Planetary gear link combined amplification power mechanism and method of manufacturing the same
By using a planetary gear and connecting rod to amplify the power mechanism, and utilizing a power wheel, planetary gears, and one-way gear assemblies to achieve power self-circulation and torque multiplication, the high cost of power machinery and engine systems in existing technologies is solved, providing a low-cost and efficient power transmission and energy multiplication solution.
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
There is a lack of low-cost and widely applicable energy-free power machinery and engine systems in the current technology.
The power amplification mechanism is amplified by a planetary gear and connecting rod. By installing components such as a power wheel, input planetary gear, variable speed planetary gear set and output one-way gear in series, power self-circulation and torque amplification are achieved. Combined with the combined power generation device to feed back to the combined electric device, a power self-circulation is formed.
It achieves low-cost, high-efficiency power transmission and energy amplification, has power self-circulation capability, and is suitable for a variety of application scenarios.
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Figure HSA0000299953060000011
Abstract
Description
Areas involved
[0001] This invention relates to a planetary gear and connecting rod combined amplification power machine in the field of power machinery and engines. Technical Background
[0002] This invention is the first of its kind; there is no other planetary gear and connecting rod combined amplification power machine of this kind. Summary of the Invention
[0003] This invention is original and aims to provide a low-cost, widely applicable, and energy-free power source, relating to the structure and manufacturing method of a planetary gear and connecting rod combined amplification power mechanism for power machinery and engines. The following description, in conjunction with the accompanying drawings, further illustrates this:
[0004] Specific scheme: A power wheel (2) system with the power wheel (2) as the main body is installed in series on the central shaft (1). On the input surface of the power wheel (2), two input planetary gears (5) are set, and bearings (19) are installed on the input surface of the power wheel (2) with pins (20). An input central gear (3) is set, and an input bushing (4) and bearings (19) are installed on the central shaft (1). On the periphery of the power wheel (2), an outer ring inner gear and an inner gear fixing cylinder (6) are set. Multiple keyways are evenly distributed on the outer circular surface of the outer ring inner gear and the inner gear fixing cylinder (6), and are connected to the housing (15) with key pins. The outer end of the input planetary gear (5) meshes with the outer ring inner gear (6), and its inner end meshes with the input central gear (3). On the output surface of the power wheel (2), two variable speed planetary gear sets are set according to the reduction ratio, and bearings (19) are installed on the power wheel (2) with pins (20). The first gear (7) of the variable speed planetary gear set meshes with the inner gear (6) of the outer ring. A connecting pin (9) is provided on the last gear (8) of the variable speed planetary gear set. A bearing (19) is provided on the pin (9) and connected to the front end hole of the connecting rod (1). On the output surface of the power (2), two output one-way gears (11) are provided and connected to the end hole of the connecting rod through the bearing (19). Between the two power wheels (2), an integrated output and input central gear (12) is provided and mounted on the central shaft (1) with a bearing (19). One end of the central gear (12) meshes with the output one-way gear (11) of the first stage power wheel (2), and the other end meshes with the input planetary gear (5) 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 meshing with the integrated output and input central gear (12). 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 (13) is assembled with an output shaft sleeve (14) and a bearing (19) and mounted on the central shaft (1), meshing with the output single gear (11) of the third-stage power wheel (2). The housing includes an input end circular housing (15), an output end circular housing (15), and a middle cylindrical housing (15). The two end housings (15) are connected to the middle cylindrical housing (15) with screws. A combined electric device is installed in the input end housing (15) and a combined power generation device is installed in the output end housing (15). Power self-circulation is achieved by using the amplified partial torque power generation feedback combined electric device. A mechanical circulation system (26) is connected to the mechanical circulation input wheel and the mechanical circulation output wheel respectively to achieve power self-circulation.
