Internal and external gear synchronous transmission power amplification mechanism

The power amplification mechanism, which combines circular levers with internal and external gear transmission, solves the problem of insufficient power output in power machinery, thereby increasing power, improving mechanical efficiency, and saving energy.

CN121993566APending Publication Date: 2026-05-08陈中明
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
陈中明
Filing Date
2026-01-30
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

In existing technologies, power machinery cannot effectively increase power output when outputting power, resulting in low energy utilization efficiency.

Method used

The circular lever combination power amplification mechanism, which uses internal and external gear transmission, increases power output through different ratios of gear combinations. Utilizing the circular lever combination power amplification principle, it has a simple structure and is easy to manufacture.

Benefits of technology

Without changing the power input speed, it increases power output, improves mechanical efficiency, saves energy, and helps solve the energy crisis.

✦ Generated by Eureka AI based on patent content.

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Abstract

The power amplification mechanism is a new generation of power amplification mechanism developed by utilizing a circular pole lever combination power amplification principle. The transmission is composed of a power input gear (1), an action gear (2) with internal and external teeth, two transmission gears (3) and (4) and a central power output gear (5). Outer teeth of the power input gear (1) are meshed with outer teeth of the action gear (2), inner teeth of the action gear are meshed with the two transmission gears (3) and (4), the two transmission gears (3) and (4) are meshed with the central power output gear (5), and the diameters of the two transmission gears (3) and (4) are equal to the diameter of the power output gear (5). A power input gear (1) is arranged on an input shaft (6), two transmission gears (3) and (4) are respectively arranged on transmission shafts (8) and (9), and a central power output gear (5) is arranged on a power output shaft (7). According to the whole set of transmission mechanism, two side cover bearing seats (10) and (11) and a bearing outer sleeve of a shape moving gear (2) are fixed in a machine shell (12) through a bearing combination. The power amplification factor of the power amplification mechanism is in direct proportion to the outer radius length of the action gear and is in inverse proportion to the inner radius length of the action gear. And the transmission ratio is related to the transmission ratio of the power input gear, the power output gear and the action gear. Therefore, different power amplification factors such as 125%, 130% and 135% can be obtained by selecting the lengths of different gear radiuses and suitable transmission ratios, and the gear can be widely applied to various power machines and various vehicle manufacturing, and can greatly improve the use efficiency of various machines, save a large amount of energy and solve the energy crisis. And the amplifier is simple in structure and easy to produce and manufacture.
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Description

[0001] This invention is a new generation of power amplification mechanism designed and developed using a combination of circular levers to amplify power.

[0002] The purpose of this power amplification mechanism is to provide a power amplification mechanism that utilizes the principle of power amplification through a combination of circular levers and employs internal and external gear transmission. The diameters of the internal and external gears are combined in different proportions to form a power amplification mechanism. This mechanism increases the power output while keeping the rotational speed constant, thus realizing power amplification.

[0003] The purpose of this power amplification mechanism is achieved by consisting of a power input gear (1), an internal and external gear (2), two transmission gears (3) and (4), and a central power output gear (5).

[0004] The power input gear (1) meshes with the external teeth of the moving gear (2), the internal teeth of the moving gear mesh with the transmission gears (3) and (4), the two transmission gears (3) and (4) mesh with the power output gear (5), the power input gear is mounted on the input shaft (6), the transmission gears (3) and (4) are mounted on the transmission shafts (8) and (9) respectively, and the power output gear (5) is mounted on the power output shaft (7). The entire transmission mechanism is fixed in the housing (12) by the bearing assembly of the two side cover bearing seats (10) and (11) and the bearing sleeve of the moving gear (2).

[0005] The power amplification factor of the power amplification mechanism is directly proportional to the outer radius of the moving gear and inversely proportional to its inner radius. It is also directly proportional to the radii of the two transmission gears, and related to the transmission ratio of the power input gear, the power output gear, and the moving gear.

