Electromechanical equipment maintenance clamping equipment

Through the coordinated design of multiple components, the problem of existing electromechanical equipment maintenance clamping equipment being unable to stably clamp irregularly shaped equipment has been solved, achieving stable clamping and center positioning of equipment with different structural dimensions.

CN223617684UActive Publication Date: 2025-12-02QINHUANGDAO DRAINAGE CO LTD
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Patent Information

Application Number
CN202423284386.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-12-02
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Existing electromechanical equipment maintenance clamping equipment cannot stably clamp irregularly shaped equipment from all angles, resulting in unstable clamping.

Method used

The design incorporates multiple components, including vertical support legs, T-shaped sliders, rotating pull rods, and cylinders. Through the cooperation of the T-shaped sliders and the slide grooves, the rotation of the pull rods, and the drive of the cylinders, stable clamping of equipment with different structural dimensions is achieved.

Benefits of technology

This ensures that the equipment is stably clamped in the center position on the maintenance platform, preventing the sliding clamp from tipping over and shifting, thus improving the stability and reliability of clamping.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223617684U_ABST
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Abstract

An electromechanical equipment maintenance clamping device comprises a maintenance platform, a vertical supporting leg, a circular bottom plate, a sliding clamping seat, a mounting boss, an air cylinder, a rotating pull rod, a first rotating shaft, a second rotating shaft, a sliding middle disc and a vertical sliding rod, the upper portion of the vertical supporting leg is connected with the maintenance platform, and the lower portion of the vertical supporting leg is connected with the circular bottom plate. The vertical supporting legs are evenly distributed between the maintenance platform and the vertical supporting legs, the maintenance platform is provided with a plurality of T-shaped sliding grooves, the lower portion of the sliding clamping base is provided with a clamping base lower plate, the lower surface of the clamping base lower plate is attached to the maintenance platform, the lower portion of the clamping base lower plate is provided with T-shaped sliding blocks, the T-shaped sliding blocks are matched with the T-shaped sliding grooves, the T-shaped sliding blocks are inserted into the T-shaped sliding grooves, and the T-shaped sliding blocks slide in the T-shaped sliding grooves. The multiple sliding clamping bases are evenly distributed on the maintenance platform and provided with arc-shaped clamping plates.
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Description

Technical Field

[0001] This utility model relates to the field of electromechanical equipment, and in particular to a clamping device for electromechanical equipment maintenance. Background Technology

[0002] An existing patent (publication number: CN222079120U) discloses a clamping device for electromechanical equipment maintenance, including an equipment base, a pressure roller positioning plate, a pressure roller shaft, a pressure roller, a guide frame, a guide plate, a tension spring, a first clamping platform, an equipment inner cavity, a drive platform, a gear motor, a motor bracket, a gear, an internal gear plate, a second clamping platform, clamping bolts, and clamping plates. The positioning bolts are located on the side of the equipment base and have pressure roller grooves, while the pressure roller positioning plate has pressure roller positioning grooves inside. However, this device only uses two clamping plates to clamp the equipment, which cannot clamp the equipment from all directions. When the equipment has an irregular structure, the clamping is prone to instability. Summary of the Invention

[0003] This utility model addresses the aforementioned shortcomings of the existing technology by providing a clamping device for electromechanical equipment maintenance. This device uses multiple accessories to clamp equipment of different structural dimensions, preventing instability caused by irregular equipment shapes during maintenance and ensuring that the equipment is centered on the upper part of the maintenance platform during maintenance.

[0004] The objective of this utility model is achieved through the following technical solution:

[0005] A clamping device for electromechanical equipment maintenance includes a maintenance platform, vertical legs, a circular base plate, sliding clamps, mounting bosses, cylinders, rotating rods, a first rotating shaft, a second rotating shaft, a sliding intermediate plate, and vertical slide rods. The upper part of the vertical legs is connected to the maintenance platform, and the lower part of the vertical legs is connected to the circular base plate. Multiple vertical legs are evenly distributed between the maintenance platform and the vertical legs. The maintenance platform has multiple T-shaped slide grooves. The lower part of the sliding clamp has a clamp lower plate, the lower surface of which is in contact with the maintenance platform. The lower part of the clamp lower plate has a T-shaped slider, which is adapted to the T-shaped slide groove. The T-shaped slider is inserted into the T-shaped slide groove and slides within the T-shaped slide groove. Multiple sliding clamps are evenly distributed on the maintenance platform, and each sliding clamp has an arc-shaped clamping plate.