[0005] Its working principle: Power is transmitted to the input center gear (3), which rotates and drives the input planetary gear (5) to rotate counterclockwise and roll clockwise along the inner gear of the outer ring. The pin (20) of the input planetary gear (5) pulls the first stage power wheel (2) to rotate clockwise. The first stage power wheel (2) obtains twice the torque of the input planetary gear (5). At the same time, the first stage power wheel (2) drives the first end gear (7) of the variable speed planetary gear set to rotate counterclockwise and roll clockwise along the inner gear (6) of the outer ring. The first end gear (7) rotates counterclockwise and drives the planetary gear set to transmit the amplified torque to the end gear (8) of the variable speed planetary gear set according to the reduction ratio. The end gear (8) transmits the amplified torque to the output one-way gear (11) through the end of the connecting rod (10). The combined transmission of the planetary gear set and connecting rod (10) rotates synchronously with the first-stage power wheel (2) and also rotates on its own, generating multiplied torque and speed. The output one-way gear (11) transmits the first-stage amplified torque and speed to the integrated input-output center gear (12) and the second-stage power wheel (2) system. The output one-way gear (11) of the second-stage power wheel (2) transmits the second-stage amplified torque and speed to the third-stage power wheel (2) system. The output one-way gear (11) of the third-stage power wheel (2) then transmits the third-stage amplified torque and speed to the terminal output center gear (13), which is connected to the mechanical circulation output wheel (18) and the power release output wheel (27) through the output shaft sleeve (14). The mechanical circulation output wheel (18) is connected to the mechanical circulation system (26), and uses a portion of the amplified output torque to feed back to the mechanical circulation input wheel (24) to achieve power self-circulation. Power self-circulation is achieved by using a combined power generation device to feed back to the combined electric device. Attached Figure Description
[0006] Figure 1 : Input surface of the drive wheel
[0007] Figure 2 : Drive wheel output surface
[0008] Figure 3 Schematic diagram of the planetary gear and connecting rod combined enlarged power mechanism:
[0009] Figure Descriptions: 1. Central Shaft; 2. Power Wheel; 3. Input Central Gear; 4. Input Bushing; 5. Input Planetary Gear; 6. Outer Ring Inner Gear and Inner Gear Fixing Cylinder; 7. First Gear of Variable Speed Planetary Gear Set; 8. Last Gear of Variable Speed Planetary Gear Set; 9. Connecting Pin; 10. Connecting Rod; 11. Output One-Way Gear; 12. Integrated Output and Input Central Gear; 13. Terminal Output Central Gear; 14. Output Bushing; 15. Housing; 16. Permanent Magnet of Combined Power Generator; 17. Coil Winding of Combined Power Generator; 18. Mechanical Circulation Output Wheel; 19. Bearing; 20. Pin; 21. Permanent Magnet Drive of Combined Electric Device; 22. Coil Winding of Combined Electric Device; 23. Input Wheel; 24. Mechanical Circulation Input Wheel; 25. Output Wheel; 26. Mechanical Circulation System; 27. Power Relief Output Wheel; 28. Central Shaft Connecting Flange. Detailed Implementation
[0010] The structure and manufacturing method of the planetary gear and connecting rod combined amplification power mechanism are as follows:
[0011] (I) The planetary gear and connecting rod combined amplification power mechanism includes: 1. central shaft, 2. power wheel, 3. input central gear, 4. input bushing, 5. input planetary gear, 6. outer ring internal gear and internal gear fixing sleeve; 7. first end gear of the variable speed planetary gear set, 8. last end gear of the variable speed planetary gear set, 9. connecting pin, 10. connecting rod, 11. output one-way gear, 12. integrated output and input central gear, 13. terminal output central gear, 14. output bushing, 15. housing, 16. permanent magnet of the combined power generation device, 17. coil winding of the combined power generation device, 18. mechanical circulation output wheel, 19. bearing, 20. pin, 21. permanent magnet of the combined electric device, 22. coil winding of the combined electric device, 23. input wheel, 24. mechanical circulation input wheel, 25. output wheel; 26. mechanical circulation system, 27. power release output wheel, 28. central shaft connecting flange, accessories: voltage regulator, frequency converter, relay, switch.
[0012] (II) Manufacturing Method:
[0013] 1. Machining (dimensions and materials are determined according to actual application): drive wheel, gear, outer ring internal gear, central shaft, pin, bushing, connecting rod, etc.
[0014] 2. Welding: shell, bracket.
