A generator with starting induction

By setting up detection sensors in the generator and using structural design of protective side plate groups and roof plate groups, the problem of insufficient protection performance of traditional generator frame side plates is solved, and higher protection effect and collision resistance are achieved, and service life is extended.

CN119652019BActive Publication Date: 2025-06-17NINGBO THALES MFG CO LTD
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Patent Information

Application Number
CN202411613824.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-13
Publication Date
2025-06-17
Estimated Expiration
2044-11-13

AI Technical Summary

Technical Problem

The protective performance of the side plates of traditional generator frames is limited, and they are prone to deform or break after long-term collisions, losing their protective effect.

Method used

A generator with start-up induction is designed. By setting detection sensors inside the generator main body to collect start-up related data, it realizes monitoring of the start-up status and operating status of the generator main body. In addition, the structural design of the protective side panel group and the protective top panel group is adopted to enhance the protective effect and collision resistance of the device.

Benefits of technology

It effectively improves the protection effect and collision resistance of the generator, reduces damage caused to the device by collision, extends service life, and provides data reference for equipment maintenance and maintenance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a generator with start-up induction, comprising: a generator main body, a detection sensor is arranged inside the generator main body, the detection sensor includes a magnetic body and an induction element, the magnetic body is arranged on the rotor of the generator main body, and the induction element is arranged on the stator of the generator main body; a protective frame, which is arranged at a position outside the generator main body. The generator with start-up induction provided by the present invention can collect the start-up related data of the generator main body by arranging a detection sensor inside the generator main body, so as to monitor the start-up state and operation state of the generator main body, and facilitate providing data reference for the subsequent maintenance and overhaul of the equipment. Through the structural design of the protective side plate group and the protective top plate group, the protection effect of the device can be effectively improved, the anti-collision property of the device can be effectively improved, the damage caused by collision to the device can be reduced, and the service life of the device can be effectively improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of generators, and particularly to a generator with starting induction. Background Art

[0002] A diesel generator is a power generation device that uses diesel as the main fuel. It uses a diesel engine as the prime mover to drive the generator (i.e., the alternator) to generate electricity, which is a mechanical device that converts kinetic energy into electrical energy and heat energy. In the case of no power supply outdoors or indoors, a portable generator can be used for emergency power supply. To facilitate the carrying of the generator, a frame is installed on the outside of the generator, and side plates are installed on the side of the frame to enhance the protection of the generator.

[0003] However, the side plate of the traditional generator frame is a metal plate on one side, with limited protection performance. After long-term collisions, it is prone to a large amount of deformation and even cracking, and then loses the protection effect. For this reason, the present application proposes a generator with starting induction, and provides a new technical solution to solve the above-mentioned technical problems. Summary of the Invention

[0004] Based on this, in view of the above technical problems, it is necessary to provide a generator with starting induction. By setting a detection sensor inside the generator body, relevant data related to the start of the generator body can be collected, so as to monitor the start state and operation state of the generator body, and provide data reference for the subsequent maintenance and repair of the equipment. Through the structural design of the protection side plate group and the protection top plate group, the protection effect of the device can be effectively improved, the anti-collision performance of the device can be effectively improved, the damage caused by collisions to the device can be reduced, and the service life of the device can be effectively extended.

[0005] To solve the above technical problems, the present invention adopts the following technical solutions:

[0006] A generator with starting induction, which is applied to a generator.

[0007] The generator with starting induction specifically includes:

[0008] A generator body, a detection sensor is arranged inside the generator body, the detection sensor includes a magnetic body and an induction element, the magnetic body is arranged on the rotor of the generator body, and the induction element is arranged on the stator of the generator body;

[0009] A protective frame is arranged at a position outside the generator body. The protective frame is used for protecting and handling the generator body, and the generator body is detachably connected to the protective frame; the protective frame includes a frame main body, a mounting bottom beam is horizontally and fixedly connected to the bottom of the frame main body, a reinforcing top rod is longitudinally and fixedly connected to the top of the frame main body near the end corners, a protective cross plate is longitudinally and fixedly connected to the side surface of the frame main body, and hoisting rings are fixedly connected to the end corners at both ends of the frame main body;

