Pendulum bob type positive and negative rotation gravity generator set
By optimizing the design of the pendulum-type forward and reverse gravity generator set, the problem of complex transmission mechanism, unstable voltage, low controllability and low efficiency is solved by converting gravitational potential energy into kinetic energy, thus achieving efficient, stable and low-cost power generation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- 曹兴斌
- Filing Date
- 2026-02-09
- Publication Date
- 2026-05-01
AI Technical Summary
Existing power generation technologies suffer from complex transmission mechanisms, high losses, unstable voltage, low controllability, low efficiency, and high costs.
A pendulum-type forward and reverse gravity generator set was designed, consisting of a support assembly, a pendulum assembly, a forward and reverse generator, hoisting equipment, and an electrical box. By optimizing the design of the pendulum assembly, such as adjusting the length of the pendulum rod, the length of the tie rod, and the swing angle, gravitational potential energy is converted into kinetic energy to achieve efficient operation of the generator.
It improved power generation efficiency, achieved stable and controllable voltage, reduced maintenance costs, and increased power generation capacity several times over.
Smart Images

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Abstract
Description
Pendulum-type forward and reverse gravity generator set Technical Field
[0001] This invention relates to the field of gravity power generation technology, specifically to a pendulum-type forward and reverse gravity generator set. Background Technology
[0002] 1. Existing power generation technology has shortcomings: complex transmission mechanisms, high losses, unstable voltage, low controllability, and low efficiency.
[0003] 2. Problems that existing power generation technologies have not solved: complex transmission mechanisms, large losses, low voltage controllability, low efficiency, and high cost. Summary of the Invention
[0004] Purpose of the invention: To overcome the defects of the prior art and provide a pendulum-type forward and reverse gravity generator set with high efficiency, stable structure, controllable voltage, and low maintenance cost.
[0005] Technical Solution: 1. The pendulum-type reversible gravity generator set consists of: a support assembly, a pendulum assembly, reversible generators, hoisting equipment, and an electrical box. 2. The support assembly consists of: a support, a base, a rotating shaft, and a fixed pulley. The pendulum assembly consists of: an arc-shaped pendulum, a pendulum rod, and a tie rod integrated with an arc-shaped friction belt, a counterweight plate, and a chain plate. Two reversible generators are installed, with a friction belt on the main shaft. Two hoisting devices and one electrical box are also included. 3. Installation of the pendulum-type reversible gravity generator set: A base with a circular hole is installed at the midpoint of the upper part of the support, with the circular hole facing downwards. The pendulum assembly is connected to the support shaft. The reversible generators are symmetrically installed at designated positions on the lower part of the support assembly, with the main shafts of the reversible generators clamped to the friction belt on the lower part of the pendulum assembly. The hoisting equipment is symmetrically installed on both sides of the upper part of the support assembly and connected to the chain plate on the pendulum assembly. The electrical box is installed on the upper left side of the support assembly. 4. Operation of the pendulum-type reversible gravity generator set: Upon startup, the left-end hoisting equipment lifts the pendulum assembly and swings it 45 degrees to the left. When the hoisting equipment is de-energized, the pendulum assembly naturally falls and swings 45 degrees to the right. Simultaneously, the right-end hoisting equipment starts, lifting the pendulum assembly and swinging it 45 degrees to the right. When the hoisting equipment is de-energized, the pendulum assembly naturally falls and swings 45 degrees to the left. The left-end hoisting equipment starts again, causing the pendulum assembly to repeatedly swing back and forth. Simultaneously, the generator's main shaft clamps onto the friction belt at the bottom of the pendulum assembly. The repeated back-and-forth swinging of the pendulum assembly inevitably causes friction, driving the generator's main shaft to rotate repeatedly, thus generating electricity in both directions. When the hoisting equipment is de-energized, the pendulum assembly naturally swings and falls 45 degrees, achieving gravity-based power generation.