[0015] 3. Steps for assembling a planetary gear and connecting rod combined amplification power machine:
[0016] Place the central shaft (1) on the worktable, install the power wheel (2) on the central shaft, assemble the input central gear (3) with the input bushing (4) and the bearing (19) on the input end central shaft (1), assemble the two input planetary gears (5) with the bearings (19) and install them on the input surface of the power wheel (2) respectively through the shaft pins (20), with their outer ends meshing with the outer ring internal gear (6) and their inner ends meshing with the input central gear (3). Install the outer ring internal gear and the internal gear fixing sleeve (6), and connect it to the housing through its outer circular keyway and key pin. The outer ring internal gear (6) meshes with the input planetary gear (5). Arrange the two variable speed planetary gear sets counterclockwise according to the reduction ratio, and install them on the output surface of the power wheel (2) with the bearings (19) through the shaft pins (20). The first gear (7) of the variable speed planetary gear set meshes with the inner gear (6) of the outer ring. The last gear (8) is mounted on the connecting shaft pin (9) and engaged with the bearing (19) and the front end hole of the connecting rod (10). The ends of the two connecting rods (10) are respectively engaged with the output one-way gears (11) through the bearings. The two output one-way gears (11) mesh with the integrated output and input center gear (12). The second and third stage power (2) systems are connected in series to the central shaft (1) and linked by meshing with the integrated output and input center gear (12). The second and third stage power wheel (2) systems have the same structural features as the first stage power wheel (2) system (briefly described). The terminal output center gear (13) is assembled with the output shaft sleeve (14) and the bearing (19) and installed on the central shaft (1). The housing (15) is installed. The permanent magnet (16) of the combined power generation device is installed and insulated on the output end housing (15), and the coil winding (17) of the combined power generation device is installed on the housing (15) and insulated. The mechanical circulation output wheel (18) is fitted with a permanent magnet and insulated, and installed on the output shaft sleeve (14) to form a combined power generation device. The combined electric motor permanent magnet (21) is installed on the input end housing and insulated, and the combined electric motor coil winding (22) is installed on the housing and insulated. The input wheel (23) is fitted with a one-way bearing and a permanent magnet and insulated, and installed on the input shaft sleeve (4) to form a combined electric motor. The mechanical circulation input wheel (24) is fitted with a one-way bearing and installed on the input shaft sleeve (4). The output wheel (25) is installed on the input end central shaft (1). The mechanical circulation system (26) is connected to the mechanical circulation input wheel (24) and the mechanical circulation output wheel (18) respectively. The power release output wheel (27) is installed on the output shaft sleeve. The power release output wheel is connected to the central shaft connecting flange (28). The accessories are installed: voltage regulator, frequency converter, relay, and switch are connected to the combined generator and the combined motor respectively.
Claims
1. The structure of the planetary gear connecting rod combined amplification power mechanism includes: Central shaft (1), power wheel (2), input central gear (3), input bushing (4), input planetary gear (5), outer ring inner gear and inner gear fixing sleeve (6), first end gear of variable speed planetary gear set (7), last end gear of variable speed planetary gear set (8), connecting pin (9), connecting rod (10), output one-way gear (11), integrated output and input central gear (12), terminal output central gear (13), output bushing (14), housing (15), combined generator The device includes a permanent magnet (16), a combined power generation device coil winding (17), a mechanical circulation output wheel (18), a bearing (19), a shaft pin (20), a combined electric device permanent magnet (21), a combined electric device coil winding (22), an input wheel (23), a mechanical circulation input wheel (24), an output wheel (25), a mechanical circulation system (26), a power release output wheel (27), a central shaft connecting flange (28), and accessories: a voltage regulator, a frequency converter, a relay, and a switch.
2. The planetary gear and connecting rod combined amplification power machine according to claim 1 is characterized in that: the central shaft (1) is equipped with bearings (19) that pass through the circular housing (15) at the input and output ends, and the central shaft extends outward at both ends; the power wheel (2) is connected in series on the central shaft (1) inside the housing (15); the input central gear (3) is equipped with an input bushing (4) and bearings (19) and installed on the input central shaft (1); the two input planetary gears (5) are equipped with bearings (19) and are respectively installed on the input surface of the power wheel (2) through pins (20), with their outer ends meshing with the outer ring inner gear (6) and their inner ends meshing with the input central gear (3); the outer ring inner gear and the inner gears A gear fixing cylinder (6) is set around the power wheel (2). Six keyways are evenly distributed on the outer circular surface of the inner gear and the inner gear fixing cylinder (6) of the outer ring, and connected to the housing (15) by key strips. The inner gear (6) of the outer ring meshes with the input planetary gear (5). The two variable speed planetary gear sets are arranged counterclockwise according to the reduction ratio. The mounting bearing (19) is installed on the output surface of the power wheel (2) through the shaft pin (20). The first end gear (7) of the variable speed planetary gear set meshes with the inner gear (6) of the outer ring, and its end gear (8) is mounted with the connecting shaft pin (9) to cooperate with the bearing (19) and