A generator production detection device

By designing a dual detection system, using the main power and secondary power detection devices and linkage mechanisms, the problem of low generator detection efficiency in the prior art is solved, and the accuracy and efficiency improvement are achieved.

CN116520141BActive Publication Date: 2025-08-26HEFEI CALSIION ELECTRIC POWER SYST
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Patent Information

Application Number
CN202310388111.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-12
Publication Date
2025-08-26
Estimated Expiration
2043-04-12

AI Technical Summary

Technical Problem

The existing generator detection device is only used to detect with one set of detection devices, which is prone to problems and has low detection efficiency, and cannot accurately determine the detection result, which makes the operation cumbersome.

Method used

A detection system including a main power detection device and a secondary power detection device is designed, and dual detection is realized through a stepping transverse mechanism and a linkage lifting mechanism. Components such as electric telescopic rods and alarm lights are used to determine the problem of the detection device or generator to improve detection efficiency.

Benefits of technology

The dual detection of the generator is realized, the detection results can be accurately judged, misjudgment can be avoided, the detection efficiency can be improved, and the operation process can be simplified.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a generator production detection device, which belongs to the technical field of generator production, and comprises a supporting base plate; a connecting side plate is connected to one side of the supporting base plate, a step-by-step transverse mechanism is provided on the connecting side plate, a strip-shaped slide groove is horizontally opened on the connecting side plate, and a connection box cooperating with the step-by-step transverse mechanism is slidably connected to the strip-shaped slide groove; a sliding rod is slidably inserted into the bottom of the connection box, and a supporting spring is connected between the sliding rod and the connection box, and a linkage lifting mechanism is connected between the sliding rod and the step-by-step transverse mechanism; a main power detection device and a secondary power detection device are respectively connected on both sides of the bottom end of the sliding rod. The present invention can realize secondary detection of a generator through two sets of detection devices, avoiding the situation where a problem occurs in one detection device and it is impossible to determine whether it is a problem with the generator or the detection device.
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Description

Technical Field

[0001] The present invention relates to the technical field of generator production, and in particular to a generator production detection device. Background Art

[0002] A generator is a mechanical device that converts other forms of energy into electrical energy. It is driven by a turbine, steam turbine, diesel engine or other power machinery, and converts the energy generated by water flow, air flow, and fuel combustion into mechanical energy and transmits it to the generator, which then converts it into electrical energy. Generally, after the generator is produced and assembled, it needs to be tested to ensure normal operation.

[0003] The Chinese patent authorization publication number is CN212180970U, and is titled "A detection device for generator production." It includes an L-shaped plate with a support seat provided at the bottom of the inner surface of the L-shaped plate. An electric telescopic rod is provided on one side of the inner surface of the L-shaped plate. The telescopic end of the electric telescopic rod is provided with a detection device. After the generator is installed in the detection position, the electric telescopic rod is activated, so that the electric telescopic rod drives the detection device to move and dock with the generator for detection.

[0004] The shortcomings of the above-mentioned existing technical solutions are: when the above-mentioned solution detects the generator, the generator is only detected by a set of detection devices. After the detection is completed, if there is no detection signal feedback, it is impossible to determine whether the problem is with the detection device or the generator itself, resulting in inaccurate detection results. In addition, after each generator is detected, it is necessary to disassemble the generator, then assemble the next generator, and then dock the detection device. The operation process is cumbersome, not convenient enough, and the detection efficiency is low. Summary of the Invention

[0005] The purpose of the present invention is to provide a generator production detection device to solve the technical problems in the prior art that the generator detection device only uses a group of detection devices for detection, which is prone to problems and has low detection efficiency.

