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CN-121976910-A - Wind wheel lever driving type continuous power generation system based on mechanical meter principle

CN121976910ACN 121976910 ACN121976910 ACN 121976910ACN-121976910-A

Abstract

1. The wind wheel blade is driven by a fan to form a labor-saving lever structure, power is input to the wind spring energy storage bin to achieve constant-speed torque increase and complete primary moment amplification and mechanical potential energy accumulation, 2, the wind spring energy storage bin outer ring forms a high-magnification labor-saving lever depending on the maximum force arm of the outer edge, the limit of conventional gear speed increase and torque reduction is broken through meshed linkage of an outer ring gear and a pinion, torque and rotation speed are synchronously amplified, 3, power is transmitted to a balance wheel assembly through a crankshaft, calibration and stabilization of the output rotation speed and power of the whole machine are achieved depending on inertia of the balance wheel, power fluctuation is avoided, 4, the rotation speed of the wind wheel is regulated, the operation speed of the energy storage bin gear is accurately matched, controllable adjustment of the output rotation speed and torque is achieved, rated working parameters of a generator are attached, and continuous and stable power generation is guaranteed. The whole system relies on a multistage lever mechanics principle, combines with a unique reinforcement structure of the outer edge stress of a spring barrel, gradually completes moment superposition amplification, converts the gain effect of mechanical force into stable energy output gain, and forms a mechanical energy storage power generation logic with controllable closed loop and constant working condition.

Inventors

  • FANG JUN

Assignees

  • 方军

Dates

Publication Date
20260505
Application Date
20260405

Claims (6)

  1. 1. A wind wheel lever driven type high torque continuous power generation system based on a mechanical meter principle is characterized in that a mechanical energy storage and speed stabilization principle is combined with a multi-level lever amplification logic, wind wheel input power, energy storage and release energy accumulation by an energy storage unit and calibration output by an inertial speed stabilization unit are utilized, and wind wheel speed matching power output is regulated and controlled, so that continuous and stable power generation is realized.
  2. 2. The system of claim 1, wherein the initial input torque is converted to a high torque output by a stepwise superposition of at least two effort-saving levers, achieving a high rotational speed and high torque synchronous output.
  3. 3. The system according to claim 1, wherein the energy storage unit is based on a mechanical watch spring energy storage principle, and is used for realizing long-acting accumulation and stable release of mechanical potential energy and providing stable power for lever transmission.
  4. 4. The system according to claim 1, wherein the inertial speed stabilization unit calibrates the power output speed and power based on a mechanical balance wheel speed stabilization principle, and avoids fluctuation from affecting the power generation stability.
  5. 5. The system according to claim 1, wherein the accurate adaptation of the output parameters of the generator is achieved by adjusting the wind wheel speed, matching the power release cadence of the energy storage unit.
  6. 6. The system of claim 1, wherein the core is to convert the multi-level lever amplification effect into energy gain to form closed loop power generation logic, and the long-acting continuous power generation is realized by a pure mechanical structure.

Description

Wind wheel lever driving type continuous power generation system based on mechanical meter principle Technical Field The invention relates to the technical field of mechanical energy storage power generation, in particular to a high-torque continuous power generation system driven by a wind wheel lever by means of a mechanical meter principle. Background The conventional transmission structure can only make a trade-off between the rotating speed and the torque, so that synchronous output of high rotating speed and large torque is difficult to realize, and a long-acting stable energy storage and speed stabilizing mechanism is lacking, so that the requirements of normalized and low-cost continuous power generation cannot be met. Meanwhile, the existing power generation system is complex in structure and poor in adaptability, high-efficiency energy conversion is difficult to achieve through a simple mechanical structure, and the stable power generation application scene of miniaturization and portability cannot be met. Disclosure of Invention Object of the Invention The invention aims to solve the technical shortboards of the existing mechanical power generation system, which have insufficient power, cannot give consideration to both rotating speed and torque and are unstable in operation, and provides a wind wheel lever-driven high-torque continuous power generation system based on a mechanical meter principle, which relies on mature mechanical meter transmission and energy storage logic to realize efficient amplification and stable output of weak external force and meet the requirements of normalized and low-cost continuous power generation. Working principle and technical scheme The system is based on the core transmission and energy storage principle of a mechanical meter, combines lever mechanics and mechanical energy storage technology, and constructs a closed-loop energy conversion and output system, and the specific technical scheme is as follows: The system integrally adopts a pure mechanical structure design, the core relies on energy storage and speed stabilization logic of a mechanical meter, and is matched with a wind wheel lever input and multi-stage reinforcement structure to realize full-flow mechanical linkage from power input to power generation output, and the specific operation flow is as follows: firstly, a fan drives a wind wheel to rotate, the wind wheel is used as a power input end to form a labor-saving lever structure, weak wind energy is converted into available mechanical power by means of lever mechanical characteristics, initial torque is amplified preliminarily, the structural design of the wind wheel is attached to a lever principle, and the subsequent transmission structure can be driven to operate stably on the premise of minimum input force. The wind wheel power is transmitted to the spring energy storage bin, the energy storage bin converts the input mechanical power into elastic potential energy for storage based on a spring energy storage principle of a mechanical meter, meanwhile, buffering and stable output of the power are achieved, fluctuation of the power is avoided, the design of the spring energy storage bin follows the mechanical meter energy storage logic, long-acting storage and stable release of energy can be achieved, and continuous support is provided for subsequent power output. The gear transmission structure does not need complicated electric control adjustment, realizes power transmission only through mechanical engagement, ensures that the torque is not lost in the transmission process, and realizes synchronous output of high rotating speed and large torque. The power of the spring energy storage bin in the invention directly acts on the outer edge of the spring box, the arm of force is at the maximum radius position, thus forming a high-multiplying power labor-saving lever, the output moment is greatly amplified, and the pinion is driven by the big gear to increase the rotating speed on the basis, thus realizing synchronous amplification of torque and rotating speed, and being different from the gear driving logic driven by the conventional axle center. And meanwhile, through regulating and controlling the rotating speed of the wind wheel, the rated working parameters of the generator can be accurately matched, continuous and stable power output is realized, and the whole process does not need additional energy consumption, so that a closed-loop mechanical transmission logic of power input, energy storage amplification, stable speed output and power generation operation is formed. The whole system is characterized in that the mechanical advantage of the wind wheel lever is combined with the stability of mechanical energy storage through the mature transmission and energy storage principle of the mechanical meter, the limitation that the rotating speed and the torque cannot be combined in the traditional transmission is broken, the continuous power output