[0010] A protective side plate group is arranged at a position on the side of the generator body. The protective side plate group is used for collision protection of the generator body, and the protective side plate group is detachably connected to the protective frame; the protective side plate group includes a protective plate body, a protective cushion is detachably arranged on the side of the protective plate body away from the protective frame, the number of the protective cushions is several, and the sides of every two adjacent protective cushions are closely attached; a connecting buckle frame is arranged on the side of the protective plate body close to the protective frame, and the protective plate body is detachably connected to the protective frame through the connecting buckle frame;

[0011] A protective top plate group is arranged at a position on the top of the generator body. The protective top plate group is used for collision protection of the generator body, and the protective top plate group is detachably connected to the protective frame; the structure of the protective top plate group is the same as that of the protective side plate group;

[0012] A control panel is arranged at a position at the front end of the generator body. The control panel is used for controlling the device and also for connecting to an external power supply.

[0013] As a preferred embodiment of the generator with start induction provided by the present invention, deformation grooves are formed on the outer side of the protective cushion, the number of the deformation grooves is several, and the several deformation grooves are evenly distributed. A deformation cavity is vertically formed on the inner side of the protective cushion, the number of the deformation cavities is multiple, and connecting grooves are formed on both sides of the protective cushion for connecting the protective cushion to the protective plate body.

[0014] As a preferred embodiment of the generator with start induction provided by the present invention, the protective plate body includes a plate main body, a positioning placement cavity is formed on the outer side of the plate main body, the protective cushion is located inside the positioning placement cavity, first limiting convex strips are arranged at both positions on both sides of the positioning placement cavity, the protective cushion is vertically inserted and connected to the first limiting convex strips through the connecting grooves, a lower limiting frame and an upper limiting frame are respectively arranged at the lower end and the upper end of the plate main body, the lower limiting frame and the upper limiting frame are vertically inserted and connected to the plate main body, and the ends of the lower limiting frame and the upper limiting frame are limited and fixed through connecting limiting pieces.

[0015] As a preferred embodiment of the generator with start induction provided by the present invention, on both sides of the lower limiting frame and the upper limiting frame close to each other, limiting inserts are fixedly connected. The lower limiting frame and the upper limiting frame are respectively inserted and connected to the deformation cavities opened in the protective cushion through the limiting inserts. On both inner sides of the lower limiting frame and the upper limiting frame, second limiting ridges are fixedly connected. Limiting slots are opened at both ends of the plate body. The lower limiting frame and the upper limiting frame are respectively inserted and connected to the limiting slots opened on the side of the plate body through the second limiting ridges.

[0016] As a preferred embodiment of the generator with start induction provided by the present invention, the connecting and limiting member includes two bolts. The two bolts are respectively threadedly connected to the ends of the lower limiting frame and the upper limiting frame close to each other. An elastic ring is arranged between the two bolts. The two ends of the elastic ring are respectively sleeved and connected to the two bolts.

[0017] As a preferred embodiment of the generator with start induction provided by the present invention, the connecting buckle frame includes a rotating connecting member. The rotating connecting member is rotatably connected to the protective plate body through a connecting seat. Threaded connections are made at both ends of the rotating connecting member with first movable arms. A first claw is fixedly connected to the end of the first movable arm away from the rotating connecting member. First anti-slip sleeves are sleeved at both ends of the frame body. The first claw is snap-connected to the first anti-slip sleeve. First positioning grooves are opened on the outer side of the first anti-slip sleeve. The first claw is located inside the first positioning groove.

[0018] As a preferred embodiment of the generator with start induction provided by the present invention, the rotating connecting member includes a rotating rod. A rotating cylinder is fixedly connected to the middle of the rotating rod. Threaded rods are fixedly connected to both ends of the rotating rod. The rotating rod is threadedly connected to the first movable arm at the same end through the threaded rod at the end. The threaded directions of the two threaded rods at the ends of the rotating rod are opposite. Limiting rings are fixedly connected to the outer side of the rotating rod at positions on both sides of the rotating cylinder. One end of the connecting seat is rotatably connected to the rotating rod. The limiting rings are located inside the connecting seat.