[0006] The technical problem to be solved by the present invention can be achieved through the following technical solutions:

[0007] A generator production and testing device includes a supporting base plate;

[0008] One side of the supporting base plate is connected to a connecting side plate, and a step-by-step transverse movement mechanism is provided on the connecting side plate. A strip slide is horizontally provided on the connecting side plate, and a connecting box that cooperates with the step-by-step transverse movement mechanism is slidably connected to the strip slide; a sliding rod is slidably inserted into the bottom of the connecting box, and a supporting spring is connected between the sliding rod and the connecting box, and a linkage lifting mechanism is connected between the sliding rod and the step-by-step transverse movement mechanism;

[0009] The two sides of the bottom end of the slide bar are respectively connected to a main power detection device and a secondary power detection device;

[0010] A plurality of first warning lights are laterally distributed on the connecting side plate, and a plurality of rotating blocks are evenly distributed on the connecting side plate; each rotating block is provided with a wide slot and a narrow slot, and a start button switch electrically connected to the corresponding first warning light is provided in the wide slot;

[0011] The main power detection device is connected to a first electric telescopic rod, and the telescopic end of the first electric telescopic rod is connected to a protrusion, and the main power detection device is electrically connected to the first electric telescopic rod; the secondary power detection device is connected to a second electric telescopic rod, and the secondary power detection device is electrically connected to the second electric telescopic rod, and the telescopic end of the second electric telescopic rod is connected to a sheet-shaped horizontal plate.

[0012] As a further solution of the present invention: an elastic rubber sheet is connected to the sheet-like horizontal plate, and a pressure sensing switch is connected to the elastic rubber sheet. The main power detection device is provided with a second alarm light electrically connected to the pressure sensing switch.

[0013] As a further solution of the present invention: a plurality of reset button switches are distributed laterally and equidistantly on the connecting side panel, and each of the reset button switches is electrically connected to the first electric telescopic rod and the second electric telescopic rod.

[0014] As a further solution of the present invention: the stepping transverse movement mechanism includes a horizontal guide rail and a driving wheel, the horizontal guide rail is connected to the top of the connecting side plate, a stepping motor is slidably connected to the horizontal guide rail, the driving wheel is connected to the main shaft end of the stepping motor, and the connecting box is connected to the stepping motor housing.

[0015] As a further solution of the present invention: the linkage lifting mechanism includes a cam and a slide, the slide is connected to the top of the slide rod, the cam is rotatably connected to the inside of the connection box, and a synchronous transmission mechanism is provided between the cam and the driving wheel.

[0016] As a further solution of the present invention: the synchronous transmission mechanism includes a synchronous belt, the cam and the driving wheel are coaxially connected with synchronous wheels, and the synchronous belt is cooperatively connected between the two synchronous wheels.

[0017] As a further solution of the present invention: a plurality of positioning grooves are provided on the support base plate at equal intervals in the horizontal direction.

[0018] As a further solution of the present invention: a plurality of receiving grooves are equidistantly provided on the connecting side plate, and the rotating blocks are rotatably connected in the corresponding receiving grooves.

[0019] Beneficial effects of the present invention:

[0020] 1. The present invention is provided with a main power detection device and a secondary power detection device. After the main power detection device has detected the generator, the main power detection device and the secondary power detection device can be driven by the driving wheel to move horizontally at the same time, so that the secondary power detection device can detect the generator detected by the main power detection device again. If the main power detection device does not detect the power signal of the generator, the rotating block corresponding to the detected position of the generator will not move. In this way, when the secondary power detection device detects again, if no power signal is still detected, the corresponding sheet-shaped horizontal plate will not move, and can directly act on the start button switch on the rotating block, so that the first alarm light corresponding to the detected position of the generator is turned on, indicating that there is a problem with the generator. If the secondary power detection device detects that there is an electric signal feedback, the corresponding sheet-shaped horizontal plate will move to the pressure-sensitive switch, so as to turn on the second alarm light corresponding to the main power detection device, indicating that there is a problem with the main power detection device. In this way, a generator can be subjected to secondary detection through two sets of detection devices, so as to avoid the problem of one detection device being unable to determine whether it is a problem with the generator or the detection device;

[0021] 2. The driving wheel of the present invention can drive the main power detection device and the auxiliary power detection device to move laterally in a step-by-step manner, so as to detect multiple generators in sequence. Whenever the main power detection device completes the detection of a generator and moves laterally to the next detection position, the auxiliary power detection device moves laterally synchronously and takes over the position just detected by the main power detection device. This allows the re-inspection of the previous generator and the detection of the next generator to be carried out simultaneously without waiting, thereby improving detection efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] The present invention will be further described below with reference to the accompanying drawings.