[0006] The lower part of the T-shaped slider is connected to the first connecting ear. The rotating pull rod is in contact with the first connecting ear. The rotating pull rod is connected to the first connecting ear through the first rotating shaft. The outer side of the sliding intermediate plate is connected to the second connecting ear. The side of the rotating pull rod is in contact with the second connecting ear. The rotating pull rod is connected to the second connecting ear through the second rotating shaft. Multiple rotating pull rods are evenly distributed on the axial side of the sliding intermediate plate.

[0007] The upper part of the vertical slide rod is connected to the maintenance platform, and the lower part of the vertical slide rod passes through the sliding intermediate plate. The vertical slide rod slides inside the sliding intermediate plate. Three vertical slide rods are distributed on the sliding intermediate plate. The upper part of the circular base plate has a mounting boss. The lower part of the cylinder is connected to the mounting boss, and the upper part of the cylinder is connected to the sliding intermediate plate. The inner side of the arc-shaped clamping plate is in contact with the equipment. Beneficial effects

[0008] 1. This utility model features a circular base plate that supports the maintenance platform via multiple vertical legs. A T-shaped slider is inserted into a T-shaped groove, positioning the sliding clamp seat and ensuring its lower surface is in close contact with the maintenance platform. This prevents the lower plate of the clamp seat from tipping over when subjected to reverse pressure from the equipment during equipment maintenance. The upper part of the rotating pull rod is connected to a first connecting ear via a first rotating shaft, causing the T-shaped slider to move and thus the sliding clamp seat to move. The arc-shaped clamping plate on the side of the sliding clamp seat clamps the equipment. The lower part of the rotating pull rod is connected to a second connecting ear via a second rotating shaft, connecting the lower part of the rotating pull rod to the sliding intermediate plate shaft. Multiple rotating pull rods are evenly distributed on the side of the sliding intermediate plate shaft. When the sliding intermediate plate moves up and down, it drives the rotating pull rod to rotate, which in turn drives the T-shaped slider to move. This causes the sliding intermediate plate to move multiple sliding clamp seats simultaneously in a centripetal or centrifugal motion. The lower part of the cylinder is fixedly mounted on the mounting boss, and the cylinder piston rod is connected to the sliding intermediate plate. When the cylinder operates, it drives the sliding intermediate plate to move up and down.

[0009] 2. This utility model has three vertical sliding rods installed and fixed at the bottom of the maintenance platform. The vertical sliding rods pass through the sliding intermediate plate. The three vertical sliding rods provide lateral and axial positioning for the sliding intermediate plate while ensuring its horizontal position during vertical movement. This prevents the sliding intermediate plate from tilting or shifting during the maintenance and clamping of electromechanical equipment, thus preventing the position of multiple sliding clamps from being compromised. This device, through the cooperation of multiple accessories, enables the clamping of equipment with different structural dimensions. It also prevents unstable clamping due to irregular equipment shapes during the maintenance and clamping of electromechanical equipment, ensuring that the equipment is centered on the upper part of the maintenance platform during maintenance. Attached Figure Description

[0010] Figure 1 This is a top-view axonometric drawing of a clamping device for electromechanical equipment maintenance according to the present invention.

[0011] Figure 2 The above-view isometric drawing of a clamping device for electromechanical equipment maintenance according to this utility model.

[0012] Figure 3 This is a cross-sectional axonometric view of a clamping device for electromechanical equipment maintenance according to the present invention.