[0019] As a preferred embodiment of the generator with start induction provided by the present invention, the connecting buckle frame includes a sliding connecting member. Both ends of the sliding connecting member are fixedly connected with extension plates. A compression spring is arranged inside the sliding connecting member. Second movable arms are also arranged at both ends of the sliding connecting member. The second movable arms are inserted and connected with the extension plates. The end of the compression spring extends into the second movable arm at the same end. The compression spring is fixedly connected with the second movable arm. A second claw is fixedly connected to the end of the second movable arm away from the sliding connecting member. Anti-slip sleeves are sleeved on both ends of the top of the frame body. The second claw is buckled and connected with the second anti-slip sleeve. Second positioning grooves are formed on the outer side of the second anti-slip sleeve. The second claw is located inside the second positioning groove.

[0020] Compared with the prior art, the present invention has the following beneficial effects:

[0021] For the generator with start induction provided by the present invention, by arranging a detection sensor inside the generator body, relevant data related to the start of the generator body can be collected, so as to monitor the start state and operation state of the generator body, and provide data reference for the subsequent maintenance and repair of the equipment.

[0022] For the generator with start induction provided by the present invention, through the structural design of the protective side plate group and the protective top plate group, the protective effect of the device can be effectively improved, the anti-collision performance of the device can be effectively improved, the damage caused by collision to the device can be reduced, and the service life of the device can be effectively prolonged. Description of the Drawings

[0023] In order to more clearly illustrate the solutions in the present invention, the drawings required for description in the embodiments will be briefly introduced below. Obviously, the drawings in the following description are some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0024] Figure 1 Structural schematic diagram of the generator body, protective frame, and control panel of the generator with start induction provided by the present invention;

[0025] Figure 2 Structural schematic diagram of the protective frame of the generator with start induction provided by the present invention;

[0026] Figure 3 Overall structural schematic diagram of the generator with start induction provided by the present invention;

[0027] Figure 4 Structural schematic diagram of the protective side plate group of the generator with start induction provided by the present invention;

[0028] Figure 5 Schematic diagram of the generator protection cushion with start induction provided by the present invention;

[0029] Figure 6 Schematic diagram of the generator protection plate body with start induction provided by the present invention;

[0030] Figure 7 Enlarged partial structure diagram of the generator protection plate body with start induction provided by the present invention;

[0031] Figure 8 Schematic diagrams of the lower and upper limit frames of the generator with start induction provided by the present invention;

[0032] Figure 9 Schematic diagram of the generator connecting limit member with start induction provided by the present invention;

[0033] Figure 10 Schematic diagram of the generator connecting buckle frame with start induction provided by the present invention;

[0034] Figure 11 Schematic diagram of the generator rotating connecting member with start induction provided by the present invention;

[0035] Figure 12 Schematic diagrams of the second movable arm, sliding connecting member, and extension plate of the generator with start induction provided by the present invention;

[0036] Figure 13 Schematic diagrams of the second movable arm, sliding connecting member, and compression spring of the generator with start induction provided by the present invention.

[0037] Explanation of the marks in the figure is as follows:

[0038] 1. Generator main body; 2. Protection frame; 3. Protection side plate group; 4. Protection top plate group; 5. Control panel; 6. Frame main body; 7. Installation bottom beam; 8. Reinforcing top rod; 9. Protection cross plate; 10. Lifting ring; 11. Protection plate body; 12. Protection cushion; 13. Connection buckle; 14. Deformation groove; 15. Deformation cavity; 16. Connection groove; 17. Plate main body; 18. Positioning placement cavity; 19. First limiting rib; 20. Lower limiting frame; 21. Upper limiting frame; 22. Connection limiting part; 23. Limiting slot; 24. Limiting insert block; 25. Second limiting rib; 26. Elastic ring; 27. First movable arm; 28. First claw; 29. First anti-slip sleeve; 30. First positioning groove; 31. Rotating connecting part; 32. Connection seat; 33. Rotating rod; 34. Rotating cylinder; 35. Lead screw; 36. Limiting ring; 37. Second movable arm; 38. Second claw; 39. Second anti-slip sleeve; 40. Second positioning groove; 41. Sliding connecting part; 42. Extension plate; 43. Compression spring. Detailed implementation mode

[0039] In order to enable the personnel in the technical field to better understand the solution of the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present invention.

[0040] As described in the background art, the side plate of the traditional generator frame is a metal plate body on one side, with limited protection performance. After long-term collision, it is easy to produce a large amount of deformation, and even rupture, thus losing the protection effect.