[0023] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0024] Figure 2 yes Figure 1 Schematic diagram of the enlarged structure at A in the middle;

[0025] Figure 3 It is a top view structural diagram of the relative position distribution of the protrusion, the sheet-like horizontal plate and the rotating block in the present invention;

[0026] Figure 4 This is a right-side structural diagram of the sheet-like horizontal plate and the narrow slot in the present invention;

[0027] Figure 5 This is a right-side structural diagram of the sheet-like horizontal plate and the wide slot in the present invention;

[0028] Figure 6 It is a rear view structural schematic diagram of the driving wheel and the connecting side plate in the present invention.

[0029] In the figure: 1. Support base plate; 2. Generator body; 3. Positioning groove; 4. Power output terminal; 5. Main power detection device; 6. Second alarm light; 7. Auxiliary power detection device; 8. Detection terminal; 9. Strip slide; 10. Slide bar; 11. Support spring; 12. Slide plate; 13. Connecting side plate; 14. Cam; 15. Synchronous wheel; 16. Synchronous belt; 17. Connecting box; 18. Driving wheel; 19. Horizontal guide rail; 20. Stepper motor; 21. Reset button switch; 22. First alarm light; 23. Storage slot; 24. Rotating block; 25. Narrow slot; 26. Wide slot; 27. Start button switch; 28. First electric telescopic rod; 29. ​​Bump; 30. Sheet-like horizontal plate; 31. Elastic rubber sheet; 32. Pressure sensing switch; 33. Second electric telescopic rod. DETAILED DESCRIPTION

[0030] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. 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 making any creative efforts shall fall within the scope of protection of the present invention.

[0031] like Figures 1-6 As shown, a generator production and testing device includes a support base plate 1, with multiple positioning grooves 3 equidistantly spaced laterally on the support base plate 1. The positioning grooves 3 are used to hold the generator bodies 2 to be tested, so that multiple generator bodies 2 are equidistantly arranged on the support base plate 1. The generator bodies 2 are assembled with drive components and can generate electricity. Each generator body 2 is equipped with an electric power output terminal 4.

[0032] One side of the supporting base plate 1 is connected to a connecting side plate 13, and a stepping transverse movement mechanism is provided on the connecting side plate 13, and the stepping transverse movement mechanism includes a horizontal guide rail 19 and a driving wheel 18. The horizontal guide rail 19 is connected to the top of the connecting side plate 13 through a bracket, and a stepping motor 20 is slidably connected to the horizontal guide rail 19. The driving wheel 18 is connected to the main shaft end of the stepping motor 20, and the driving wheel 18 cooperates with the top of the connecting side plate 13. When the stepping motor 20 is started, it drives the driving wheel 18 to roll transversely along the top of the connecting side plate 13 and move forward in a step-by-step manner; each time it rolls, it stops for a period of time and then moves again; a strip slide 9 is horizontally opened on the connecting side plate 13, and a connecting box 17 that cooperates with the stepping transverse movement mechanism is slidably connected to the strip slide 9; specifically, the connecting box 17 is fixedly connected to the housing of the stepping motor 20 through a bracket, and slides transversely synchronously with the stepping motor 20;

