Energy-saving generator and generator set thereof

By setting up a support chassis and a synchronous and convenient disassembly mechanism at the lower end of the generator body, the cumbersome problems of energy-saving generator installation and disassembly are solved, and the generator is quickly fixed and unlocked, simplified the operation process and reduced the work intensity of staff.

CN120301100AActive Publication Date: 2025-07-11江苏中奕和创智能科技有限公司

Patent Information

Application Number
CN202510469905.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-15
Publication Date
2025-07-11
Estimated Expiration
2045-04-15

AI Technical Summary

Technical Problem

The installation and disassembly of existing energy-saving generators is complicated, and the bolt fixing method makes operation troublesome and difficult to disassemble, which increases the work intensity of the staff.

Method used

A support chassis is set at the lower end of the generator body, and a locking plug-in through hole and a downward movement guide hole are provided on the support chassis. Combined with a synchronous and convenient installation and disassembly mechanism, the generator and the installation support carrier plate are quickly fixed and unlocked by driving the connection plate and matching the lock strip.

Benefits of technology

It realizes quick installation and disassembly of the generator, simplifies the operating process, reduces the work intensity of staff, and improves installation efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of generators, in particular to an energy-saving generator which comprises a generator body, supporting bottom frames are symmetrically and fixedly arranged at the two ends of the lower side of the generator body, locking insertion through holes are formed in the supporting bottom frames, and protruding bearing plates are fixedly arranged on the supporting bottom frames; the invention further relates to a generator set, the generator set comprises a generator body and further comprises an installation supporting carrier plate, matched bearing columns are symmetrically and fixedly arranged at the two ends of the installation supporting carrier plate, and connecting matched holes are formed in the matched bearing columns. A matched bearing column is arranged on the mounting support plate, a matched insertion cavity hole is formed in the mounting support plate on the lower side of the matched bearing column, the matched insertion cavity hole penetrates into the matched bearing column, a fixed bearing block is fixedly arranged on the mounting support plate, a mounting matched insertion hole is formed in the fixed bearing block, and support guide bearing rods are symmetrically and fixedly arranged at the two ends of the fixed bearing block.
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Description

Technical Field

[0001] The present invention relates to the technical field of generators, and particularly to an energy-saving generator and its generator set. Background Art

[0002] A generator is a mechanical device that converts other forms of energy into electrical energy. It is widely used in various fields. There are many forms of generators, but their working principles are all based on the laws of electromagnetic induction and electromagnetic force. In order to meet the demand for energy conservation, energy-saving generators have emerged, which are much superior to ordinary generators in terms of energy conservation and environmental protection. When installing an energy-saving generator, in order to ensure that it can have a good working condition, a support backing plate will be set below the generator to support the generator and ensure its working stability. However, the installation of the generator is rather troublesome. It is necessary to first fix the support backing plate at the working point through bolts, and then fix the generator on the support backing plate through bolts, which requires two installation operations. Although the bolt fixation method is relatively simple, the two installations and the operation of multiple bolts are rather troublesome, and the quick installation of the generator cannot be achieved. When the generator has been used for a long time and needs to be disassembled from the support backing plate, the bolts are difficult to disassemble due to the long time, which will also lead to difficult disassembly, resulting in a large working intensity for the staff and being very inconvenient. Summary of the Invention

[0003] The purpose of the present invention is to provide an energy-saving generator and its generator set to solve the problems raised in the above background art.

[0004] To achieve the above purpose, the present invention provides the following technical solutions: An energy-saving motor, including a generator body, at both ends of the lower side of the generator body are symmetrically and fixedly provided with support chassis. Locking insertion through holes are formed on the support chassis, and a protruding bearing plate is fixedly provided on the support chassis, and a downward movement guiding hole is formed on the protruding bearing plate.

