Workshop electromechanical equipment mounting and positioning device

Through the combination of linear drive source and translation auxiliary unit, the deviation problem caused by vibration after lifting of the electromechanical equipment is solved, and the stable clamping and precise positioning of the equipment is achieved, which improves the placement stability.

CN223063510UActive Publication Date: 2025-07-04HUBEI SHENGTAI INTELLIGENT ENG CO LTD
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Patent Information

Application Number
CN202421862956.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-02
Publication Date
2025-07-04
Estimated Expiration
2034-08-02

AI Technical Summary

Technical Problem

Existing mechanical and electrical equipment is prone to shift due to vibration after lifting, affecting the stability of placement.

Method used

The combination of a linear drive source, a driving unit and a translation auxiliary unit is adopted to achieve precise positioning and stable clamping of the electromechanical equipment through the controllable movement of the ball.

Benefits of technology

Improve the stability of the placement of electromechanical equipment on the abutment and reduce the offset movement of the equipment during use.

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Abstract

The utility model relates to a plant electromechanical equipment installing and positioning device which comprises a base table used for bearing electromechanical equipment, a linear driving source, a driving unit and a translation auxiliary unit, the linear driving source is installed in the base table, and the output end of the linear driving source is connected with the driving unit; the linear driving source can adjust the position of the driving unit, and the top of the driving unit is connected with the translation auxiliary unit. Through cooperative arrangement of a linear driving source, a driving unit and a translation auxiliary unit, a plurality of balls in the translation auxiliary unit can upwards penetrate out of a supporting table to be used for being matched with position adjustment of the electromechanical equipment when the electromechanical equipment is placed, and the balls can also be downwards moved into a bottom cover after the position adjustment of the electromechanical equipment is completed; therefore, the offset movement of the electromechanical equipment during placement and use is reduced, and the placement stability of the electromechanical equipment on the base station is improved.
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Description

Technical Field

[0001] This application relates to the technical field of the installation and fixation of mechanical and electrical equipment, and particularly relates to a positioning device for the installation of mechanical and electrical equipment in a factory building. Background Art

[0002] Mechanical and electrical equipment generally refers to mechanical, electrical, and electrical automation equipment. In a building, it mostly refers to the collective term for mechanical and pipeline equipment other than earthwork, carpentry, steel bars, and mud work. It is different from hardware and mostly refers to finished products that can achieve certain functions. Currently, when installing mechanical and electrical equipment, lifting equipment is usually used to lift the mechanical and electrical equipment and place it on the shims, and the position of the equipment is accurately installed by continuously adjusting the position of the shims.

[0003] For example, the Chinese utility model patent with the publication number CN22045310U in the related art proposed a positioning device for the installation of mechanical and electrical equipment. By dispersedly and movably installing a plurality of balls on the upper end surface of the mounting seat, after placing the mechanical and electrical equipment on the upper end of the mounting seat, the mechanical and electrical equipment can be pushed to a suitable position. Since the lower end of the mechanical and electrical equipment is in direct contact with the balls, compared with the sliding friction when the mechanical and electrical equipment is in direct contact with the mounting seat, the rolling friction between the lower end of the mechanical and electrical equipment and the balls is smaller, making it easier to adjust the position of the mechanical and electrical equipment more labor - savingly and then place it after adjusting the position.

[0004] The above - mentioned related technology has the following defects: Due to the arrangement of the balls on the upper end surface of the mounting seat, the mechanical and electrical equipment cannot be placed stably in contact with the upper end surface of the mounting seat during the placement and use process, and there is often a certain vibration during the operation of the mechanical and electrical equipment. In the case of using the balls to support the mechanical and electrical equipment, it is easier for the mechanical and electrical equipment to generate a certain offset movement during the placement and use process, thus affecting its placement stability. Utility Model Content

[0005] In order to improve the problem that there is often a certain vibration during the operation of mechanical and electrical equipment, and in the case of using balls to support the mechanical and electrical equipment, it is easier for the mechanical and electrical equipment to generate a certain offset movement during the placement and use process, thus affecting its placement stability, this application provides a positioning device for the installation of mechanical and electrical equipment in a factory building.