[0041] To solve this technical problem, the present invention provides a generator with start induction, which is applied to a generator.

[0042] Specifically, please refer to Figure 1 - Figure 10 , the generator with start induction specifically includes:

[0043] Generator main body 1, a detection sensor is arranged inside the generator main body 1. The detection sensor includes a magnetic body and an induction element. The magnetic body is arranged on the rotor of the generator main body 1, and the induction element is arranged on the stator of the generator main body 1;

[0044] A protective frame 2 is arranged at a position outside the generator main body 1. The protective frame 2 is used for protecting and carrying the generator main body 1, and the generator main body 1 is detachably connected to the protective frame 2. The protective frame 2 includes a frame main body 6. A mounting bottom beam 7 is horizontally and fixedly connected to the bottom of the frame main body 6. Reinforcing top rods 8 are longitudinally and fixedly connected to the top of the frame main body 6 and near the end corners. Protective cross plates 9 are longitudinally and fixedly connected to the sides of the frame main body 6. Lifting rings 10 are fixedly connected to the end corners at both ends of the frame main body 6.

[0045] A protective side plate group 3 is arranged at a position on the side of the generator main body 1. The protective side plate group 3 is used for collision protection of the generator main body 1, and the protective side plate group 3 is detachably connected to the protective frame 2. The protective side plate group 3 includes a protective plate body 11. A protective cushion 12 is detachably arranged on the side of the protective plate body 11 away from the protective frame 2. The number of the protective cushions 12 is several, and the sides of every two adjacent protective cushions 12 are closely attached. A connecting buckle frame 13 is arranged on the side of the protective plate body 11 close to the protective frame 2, and the protective plate body 11 is detachably connected to the protective frame 2 through the connecting buckle frame 13.

[0046] A protective top plate group 4 is arranged at a position on the top of the generator main body 1. The protective top plate group 4 is used for collision protection of the generator main body 1, and the protective top plate group 4 is detachably connected to the protective frame 2. The structure of the protective top plate group 4 is the same as that of the protective side plate group 3.

[0047] A control panel 5 is arranged at a position at the front end of the generator main body 1. The control panel 5 is used for controlling the device and also for connecting to an external power supply.

[0048] For the generator with start induction provided by the present invention, by arranging a detection sensor inside the generator main body 1, relevant data related to the start of the generator main body 1 can be collected, so as to monitor the start state and operation state of the generator main body 1, and provide data reference for the subsequent maintenance and repair of the equipment. Through the structural design of the protective side plate group 3 and the protective top plate group 4, the protection effect of the device can be effectively improved, the anti-collision property of the device can be effectively improved, the damage caused by collision to the device can be reduced, and the service life of the device can be effectively prolonged.

[0049] In order to enable those skilled in the art to better understand the solution of the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings.

[0050] Embodiment 1:

[0051] Please refer to Figure 1 - Figure 10 , a generator with start induction, which includes:

[0052] Generator main body 1, a detection sensor is arranged inside the generator main body 1. The detection sensor includes a magnetic body and an induction element. The magnetic body is arranged on the rotor of the generator main body 1, and the induction element is arranged on the stator of the generator main body 1. Among them, the induction element can be a Hall sensor, which obtains some relevant starting information through induction cooperation with the magnetic body.

[0053] Protective frame 2, which is arranged at the position outside the generator main body 1. The protective frame 2 is used for the protection and handling of the generator main body 1, and the generator main body 1 is detachably connected to the protective frame 2. The protective frame 2 includes a frame body 6. A mounting bottom beam 7 is horizontally and fixedly connected to the bottom of the frame body 6. A reinforcing top rod 8 is longitudinally and fixedly connected to the top of the frame body 6 and near the end corner position. A protective cross plate 9 is longitudinally and fixedly connected to the side of the frame body 6. Lifting rings 10 are fixedly connected to the end corner positions at both ends of the frame body 6, which facilitates the lifting of the device through the lifting rings 10. Among them, the generator main body 1 is located inside the frame body 6. The top, bottom, and four end corners on the periphery of the generator main body 1 can be protected through the frame body 6. The stability of the top of the frame body 6 can be enhanced through the reinforcing top rod 8. The installation and fixation of the generator main body 1 and the protective frame 2 are facilitated through the mounting bottom beam 7. The protective effect of the protective frame 2 on the generator main body 1 can be further improved through the protective cross plate 9.

