterized in that: Assembly A consists of two small friction wheels fixed on the same shaft and has a fixed bracket.

3. The device according to claim 1, characterized in that: The device of the present invention is equipped with a generator.

4. The device according to claim 1, characterized in that: The device of the present invention adjusts the dead weight of the object (assembly C) by hanging a heavy object on the axis of the assembly C.

5. The device according to claim 1, characterized in that: The device of the present invention can combine the elastic force or other effective force of an object with the speed s / t of the input power to synthesize and convert them into new power energy.