[0006] Beneficial effects: It optimizes the following scenario: A 100kg weight is manufactured into friction-generating objects of different shapes, one with 0.5m friction sections at both ends, and the other with 1m friction sections at both ends. The weight is clamped between the main shafts of two generators, allowing it to fall naturally and generate electricity through friction, thus rotating the generator shafts. The electricity generated by the weight with the 1m friction section falling naturally is twice that generated by the weight with the 0.5m friction section falling naturally. It also optimizes the following scenario: The pendulum assembly's pendulum rods are designed with one 0.5m long and the other 1m long. When the pendulum assembly swings 45 degrees, the kinetic energy of the pendulum assembly with the 1m long rod is about 60% higher than that of the 0.5m long rod. Finally, it optimizes the following scenario: The pendulum assembly's tie rods are designed with one 0.1m long and the other 1m long. When the pendulum assembly is lifted by a hoisting device and falls naturally at a 45-degree angle, the kinetic energy of the pendulum assembly falling naturally increases by 80%. It optimizes the following scenario: increasing the swing angle of the pendulum assembly of the reversible gravity generator set to 50 degrees, designing the pendulum rod to be 1.5 meters long and the tie rod to be 0.75 meters long, enabling it to lift 500 kg of 0.5 kW hoisting equipment, consuming 0.5 kWh per hour, with efficiency increased several times during startup. It also optimizes the operation of the two hoisting devices: the left one starts while the right one rests, and vice versa. During startup, the load on the hoisting devices is zero, and the two devices consume approximately 1 kWh per hour. Furthermore, it optimizes the scenario where, when the 0.5 kW hoisting device lifts the 500 kg pendulum assembly and swings it repeatedly 50 degrees, the power of the two engines clamping the lower friction belt of the pendulum assembly is several times higher than the power of the motor. The pendulum-type reversible gravity generator set highlights an effect: with less energy consumption, through the design of the pendulum rod length, the tie rod length, and the swing angle, the potential energy and kinetic energy of the pendulum assembly can be increased. Through the natural fall of the pendulum assembly when the power is cut off, the power generated by the generator is more than 6 times higher than the power consumed.
[0007] The pendulum-type forward and reverse gravity generator set has a simple and clear design, simple structure, stable power generation, controllable voltage, low maintenance cost, and can be equipped with energy storage batteries.
[0008] The pendulum-type forward and reverse gravity generator is a science of kinetic energy, potential energy conversion, and potential energy conversion into kinetic energy. Attached Figure Description
[0009] Figure 1 Front view, Figure 2 Left view, Figure 3 Top view, Figure 4 Pendulum assembly, Figure 5 Support assembly, Figure 6 Left swing view of pendulum assembly, Figure 7 Right swing view of pendulum assembly.
[0010] The component numbers and names of the pendulum-type forward and reverse gravity generator set in the main view shown in Figure 1 are as follows: 1. Support assembly; 2. Pendulum assembly; 3. Friction belt; 4. Pendulum shaft; 5. Generator; 6. Counterweight plate; 7. Chain plate; 8. Fixed pulley; 9. Lifting equipment; 10. Electrical control box. Detailed Implementation Methods
[0011] 1. The support assembly is installed on a horizontal surface at the designated location. 2. The pendulum assembly is connected to the support shaft on the support assembly. 3. The friction belt is installed on the bottom arc section of the pendulum assembly and the generator main shaft. 4. The pendulum shaft connects the support and the pendulum assembly. 5. Two generators are symmetrically installed on the lower part of the support assembly, with their main shafts clamped to the friction belt of the pendulum assembly. 6. Counterweight plates and 7. Chain plates are installed on the pendulum assembly. 8. Fixed pulleys are installed on both sides of the support assembly. 9. The hoisting equipment is symmetrically installed on the support assembly and connected to the chain plates on the pendulum assembly. 10. The electrical control box is installed on the upper left side of the support assembly. The pendulum-type forward and reverse gravity generator set is now installed.