[0054] Protective side plate group 3, which is arranged at the position on the side of the generator main body 1. The protective side plate group 3 is used for the collision protection of the generator main body 1, and the protective side plate group 3 is detachably connected to the protective frame 2. The protective side plate group 3 includes a protective plate body 11. A protective cushion 12 is detachably arranged on the side of the protective plate body 11 away from the protective frame 2. The number of the protective cushions 12 is several, and the sides of every two adjacent protective cushions 12 are closely attached. A connecting buckle frame 13 is arranged on the side of the protective plate body 11 close to the protective frame 2, and the protective plate body 11 is detachably connected to the protective frame 2 through the connecting buckle frame 13. Further, deformation grooves 14 are arranged on the outer side of the protective cushion 12, and the number of the deformation grooves 14 is several. The several deformation grooves 14 are evenly distributed. Deformation cavities 15 are vertically arranged on the inner side of the protective cushion 12, and the number of the deformation cavities 15 is multiple. Connecting grooves 16 are arranged on both sides of the protective cushion 12 for the connection between the protective cushion 12 and the protective plate body 11. It can be seen that the protective plate body 11 can be fixed on the outer side of the frame body 6 through the connecting buckle frame 13 to realize the protection of the side of the frame body 6, and the impact force caused by the collision object on the protective plate body 11 can be effectively reduced through the protective cushion 12 arranged on the outer side of the protective plate body 11. When an external object collides with the protective cushion 12, the protective cushion 12 can bend, collapse, and deform towards the inside of the deformation grooves 14 and the deformation cavities 15, so as to accumulate the impact force generated by the collision. After the collision object moves out, the stored force is released, enabling the protective cushion 12 to recover, so as to prepare for the next collision.

[0055] Specifically, the protective plate body 11 includes a plate main body 17. A positioning placement cavity 18 is formed on the outer side of the plate main body 17. The protective cushion 12 is located inside the positioning placement cavity 18. First limiting ridges 19 are arranged at both sides of the positioning placement cavity 18. The protective cushion 12 is vertically inserted and connected with the first limiting ridges 19 through connecting grooves 16. The lower end and the upper end of the plate main body 17 are respectively provided with a lower limiting frame 20 and an upper limiting frame 21. The lower limiting frame 20 and the upper limiting frame 21 are both vertically inserted and connected with the plate main body 17. The ends of the lower limiting frame 20 and the upper limiting frame 21 are limited and fixed through a connecting limiting member 22. It can be seen that the connection between the protective cushion 12 and the plate main body 17 is realized through the positioning placement cavity 18. The movement of the bottom and the top of the protective cushion 12 can be limited through the lower limiting frame 20 and the upper limiting frame 21, so that the protective cushion 12 is firmly locked in the positioning placement cavity 18 through the cooperation of the connecting grooves 16 and the first limiting ridges 19. When the protective cushion 12 is severely worn and needs to be replaced, only the connecting limiting member 22 at the connection of the lower limiting frame 20 and the upper limiting frame 21 needs to be removed, and the connection limit between the lower limiting frame 20 and the upper limiting frame 21 can be realized, so that the lower limiting frame 20 or the upper limiting frame 21 can be separated from the plate main body 17, and then the protective cushion 12 can be taken out from the positioning placement cavity 18 for replacement. Among them, the connecting limiting member 22 includes two bolts. The two bolts are respectively threadedly connected to the mutually approaching ends of the lower limiting frame 20 and the upper limiting frame 21. An elastic ring 26 is arranged between the two bolts. The two ends of the elastic ring 26 are respectively sleeved and connected to the two bolts. When the connecting limiting member 22 is removed, only the elastic ring 26 in the connecting limiting member 22 needs to be separated from one of the bolts.