[0006] The positioning device for the installation of mechanical and electrical equipment in a factory building provided by this application adopts the following technical scheme:

[0007] Plant electromechanical equipment installation and positioning device, including a base for carrying electromechanical equipment, a linear drive source, a drive unit, and a translation auxiliary unit. The linear drive source is installed inside the base, and the output end of the linear drive source is connected to the drive unit, so that the linear drive source can adjust the position of the drive unit. The top of the drive unit is connected to the translation auxiliary unit. The top of the translation auxiliary unit can movably pass through the top of the base, and the translation auxiliary unit is longitudinally slidably connected to the base. The drive unit includes a moving frame, at least one convex block, and the same number of rotating shafts and rollers as the number of convex blocks. One side of the moving frame facing the linear drive source is connected to the output end of the linear drive source. At least one of the convex blocks is fixedly connected to the moving frame. The rotating shaft is rotatably installed under the translation auxiliary unit by two hoisting frames. The roller is sleeved on the outer wall of the rotating shaft and is coaxially fixed thereto. The roller is tangentially engaged with the convex block and is arranged above the convex block.

[0008] Furthermore, the translation auxiliary unit includes a lifting platform, a plurality of mounting seats, the same number of balls as the number of mounting seats, and at least one guide rod. The bottom of the lifting platform is fixedly connected to the hoisting frame by bolts. A plurality of the mounting seats are formed on the top of the lifting platform. Each mounting seat is provided with a ball that can roll and rotate. At least one of the guide rods is formed at the outer edge of the bottom of the lifting platform, and the guide rod is slidably connected to the base.

[0009] Furthermore, the base includes a bottom cover, a support platform, a plurality of avoidance grooves, and a maintenance opening. An opening is formed at the top of the bottom cover. The support platform covers the opening of the bottom cover and is fixedly connected to the bottom cover. A plurality of the avoidance grooves are formed on the support platform. Each avoidance groove can be movably passed through by the ball located below it. The maintenance opening is formed on the side of the bottom cover and protrudes outward. The maintenance opening faces the linear drive source. A plurality of support legs are fixedly connected below the bottom cover. The lower end of each guide rod penetrates through the bottom of the bottom cover and is slidably connected to it. A plurality of support beams are also arranged inside the bottom cover. The two ends of each support beam are respectively fixedly connected to the inner bottom wall of the bottom cover and the support platform.

[0010] Furthermore, the top of the convex block is set as a horizontal plane, and one side wall of the convex block is set as an inclined plane. The drive unit also includes at least one guide plate. The guide plate is fixedly connected to the moving frame. A guide groove penetrating through the guide plate is formed on the guide plate. The rotating shaft passes through the guide groove on the adjacent guide plate. The middle section of the guide groove is parallel to the inclined plane of the side wall of the convex block. The top section and the bottom section of the guide groove are both parallel to the top plane of the convex block.

[0011] Furthermore, the factory building electromechanical equipment installation and positioning device also includes two or four groups of limit components, and each two groups of limit components are installed in a pair on two opposite sides of the top of the base, and the limit components include an edge baffle, an adjusting screw, a bearing seat and a limit baffle. The edge baffle is fixed on the base, and the adjusting screw passes through the edge baffle and is threadedly connected to it. The end of the adjusting screw located above the base extends into the bearing seat and is connected to it, and the bearing seat is installed and fixed on the side of the limit baffle facing the edge baffle.