[0012] The pendulum-type reversible gravity generator set operates as follows: Upon startup, the left-end hoisting equipment lifts the pendulum assembly and swings it 45 degrees to the left. When the hoisting equipment is de-energized, the pendulum assembly naturally falls and swings 45 degrees to the right. Simultaneously, the right-end hoisting equipment starts, lifting the pendulum assembly and swinging it 45 degrees to the right. When the hoisting equipment is de-energized, the pendulum assembly naturally falls and swings 45 degrees to the left. The left-end hoisting equipment starts again, causing the pendulum assembly to repeatedly swing back and forth. Simultaneously, the generator's main shaft engages with the friction belt at the bottom of the pendulum assembly. This repeated back-and-forth swinging of the pendulum assembly inevitably causes friction, driving the generator's main shaft to rotate repeatedly, thus generating electricity in both directions. When the hoisting equipment is de-energized, the pendulum assembly naturally swings and falls 45 degrees, achieving gravity-based power generation.
Claims
1. A pendulum-type reversible gravity generator set. Its features include:
1. Pendulum Assembly: The pendulum is designed with a 90-110 degree arc segment, approximately 200 mm wide. A 60 mm wide arc-shaped friction band is located at the bottom. The pendulum rod and pull rod, with a round hole at the top, are integrated with the pendulum. The chain plates are connected to the pull rod shaft. Counterweight plates are installed on both sides of the pendulum, forming the pendulum assembly.
2. Support Assembly: The support assembly is designed with a base plate and square steel tubing. A support with a round hole is installed at the center of the upper part of the support, with the round hole facing downwards. Chain plates are installed on both sides at the top, forming the support assembly.
3. Composition of the pendulum-type forward and reverse gravity generator set: The pendulum-type forward and reverse gravity generator set consists of a support assembly, a pendulum assembly, forward and reverse generators, hoisting equipment, and an electrical control box.
4. Installation of the pendulum-type forward and reverse gravity generator set: The pendulum assembly is connected to the support assembly by a circular hole shaft. The forward and reverse generators are symmetrically installed at designated positions below the support assembly and clamped with the friction belt of the pendulum assembly. The hoisting equipment is symmetrically installed on the upper left and right sides of the support assembly and connected to the chain plate on the pendulum assembly. The electrical control box is installed on the upper left side of the support assembly.
5. The pendulum-type reversible gravity generator set operates by starting the left-end hoisting equipment, which pulls the chain plate to lift the pendulum assembly to the left and swing it 45 degrees. Power is then cut off, and the pendulum assembly naturally swings to the right and falls 45 degrees. Simultaneously, the right-end hoisting equipment starts, lifting the pendulum assembly to the right and swinging it 45 degrees, then power is cut off again, and the pendulum assembly naturally swings to the left and falls 45 degrees. The left-end hoisting equipment then restarts, thus achieving a reciprocating cyclic swing. At the same time, the friction section between the two generator main shafts clamping the pendulum assembly is driven to rotate at high speed by friction, enabling both generators to generate electricity simultaneously.
6. Gravity power generation: The pendulum assembly naturally swings and falls to generate electricity, and the intermittent reciprocating cyclic swing of the pendulum assembly reduces energy consumption and improves power generation efficiency.
7. The pendulum is integrated with the pendulum and is a variable; it can be designed to be longer or shorter. The length is finite, but a longer design can increase the potential and kinetic energy of the pendulum assembly and improve power generation efficiency. The 8-bar tie rod is integrated with the pendulum and is a variable; it can be designed to be longer or shorter. The length is finite, but a longer design can increase the potential and kinetic energy of the pendulum assembly and improve power generation efficiency. The design of the 9-pendulum reversible gravity generator set highlights that, with the same energy consumption, we can increase the potential and kinetic energy of the weight by adjusting the length of the pendulum rod, the length of the pull rod, and the swing angle, thus increasing the output energy of the pendulum reversible gravity generator set several times.