[0013] Figure 4 This is a top view of a clamping device for electromechanical equipment maintenance according to the present invention. Detailed Implementation

[0014] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments:

[0015] Example 1:

[0016] A clamping device for electromechanical equipment maintenance includes a maintenance platform 01, vertical support legs 02, a circular base plate 03, a sliding clamp 05, a mounting boss 09, a cylinder 10, a rotating pull rod 11, a first rotating shaft 13, a second rotating shaft 15, a sliding intermediate plate 16, and a vertical slide rod 17. The upper part of the vertical support leg 02 is connected to the maintenance platform 01, and the lower part of the vertical support leg 02 is connected to the circular base plate 03. Multiple vertical support legs 02 are evenly distributed between the maintenance platform 01 and the vertical support legs 02. The circular base plate 03 supports the maintenance platform 01 through the multiple vertical support legs 02. The maintenance platform 01 has multiple T-shaped sliding grooves 04. The sliding clamp 05 is located below... The unit has a lower clamping plate 06, the lower surface of which is in contact with the maintenance platform 01. The lower part of the lower clamping plate 06 has a T-shaped slider 07, which is adapted to a T-shaped slide groove 04. The T-shaped slider 07 is inserted into the T-shaped slide groove 04 and slides within the T-shaped slide groove 04. The T-shaped slider 07 positions the sliding clamp 05, so that the lower surface of the lower clamping plate 06 is in close contact with the maintenance platform 01. During the maintenance and clamping of electromechanical equipment, the lower clamping plate 06 is prevented from causing the sliding clamp 05 to tip over when subjected to the reverse pressure of the equipment. Multiple sliding clamps 05 are evenly distributed on the maintenance platform 01. Each sliding clamp 05 has an arc-shaped clamping plate 08.

[0017] Example 2:

[0018] The lower part of the T-shaped slider 07 of this utility model is connected to the first connecting ear 12. The rotating pull rod 11 is in contact with the first connecting ear 12. The rotating pull rod 11 is connected to the first connecting ear 12 through the first rotating shaft 13, so that the rotating pull rod 11 drives the T-shaped slider 07 to move, and then drives the sliding clamp 05 to move, so that the arc-shaped clamping plate 08 on the side of the sliding clamp 05 clamps the equipment. The outer side of the sliding intermediate plate 16 is connected to the second connecting ear 14. The side of the rotating pull rod 11 is in contact with the second connecting ear 14. The rotating pull rod 11... 1. The second connecting ear 14 is connected to the second rotating shaft 15, so that the lower part of the rotating pull rod 11 is connected to the axis of the sliding intermediate plate 16. Multiple rotating pull rods 11 are evenly distributed on the axis side of the sliding intermediate plate 16. When the sliding intermediate plate 16 moves up and down, it drives the rotating pull rod 11 to rotate. The rotation of the rotating pull rod 11 drives the T-shaped slider 07 to move, so that when the sliding intermediate plate 16 moves up and down, it drives multiple sliding clamps 05 to move centrifugally or centrifugally at the same time.

[0019] Example 3:

[0020] The vertical slide rod 17 of this utility model is connected to the maintenance platform 01 at its upper part, and passes through the sliding intermediate plate 16 at its lower part. The vertical slide rod 17 slides within the sliding intermediate plate 16. Three vertical slide rods 17 are distributed on the sliding intermediate plate 16 and are fixed to the bottom of the maintenance platform 01. The three vertical slide rods 17, passing through the sliding intermediate plate 16, provide lateral and axial positioning for the sliding intermediate plate 16 while ensuring its horizontal position during vertical movement. This prevents the sliding intermediate plate 16 from tilting or shifting during the clamping of electromechanical equipment, thus preventing multiple [problems / damage]. The position between the sliding clamps 05 cannot be guaranteed. The upper part of the circular base plate 03 has a mounting boss 09. The lower part of the cylinder 10 is connected to the mounting boss 09. The lower part of the cylinder 10 is fixed on the mounting boss 09. The upper part of the cylinder 10 is connected to the sliding intermediate plate 16. When the cylinder 10 is working, it drives the sliding intermediate plate 16 to move up and down. The inner side of the arc-shaped clamping plate 08 fits against the equipment. This device uses the cooperation of multiple accessories to clamp equipment of different structural sizes. In the clamping of electromechanical equipment maintenance, it prevents the clamping from being unstable due to the irregular shape of the equipment and ensures that the equipment is in the center position on the upper part of the maintenance platform 01 during maintenance.