[0005] A generator set includes a generator body and an installation support carrier plate. At both ends of the installation support carrier plate, there are symmetrically fixed cooperation bearing columns. A connection cooperation hole is provided on the cooperation bearing column, and a cooperation insertion cavity hole is provided on the installation support carrier plate below the cooperation bearing column. The cooperation insertion cavity hole penetrates into the cooperation bearing column. A fixed bearing block is fixedly arranged on the installation support carrier plate. An installation cooperation insertion hole is provided on the fixed bearing block. At both ends of the fixed bearing block, there are symmetrically fixed support guide rods. A lower insertion cooperation hole is provided on the installation support carrier plate below the fixed bearing block. Support cooperation convex blocks are symmetrically fixedly arranged on both sides of the installation support carrier plate. Support cooperation slide rods are symmetrically fixedly arranged at both ends of the support cooperation convex block, and a fixed cooperation rod is fixedly arranged inside the support cooperation convex block. Positioning guide columns are symmetrically fixedly arranged at both ends of the installation support carrier plate. A synchronous and convenient installation and disassembly mechanism is arranged on the installation support carrier plate. The generator body and the installation support carrier plate are fixed through the synchronous and convenient installation and disassembly mechanism.

[0006] Preferably, the synchronous and convenient installation and disassembly mechanism includes a driving connection disc, a reset connection spring, a load-bearing movable strip, a moving cooperation lock bar, a cooperation reset spring, a movable connection hinge rod, a driving cooperation strip block, and a connection load-bearing plate. A plugging guide column is fixedly arranged on the driving connection disc. The plugging guide column is plugged into the installation cooperation insertion hole, and the reset connection spring is sleeved on the plugging guide column.

[0007] Preferably, cooperation driving connecting rods are symmetrically hinged at both ends of the driving connection disc. The lower ends of the cooperation driving connecting rods are hinged with a load-bearing movable strip. A connection cooperation frame is fixedly arranged on the load-bearing movable strip. The connection cooperation frame is hinged with the cooperation driving connecting rod. A support cooperation insertion hole is provided on the load-bearing movable strip below the connection cooperation frame. The support guide rod is plugged into the support cooperation insertion hole.

[0008] Preferably, movable installation through holes are symmetrically provided at both ends of the load-bearing movable strip. A moving cooperation lock bar is installed on the load-bearing movable strip. A load-bearing cooperation lock rod is fixedly arranged on the moving cooperation lock bar. When the load-bearing cooperation lock rod fixes the generator body, it is plugged into the locking insertion through hole.

[0009] Preferably, support lower convex plates are symmetrically fixedly arranged on the moving cooperation lock bar. An installation cooperation insertion rod is fixedly arranged on the support lower convex plate. The installation cooperation insertion rod is plugged into the movable installation through hole. A limit rod end plate is fixedly arranged on the installation cooperation insertion rod. The cooperation reset spring is sleeved on the installation cooperation insertion rod.

[0010] Preferably, movable connecting hinge rods are symmetrically hinged on both sides of the driving connecting disc. The lower ends of the movable connecting hinge rods are hinged with movable matching connecting blocks. Sliding matching through holes are formed in the movable matching connecting blocks. Fixed matching carrier rods are inserted into the sliding matching through holes. Moreover, hinged matching connecting rods are symmetrically hinged at both ends of the movable matching connecting blocks, and the other ends of the hinged matching connecting rods are hinged with driving matching strip blocks.

[0011] Preferably, movable matching through holes are formed in the driving matching strip blocks. Supporting matching sliding rods are inserted into the movable matching through holes. Moreover, a supporting hinge frame is fixedly arranged on one side of the driving matching strip block, and the supporting hinge frame is hinged with the hinged matching connecting rod.

[0012] Preferably, an inclined connecting frame is fixedly arranged at the upper end of the driving matching strip block. Insertion matching channels are formed in the inclined connecting frame, and a connecting load-bearing plate is connected to the inclined connecting frame.

[0013] Preferably, insertion matching plug rods are fixedly arranged on the lower side of the connecting load-bearing plate. The insertion matching plug rods pass through the connecting matching holes and are inserted into the matching insertion cavity holes. Moreover, movable matching plug plates are fixedly arranged at the lower ends of the insertion matching plug rods. The movable matching plug plates are inserted into the matching insertion cavity holes. Supporting connecting plates are symmetrically and fixedly arranged at both sides of one end of the connecting load-bearing plate. A matching driving insertion column is fixedly arranged between the supporting connecting plates. The matching driving insertion column is inserted into the insertion matching channel.