[0033] The bottom of the connecting box 17 is slidably interspersed with a slide bar 10, and a support spring 11 is connected between the slide bar 10 and the connecting box 17. A linkage lifting mechanism is connected between the slide bar 10 and the stepping transverse movement mechanism, and the linkage lifting mechanism includes a cam 14 and a slide plate 12. The slide plate 12 is horizontally connected to the top of the slide bar 10, and the cam 14 is rotatably connected to the inside of the connecting box 17. A synchronous transmission mechanism is provided between the cam 14 and the driving wheel 18. The synchronous transmission mechanism includes a synchronous belt 16. The cam 14 and the driving wheel 18 are coaxially connected with a synchronous wheel 15. The synchronous belt 16 is connected between the two synchronous wheels 15. Whenever the driving wheel 18 rolls along the top of the connecting side plate 13 and rotates one circle, the driving wheel 18 drives the cam 14 to rotate one circle through the synchronous wheel 15 and the synchronous belt 16. The cam 14 pushes the slide plate 12 during the rotation, causing the slide plate 12 to slide down, thereby causing the slide bar 10 to slide down, and the support spring 11 is in a compressed state. Figure 1 As shown in;

[0034] The two sides of the bottom end of the slide bar 10 are respectively connected to the main power detection device 5 and the auxiliary power detection device 7, and the main power detection device 5 and the auxiliary power detection device 7 are both provided with a detection terminal 8. The width of the detection terminal 8 is greater than the width of the power output terminal 4, ensuring that the detection terminal 8 drops during the lateral movement and can effectively contact the power output terminal 4;

[0035] When multiple generator bodies 2 are arranged horizontally in the positioning grooves 3 opened on the supporting base plate 1, the stepper motor 20 is started, so that the stepper motor 20 drives the driving wheel 18 to rotate, and the driving wheel 18 rolls and moves horizontally along the top of the connecting side plate 13. During this process, the connection box 17 moves horizontally synchronously. Whenever the stepper motor 20 stops temporarily, the connection box 17 just moves horizontally with the main power detection device 5 to the position of a generator body 2. At the same time, during the rotation of the driving wheel 18, the synchronously moving cam 14 pushes the slide 12 downward, and the slide 12 drives the main power detection device 5 and the auxiliary power detection device 7 to descend through the slide rod 10. When the stepper motor 20 stops temporarily, the detection terminal 8 on the main power detection device 5 just descends and contacts the corresponding power output terminal 4 on the generator body 2. In this way, the main power detection device 5 can be used to detect the power of the generator body 2; and the stepper motor 20 repeats the movement, so as to facilitate the detection of multiple generator bodies 2 arranged horizontally in turn;

[0036] A plurality of first warning lights 22 corresponding to the positioning slots 3 are laterally distributed on the connecting side plate 13, i.e., each positioning slot 3 corresponds to a first warning light 22. A plurality of rotating blocks 24 are also evenly distributed on the connecting side plate 13. A plurality of receiving slots 23 are evenly spaced on the connecting side plate 13, and the rotating blocks 24 are rotatably connected to the corresponding receiving slots 23 via rotating shafts. Before the corresponding generator body 2 is detected, the rotating blocks 24 are located outside the receiving slots 23 and can be inserted into the receiving slots 23 by rotation.

[0037] Each rotating block 24 is provided with a wide slot 26 and a narrow slot 25. The narrow slot 25 is smaller than the wide slot 26. A start button switch 27 electrically connected to the corresponding first alarm light 22 is installed in the wide slot 26.

[0038] A first electric telescopic rod 28 is horizontally connected to the back of the main power detection device 5, and a protrusion 29 is connected to the telescopic end of the first electric telescopic rod 28. The width of the protrusion 29 is greater than the width of the wide slot 26 and cannot be inserted into the wide slot 26. The main power detection device 5 is electrically connected to the extension control circuit of the first electric telescopic rod 28 through an electric signal sensor. When the main power detection device 5 detects an electric signal, that is, when the generator body 2 currently being detected is normal, feedback is generated to extend the first electric telescopic rod 28, and the first electric telescopic rod 28 drives the protrusion 29 to move horizontally to the side of the rotating block 24 corresponding to the current detection position. When the main power detection device 5 moves horizontally again with the driving wheel 18, the protrusion 29 is squeezed onto the rotating block 24, and the rotating block 24 is pushed up and rotated into the corresponding storage slot 23, thereby preventing the start button switch 27 on the rotating block 24 from being affected by subsequent actions.