[0012] The beneficial technical effect of the present application is: through the coordinated arrangement of the linear drive source, the drive unit and the translation auxiliary unit, when placing the electromechanical equipment, the multiple ball bearings in the translation auxiliary unit can be passed upward through the support platform to cooperate with the position adjustment of the electromechanical equipment, and after the position adjustment of the electromechanical equipment is completed, the multiple ball bearings can also be moved downward into the bottom cover, thereby reducing the offset movement of the electromechanical equipment when it is placed and used, and improving the stability of the electromechanical equipment placed on the base. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 It is a schematic diagram of the overall structure of the plant electromechanical equipment installation and positioning device according to an embodiment of the present application;

[0014] Figure 2 It is a schematic diagram of the internal structure of the base after it is cut open in the embodiment of the present application;

[0015] Figure 3 is a schematic diagram of the structure of a driving unit in an embodiment of the present application;

[0016] Figure 4 yes Figure 3 A schematic diagram of the structure of the middle drive unit at another angle;

[0017] Figure 5 It is a structural schematic diagram of the translation auxiliary unit in an embodiment of the present application.

[0018] Figure numerals: 10, base; 11, bottom cover; 12, support platform; 13, avoidance groove; 14, inspection port; 20, limit assembly; 21, edge baffle; 22, adjusting screw; 23, bearing seat; 24, limit baffle; 30, support leg; 40, linear drive source; 50, drive unit; 51, moving frame; 52, bump; 53, guide plate; 531, guide groove; 54, lifting frame; 55, rotating shaft; 56, roller; 60, translation auxiliary unit; 61, lifting platform; 62, mounting seat; 63, ball; 64, guide rod. DETAILED DESCRIPTION

[0019] The technical solution of the present application will be clearly and completely described below in conjunction with the accompanying drawings. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments in the present application without creative efforts shall fall within the protection scope of the present application.

[0020] An embodiment of the present application discloses a positioning device for the installation of mechanical and electrical equipment in a factory building. Referring to Figure 1 and Figure 2 , the positioning device for the installation of mechanical and electrical equipment in a factory building may include a base 10 for carrying the mechanical and electrical equipment, two or four groups of limiting components 20, a plurality of support legs 30, a linear driving source 40, a driving unit 50, and a translation assisting unit 60. The plurality of support legs 30 are fixed below the base 10 and support the base 10 at a certain height above the ground. The linear driving source 40 is installed inside the base 10, and the output end of the linear driving source 40 is connected to the driving unit 50, so that the linear driving source 40 can adjust the position state of the driving unit 50. The top of the driving unit 50 is connected to the translation assisting unit 60, and the translation assisting unit 60 is longitudinally slidably connected to the base 10. Under the adjustment of the driving unit 50, the top of the translation assisting unit 60 can movably pass through the top of the base 10 and is used for fine adjustment of the position of the mechanical and electrical equipment after being placed on the base 10. The limiting components 20 are installed on the top of the base 10, and the limiting components 20 are used to limit the placed mechanical and electrical equipment.

[0021] Referring to Figure 2 , the base 10 may include a bottom cover 11, a support table 12, a plurality of avoidance grooves 13, and a maintenance opening 14. An opening is formed at the top of the bottom cover 11, and the support table 12 covers the opening of the bottom cover 11 and is fixedly connected to the bottom cover 11. In order to enable the support table 12 to more stably support the mechanical and electrical equipment placed above it, a plurality of support beams may also be provided inside the bottom cover 11. Both ends of each support beam are fixedly connected to the inner bottom wall of the bottom cover 11 and the support table 12 respectively, and the support beams are used to assist in bearing the weight. The plurality of avoidance grooves 13 are formed on the support table 12, and the avoidance grooves 13 are used to cooperate with the movable passing of the top of the translation assisting unit 60. The maintenance opening 14 is formed on the side of the bottom cover 11 and protrudes outward. The maintenance opening 14 faces the linear driving source 40 to facilitate the user's maintenance.