[0056] Specifically, the connecting buckle frame 13 includes a rotating connecting member 31. The rotating connecting member 31 is rotatably connected with the protective plate body 11 through a connecting seat 32. First movable arms 27 are threadedly connected to both ends of the rotating connecting member 31. A first claw 28 is fixedly connected to the end of the first movable arm 27 far away from the rotating connecting member 31. First anti-slip sleeves 29 are sleeved on both ends of the frame main body 6. The first claw 28 is buckled and connected with the first anti-slip sleeve 29. A first positioning groove 30 is formed on the outer side of the first anti-slip sleeve 29. The first claw 28 is located inside the first positioning groove 30. It can be seen that the connection or separation between the protective plate body 11 and the frame main body 6 is realized through the connecting buckle frame 13. During the installation process of the protective plate body 11, the protective plate body 11 with the connecting buckle frame 13 is moved to the side of the frame main body 6. By rotating the rotating connecting member 31, the two first movable arms 27 can be driven to approach each other, so that the first movable arms 27 drive the first claw 28 to be latched with the side of the first anti-slip sleeve 29, and further the connection between the protective side plate group 3 and the protective frame 2 is realized. The vertical limit of the first claw 28 can be realized through the first positioning groove 30, and further the phenomenon of accidental slipping of the first claw 28 can be reduced.

[0057] The protective top plate group 4 is arranged at the top of the generator main body 1. The protective top plate group 4 is used for the collision protection of the generator main body 1, and the protective top plate group 4 is detachably connected to the protective frame 2; the structure of the protective top plate group 4 is the same as that of the protective side plate group 3; the top of the generator main body 1 can be protected by the protective top plate group 4, improving the safety of the generator main body 1.

[0058] The control panel 5 is arranged at the front end of the generator main body 1. The control panel 5 is used for the operation of the device and also for the connection of an external power supply.

[0059] Embodiment 2:

[0060] The generator with start induction provided in Embodiment 1 is further optimized. Specifically, as Figure 6 shown, on one side of the lower limiting frame 20 and the upper limiting frame 21 close to each other, a limiting insertion block 24 is fixedly connected. The lower limiting frame 20 and the upper limiting frame 21 are respectively inserted and connected to the deformation cavity 15 opened in the protective cushion 12 through the limiting insertion block 24. On both inner sides of the lower limiting frame 20 and the upper limiting frame 21, a second limiting convex strip 25 is fixedly connected. Limiting slots 23 are opened at both ends of the plate body 17. The lower limiting frame 20 and the upper limiting frame 21 are respectively inserted and connected to the limiting slots 23 opened on the side of the plate body 17 through the second limiting convex strip 25.

[0061] Through the above structural design, after the lower limiting frame 20 and the upper limiting frame 21 are installed on the plate body 17, the lower end and the upper end of the protective cushion 12 are respectively inserted through the limiting insertion blocks 24 arranged on the inner sides of the lower limiting frame 20 and the upper limiting frame 21, so as to further improve the fixing firmness of the protective plate body 11 to the protective cushion 12. Through the vertical insertion connection between the second limiting convex strips 25 arranged on the inner sides of the lower limiting frame 20 and the upper limiting frame 21 and the limiting slots 23 opened on the side of the plate body 17, the horizontal movement limit of the lower limiting frame 20 and the upper limiting frame 21 can be realized.

[0062] Embodiment 3:

[0063] The generator with start induction provided in Embodiment 1 is further optimized. Specifically, as Figure 11 shown, the rotating connecting piece 31 includes a rotating rod 33. A rotating cylinder 34 is fixedly connected to the middle of the rotating rod 33. Threaded rods 35 are fixedly connected to both ends of the rotating rod 33. The rotating rod 33 is threadedly connected to the first movable arm 27 at the same end through the threaded rod 35 at the end. The threaded directions of the two threaded rods 35 at the ends of the rotating rod 33 are opposite. Limiting rings 36 are fixedly connected to the outer side of the rotating rod 33 and at the positions at both ends of the rotating cylinder 34. One end of the connecting seat 32 is rotatably connected to the rotating rod 33, and the limiting ring 36 is located inside the connecting seat 32.

[0064] Through the above structural design, wherein the thread directions of the two lead screws 35 are opposite, so that when the rotary rod 33 is rotated by the rotary cylinder 34 to drive the two lead screws 35 to rotate, the two first movable arms 27 can be driven to move synchronously in opposite directions, and the axial limit of the rotary rod 33 can be realized by the limit ring 36 being located inside the connecting seat 32.