[0039] A second electric telescopic rod 33 is vertically connected to the back of the secondary electric power detection device 7. The second electric telescopic rod 33 is initially in an extended state, and the secondary electric power detection device 7 is electrically connected to the contraction control circuit of the second electric telescopic rod 33 via an electric signal sensor. A sheet-like horizontal plate 30 is horizontally connected to the telescopic end of the second electric telescopic rod 33. The sheet-like horizontal plate 30 is on a trajectory that can collide with the rotating block 24. When the second electric telescopic rod 33 is in the extended state, the sheet-like horizontal plate 30 can be aligned and snapped into the wide slot 26. When the second electric telescopic rod 33 is retracted, the sheet-like horizontal plate 30 can be aligned and snapped into the narrow slot 25.

[0040] When the main power detection device 5 has detected a generator body 2 and there is no electrical signal feedback, it moves horizontally to the location of the next generator body 2 for detection. During this process, the protrusion 29 of the main power detection device 5 connected by the first electric telescopic rod 28 does not move and cannot squeeze the corresponding rotating block 24, that is, the rotating block 24 still remains in the actionable position. At this time, the auxiliary power detection device 7 moves synchronously and moves to the generator body 2 that has just been detected for detection and docking. At this time, if the auxiliary power detection device 7 also does not detect the corresponding power feedback, it means that the generator body 2 that the main power detection device 5 has detected does have a problem. Since the second electric telescopic rod 33 does not move, when the driving wheel 18 drives the main power detection device 5 and the auxiliary power detection device 7 to move horizontally again, the auxiliary power detection device The sheet-like horizontal plate 30 connected by the second electric telescopic rod 33 moves laterally and snaps into the wide slot 26 on the corresponding rotating block 24, and presses against the start button switch 27, causing the corresponding first alarm light 22 to light up, indicating that there is a problem with the corresponding generator body 2, facilitating subsequent maintenance. If the main power detection device 5 does not detect a power signal, but the secondary power detection device 7 detects a power signal feedback, the secondary power detection device 7 feedbacks a control signal to cause the second electric telescopic rod 33 to retract, and the second electric telescopic rod 33 drives the sheet-like horizontal plate 30 to descend to a height aligned with the narrow slot 25, thereby avoiding triggering the first alarm light 22 corresponding to the generator body 2. Based on this situation, the inspection personnel can also determine that there may be a problem with the main power detection device 5, resulting in the inability to properly detect the power signal of the generator body 2.

[0041] The second warning light 6 is activated to remind the operator that there may be a problem with the main power detection device 5. The second warning light 6 is activated to remind the operator that there may be a problem with the main power detection device 5. The second warning light 6 is activated to remind the operator that there is a problem with the main power detection device 5. The second warning light 6 is activated to remind the operator that there is a problem with the main power detection device 5. The second warning light 6 is activated to remind the operator that there may be a problem with the main power detection device 5. The second warning light 6 is activated to remind the operator that there is a problem with the main power detection device 5. The second warning light 6 is activated to remind the operator that there is a problem with the main power detection device 5.

[0042] A plurality of reset button switches 21 corresponding to the positioning slots 3 are distributed laterally and equidistantly on the connecting side plate 13. Each reset button switch 21 is distributed between two detection positions. Each reset button switch 21 is electrically connected to the contraction control circuit of the first electric telescopic rod 28 and the extension control circuit of the second electric telescopic rod 33. Whenever the driving wheel 18 rolls from one position to the next, the reset button switch 21 between the two positions is squeezed during the rolling process. The reset button switch 21 causes the already extended first electric telescopic rod 28 to retract, and the already retracted second electric telescopic rod 33 to extend and reset, so as to facilitate the next detection operation of the generator body 2.

