Sun-and-planet push rod type circulating amplification power mechanism and manufacturing method thereof

By connecting a multi-stage power wheel system in series and a mechanical circulation system, combined with a combined power generation device, the self-circulating amplification of power in the fields of power machinery and engines is realized, solving the problem of low-cost power transmission without energy consumption and achieving power self-circulation.

CN122429072APending Publication Date: 2026-07-21王扣柱
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
王扣柱
Filing Date
2025-01-21
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

In the existing technology, the field of power machinery and engines lacks low-cost power amplification mechanisms that do not require energy and cannot achieve power self-circulation.

Method used

It adopts a central gear pusher structure with a multi-stage power wheel system connected in series, combined with a mechanical circulation system and a combined power generation device, to achieve multi-stage incremental power amplification and self-circulation.

Benefits of technology

It achieves multi-stage incremental amplification of power output and solves the problems of energy consumption and cost through self-circulation, realizing power transmission without energy consumption.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application is a kind of mechanical power and engine, which is characterized by: input planetary gear and output one-way gear combined with push rod and center gear to form power wheel system, and multi-stage power wheel system in series to form center gear push rod type circulating amplification power machine structure, which realizes multi-stage incremental amplification of input power (power). Mechanical circulation system is used to realize power self-circulation, and combined power generation device is used to generate power and feedback combined electric device, realizing self-circulation without energy.
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Description

I. Technical Field

[0001] This invention relates to a center gear push rod type circulating amplification power machine in the field of power machinery and engines. II. Technical Background

[0002] This invention is the first of its kind, as there is no such structure as the central gear push rod type circulating amplification power mechanism. III. Summary of the Invention

[0003] This invention is the first of its kind, and its purpose is to provide a low-cost, widely applicable, and energy-free power source. It relates to the structure and manufacturing method of a central gear push rod type circulating amplification power mechanism for power machinery and engines, which is further described below with reference to the accompanying drawings.

[0004] Specific scheme: A power wheel system with the power wheel (2) as the main body is installed in series on the central cylinder. On the input surface of the power wheel (2), four input planetary gears (4) are set and mounted with bearings (26) and pins (27) on the input surface of the power wheel (2). An input center gear (7) is set and mounted with an input bushing and bearing on the central shaft. On the periphery of the power wheel (2), an outer ring inner gear and an inner gear fixing cylinder (8) are set. Six keyways are evenly distributed on the outer circular surface of the outer ring inner gear and the inner gear fixing cylinder (8), and are connected to the housing (13) by key pins. The outer end of the input planetary gear (4) meshes with the outer ring inner gear (8), and its inner end meshes with the input center gear (3). On the output surface of the power wheel (2), three output one-way gears (9) are set and mounted with bearings (26), and are connected to the end of the push rod (5) through connecting bushings (10). The first end of the push rod (5) is equipped with a roller (6) that contacts the center gear (7) on the central shaft (2). A bearing is mounted on the central shaft (1) between the two power wheels. One end of the central gear meshes with the output one-way gear (9) of the first-stage power wheel (2), and the other end meshes with the input planetary gear (4) of the second-stage power wheel (2). The second and third-stage power wheel (2) systems are connected in series with the first-stage power wheel (2) system and are linked by the output-input central gear (11). The structural features of the second and third-stage power wheel (2) systems are the same as those of the first-stage power wheel (2) system (briefly described). The terminal output center gear (12) is a single output gear (9) of the third-stage power wheel (2). Multiple output gears (14) are mounted on the output power shaft (24) and bearings (26) and installed in the output hole of the output housing (13), with the output power shaft (24) extending out of the housing. Its output gears (14) mesh with the terminal output center gear (12). The housing (13) includes an input end circular housing (13), an output end circular housing (13), and an intermediate housing circular housing (13). A combined power generation device permanent magnet (15) is installed on the output end housing (13) and insulated, and a combined power generation device coil winding (16) is installed on the housing (13). A mechanical circulation output wheel (17) is mounted on the output power shaft and fitted with a permanent magnet. (24) A combined power generation device is formed. In the input end housing (13), a combined electric device permanent magnet (20) is set in the housing (13) and insulated, and a combined electric device coil winding (21) is set in the housing (13); an electric input wheel (22) is set with a one-way bearing and a permanent magnet and is installed on the input power shaft (19) to form a combined electric device. A mechanical circulation input wheel (23) is set with a one-way bearing and is installed on the input power shaft (19). A starting wheel (30) is set on the input power shaft (19). A power release output wheel (25) is set on the output power shaft (24); a mechanical circulation system (28) is set and connected to the mechanical circulation input wheel (23) and the mechanical circulation output wheel (17) respectively.Installation accessories: voltage regulator, frequency converter, relay, switch.