[0014] Compared with the prior art, the beneficial effects of the present invention are as follows: The structure of the present invention is reasonably arranged and has strong functionality, and has the following advantages: 1. A supporting bottom frame is arranged at the lower end of the generator body. Locking insertion through holes and downward movement guiding holes are formed in the supporting bracket. When installing the generator body, the downward movement guiding holes are sleeved on the positioning guiding columns and then the generator body is moved downward, so that the fixed connection between the generator body and the installation supporting load-bearing plate can be automatically completed, thereby completing the fixed installation of the generator body. At the same time, the fixed installation of the installation supporting load-bearing plate at the working position can also be realized. The operation is simple, convenient and fast.

[0015] 2. When installing the generator body, the installation supporting load-bearing plate is placed at a flat working position. When the generator body is moved downward, the lower end surface of the generator body will contact the driving connecting disc, and then the driving connecting disc will be pushed downward. In this way, under the action of the driving connecting rod, the load-bearing movable strip plate will be pushed to move, and then the movable matching locking strip will move, so that the load-bearing matching locking rod on the movable matching locking strip can be inserted into the locking insertion through hole, realizing the fixed connection between the generator body and the installation supporting load-bearing plate.

[0016] 3. Additionally, as the driving connecting disk moves downward, under the action of the movable connecting hinge rod, it will push the driving mating strip to move, and then under the action of the driving mating strip, it will drive the connecting load-bearing plate to move upward. As the connecting load-bearing plate moves upward, since the installation support plate is in close contact with the flat working surface, under the action of the movable mating plug plate, a negative pressure can be formed in the mating insertion cavity hole, and thus the installation support plate can be firmly fixed at the working position. At the same time, the installation of the generator body and the installation support plate is completed very conveniently. Moreover, when the generator needs to be disassembled, at this time, only need to pull the two movable mating lock bars in opposite directions simultaneously so that the bearing mating lock rod withdraws from the locking insertion through hole, then the unlocking of the generator body can be realized and it can be quickly disassembled. At the same time, the unlocking of the installation support plate is also realized, which is convenient to move it. Description of the Drawings

[0017] Figure 1 It is an assembly schematic diagram of the generator body and the installation support plate.

[0018] Figure 2 It is a structural schematic diagram of the generator body.

[0019] Figure 3 It is an assembly schematic diagram of the installation support plate in the state where the driving connecting disk moves downward.

[0020] Figure 4 It is a structural schematic diagram of the installation support plate.

[0021] Figure 5 It is a bottom structural schematic diagram of the installation support plate.

[0022] Figure 6 It is an assembly schematic diagram of the driving connecting disk.

[0023] Figure 7 It is an assembly schematic diagram of the movable mating lock bar.

[0024] Figure 8 It is a structural schematic diagram of the movable mating lock bar.

[0025] Figure 9 It is a structural schematic diagram of the connecting load-bearing plate.

[0026] In the figure: 1. Generator body; 11. Support chassis; 12. Locking plug-in through hole; 13. Protruding bearing plate; 14. Lowering guide hole; 2. Installing support carrier plate; 21. Matching bearing column; 22. Connecting matching hole; 23. Matching plug-in cavity hole; 24. Fixing bearing block; 25. Installing matching plug hole; 26. Support guide bearing rod; 27. Lower plug-in matching hole; 28. Support matching convex block; 281. Support matching slide bar; 282. Fixing matching bearing rod; 29. Positioning guide column; 3. Driving connecting plate; 31. Plug-in guide column; 32. Reset connection spring; 33. Matching driving connecting rod; 34. Loading movable strip; 3 5. Connecting and matching frame; 36. Support matching jack; 37. Movable installation through hole; 4. Moving matching lock strip; 41. Load-bearing matching lock rod; 42. Support lower convex plate; 43. Installation matching plug rod; 44. Limit rod end plate; 45. Matching reset spring; 5. Movable connecting hinge rod; 51. Moving matching connecting block; 52. Sliding matching through hole; 53. Articulated matching connecting rod; 6. Driving matching strip block; 61. Movable matching through hole; 62. Oblique connecting frame; 63. Plug-in matching channel; 7. Connecting loading plate; 71. Plug-in matching plug rod; 72. Movable matching plug plate; 73. Support connecting plate; 731. Matching driving plug column. DETAILED DESCRIPTION

