Rotary power generation device

TWM685754UActive Publication Date: 2026-08-01邹善劳 +1
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
TW · TW
Patent Type
Utility models
Current Assignee / Owner
邹善劳
Filing Date
2025-06-12
Publication Date
2026-08-01

Smart Images

  • Figure TWG2TB001904218_001
    Figure TWG2TB001904218_001
  • Figure TWG2TB001904218_002
    Figure TWG2TB001904218_002
  • Figure TWG2TB001904218_003
    Figure TWG2TB001904218_003
Patent Text Reader

Abstract

This invention relates to a rotary power generation device, comprising a drive unit, an inertial rotating component, and a power generation unit. A motor, powered by a power supply unit, is connected to the inertial rotating component via a first transmission component. At least one counterweight is symmetrically arranged around the periphery of the horizontal rotating component to increase its moment of inertia. A first rotating part and a second rotating part are coaxially arranged around the axis, respectively connected to the drive wheel of the drive unit and the power generation wheel of the power generation unit. Each part is equipped with a first inertial turntable and a second inertial turntable to balance torque variations and stabilize the rotational speed. When the drive unit drives the inertial rotating component to a certain speed, the power supply can be stopped, while the inertial rotating component continues to generate electricity due to its rotational inertia, achieving benefits such as improved energy utilization efficiency, output stability, and structural durability.
Need to check novelty before this filing date? Find Prior Art

Claims

1. A rotary power generation device, comprising: A power supply device; A drive device is electrically connected to the power supply device and is supplied with starting power by the power supply device; A drive wheel is pivotally mounted on the output shaft of the drive device; a first transmission member is mounted on the drive wheel; an inertial rotation member is mounted on one side of the drive device and includes a horizontal rotation member, a first rotation part, and a second rotation part coaxially arranged, the first rotation part being driven by the first transmission member; at least one counterweight element is disposed on the periphery of the horizontal rotation member; a second transmission member is pivotally mounted on the second rotation part; a power generation device is mounted on one side of the inertial rotation member; a power generation wheel is pivotally mounted on the input shaft of the power generation device and is driven by the second transmission member; at least one power output part is disposed on the power generation device and electrically connected to the drive device or a power-consuming device; A first inertia turntable is disposed on the output shaft to share the output torque of the drive device by means of its rotational inertia; and a second inertia turntable is disposed on the input shaft to extend the operating time of the power generation device by means of its rotational inertia.

2. The rotary power generation device as described in claim 1, wherein a plurality of first counterweights are provided on the periphery of the first inertial turntable.

3. The rotary power generation device as described in claim 1, wherein a plurality of second counterweights are provided on the periphery of the second inertial turntable.

4. The rotating power generation device as described in claim 1, wherein a plurality of reinforcing columns are provided on the outer side of the horizontal rotating member in a non-contact manner, and each reinforcing column is connected to a reinforcing plate on the upper and lower sides of the horizontal rotating member.

5. The rotary power generation device as described in claim 1, wherein the horizontal rotating member has a plurality of fixing portions for stabilizing each of the counterweight elements.

6. The rotary power generation device as described in claim 1, wherein the drive device is electrically connected to a torque control device for adjusting the output torque of the drive device.

7. The rotary power generation device as described in claim 6, wherein the drive device is electrically connected to a speed detector for detecting the rotational speed of the inertial rotating component, and a speed range is set according to the diameter and mass of the inertial rotating component. When the rotational speed of the inertial rotating component is less than the speed range, the torque control device increases the torque; when the rotational speed of the inertial rotating component is greater than the speed range, the torque control device decreases the torque.

8. The rotating power generation device as described in claim 7, wherein the drive device is electrically connected to an overload protection device, the overload protection device having a start-up time, wherein the drive device is stopped when the time for which the rotational speed of the inertial rotating member is zero is longer than the start-up time.

9. The rotary power generation device as described in claim 1, wherein the diameter of the drive wheel is smaller than the diameter of the first rotating part, and the diameter of the second rotating part is larger than the diameter of the power generation wheel.