[0065] Embodiment 4:

[0066] The difference between this embodiment and the above Embodiment 1 is only the structure of the connecting buckle frame 13. Specifically, as Figures 12 - 13 shown, the connecting buckle frame 13 in this embodiment includes a sliding connecting piece 41. Both ends of the sliding connecting piece 41 are fixedly connected with extension plates 42. A compression spring 43 is arranged inside the sliding connecting piece 41. Second movable arms 37 are also arranged at both ends of the sliding connecting piece 41. The second movable arms 37 are inserted and connected with the extension plates 42. The end of the compression spring 43 extends into the second movable arm 37 at the same end. The compression spring 43 is fixedly connected with the second movable arm 37. A second claw 38 is fixedly connected to the end of the second movable arm 37 away from the sliding connecting piece 41. Second anti-slip sleeves 39 are sleeved on both ends of the top of the frame body 6. The second claw 38 is buckled and connected with the second anti-slip sleeve 39. Second positioning grooves 40 are formed on the outer side of the second anti-slip sleeve 39. The second claw 38 is located inside the second positioning groove 40.

[0067] Through the above structural design, it is used for the connection between the protective top plate group 4 and the protective frame 2. When installing the protective top plate group 4, one end of the second movable arm 37 is buckled with the second anti-slip sleeve 39 at the same end through the second claw 38, and when dragging the second movable arm 37 at the other end, it can be buckled with the second anti-slip sleeve 39 at the same end through the second claw 38 at the end; wherein, during the process of dragging the second movable arm 37, the connection state of the two second movable arms 37 is maintained by the sliding connecting piece 41 and the extension plates 42. At the same time, the compression spring 43 is stretched and stores force during the process of dragging the second movable arm 37. When the second movable arm 37 is released, the compression spring 43 releases the stored force, so as to drag the two second movable arms 37 to approach each other, so that the two second movable arms 37 can firmly buckle the second anti-slip sleeve 39 at the same end through the second claws 38 at the ends.

Claims

1. A generator with starting induction, characterized in that: include: A generator body (1), wherein a detection sensor is arranged inside the generator body (1), the detection sensor comprising a magnetic body and a sensing element, the magnetic body being arranged on a rotor of the generator body (1), and the sensing element being arranged on a stator of the generator body (1); A protective frame (2) is arranged at a position outside the generator body (1), the protective frame (2) is used for protecting and transporting the generator body (1), and the generator body (1) and the protective frame (2) are detachably connected; the protective frame (2) comprises a frame body (6), the bottom of the frame body (6) is transversely fixedly connected to a mounting bottom beam (7), the top of the frame body (6) and near the end corner is longitudinally fixedly connected to a reinforcing top rod (8), the side of the frame body (6) is longitudinally fixedly connected to a protective horizontal plate (9), and the end corners of both ends of the frame body (6) are fixedly connected to lifting rings (10); A protective side plate group (3) is arranged at a position on the side of the generator body (1), the protective side plate group (3) is used for collision protection of the generator body (1), and the protective side plate group (3) is detachably connected to the protective frame (2); the protective side plate group (3) comprises a protective plate body (11), and a protective buffer pad (12) is detachably provided on a side of the protective plate body (11) away from the protective frame (2), and the number of the protective buffer pads (12) is several, and the sides of each two adjacent protective buffer pads (12) are tightly fitted; a connecting buckle frame (13) is provided on a side of the protective plate body (11) close to the protective frame (2), and the protective plate body (11) is detachably connected to the protective frame (2) via the connecting buckle frame (13); The connecting buckle frame (13) comprises a rotating connecting piece (31), the rotating connecting piece (31) is rotatably connected to the protective plate body (11) through a connecting seat (32), both ends of the rotating connecting piece (31) are threadedly connected to a first movable arm (27), one end of the first movable arm (27) away from the rotating connecting piece (31) is fixedly connected to a first claw (28), both ends of the frame body (6) are sleeved with a first anti-slip sleeve (29), the first claw (28) is buckled and connected to the first anti-slip sleeve (29), a first positioning groove (30) is provided on the outer side of the first anti-slip sleeve (29), and the first claw (28) is located on the inner side of the first positioning groove (30); A protective top plate group (4) is arranged at the top of the generator body (1), the protective top plate group (4) is used for collision protection of the generator body (1), and the protective top plate group (4) is detachably connected to the protective frame (2); the structure of the protective top plate group (4) is the same as that of the protective side plate group (3); A control panel (5) is arranged at the front end of the generator body (1); the control panel (5) is used for controlling the device and for connecting an external power source.

