Electromechanical equipment installation and debugging platform
Through the rotating connection between the guide rail and the counter panel and the sliding adjustment of the slider, the problem of inconsistent hole distance of the motor mounting seat in the prior art is solved, and the stable installation of motor mounting seats of different hole distances is achieved, which expands the applicability of the electromechanical equipment debugging platform.
Patent Information
- Application Number
- CN202422348533.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-25
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-09-25
AI Technical Summary
The existing mechanical and electrical equipment installation and debugging platform cannot effectively fix the motor mounts of different hole distances, resulting in the inability to meet the motor fixing needs of different specifications and brands.
Through the rotating connection between the guide rail and the counter panel, the slider slides along the guide rail to adjust the spacing of the bolt and nut groups, and combines the fixation of the locking screw and the pressure plate to achieve the fixation of the motor mounting base with different hole spacing.
It has achieved stable installation of motor mounts with different hole distances, expanded the scope of application of electromechanical equipment debugging platform, and adapted to motors of different specifications and brands.
Smart Images

Figure CN223084619U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of installation and debugging platforms, and more specifically, to an installation and debugging platform for electromechanical equipment. Background Art
[0002] Before electromechanical equipment is put into formal use, installation and debugging are required. The installation and debugging of the equipment require staff to make the equipment run for a period of time according to correct production and use conditions so that its running speed reaches consistency with project requirements. The purpose of debugging is to inspect whether the design and installation of the electromechanical equipment are correct, so as to judge the quality of the equipment's continuous operation. In actual production applications, the installation conditions of electromechanical equipment are different. For example, a patent with the publication number CN219337640U discloses an installation and debugging platform for electromechanical equipment, which has the effect of clamping and fixing electromechanical equipment of different sizes and freely adjusting the height of the operating platform. However, it cannot accurately debug electromechanical equipment whose installation position is not a horizontal plane, resulting in great limitations in the use of the debugging platform.
[0003] The prior art document with the publication number CN 221066223 U provides an installation and debugging platform for electromechanical equipment. The device rotates the lead screw through a handwheel, so that the driving block drives the movable plate to move. The movable plate drives the fixing plate and the fixing block at one end of the load plate close to the limit column to rise through the ear plate and the fixed shaft, so that the load plate is inclined. The fixing plate and the fixing block at the end of the load plate away from the limit column drive the limit shaft to slide in the limit groove. Therefore, the device can install and debug electromechanical equipment in a non-horizontal state.
[0004] Although the above prior art solutions can achieve related beneficial effects through the structures of the prior art, there are still the following defects: When debugging the motor, the hole pitches of the threaded holes of the motor mounts of different specifications and different brands are different. Therefore, when fixing the base of the motor on the load plate, it is impossible to fix the motor mounts with different hole pitches, and thus the problem of fixing motors of different specifications and different brands cannot be satisfied.
[0005] In view of this, we propose an installation and debugging platform for electromechanical equipment. Summary of the Utility Model
[0006] 1. Technical Problems to be Solved
[0007] The purpose of the present application is to provide an installation and debugging platform for electromechanical equipment, which solves the technical problems in the above background art and realizes the technical effect of installing motor mounts with different hole pitches.
[0008] 2. Technical Solutions
[0009] The technical solution of this application provides an installation and debugging platform for electromechanical equipment, including: a table top panel and multiple guide rails. Sliders are slidably arranged on the guide rails. A bolt-nut group is fixed on the sliders. One side of the slider is threadedly connected with a locking screw that abuts against the guide rail. There are multiple guide rails, and the multiple guide rails are distributed in a ring shape. The opposite ends of the multiple guide rails are rotatably arranged on the table top panel, and the separated ends of the multiple guide rails are detachable from the table top panel.
[0010] By adopting the above technical solution, through the rotational connection between the guide rail and the table top panel, and the slider can drive the bolt-nut group to slide and adjust along the guide rail. When the guide rail rotates, the distance between the transverse bolt-nut groups can be changed. Then, through the sliding adjustment of the slider along the guide rail, the distance between the longitudinal bolt-nut groups can be further adjusted, so that the bolts of the bolt-nut group can correspond to the fixing holes of the motor mounting base with different hole pitches. Finally, by making the locking screw abut against the guide rail, the slider is fixed to the guide rail, and then the guide rail is fixed on the table top panel.
[0011] As an alternative solution of the technical solution of this application document, a shaft rod is vertically fixed at one end of the guide rail. A limiting plate placed on the lower surface of the table top panel is coaxially fixed on the shaft rod. A plurality of shaft holes adapted to the shaft rod are provided on the table top panel.
[0012] By adopting the above technical solution, the shaft rod is rotatably arranged in the shaft hole, and the limiting plate is larger than the inner diameter of the shaft hole to prevent the axial dropping of the shaft rod from the shaft hole, and it can make the guide rail rotate and adjust with the shaft rod as the axis.