the front end hole of the connecting rod (10). The end mounting bearings (19) of the two connecting rods (10) are respectively connected to the output... One-way gear (11) engages; output one-way gear (11) meshes with output-input integrated central gear (12); the output-input integrated central gear (12) is set on the central shaft (1) between the two power wheels (2), one end meshes with the output one-way gear (11) of the first stage power wheel (2), and the other end meshes with the input planetary gear (5) on the second stage power wheel (2); the second and third stage power wheel (2) system is connected in series to the central shaft (1) and is linked by meshing with the output-input integrated central gear (12); the second and third stage power wheel (2) system has the same structural features as the first stage power wheel (2) system (briefly described); the terminal output central gear (13) The output shaft sleeve (14) and bearing (19) are mounted on the central shaft (1); the housing (15) includes an input end circular housing (15), an intermediate cylindrical housing (15) and an output end circular housing (15) and a sealing gasket, and the housing (15) is connected by screws; the input end housing (15) has an oil injection hole at the top and an oil drain hole at the bottom; the permanent magnet (16) of the combined power generation device is mounted on the housing (15) and insulated in the output end housing (15), the coil winding (17) of the combined power generation device is mounted on the housing (15) and insulated, and the mechanical circulation output wheel (18) is equipped with a permanent magnet and insulated, and is mounted on the output shaft sleeve (14) to form a combined power generation device;The permanent magnet (21) of the combined electric device is installed and insulated from the input end housing (15). The coil winding (22) of the combined electric device is installed and insulated from the housing (15). The input wheel (23) is equipped with a one-way bearing and a permanent magnet and is insulated from the input shaft sleeve (4) to form a combined electric device. The mechanical circulation input wheel (24) is equipped with a one-way bearing and installed on the input shaft sleeve (4). The output wheel (25) is installed on the input end central shaft (1). The mechanical circulation system (26) is connected to the mechanical circulation input wheel (23) and the mechanical circulation output wheel (18) respectively. The power release output wheel (27) is installed on the output shaft sleeve (14). The central shaft connecting flange (28) is connected to the power release output wheel (27). The accessories: voltage regulator, frequency converter, relay, and switch are connected to the combined generator and the combined electric device respectively.
3. The mechanical circulation system (26) of the planetary gear and connecting rod combined amplification power machine according to claim 1 or 2 is characterized in that: its structure includes a speed-changing gear set, a gear shaft, a bearing, an input gear, an output gear, and a transmission adjuster; the first end of the speed-changing gear set meshes with the input gear, the input gear meshes with the mechanical circulation output wheel (18), its end is coaxially connected to one end of the transmission adjuster, the other end of the transmission adjuster is coaxially connected to the output gear, and the output gear meshes with the mechanical circulation input wheel (24); the mechanical circulation output wheel (18) transmits the amplified output torque to the mechanical circulation input wheel (24) through the mechanical circulation system (26), and the mechanical circulation input wheel (24) transmits the torque to the input center gear (3) through a one-way bearing and an input bushing (4), thereby realizing the self-circulation of mechanical power.
4. The planetary gear and connecting rod combined amplification power machine according to claim 1 or 2 is characterized by the unique structure in which the end gear (8) of the variable speed planetary gear set of the power wheel (2) is combined with the connecting rod (10) to realize the function of combined amplification of power.
5. The planetary gear combined amplification power machine according to claim 1 or 2 is characterized by: adopting a unique structure of output unidirectional gear (11), and using the unidirectional non-reverse property to force the output and input integrated central gear (12) to rotate synchronously with it and accelerate its own rotation, thereby transmitting amplified torque.
6. The power release output wheel (27) of the planetary gear connecting rod combined amplification power machine according to claim 1 or 2 is characterized in that its structure includes: The system includes a slow-release input wheel, a slow-release output wheel, and an arc-shaped spring. Two arc-shaped spring grooves are provided on the opposite surfaces of the slow-release input wheel and the slow-release output wheel, and springs are placed in these grooves. An arc-shaped groove with a length half the starting length of the spring groove is cut into the outer circular surface of the slow-release input wheel; equal-width bosses are set at the starting positions of the spring groove and the arc-shaped groove on the outer circular surface of the opposite side of the slow-release output wheel, protruding into the groove of the slow-release input wheel; this technical method reduces the impact of power on the machinery.
7. The planetary gear connecting rod combined amplification power machine according to claim 1 or 2 is further characterized by: adopting a unique structure and technical method in which the input shaft sleeve (4), output shaft sleeve (14), power wheel (2) system rotate in the same direction as the central shaft (1) to extend the service life of the bearing (19). The above description of the structure and manufacturing method of the present invention is extremely simple. All equivalent structures, local changes and substitutions made based on the content of the present invention specification and drawings, and applied to other related technical fields, are included within the protection scope of the present invention.