[0022] Referring to Figure 1, every two sets of limit components 20 are installed in pairs on the opposite sides of the top of the base 10. The limit component 20 includes an edge baffle 21, an adjustment screw 22, a bearing seat 23 and a limit baffle 24. The edge baffle 21 is fixed on the base 10. The adjustment screw 22 passes through the edge baffle 21 and is threadedly connected thereto. Rotating the adjustment screw 22 can adjust its screwing-in distance. One end of the adjustment screw 22 above the base 10 extends into the bearing seat 23 and is connected thereto. The bearing seat 23 is installed and fixed on one side of the limit baffle 24 facing the edge baffle 21. After the electromechanical equipment adjusts its position and is placed on the support table 12, the construction worker can hold the limit baffle 24 and screw in the adjustment screw 22 so that the limit baffle 24 can be pushed close to the side wall of the electromechanical equipment and limit it.

[0023] Refer to Figure 3 and Figure 4 , the driving unit 50 may include a moving frame 51, at least one bump 52, a guide plate 53, a rotating shaft 55 and a roller 56 having the same number as the bump 52. One side of the moving frame 51 facing the linear driving source 40 is connected to the output end of the linear driving source 40 so that it can be driven to translate. At least one bump 52 is fixedly connected to the moving frame 51. The top of the bump 52 is set as a horizontal plane, and one side wall of the bump 52 is set as an inclined surface. The guide plate 53 is also fixedly connected to the moving frame 51, and a guide groove 531 penetrating the guide plate 53 is formed on the guide plate 53. The rotating shaft 55 is rotatably installed under the translation assisting unit 60 by using two hoisting frames 54. The roller 56 is sleeved on the outer wall of the rotating shaft 55 and is coaxially fixed thereto. The roller 56 is arranged tangentially and cooperatively with the bump 52 above the bump 52, and the rotating shaft 55 passes through the guide groove 531 on the adjacent guide plate 53. During the translational movement of the moving frame 51, the bump 52 can be driven to move simultaneously. During the movement of the bump 52, when the inclined surface portion of the side wall of the bump 52 contacts the roller 56, the movement of the bump 52 can be used to push the roller 56 to rotate, and at the same time, the roller 56, the rotating shaft 55, the hoisting frame 54 and the translation assisting unit 60 can be longitudinally moved. The middle section of the guide groove 531 is parallel to the inclined surface of the side wall of the bump 52, and the top section and the bottom section of the guide groove 531 are both parallel to the top plane of the bump 52. The guide groove 531 can limit the movement range of the rotating shaft 55.

[0024] Refer to Figure 5, the translation assistance unit 60 includes a lifting platform 61, a plurality of mounting seats 62, a plurality of balls 63 equal in number to the mounting seats 62, and at least one guide rod 64. The bottom of the lifting platform 61 is fixedly connected to the lifting frame 54 by bolts, so that it can be driven by the lifting frame 54 to move. The plurality of mounting seats 62 are formed on the top of the lifting platform 61, and a rotatable ball 63 is provided in each mounting seat 62. During the upward movement of the ball 63, it can pass through the avoidance groove directly above it, so that after the electromechanical equipment is placed, the friction resistance during the fine adjustment of the position of the electromechanical equipment can be reduced by using the ball 63. When the position of the electromechanical equipment is adjusted, the ball 63 moves downward into the bottom cover 11, so that the electromechanical equipment can be stably placed on the support table 12. At least one guide rod 64 is formed at the outer edge of the bottom of the lifting platform 61, and the guide rod 64 is slidably connected to the base 10, so that the translation assistance unit 60 can be restricted to only move longitudinally.

[0025] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereby. Therefore, all equivalent changes made according to the structure, shape, and principle of the present application should be covered within the protection scope of the present application.