[0013] As an alternative solution of the technical solution of this application document, a plurality of arc-shaped holes are provided on the table top panel. The arc-shaped holes are coaxial with the shaft holes. A threaded pipe is fixedly installed at the end of the guide rail away from the shaft rod. The threaded pipe is adapted to the arc-shaped holes. A long screw is threadedly connected in the threaded pipe, and a pressing plate is fixed at the lower end of the long screw.
[0014] By adopting the above technical solution, the threaded pipe rotates along the arc-shaped hole and rotates with the shaft rod as the axis. And through the threaded connection between the long screw and the threaded pipe, the pressing plate presses against the lower surface of the table top panel. At this time, under the relative extrusion and / or frictional force between the guide rail and the pressing plate, the guide rail is fixed on the table top panel.
[0015] As an alternative solution of the technical solution of this application document, a rubber pad is fixed on the side of the pressing plate close to the table top panel.
[0016] By adopting the above technical solution, when the pressing plate presses against the table top panel, under the action of the rubber pad, the friction coefficient with the table top panel can be increased, and at the same time, the fixing reliability between the guide rail and the table top panel can be increased.
[0017] As an optional solution to the technical solution of the present application document, a plurality of positioning grooves are provided on one side of the guide rail close to the locking screw.
[0018] By adopting the above technical solution, when the locking screw is screwed into the positioning groove, the fixing reliability of the slider and the guide rail can be improved.
[0019] 3. Beneficial effects
[0020] One or more technical solutions provided in the embodiments of the present application have at least the following technical effects or advantages:
[0021] 1. The present application is connected by rotation of the guide rail and the table panel, and the slider can drive the bolt and nut group to slide and adjust along the guide rail. When the guide rail rotates, the spacing between the horizontal bolt and nut groups can be changed, and then the spacing between the longitudinal bolt and nut groups can be adjusted by sliding the slider along the guide rail, so that the bolts of the bolt and nut group can correspond to the fixing holes of the motor mounting seat with different hole spacings. Finally, the locking screw is abutted against the guide rail to fix the slider to the guide rail, and then the guide rail is fixed to the table panel, thereby realizing the installation of motor mounting seats with different hole spacings. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 This is a schematic diagram of the overall structure of an electromechanical equipment installation and debugging platform disclosed in a preferred embodiment of the present application;
[0023] Figure 2 A schematic diagram of the structure of a table panel of an electromechanical equipment installation and debugging platform disclosed in a preferred embodiment of the present application;
[0024] Figure 3 A schematic diagram of the guide rail and slider structure of a mechanical and electrical equipment installation and debugging platform disclosed in a preferred embodiment of the present application;
[0025] Figure 4 A schematic diagram of a guide rail structure of an electromechanical equipment installation and debugging platform disclosed in a preferred embodiment of the present application;
[0026] Figure 5 A schematic diagram of a long screw structure of an electromechanical equipment installation and debugging platform disclosed in a preferred embodiment of the present application;
[0027] Figure 6 A schematic diagram of a slider structure of an electromechanical equipment installation and debugging platform disclosed in a preferred embodiment of the present application;
[0028] Figure 7 This is a schematic diagram of the overall cross-section structure of an electromechanical equipment installation and debugging platform disclosed in a preferred embodiment of the present application;
[0029] Description of reference numerals in the figure: 1. Table top panel; 11. Shaft hole; 12. Arc-shaped hole; 2. Guide rail; 21. Shaft rod; 211. Limiting plate; 22. Positioning groove; 23. Threaded pipe; 24. Long screw; 25. Pressing plate; 251. Rubber pad; 3. Slide block; 31. Locking screw; 4. Bolt-nut group. Detailed implementation manners
[0030] The following further describes the present application in detail with reference to the accompanying drawings of the specification.
[0031] An installation and debugging platform for electromechanical equipment includes: a table top panel 1 and a plurality of guide rails 2. A slide block 3 is slidably arranged on the guide rail 2, a bolt-nut group 4 is fixed on the slide block 3, and a locking screw 31 threadedly connected to one side of the slide block 3 abuts against the guide rail 2. There are a plurality of guide rails 2, and the plurality of guide rails 2 are annularly distributed. The opposite ends of the plurality of guide rails 2 are rotatably arranged on the table top panel 1, and the separated ends of the plurality of guide rails 2 are detachable from the table top panel 1.
[0032] Referring to Figures 1-7 , through the rotational connection between the guide rail 2 and the table top panel 1, and the slide block 3 can drive the bolt-nut group 4 to slide and adjust along the guide rail 2. When the guide rail 2 rotates, the distance between the transverse bolt-nut groups 4 can be changed. Then, through the sliding adjustment of the slide block 3 along the guide rail 2, the distance between the longitudinal bolt-nut groups 4 can be adjusted, so that the bolts of the bolt-nut group 4 can correspond to the fixing holes of the motor mounting base with different hole pitches. Finally, the slide block 3 is fixed to the guide rail 2 by abutting the locking screw 31 against the guide rail 2, and then the guide rail 2 is fixed on the table top panel 1.