[0043] The working principle of the present invention is as follows: first, multiple generator bodies 2 are evenly arranged in the positioning grooves 3 provided on the supporting base plate 1 to achieve even and neat arrangement;

[0044] Then the stepper motor 20 is started, so that the stepper motor 20 drives the driving wheel 18 to rotate, and the driving wheel 18 rolls and moves horizontally for a distance along the top of the connecting side plate 13. During this process, the connection box 17 moves horizontally synchronously. Whenever the stepper motor 20 runs for a period of time, it stops temporarily. At this time, the connection box 17 just moves horizontally with the main power detection device 5 to a position where the generator body 2 is located. At the same time, during the rotation of the driving wheel 18, the driving wheel 18 drives the cam 14 to rotate one circle through the synchronous wheel 15 and the synchronous belt 16. The cam 14 pushes the top slide 12 during the rotation, causing the slide 12 to slide down, thereby causing the slide bar 10 to slide down; the slide bar 10 drives the main power detection device 5 and the auxiliary power detection device 7 to descend, and when the stepper motor 20 stops temporarily, the detection terminal 8 on the main power detection device 5 just drops and contacts the corresponding power output terminal 4 on the generator body 2, so that the main power detection device 5 can be used to detect the power of the generator body 2;

[0045] When the main power detection device 5 detects an electrical signal, that is, the generator body 2 currently being detected is normal, feedback is generated, causing the first electric telescopic rod 28 to extend, and the first electric telescopic rod 28 drives the protrusion 29 to move horizontally to the side of the rotating block 24 corresponding to the current detection position. When the main power detection device 5 moves horizontally again along with the driving wheel 18, the protrusion 29 is pressed against the rotating block 24, and the rotating block 24 is pushed up and rotated into the corresponding storage slot 23, thereby preventing the start button switch 27 on the rotating block 24 from being affected by subsequent actions.

[0046] When the main power detection device 5 has finished detecting a generator body 2 and there is no electrical signal feedback, it relies on the driving wheel 18 to move horizontally to the location of the next generator body 2 for detection. During this process, the protrusion 29 of the main power detection device 5 connected by the first electric telescopic rod 28 does not move and cannot squeeze the corresponding rotating block 24, that is, the rotating block 24 still remains in the actionable position. At this time, the auxiliary power detection device 7 moves synchronously and moves to the generator body 2 that has just been detected for detection and docking. At this time, if the auxiliary power detection device 7 also does not detect the corresponding power feedback, it means that the generator body 2 that the main power detection device 5 has detected does have a problem. Since the second electric telescopic rod 33 does not move, When the driving wheel 18 drives the main power detection device 5 and the auxiliary power detection device 7 to move laterally again, the sheet-like horizontal plate 30 connected to the auxiliary power detection device 7 through the second electric telescopic rod 33 moves laterally and is clamped into the wide slot 26 on the corresponding rotating block 24, and presses the start button switch 27, so that the corresponding first alarm light 22 lights up, indicating that there is a problem with the corresponding generator body 2, which facilitates subsequent maintenance. If the main power detection device 5 does not detect a power signal, but the auxiliary power detection device 7 detects a power signal feedback, the auxiliary power detection device 7 feedbacks a control signal to cause the second electric telescopic rod 33 to retract, and the second electric telescopic rod 33 drives the sheet-like horizontal plate 30 to descend to a height aligned with the narrow slot 25;

[0047] As the driving wheel 18 drives the main power detection device 5 and the auxiliary power detection device 7 to continue to move laterally, the sheet-like horizontal plate 30 and the elastic rubber sheet 31 are squeezed into the narrow slot 25. During this process, the elastic rubber sheet 31 is deformed, and the pressure-sensitive switch 32 is actuated, thereby activating the second warning light 6, thereby prompting the operator that there may be a problem with the main power detection device 5, that is, indicating that the current detection result of the main power detection device 5 is not accurate.

[0048] Whenever the driving wheel 18 rolls from one position to the next, the reset button switch 21 between the two positions is squeezed during the rolling process. The reset button switch 21 causes the extended first electric telescopic rod 28 to retract, and the retracted second electric telescopic rod 33 to extend and reset, so as to facilitate the inspection operation of the next generator body 2. In this way, multiple generator bodies 2 can be repeatedly inspected.

