Off-track gravity motion device

CN122589666APending Publication Date: 2026-08-18代建民
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Patent Information

Application Number
CN202510167363.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-15
Publication Date
2026-08-18

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Abstract

The off-track gravity movement device is formed by the fixed circular track on the main frame, the steel slide rod lever action of the fixed eccentric shaft, the sliding counterweight assembly on the steel slide rod, the long and short arm conversion of the steel slide rod through the elliptical track, the gravity difference of the sliding counterweight assembly formed on the steel slide rod, and the fixed cycle off-track gravity movement.
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Description

Technical Field

[0001] The off-track gravity motion device is supported by a main frame, which is divided into two motion spaces: a flywheel-assisted space and an off-track sliding gravity block motion space. The gravity block track is three-dimensionally installed on the central frame and is an elliptical track. An off-center axis is installed at the off-center position of the elliptical track. Symmetrical steel rollers are installed on the off-center axis, and sliding counterweights are installed on the steel rollers. They slide in coordination with the track. When the off-center axis is installed with the sliding counterweights on the steel rollers, the off-center axis will start to rotate under the push of off-center gravity. Due to the asymmetrical position formed by the off-center axis and the elliptical track, the sliding counterweights on the circulating steel rollers complete the long and short arm conversion on the elliptical track, generating a cyclical off-center gravity, which is a new mechanical kinetic energy. Background Technology

[0002] To the best of my knowledge, there is no precedent to follow. Summary of the Invention

[0003] The following numbers correspond to the numbers on the accompanying drawings in the instruction manual. ① Foot: These are foot devices installed under the main frame. They can be adjusted to keep the main frame level during operation.

[0004] ② Main frame: It is a sturdy mounting platform for installing the off-center shaft, sliding counterweight track, flywheel, and other components. It is divided into assist space and force exertion space with the middle plate as the mounting center.

[0005] ③ Off-center shaft: It is installed on the middle plate of the main frame. One end of the shaft is equipped with a flywheel and the other end is equipped with a steel slide rod. It is located at the off-center position of the sliding counterweight track.

[0006] ④ Sliding counterweight assembly: It consists of a counterweight, a pull-out bearing, and a bearing inside the concave track groove. The counterweight has a hole in the middle, and pull-out bearings are installed at both ends of the hole to facilitate the flexible movement of the steel slide rod and the long and short arms. One end of the pull-out bearing is installed in the concave track groove, and the bearing moves along the T-shaped track to form the sliding counterweight assembly. The sliding counterweight has a uniform weight, which is distributed by the pull-out of the steel slide rod on the off-center axis. The movement distance of the sliding counterweight assembly on the elliptical track generates a lever-like off-center gravity force, causing the off-center axis to move.

[0007] ⑤ Sliding counterweight track: The fixed elliptical track installed on the baffle plate in the frame is T-shaped. The sliding counterweight assembly is hung on the track and is driven by the steel sliding rod on the off-center shaft to distribute the work distance.

[0008] ⑥ Steel slide rod: It is a symmetrical lever of equal length installed on an off-center axis. Due to the limitation of the fixed track, the steel slide rod generates an asymmetrical lever arm on the sliding counterweight assembly on the track during movement. It works with the pull-out bearing to use long and short arms to generate an off-center gravity force.

[0009] ⑦ Flywheel: This is an auxiliary system installed on an off-center shaft.

[0010] ⑧ Sliding counterweight bearing: The bearing is installed in the concave track groove of the sliding counterweight assembly to facilitate the flexible and stable movement of the sliding counterweight assembly up, down, left, and right on the track.

[0011] ⑨ Main frame middle baffle: This is a rigid baffle in the middle of the device, which separates the power assist and power generation into two spaces. It facilitates the lubrication of the grease during power generation and prevents it from running into the flywheel power assist space. It also serves as the frame support for installing the off-center shaft and sliding counterweight track.

[0012] ⑩ Pull-out bearings: These are bearings installed at both ends of the center hole of the counterweight and used in conjunction with steel sliding rods.

[0013] 4. Working Principle: Supported by a main frame, an elliptical sliding counterweight track is fixed on the middle plate. An off-center shaft, flywheel, and steel slide rod are also installed. The sliding counterweight assembly is hung on the track, and the steel slide rod passes through the pull-out bearing of the sliding counterweight assembly. Because the off-center shaft is located off-center from the track, the lever arm length of the steel slide rod is different for each sliding counterweight assembly, resulting in different weights on the steel slide rod. This generates a fixed off-center gravitational force, causing the off-center shaft to move, which in turn drives the flywheel. This cyclical off-center gravitational mechanical motion is thus produced.

[0014] 5. Figure 1 A front perspective view of the off-track gravity motion device; Figure 2 This is a perspective view of the rear of the off-track gravity motion device; Figure 3 This is a top view of the eccentric gravity motion device. Figure 4 This is a diagram showing the combination of the sliding counterweight assembly and the track in a gravity-driven motion device.

[0015] 6. Specific Implementation Method: The off-center gravity motion device has a simple structure, is highly reproducible, and can be made in various sizes. Within the same size device, the magnitude of the off-center gravity can be changed by moving the position of the off-center axis. The off-center gravity is calculated by calculating the distribution of the long and short arms of the track formed by the rotation of the steel sliding rod under the off-center axis. Construction begins with the main frame. The size of the device is determined, and the middle baffle of the frame serves as the mounting panel. An elliptical track line is drawn on the middle baffle, and the T-shaped track is welded to the middle baffle according to the track line. The position of the off-center axis is then determined. Drill holes and fabricate an off-center shaft. Install the off-center shaft into the hole. Fabricate steel sliding rods of the same length and weld them symmetrically onto the off-center shaft. Fabricate the sliding counterweight assembly to unify the weight structure. Hang the sliding counterweight assembly on the T-shaped rail and connect it with the steel sliding rods. Install a flywheel assembly at the other end of the off-center shaft. Weld the four sides of the middle baffle plate together with iron plates to form the sliding counterweight force generation chamber and the flywheel assist chamber. Add a small amount of grease to the force generation chamber. During the rotation of the sliding counterweight, the grease will maintain the various moving parts.

[0016] 7. Practicality: A suitable generator can be installed in the flywheel-assisted room of the device and connected to the flywheel to generate electricity.

Claims

1. An off-center gravity motion device, including a base, a main frame, an off-center axis, a sliding counterweight assembly, a sliding counterweight track, a steel slide rod, a flywheel, and a generated off-center gravity track movement of the sliding counterweight assembly. Because the off-center axis is located off-center from the center of the track, the sliding counterweight assembly completes the gravity difference on the steel slide rod on the elliptical or circular track, generating off-center gravity and forming a cyclic off-center gravity motion device.

2. The eccentric gravity motion device according to claim 1 is characterized in that the steel slide rod on the eccentric central axis completes the conversion of the long and short arms of the sliding counterweight through the elliptical track, so that the sliding counterweight forms different gravity differences on the steel slide rod, generating cyclic eccentric gravity motion.

3. The eccentric gravity motion device according to claim 1 is characterized by the structural design of the sliding counterweight assembly, the pull-out bearing of the steel slide rod and the sliding counterweight assembly, the way the lever arm length is changed on the track, and the movement mode of the bearing inside the concave track groove of the T-shaped track and the sliding counterweight assembly, which ensures the smooth and stable movement of the sliding counterweight assembly on the T-shaped track.

4. The off-center gravity motion device according to claim 1 is characterized in that the off-center axis is located off-center in the circular track, and the off-center track forms different gravity differences on the steel slide rod by the sliding counterweight assembly on the track, thus forming a fixed off-center gravity motion.