[0033] One end of the guide rail 2 is vertically fixed with a shaft rod 21, and a limiting plate 211 placed on the lower surface of the table top panel 1 is coaxially fixed to the shaft rod 21. A plurality of shaft holes 11 adapted to the shaft rod 21 are formed on the table top panel 1.
[0034] Referring to Figure 2 , Figure 3 , Figure 4 and Figure 7 , the shaft rod 21 is rotatably arranged in the shaft hole 11, and the limiting plate 211 is larger than the inner diameter of the shaft hole 11 to prevent the shaft rod 21 from axially falling out of the shaft hole 11, and it can make the guide rail 2 rotate and adjust with the shaft rod 21 as the axis.
[0035] A plurality of arc-shaped holes 12 are formed on the table top panel 1. The arc-shaped holes 12 are coaxial with the shaft holes 11. A threaded pipe 23 is fixedly installed at the end of the guide rail 2 far from the shaft rod 21. The threaded pipe 23 is adapted to the arc-shaped hole 12. A long screw 24 is threadedly connected in the threaded pipe 23, and a pressing plate 25 is fixed to the lower end of the long screw 24.
[0036] Referring to Figure 2 , Figure 3 , Figure 4 and Figure 7, the threaded tube 23 rotates along the arc-shaped hole 12 and rotates around the shaft rod 21. Through the threaded connection between the long screw rod 24 and the threaded tube 23, the pressing plate 25 presses against the lower surface of the tabletop panel 1. At this time, under the relative extrusion and / or frictional force between the guide rail 2 and the pressing plate 25, the guide rail 2 is fixed on the tabletop panel 1.
[0037] A rubber pad 251 is fixed on one side of the pressing plate 25 close to the tabletop panel 1.
[0038] Refer to Figure 3 , when the pressing plate 25 presses against the tabletop panel 1, under the action of the rubber pad 251, the friction coefficient with the tabletop panel 1 can be increased, and at the same time, the fixing reliability of the guide rail 2 and the tabletop panel 1 can be increased.
[0039] A plurality of positioning grooves 22 are provided on one side of the guide rail 2 close to the locking screw rod 31.
[0040] Refer to Figure 4 , when the locking screw rod 31 is screwed into the positioning groove 22, the fixing reliability of the slider 3 and the guide rail 2 can be improved.
[0041] Working principle: Loosen all the locking screw rods 31, then rotate the guide rail 2 around the shaft rod 21, the slider 3 slides along the guide rail 2, so that the bolts of the bolt-nut group 4 correspond to the fixing holes of the motor mounting seat, and the slider 3 is fixed on the guide rail 2 through the locking screw rod 31. Then rotate the long screw rod 24 to make the pressing plate 25 tightly fixed on the tabletop panel 1. Finally, thread the nut onto the bolt, and the motor can be fixed on the tabletop panel 1 to debug the motor.
Claims
1. An installation and commissioning platform for electromechanical equipment, characterized in that: Including: A tabletop (1) and a plurality of guide rails (2), a slider (3) is slidably arranged on the guide rails (2), a bolt-nut group (4) is fixed on the slider (3), one side of the slider (3) is threadedly connected with a locking screw rod (31) that abuts against the guide rail (2), there are a plurality of the guide rails (2), the plurality of guide rails (2) are annularly distributed, the opposite ends of the plurality of guide rails (2) are rotatably arranged on the tabletop (1), and the separated ends of the plurality of guide rails (2) are detachably connected to the tabletop (1).
2. The installation and commissioning platform for an electromechanical device according to claim 1, characterized in that: One end of the guide rail (2) is vertically fixed with a shaft rod (21), the shaft rod (21) is coaxially fixed with a limiting plate (211) placed on the lower surface of the tabletop (1), and a plurality of shaft holes (11) adapted to the shaft rod (21) are formed on the tabletop (1).
3. An electromechanical equipment installation and commissioning platform according to claim 2, characterized in that: A plurality of arc-shaped holes (12) are formed on the tabletop (1), the arc-shaped holes (12) are coaxial with the shaft holes (11), a threaded pipe (23) is fixedly installed at one end of the guide rail (2) away from the shaft rod (21), the threaded pipe (23) is adapted to the arc-shaped holes (12), a long screw rod (24) is threadedly connected inside the threaded pipe (23), and a pressing plate (25) is fixed at the lower end of the long screw rod (24).
4. An electromechanical equipment installation and commissioning platform according to claim 3, characterized in that: A rubber pad (251) is fixed on one side of the pressing plate (25) close to the tabletop (1).
5. The installation and commissioning platform for a mechanical and electrical device according to claim 2, characterized in that: A plurality of positioning grooves (22) are formed on one side of the guide rail (2) close to the locking screw rod (31).
Citation Information
Patent Citations
Electromechanical equipment installation and debugging platform
CN219337640U
Electromechanical equipment installation and debugging platform
CN221066223U
Cited By
Mechanical and electrical equipment installation and debugging platform
CN122723249A