[0027] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0028] See also Figures 1 to 9 , the present invention provides a technical solution: An energy-saving motor comprises a generator body 1, wherein support frames 11 are symmetrically fixedly arranged at both ends of the lower side of the generator body 1, the support frames 11 are provided with locking plug-in through holes 12, and a protruding bearing plate 13 is fixedly arranged on the support frames 11, and the protruding bearing plate 13 is provided with a downward guide hole 14.

[0029] A generator set includes a generator body 1, and also includes an installation support carrier plate 2. At both ends of the installation support carrier plate 2, fitting bearing columns 21 are symmetrically and fixedly arranged. A connection fitting hole 22 is provided on the fitting bearing column 21, and a fitting insertion cavity hole 23 is provided on the installation support carrier plate 2 below the fitting bearing column 21. The fitting insertion cavity hole 23 penetrates into the fitting bearing column 21. A fixed bearing block 24 is fixedly arranged on the installation support carrier plate 2. An installation fitting socket hole 25 is provided on the fixed bearing block 24, and support guiding carrier rods 26 are symmetrically and fixedly arranged at both ends of the fixed bearing block 24. A lower insertion fitting hole 27 is provided on the installation support carrier plate 2 below the fixed bearing block 24. Support fitting convex blocks 28 are symmetrically and fixedly arranged on both sides of the installation support carrier plate 2. Support fitting slide rods 281 are symmetrically and fixedly arranged at both ends of the support fitting convex block 28, and a fixed fitting carrier rod 282 is fixedly arranged inside the support fitting convex block 28. Positioning guiding columns 29 are symmetrically and fixedly arranged at both ends of the installation support carrier plate 2, and a synchronous and convenient installation and disassembly mechanism is arranged on the installation support carrier plate 2. The generator body 1 and the installation support carrier plate 2 are fixed through the synchronous and convenient installation and disassembly mechanism. When installing the generator body 1, the downward movement guiding hole 14 is sleeved on the positioning guiding column 29.

[0030] The synchronous and convenient installation and disassembly mechanism includes a driving connection disk 3, a reset connection spring 32, a load-bearing movable strip plate 34, a moving fitting lock bar 4, a fitting reset spring 45, a movable connection hinge rod 5, a driving fitting strip block 6, and a connection load-bearing plate 7. A plugging guiding column 31 is fixedly arranged on the driving connection disk 3. The plugging guiding column 31 is plugged in the installation fitting socket hole 25, and a reset connection spring 32 is sleeved on the plugging guiding column 31. In addition, the reset connection spring 32 is located above the fixed bearing block 24, and both ends of the reset connection spring 32 are respectively welded on the upper end surface of the fixed bearing block 24 and the lower end surface of the driving connection disk 3, and the lower end of the driving connection disk 3 is plugged in the lower insertion fitting hole 27.

[0031] Cooperating driving connecting rods 33 are symmetrically hinged at both ends of the driving connection disk 3. The lower ends of the cooperating driving connecting rods 33 are hinged with a load-bearing movable strip plate 34. A connection fitting frame 35 is fixedly arranged on the load-bearing movable strip plate 34. The connection fitting frame 35 is hinged with the cooperating driving connecting rod 33, and a support fitting socket hole 36 is provided on the load-bearing movable strip plate 34 below the connection fitting frame 35. The support guiding carrier rod 26 is plugged in the support fitting socket hole 36.

[0032] Movable installation through holes 37 are symmetrically provided at both ends of the load-bearing movable strip plate 34, and a moving fitting lock bar 4 is installed on the load-bearing movable strip plate 34. A bearing fitting lock rod 41 is fixedly arranged on the moving fitting lock bar 4. When the bearing fitting lock rod 41 fixes the generator body 1, it is plugged in the locking insertion through hole 12.