[0005] Working principle: Power is transmitted to the input center gear (3), which drives the input planetary gear (4) to rotate counterclockwise and roll clockwise along the inner gear (8) of the outer ring. The pin (27) of the input planetary gear (4) pulls the first stage power wheel (2) to rotate clockwise. This makes the input planetary gear (4) function as a pulley. The first power wheel (2) receives twice the torque of the input planetary gear (4). The push rod (5) on the first power wheel (2) and the output one-way gear (9) rotate synchronously with the first stage power wheel (2). When the roller at the head of the push rod (5) rotates around the center gear (7), it is subjected to force and deflects outward, causing the output one-way gear (9) to rotate again, generating multiplied torque and multiplied speed. Due to the one-way non-reverse property of the one-way gear (9), the integrated input and output center gear (11) is forced to rotate synchronously with it and rotate again. The multiplied torque and multiplied speed are transmitted to the second stage power wheel (2) system. The output one-way gear (9) on the second-stage power wheel (2) transmits the amplified torque and speed of the second stage to the third-stage power wheel (2) system. The third-stage output one-way gear (9) then transmits the amplified torque and speed of the third stage to the terminal output center gear (12). The output terminal center gear (12) transmits the torque and speed to the output gear (14). The second and third-stage power wheels (2) have the same structural features as the first-stage power wheel (2) (briefly described). A mechanical circulation system (28) is connected to the mechanical circulation input wheel (23) and the mechanical circulation output wheel (17) respectively to achieve power self-circulation. A combined power generation device is used to generate electricity and feedback to achieve power self-circulation.

[0006] By employing the aforementioned multi-stage power wheel system series connection technology, a central gear pusher type circulating amplification power machine structure is formed. Its function is to amplify the input power (power) in multiple stages and achieve power self-circulation. It requires no energy, effectively solving the problems of energy consumption and cost. IV. Description of the attached drawings

[0007] Figure 1 : Power wheel input

[0008] Figure 2 : Drive wheel output surface

[0009] Figure 3 Cross-sectional view of a central gear pusher type circulating amplification power machine

[0010] Figure Descriptions: 1. Center cylinder; 2. Power wheel; 3. Input center gear; 4. Input planetary gear; 5. Push rod; 6. Roller; 7. Center gear; 8. Outer ring inner gear and inner gear fixing cylinder; 9. Output one-way gear; 10. Connecting bushing; 11. Integrated input and output center gear; 12. Terminal output center gear; 13. Housing; 14. Output gear; 15. Permanent magnet of combined power generation device; 16. Coil winding of combined power generation device; 17. Mechanical circulation output wheel; 18. Input gear; 19. Input power shaft; 20. Permanent magnet of combined electric device; 21. Coil winding of combined electric device; 22. Electric input wheel; 23. Mechanical circulation input wheel; 24. Output power shaft; 25. Power release output wheel; 26. Bearing; 27. Shaft pin; 28. Mechanical circulation system; 29. ​​Spring; 30. Starting wheel. V. Detailed Implementation Methods

[0011] A power wheel system is constructed using an input planetary gear and an output unidirectional gear, combined with a push rod and a central gear. This multi-stage power wheel system, connected in series, forms a central gear push rod type cyclic amplification power machine structure, achieving multi-stage incremental amplification of the input power. A mechanical circulation system enables power self-circulation; a combined power generation device with feedback to a combined electric actuator also enables self-circulation. The structure and manufacturing method of the central gear push rod type cyclic amplification power machine are as follows:

[0012] (I) The main components of the center gear pusher type circulating amplifier power unit include: 1. Center cylinder; 2. Power wheel; 3. Input center gear; 4. Input planetary gear; 5. Push rod; 6. Roller; 7. Center gear; 8. Outer ring internal gear and internal gear fixing cylinder; 9. Output one-way gear; 10. Connecting bushing; 11. Integrated input and output center gear; 12. Terminal output center gear; 13. Housing; 14. Output gear; 15. Permanent magnet of combined power generation device; 16. Coil winding of combined power generation device; 17. Mechanical circulating output wheel; 18. Input gear; 19. Input power shaft; 20. Permanent magnet of combined electric device; 21. Coil winding of combined electric device; 22. Electric input wheel; 23. Mechanical circulating input wheel; 24. Output power shaft; 25. Power release output wheel; 26. Bearing; 27. Shaft pin; 28. Mechanical circulating system; 29. ​​Spring; 30. Starting wheel. Accessories: Voltage regulator, frequency converter, relay, switch.

[0013] (II) Manufacturing Technology Methods:

[0014] 1. Machining (dimensions and materials are determined according to actual application): drive wheel, gear, center cylinder, bushing, pin, housing, outer ring internal gear, fixed bracket.

[0015] 2. Assembly steps of the center wheel push rod type circulating amplification power machine: Place the input end housing center cylinder (1). Install the input center gear (3) with bearing (26) on the input end center cylinder (1). Install the input gear (18) with input power shaft (19) and bearing (26) in the housing input hole. The input power shaft (19) extends outward through the housing (13). Install the four input planetary gears (4) with bearing (26) on the input surface of the power wheel (2) through the shaft pin (27). Their inner ends mesh with the input center gear (3), and their outer ends mesh with the installed outer ring inner gear (8). Install the three push rods (5) with bearing (26) and connecting bushing (10) respectively with the output one-way gear (9), and install them on the output surface of the power wheel (2) with shaft pin (27). The push rod (5) head is equipped with roller (6) and contacts the center gear (7). A spring (29) is installed, its center fixed to the power wheel (2), and the outer end of the spring (29) is connected to the roller (6) shaft pin (27) of the push rod (5). The output one-way gear (9) of the first-stage power wheel (2) system meshes with the integrated input center gear (11). The integrated input center gear (11) also meshes with the second-stage input planetary gear (4). The second and third-stage power wheel (2) systems are connected in series with the first-stage power wheel (2) system, and their structural features are the same as those of the first-stage power wheel (2) (briefly described). The third-stage output one-way gear (9) meshes with the terminal output center gear (12). Multiple output gears (14) are assembled with the output power shaft (24) and bearings (26) and installed in the output hole of the output end housing (13), with the output power shaft (24) extending out of the housing. Its output gears (14) mesh with the terminal output center gear (12). The housing (13) is installed. The permanent magnet (15) of the combined power generation device is installed and insulated on the output end housing (13), and the coil winding (16) of the combined power generation device is installed on the housing (13). The mechanical circulation output wheel (17) is assembled with a permanent magnet and installed on the output power shaft (24) to form a combined power generation device. In the input end housing (13), the permanent magnet (20) of the combined electric device is installed on the housing (13) and insulated, and the coil winding (21) of the combined electric device is installed on the housing (13) and insulated. The electric input wheel (22) is assembled with a one-way bearing and a permanent magnet and installed on the input power shaft (19) to form a combined electric device. The mechanical circulation input wheel (23) is assembled with a one-way bearing and installed on the input power shaft (19). The starting wheel (30) is assembled with a one-way bearing and installed on the input power shaft (19). The power release output wheel (25) is installed on the output power shaft (24); the mechanical circulation system (28) is connected to the mechanical circulation input wheel (23) and the mechanical circulation output wheel (17) respectively. Installation accessories: Connect the voltage stabilizer, frequency converter, relay, and switch to the combined generator and combined electric unit respectively.