[0021] Example 4:

[0022] The installation steps of this utility model are as follows: First, connect the upper and lower ends of the vertical support leg 02 to the maintenance platform 01 and the circular base plate 03 respectively. Insert the T-shaped slider 07 into the T-shaped slide groove 04. Connect the first connecting ear 12 to the T-shaped slider 07. Rotate the pull rod 11 and connect it to the first connecting ear 12 through the first rotating shaft 13. Connect the second connecting ear 14 to the sliding intermediate plate 16. Connect the pull rod 11 to the second connecting ear 14 through the second rotating shaft 15. Connect the upper part of the vertical slide rod 17 through the sliding intermediate plate 16 to the maintenance platform 01. Install the cylinder 10 on the mounting boss 09. Connect the piston rod of the cylinder 10 to the sliding intermediate plate 16.

[0023] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.

Claims

1. A clamping device for maintaining electromechanical equipment, characterized in that: The system includes a maintenance platform (01), vertical support legs (02), a circular base plate (03), a sliding clamp (05), a mounting boss (09), a cylinder (10), a rotating pull rod (11), a first rotating shaft (13), a second rotating shaft (15), a sliding intermediate plate (16), and a vertical slide rod (17). The upper part of the vertical support leg (02) is connected to the maintenance platform (01), and the lower part of the vertical support leg (02) is connected to the circular base plate (03). Multiple vertical support legs (02) are evenly distributed between the maintenance platform (01) and the vertical support legs (02). 1) It has multiple T-shaped grooves (04), and the lower part of the sliding clamp (05) has a clamp lower plate (06). The lower surface of the clamp lower plate (06) is in contact with the maintenance platform (01). The lower part of the clamp lower plate (06) has a T-shaped slider (07). The T-shaped slider (07) is adapted to the T-shaped groove (04). The T-shaped slider (07) is inserted into the T-shaped groove (04). The T-shaped slider (07) slides in the T-shaped groove (04). Multiple sliding clamps (05) are evenly distributed on the maintenance platform (01). The sliding clamp (05) has an arc-shaped clamp plate (08).

2. The electromechanical equipment maintenance clamping device according to claim 1, characterized in that: The lower part of the T-shaped slider (07) is connected to the first connecting ear (12). The rotating pull rod (11) is in contact with the first connecting ear (12). The rotating pull rod (11) is connected to the first connecting ear (12) through the first rotating shaft (13). The outer side of the sliding intermediate disk (16) is connected to the second connecting ear (14). The side of the rotating pull rod (11) is in contact with the second connecting ear (14). The rotating pull rod (11) is connected to the second connecting ear (14) through the second rotating shaft (15). Multiple rotating pull rods (11) are evenly distributed on the axial side of the sliding intermediate disk (16).

3. The electromechanical equipment maintenance clamping device according to claim 2, characterized in that: The upper part of the vertical slide rod (17) is connected to the maintenance platform (01), and the lower part of the vertical slide rod (17) passes through the sliding intermediate plate (16). The vertical slide rod (17) slides in the sliding intermediate plate (16), and the three vertical slide rods (17) are distributed on the sliding intermediate plate (16).

4. The electromechanical equipment maintenance clamping device according to claim 3, characterized in that: The circular base plate (03) has a mounting boss (09) on the upper part, the cylinder (10) is connected to the mounting boss (09) at the lower part, the cylinder (10) is connected to the sliding intermediate plate (16) at the upper part, and the inner side of the arc-shaped clamping plate (08) is in contact with the equipment.

Citation Information

Patent Citations

  • Electromechanical equipment maintenance clamping equipment

    CN222079120U