[0033] Symmetrically fixed on the moving mating lock bar 4 are support lower convex plates 42. Fixed on the support lower convex plates 42 are mounting mating plug rods 43. The mounting mating plug rods 43 are inserted into the movable mounting through holes 37. Fixed on the mounting mating plug rods 43 are limit rod end plates 44. A mating return spring 45 is sleeved on the mounting mating plug rods 43. In addition, the two ends of the mating return spring 45 are respectively welded to the load-bearing movable strip plate 34 and the limit rod end plate 44.

[0034] Symmetrically hinged on both sides of the driving connection disk 3 are movable connection hinge rods 5. The lower ends of the movable connection hinge rods 5 are hinged with moving mating connection blocks 51. A sliding mating through hole 52 is formed in the moving mating connection block 51. A fixed mating load rod 282 is inserted into the sliding mating through hole 52. Symmetrically hinged at both ends of the moving mating connection block 51 are hinged mating connecting rods 53. The other ends of the hinged mating connecting rods 53 are hinged with a driving mating strip block 6.

[0035] A movable mating through hole 61 is formed in the driving mating strip block 6. A support mating sliding rod 281 is inserted into the movable mating through hole 61. Fixed on one side of the driving mating strip block 6 is a support hinge frame which is hinged with the hinged mating connecting rod 53.

[0036] Fixed at the upper end of the driving mating strip block 6 is an inclined connection frame 62. A plugging mating channel 63 is formed in the inclined connection frame 62. Connected to the inclined connection frame 62 is a connection load-bearing plate 7. The inner wall of the inclined connection frame 62 is smooth and free of burrs.

[0037] Fixed on the lower side of the connection load-bearing plate 7 is a plugging mating plug rod 71. The plugging mating plug rod 71 passes through the connection mating hole 22 and is inserted into the mating plugging cavity hole 23. Fixed at the lower end of the plugging mating plug rod 71 is a movable mating plug plate 72. The movable mating plug plate 72 is inserted into the mating plugging cavity hole 23. The diameter of the movable mating plug plate 72 is equal to the inner diameter of the mating plugging cavity hole 23. When the movable mating plug plate 72 does not fix the mounting support load plate 2, its lower end face is flush with the lower end face of the mounting support load plate 2. Symmetrically fixed at both ends of one side of the connection load-bearing plate 7 are support connection plates 73. Between the support connection plates 73 is fixed a mating driving plug post 731. The mating driving plug post 731 is inserted into the plugging mating channel 63 and is in contact with the inner wall of the plugging mating channel 63.