Claims

1. An installation positioning device for electromechanical equipment in a factory building, comprising a base (10) for carrying the electromechanical equipment, characterized in that, It further includes a linear drive source (40), a drive unit (50) and a translation assistance unit (60). The linear drive source (40) is installed inside the base (10), and the output end of the linear drive source (40) is connected to the drive unit (50), so that the linear drive source (40) can adjust the position of the drive unit (50). The top of the drive unit (50) is connected to the translation assistance unit (60). The top of the translation assistance unit (60) can movably pass through the top of the base (10), and the translation assistance unit (60) is longitudinally slidably connected to the base (10). Wherein, the drive unit (50) includes a moving frame (51), at least one bump (52), and a number of rotating shafts (55) and rollers (56) equal to the number of bumps (52). The side of the moving frame (51) facing the linear drive source (40) is connected to the output end of the linear drive source (40). At least one of the bumps (52) is fixedly connected to the moving frame (51). The rotating shafts (55) are rotatably installed under the translation assistance unit (60) by means of two lifting frames (54). The rollers (56) are sleeved on the outer wall of the rotating shafts (55) and are coaxially fixed thereto. The rollers (56) are arranged tangentially with the bumps (52) above the bumps (52).

2. The plant electromechanical equipment installation and positioning device according to claim 1, characterized in that, The translation assistance unit (60) includes a lifting platform (61), a plurality of mounting seats (62), a number of balls (63) equal to the number of mounting seats (62), and at least one guide rod (64). The bottom of the lifting platform (61) is fixedly connected to the lifting frame (54) by bolts. A plurality of the mounting seats (62) are formed on the top of the lifting platform (61). Each mounting seat (62) is provided with a ball (63) that can roll and rotate. At least one of the guide rods (64) is formed at the outer edge of the bottom of the lifting platform (61), and the guide rod (64) is slidably connected to the base (10).

3. The plant electromechanical equipment installation and positioning device according to claim 2, characterized in that, The base (10) includes a bottom cover (11), a support platform (12), a plurality of avoidance grooves (13) and a maintenance opening (14). The top of the bottom cover (11) is formed with an opening. The support platform (12) covers the opening of the bottom cover (11) and is fixedly connected to the bottom cover (11). A plurality of the avoidance grooves (13) are formed on the support platform (12). Each avoidance groove (13) can be movably passed through by the ball (63) located below it. The maintenance opening (14) is formed on the side of the bottom cover (11) and protrudes outward. The maintenance opening (14) faces the linear drive source (40).

4. The plant electromechanical equipment installation and positioning device according to claim 3, characterized in that, It further includes a number of support legs (30) fixed below the bottom cover (11). The lower end of each guide rod (64) passes through the bottom of the bottom cover (11) and is slidably connected thereto.

5. The plant electro-mechanical equipment installation and positioning device according to claim 3 or 4, characterized in that A plurality of support beams are further arranged inside the bottom cover (11). The two ends of each support beam are respectively fixedly connected to the inner bottom wall of the bottom cover (11) and the support platform (12).

6. The installation and positioning device for the electromechanical equipment in the factory building according to claim 1, wherein, The top of the bump (52) is set as a horizontal plane, and one side wall of the bump (52) is set as an inclined plane.

7. The plant electromechanical equipment installation and positioning device according to claim 1 or 6, characterized in that, The driving unit (50) further includes at least one guiding plate (53). The guiding plate (53) is fixedly connected to the moving frame (51). A guiding groove (531) penetrating through the guiding plate (53) is formed on the guiding plate (53). The rotating shaft (55) passes through the guiding grooves (531) on adjacent guiding plates (53). The middle section of the guiding groove (531) is parallel to the inclined plane of the side wall of the bump (52), and both the top section and the bottom end of the guiding groove (531) are parallel to the top plane of the bump (52).

8. The installation and positioning device for the electromechanical equipment in the factory building according to claim 1, wherein, It further includes two groups or four groups of limiting components (20). Every two groups of limiting components (20) are installed in pairs on opposite sides of the top of the base (10). The limiting component (20) includes an edge baffle (21), an adjusting screw (22), a bearing seat (23) and a limiting baffle (24). The edge baffle (21) is fixed on the base (10). The adjusting screw (22) penetrates through the edge baffle (21) and is threadedly connected thereto. One end of the adjusting screw (22) above the base (10) extends into the bearing seat (23) and is connected thereto. The bearing seat (23) is installed and fixed on one side of the limiting baffle (24) facing the edge baffle (21).