2. The generator with starting induction according to claim 1, characterized in that: The outer side of the protective buffer pad (12) is provided with a deformation groove (14), the number of the deformation grooves (14) is multiple and the multiple deformation grooves (14) are evenly distributed, the inner side of the protective buffer pad (12) is provided with a deformation cavity (15) vertically, the number of the deformation cavity (15) is multiple, and both sides of the protective buffer pad (12) are provided with connection grooves (16) for connecting the protective buffer pad (12) with the protective plate body (11).

3. The generator with starting induction according to claim 2, characterized in that: The protective plate body (11) comprises a plate body (17), a positioning cavity (18) is provided on the outer side of the plate body (17), the protective cushion (12) is located inside the positioning cavity (18), and limiting convex strips (19) are provided at both sides of the positioning cavity (18), the protective cushion (12) is vertically plug-connected with the limiting convex strips (19) through a connecting groove (16), and a limiting frame bottom (20) and a limiting frame top (21) are respectively provided at the lower end and the upper end of the plate body (17), and the limiting frame bottom (20) and the limiting frame top (21) are both vertically plug-connected with the plate body (17), and the ends of the limiting frame bottom (20) and the limiting frame top (21) are fixed by connecting limiting members (22).

4. The generator with starting induction according to claim 3, characterized in that: The lower limit frame (20) and the upper limit frame (21) are fixedly connected to the side close to each other with a limit plug block (24), and the lower limit frame (20) and the upper limit frame (21) are plugged into the deformation cavity (15) opened on the protective cushion (12) through the limit plug block (24). The inner sides of the lower limit frame (20) and the upper limit frame (21) are fixedly connected with the second limit convex strip (25), and the two ends of the plate body (17) are provided with a limit slot (23), and the lower limit frame (20) and the upper limit frame (21) are plugged into the limit slot (23) opened on the side of the plate body (17) through the second limit convex strip (25).

5. The generator with starting induction according to claim 3, characterized in that: The connection limiter (22) comprises two bolts, the two bolts being threadedly connected at the ends close to each other at the lower limit frame (20) and the upper limit frame (21), respectively, an elastic ring (26) being arranged between the two bolts, and the two ends of the elastic ring (26) being respectively sleeve-connected to the two bolts.

6. The generator with starting induction according to claim 1, characterized in that: The rotating connecting member (31) comprises a rotating rod (33), the middle part of which is fixedly connected to a rotating cylinder (34), and both ends of the rotating rod (33) are fixedly connected to screw rods (35). The rotating rod (33) is threadedly connected to a first movable arm (27) at the same end through the screw rods (35) at the ends, and the two screw rods (35) at the ends of the rotating rod (33) have opposite thread rotation directions. The outer side of the rotating rod (33) and the positions at the two ends of the rotating cylinder (34) are fixedly connected to limit rings (36), and one end of the connecting seat (32) is rotatably connected to the rotating rod (33), and the limit ring (36) is located on the inner side of the connecting seat (32).

7. The generator with starting induction according to claim 1, characterized in that: The connecting buckle frame (13) comprises a sliding connection member (41), both ends of which are fixedly connected to an extension plate (42), a compression spring (43) is arranged inside the sliding connection member (41), and both ends of the sliding connection member (41) are also provided with a second movable arm (37), the second movable arm (37) is plug-connected to the extension plate (42), an end of the compression spring (43) extends to the inside of the second movable arm (37) at the same end, the compression spring (43) is fixedly connected to the second movable arm (37), one end of the second movable arm (37) away from the sliding connection member (41) is fixedly connected to a second claw (38), and both ends of the top of the frame body (6) are sleeved with a second anti-slip sleeve (39), the second claw (38) is buckled and connected to the second anti-slip sleeve (39), a second positioning groove (40) is opened on the outside of the second anti-slip sleeve (39), and the second claw (38) is located inside the second positioning groove (40).

Citation Information

Patent Citations

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