[0038] When installing the generator body 1, place the installation support carrier plate 2 at a flat working point so that its lower end surface is in close contact with the working plane. Then slowly lower the generator body 1 from above the installation support carrier plate 2. During the downward movement, the downward movement guiding hole 14 on the generator body 1 is sleeved on the positioning guiding column 29, so that the limit of the generator body 1 can be realized, and it can be accurately installed on the installation support carrier plate 2 during installation. When the generator body 1 moves downward, its lower end surface will contact the driving connection disk 3. In this way, under the action of the generator body 1, the driving connection disk 3 will be pushed downward. As the driving connection disk 3 moves downward, under the cooperation of the driving connecting rod 33, the load-bearing movable strip 34 will be pushed toward the support chassis 11. During its movement, the load-bearing cooperation locking rod 41 on the load-bearing movable strip 34 will contact the support chassis 11. In this way, as the load-bearing movable strip 34 moves, the load-bearing cooperation locking rod 41 will no longer move, that is, at this time, relative movement occurs between the load-bearing movable strip 34 and the moving cooperation locking strip 4. At this time, the cooperation reset spring 45 is in a compressed state. Until with the downward movement of the generator body 1, the load-bearing cooperation locking rod 41 is aligned with the locking insertion through hole 12. In this way, the load-bearing cooperation locking rod 41 loses its restriction, and under the action of the cooperation reset spring 45, the moving cooperation locking strip 4 moves, so that the load-bearing cooperation locking rod 41 is inserted into the locking insertion through hole 12, realizing the fixed connection between the generator body 1 and the installation support carrier plate 2. When the driving connection disk 3 moves downward, under the action of the movable connection hinge rod 5, the moving cooperation connection block 51 will be pushed in the direction away from the driving connection disk 3. In this way, as the moving cooperation connection block 51 moves, under the action of the hinged cooperation connecting rod 53, the driving cooperation strip 6 will be pushed in the direction away from the support cooperation convex block 28. In this way, as the driving cooperation strip 6 moves, under the action of the inclined connection frame 62, the cooperation driving insertion column 731 will be driven to move upward, and then the connecting load-bearing plate 7 will be driven to move upward. As the connecting load-bearing plate 7 moves upward, the movable cooperation plug plate 72 will also be driven to move upward. Since the port of the cooperation insertion cavity hole 23 is in a sealed state at this time, with the upward movement of the movable cooperation plug plate 72, a negative pressure will be formed in the cooperation insertion cavity hole 23. Under the action of the negative pressure, the installation support carrier plate 2 can be firmly fixed at the working point, realizing the fixation of the installation support carrier plate 2. That is, the fixation of the installation support carrier plate 2 can be realized while installing the generator body 1, killing two birds with one stone, simple, convenient and fast in operation, capable of synchronizing the installation of the generator body 1 and the installation support carrier plate 2, reducing the work intensity of the staff, and improving the work efficiency of installing the generator body 1. In addition, when the generator body 1 needs to be disassembled, at this time, just pull the two moving cooperation locking strips 4 at the same time so that the load-bearing cooperation locking rod 41 on the moving cooperation locking strip 4 withdraws from the locking insertion through hole 12, then the generator body 1 will be in an unlocked state, and then the generator body 1 can be lifted upward.When the bearing mating lock rod 41 is misaligned with the locking insertion through hole 12, the movable mating lock bar 4 can be released, and the generator body 1 can be continuously lifted upward until the lower end face of the generator body 1 is separated from the drive connection disk 3. During this process, the drive connection disk 3 will be reset under the action of the reset connection spring 32. With the reset of the drive connection disk 3, the load-bearing movable strip plate 34 and the connecting load-bearing plate 7 will also be reset, thereby causing the negative pressure in the mating insertion cavity hole 23 to disappear, and thus the unlocking of the installation support carrier plate 2 can be achieved.

[0039] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A generator set, comprising a generator body (1), characterized in that: On both lower ends of the generator body (1), support chassis (11) are symmetrically and fixedly arranged. Locking insertion through holes (12) are formed in the support chassis (11), and protruding bearing plates (13) are fixedly arranged on the support chassis (11). Lower movement guiding holes (14) are formed in the protruding bearing plates (13). An installation support carrier plate (2) is further included. At both ends of the installation support carrier plate (2), cooperating bearing columns (21) are symmetrically and fixedly arranged. Connection cooperation holes (22) are formed in the cooperating bearing columns (21), and a cooperating insertion cavity hole (23) is formed in the installation support carrier plate (2) below the cooperating bearing column (21). The cooperating insertion cavity hole (23) penetrates into the cooperating bearing column (21). A fixed bearing block (24) is fixedly arranged on the installation support carrier plate (2). Installation cooperation insertion holes (25) are formed in the fixed bearing block (24), and support guiding carrier rods (26) are symmetrically and fixedly arranged at both ends of the fixed bearing block (24). A lower insertion cooperation hole (27) is formed in the installation support carrier plate (2) below the fixed bearing block (24). Support cooperation convex blocks (28) are symmetrically and fixedly arranged on both sides of the installation support carrier plate (2). Support cooperation sliding rods (281) are symmetrically and fixedly arranged at both ends of the support cooperation convex blocks (28), and fixed cooperation carrier rods (282) are fixedly arranged inside the support cooperation convex blocks (28). Positioning guiding columns (29) are symmetrically and fixedly arranged at both ends of the installation support carrier plate (2), and a synchronous convenient installation and disassembly mechanism is arranged on the installation support carrier plate (2). The generator body (1) and the installation support carrier plate (2) are fixed through the synchronous convenient installation and disassembly mechanism. The synchronous convenient installation and disassembly mechanism includes a driving connection disk (3), a reset connection spring (32), a load-bearing movable strip plate (34), a moving cooperation lock bar (4), a cooperation reset spring (45), a movable connection hinge rod (5), a driving cooperation strip block (6), and a connection load-bearing plate (7). An insertion guiding column (31) is fixedly arranged on the driving connection disk (3). The insertion guiding column (31) is inserted into the installation cooperation insertion hole (25), and the reset connection spring (32) is sleeved on the insertion guiding column (31).