Claims

1. The structure of the central gear push rod type circulating amplification power mechanism includes: Center cylinder (1), power wheel (2), input center gear (3), input planetary gear (4), push rod (5), roller (6), center gear (7), outer ring inner gear and inner gear fixing cylinder (8), output one-way gear (9), connecting bushing (10), integrated input and output center gear (11), terminal output center gear (12), housing (13), output gear (14), permanent magnet of combined power generation device (15), coil winding of combined power generation device (16), mechanical circulation Ring output wheel (17), input gear (18), input power shaft (19), combined electric actuator permanent magnet (20), combined electric actuator coil winding (21), combined electric actuator input wheel (22), mechanical circulation input wheel (23), output power shaft (24), power release output wheel (25), bearing (26), shaft pin (27), mechanical circulation system (28), spring (29), starter wheel (30), accessories: voltage regulator, frequency converter, relay, switch.

2. The central gear push rod type circulating amplification power machine according to claim 1 is characterized as follows: the housing (13) includes an input end housing (13), an output end housing (13) and an intermediate cylindrical housing (13); the input gear (18) is equipped with an input power shaft (19) and a bearing (26) and installed in the input hole of the housing; the input power shaft (19) extends outward through the input end housing (13); the input central gear (7) is equipped with a bearing (26) and is set on the central cylinder (1) to mesh with the input gear (18); the four input planetary gears (4) are equipped with bearings (26) and are installed on the input surface of the power wheel (2) through a shaft pin (27), with their inner ends meshing with the input central gear (3) and their outer ends meshing with the inner ring of the outer ring. Gears (8) mesh; the power wheel (2) is mounted on a bearing in the central cylinder (1); the outer ring inner gear and the inner gear fixing cylinder (8) are located on the periphery of the power wheel (2), and six keyways are evenly distributed on its outer surface to connect with the housing by key strips; on the output surface of the power wheel (2), the three push rods (5) are mounted on bearings (26) and connecting bushings (10) respectively to engage with the output one-way gear (9), and are mounted on the output surface of the power wheel (2) by a shaft pin (27); the push rod (5) is mounted on a roller (6) at its head end to contact the central gear (7); the central gear (7) is mounted on the central cylinder (1) and connected to the central cylinder (1) by key pins and screws; the spring (29) is fixed at its center to the power wheel (2). The outer end of the spring (29) is connected to the roller (6) shaft pin (27) of the push rod (5); the output one-way gear (9) of the first stage power wheel (2) system meshes with the integrated input center gear (11); the integrated input center gear (11) also meshes with the second stage input planetary gear (4); the second and third stage power wheel (2) systems are connected in series with the first stage power wheel (2) system, and their structural features are the same as those of the first stage power wheel (2) (briefly described); the third stage output one-way gear (9) meshes with the terminal output center gear (12); multiple output gears (14) are assembled with output power shafts (24) and bearings (26) and installed in the output holes of the upper housing (13), with the output power shafts (24) extending out of the housing. Externally; multiple output gears mesh with the terminal output center gear (12); the housing (13) is connected by screws; the combined power generation device permanent magnet (15) is installed on the output end housing (13) and insulated, and the combined power generation device coil winding (16) is installed on the housing (13); the mechanical circulation output wheel (17) is equipped with a permanent magnet and installed on the output power shaft (24) to form a combined power generation device; the input gear (18) is equipped with an input power shaft (19) and a bearing (26) and installed on the input end housing (13); in the input end housing (13), the combined electric device permanent magnet (20) is installed on the housing and insulated, and the combined electric device coil winding (21) is installed on the housing (13);The electric input wheel (22) is equipped with a one-way bearing and a permanent magnet and is insulated from them. It is installed on the input power shaft (19) to form a combined electric device. The mechanical circulation input wheel (23) is equipped with a one-way bearing and installed on the input power shaft (19). The starting wheel (30) is equipped with a one-way bearing and installed on the input power shaft (19). The power release output wheel (25) is installed on the output power shaft (24). The mechanical circulation system (28) is connected to the mechanical circulation input wheel (23) and the mechanical circulation output wheel (17) respectively. The accessories: voltage regulator, frequency converter, relay, and switch are connected to the combined power generation device and the combined electric device respectively.