[0006] Therefore, by selecting different gear radius lengths and appropriate transmission ratios, corresponding power amplification factors such as 125%, 130%, 135%, etc. will be obtained. Specific parameters will not be explained in detail.

[0007] The greatest advantage of this power amplifier is that it fully utilizes the power amplification principle of a combination of circular levers to achieve power amplification. Furthermore, its simple structure makes it extremely easy to manufacture, allowing for widespread application in the production of various power machinery and vehicles. This will significantly improve the efficiency of machinery, save substantial amounts of energy, and help alleviate the energy crisis. Attached Figure Description

[0008] Figure 1 This is a schematic diagram of a power amplification mechanism for synchronous transmission of internal and external gears. Figure 2 This is a schematic diagram summarizing the structural specifications of a power amplification mechanism for synchronous transmission of internal and external gears. The following description, in conjunction with the accompanying drawings, further describes this power amplification mechanism:

[0009] In this embodiment, the external teeth of the power input gear (1) mesh with the external teeth of the moving gear (2), the internal teeth of the moving gear (2) mesh with the two transmission gears (3)(4), and the two transmission gears (3)(4) mesh with the central power output gear (5). The diameters of the two transmission gears (3)(4) and the power output gear (5) are equal. The power input gear (1) is mounted on the input shaft (6), the two transmission gears (3)(4) are mounted on the transmission shafts (8)(9) respectively, and the central power output gear (5) is mounted on the power output shaft (7). The entire transmission mechanism is fixed in the housing (12) by the bearing assembly of the two side cover bearing seats (10)(11) and the bearing sleeve of the moving gear (2).

[0010] The working principle of this power amplification mechanism is as follows: Connect the power input shaft of this mechanism to the power output shaft of various power machinery. Since this mechanism is a power amplification mechanism, power is amplified by a corresponding factor on its power output shaft. For example, a 5kW / h electric motor connected to a power amplification mechanism with a power amplification factor of 130%, with the input power speed of the motor and the output shaft speed of the power amplifier remaining constant, will obtain a motor power of 6.5kW / h on the power output shaft. If this amplification mechanism is used continuously, the power of the motor can be infinitely amplified in the form of squares, cubes, and other powers.

Claims

1. Characterized by The power amplifier is a generation of amplification mechanism designed and developed using the power amplification principle of a combination of circular levers.

2. A power amplifier, characterized in that... The transmission mechanism consists of an internal and external gear (2), two transmission gears (2)(3), a central power output gear (5), and a power input gear (1). The power input gear (1) meshes with the external teeth of the gear (2), the internal teeth of the gear (2) mesh with the two transmission gears (3)(4), and the two transmission gears (3)(4) mesh with the central power output gear (5). The diameters of the two transmission gears (3)(4) and the power output gear (5) are equal. The power input gear (1) is mounted on the input shaft (6), the two transmission gears (3)(4) are mounted on the transmission shafts (8)(9), and the central power output gear (5) is mounted on the power output shaft (7). The entire transmission mechanism is fixed in the housing (12) by two side cover bearing seats (10)(11) and the bearing sleeve of the gear (2) through bearing assembly.

3. Its features are: The power amplification factor of a power amplifier depends on the ratio of the inner and outer radii of the inner and outer gears (2), as well as the transmission ratio of the transmission gear, the moving gear, the power output gear, and the power input gear.

4. Its features are: The two internal transmission gear shafts (8)(9) and the central power output shaft (7) of the power amplifier must be aligned in a straight line on the side cover bearing housing (10)(11). The power input gear shaft (6) is aligned on the vertical line of shafts (8)(9)(7).

5. Characterized by The two transmission gears (3)(4) and the central power output gear (5) of the power amplifier can be integrated shaft and gear structure or separate structure. The separate structure is combined with a key and snap ring.

6. Its features are: The internal and external gears (2) of the power amplifier and the bearing sleeve are either an integral structure or a separate structure, with the separate structure being assembled with bolts.