2. A generator set according to claim 1, characterized in that: Cooperating driving connecting rods (33) are symmetrically hinged at both ends of the driving connection disk (3). The lower ends of the cooperating driving connecting rods (33) are hinged with a load-bearing movable strip plate (34). A connection cooperation frame (35) is fixedly arranged on the load-bearing movable strip plate (34). The connection cooperation frame (35) is hinged with the cooperating driving connecting rod (33), and a support cooperation insertion hole (36) is formed in the load-bearing movable strip plate (34) below the connection cooperation frame (35). The support guiding carrier rod (26) is inserted into the support cooperation insertion hole (36).

3. A generator set according to claim 2, characterized in that: Both ends of the load-carrying movable strip (34) are symmetrically provided with movable mounting through holes (37), and a movable mating locking bar (4) is mounted on the load-carrying movable strip (34). A load-bearing mating locking rod (41) is fixedly provided on the movable mating locking bar (4). When the load-bearing mating locking rod (41) fixes the generator body (1), it is inserted into the locking insertion through hole (12).

4. A generator set according to claim 3, characterized in that: Support lower convex plates (42) are symmetrically and fixedly provided on the movable mating locking bar (4). An installation mating insertion rod (43) is fixedly provided on the support lower convex plate (42). The installation mating insertion rod (43) is inserted into the movable mounting through hole (37). A limit rod end plate (44) is fixedly provided on the installation mating insertion rod (43), and a mating return spring (45) is sleeved on the installation mating insertion rod (43).

5. A generator set according to claim 4, characterized in that: Movable connection hinge rods (5) are symmetrically hinged on both sides of the drive connection disk (3). The lower end of the movable connection hinge rod (5) is hinged with a movable mating connection block (51). A sliding mating through hole (52) is provided on the movable mating connection block (51). A fixed mating load rod (282) is inserted into the sliding mating through hole (52). Hinged mating connecting rods (53) are symmetrically hinged at both ends of the movable mating connection block (51). The other end of the hinged mating connecting rod (53) is hinged with a drive mating strip (6).

6. A generator set according to claim 5, characterized in that: An activity mating through hole (61) is provided on the drive mating strip (6). A support mating sliding rod (281) is inserted into the activity mating through hole (61). A support hinge frame is fixedly provided on one side of the drive mating strip (6). The support hinge frame is hinged with the hinged mating connecting rod (53).

7. A generator set according to claim 6, characterized in that: An inclined connection frame (62) is fixedly provided at the upper end of the drive mating strip (6). A plugging mating channel (63) is provided on the inclined connection frame (62), and a connection load plate (7) is connected to the inclined connection frame (62).

8. A generator set according to claim 7, characterized in that: A plugging mating plug rod (71) is fixedly provided on the lower side of the connection load plate (7). The plugging mating plug rod (71) passes through the connection mating hole (22) and is inserted into the mating plugging cavity hole (23). An activity mating plug plate (72) is fixedly provided at the lower end of the plugging mating plug rod (71). The activity mating plug plate (72) is inserted into the mating plugging cavity hole (23). Support connection plates (73) are symmetrically and fixedly provided on both sides at one end of the connection load plate (7). A mating driving plug column (731) is fixedly provided between the support connection plates (73). The mating driving plug column (731) is inserted into the plugging mating channel (63).

Citation Information

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