[0049] The above is a detailed description of an embodiment of the present invention. However, the content described is only a preferred embodiment of the present invention and should not be considered to limit the scope of the present invention. All equivalent changes and improvements made within the scope of the present invention should still fall within the scope of the patent coverage of the present invention.

Claims

1. A generator production detection device, comprising a supporting base plate (1); characterized in that: One side of the supporting base plate (1) is connected to a connecting side plate (13), a step-by-step transverse mechanism is provided on the connecting side plate (13), a strip-shaped slide groove (9) is horizontally opened on the connecting side plate (13), and a connecting box (17) that cooperates with the step-by-step transverse mechanism is slidably connected to the strip-shaped slide groove (9); a sliding rod (10) is slidably inserted through the bottom of the connecting box (17), and a supporting spring (11) is connected between the sliding rod (10) and the connecting box (17), and a linkage lifting mechanism is connected between the sliding rod (10) and the step-by-step transverse mechanism; Both sides of the bottom end of the slide bar (10) are respectively connected to a main power detection device (5) and a secondary power detection device (7); A plurality of first warning lights (22) are distributed laterally on the connecting side plate (13), and a plurality of rotating blocks (24) are also distributed equidistantly on the connecting side plate (13); each rotating block (24) is provided with a wide slot (26) and a narrow slot (25), and a start button switch (27) electrically connected to the corresponding first warning light (22) is provided in the wide slot (26); The main power detection device (5) is connected to a first electric telescopic rod (28), and a protrusion (29) is connected to the telescopic end of the first electric telescopic rod (28), and the main power detection device (5) is electrically connected to the first electric telescopic rod (28); The auxiliary power detection device (7) is connected to a second electric telescopic rod (33), and the auxiliary power detection device (7) is electrically connected to the second electric telescopic rod (33), and the telescopic end of the second electric telescopic rod (33) is connected to a sheet-shaped horizontal plate (30); An elastic rubber sheet (31) is connected to the sheet-like horizontal plate (30), and a pressure sensing switch (32) is connected to the elastic rubber sheet (31). A second alarm light (6) electrically connected to the pressure sensing switch (32) is provided on the main power detection device (5).

2. A generator production detection device according to claim 1, characterized in that: A plurality of reset button switches (21) are distributed laterally and equidistantly on the connecting side plate (13), and each of the reset button switches (21) is electrically connected to the first electric telescopic rod (28) and the second electric telescopic rod (33).

3. The generator production detection device according to claim 1, characterized in that: The stepping transverse movement mechanism includes a horizontal guide rail (19) and a driving wheel (18), wherein the horizontal guide rail (19) is connected to the top of the connecting side plate (13), a stepping motor (20) is slidably connected to the horizontal guide rail (19), the driving wheel (18) is connected to the main shaft end of the stepping motor (20), and the connecting box (17) is connected to the housing of the stepping motor (20).

4. A generator production detection device according to claim 3, characterized in that: The linkage lifting mechanism includes a cam (14) and a slide (12), wherein the slide (12) is connected to the top of the slide rod (10), the cam (14) is rotatably connected to the inside of the connection box (17), and a synchronous transmission mechanism is provided between the cam (14) and the driving wheel (18).

5. The generator production detection device according to claim 4, characterized in that: The synchronous transmission mechanism includes a synchronous belt (16), the cam (14) and the driving wheel (18) are coaxially connected to a synchronous wheel (15), and the synchronous belt (16) is cooperatively connected between the two synchronous wheels (15).

6. The generator production detection device according to claim 1, characterized in that: The supporting base plate (1) is provided with a plurality of positioning grooves (3) at equal intervals in the transverse direction.

7. The generator production detection device according to claim 1, characterized in that: A plurality of receiving grooves (23) are equidistantly provided on the connecting side plate (13), and the rotating blocks (24) are rotatably connected in the corresponding receiving grooves (23).

Citation Information

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