Intelligent balancing stand for electromechanical equipment installation

By using components such as air cylinders, air bags, springs, and electric push rods, combined with laser adjustment and motor drive, the problems of vibration reduction and positioning during the installation of electromechanical equipment are solved, achieving stable placement and precise installation of the equipment.

CN223708418UActive Publication Date: 2025-12-23SHANXI SYNTHETIC BIOLOGY ELECTRICITY DISTRIBUTION CO LTD
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Patent Information

Application Number
CN202520152151.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-22
Publication Date
2025-12-23
Estimated Expiration
2035-01-22

AI Technical Summary

Technical Problem

During the installation of existing electromechanical equipment, the shock absorption effect of the buffer device is not good, resulting in large impacts and height deviations when the equipment is placed, which affects the installation accuracy.

Method used

The device employs components such as air cylinders, airbags, springs, and electric push rods. Damping fluid is used to slow down the descent speed of the equipment. The height and orientation of the equipment are adjusted by a laser emitter and electric push rods. The precise positioning of the equipment is achieved by using a motor and bevel gear pairs.

Benefits of technology

It effectively reduces the impact during equipment placement, minimizes height deviation, and improves the accuracy and convenience of equipment installation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an intelligent balancing stand for electromechanical equipment installation, and relates to the technical field of electromechanical equipment installation. Through holes are formed in the left side and the right side of the annular wall of the fixed cylinder; the blocking plate is embedded in the fixed cylinder; the air bags penetrate through the top plate of the inflator in a screwed mode through threads and are connected with the inflator in a penetrating mode; the air cylinder and the first connecting rod are sleeved with the spring. Rubber pads are fixed to the upper ends of the electric push rods. A laser transmitter is fixed to the left side of the annular wall of the leftmost rubber pad. The laser receiver is fixed to the left side of the upper surface of the base through a second connecting rod and connected with an external power source. The descending speed of the electromechanical equipment when the electromechanical equipment is placed is reduced, and the electromechanical equipment slowly rises under the action of the spring, so that the effect of reducing impact is achieved; and the height of the electromechanical equipment is finely adjusted, so that the height of the electromechanical equipment is matched with equipment lifted by the lifting appliance, the height deviation caused by pressing of the buffer device is reduced, and the practicability is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to electromechanical equipment installation technical field, concretely relates to a kind of intelligent balance platform of electromechanical equipment installation. BACKGROUND

[0002] The electromechanical equipment needs to keep balance state in the installation process, and the electromechanical equipment is generally hoisted to the installation base by sling in the installation process, since vibration will be generated in the hoisting process, buffering device such as buffer pad is installed on the balance platform to slow down the vibration, but the damping effect of this buffering device is not good, the impact is still greater when the electromechanical equipment is placed, and the gravity of the electromechanical equipment will cause the buffer pad to appear slight deformation, so that the height and angle of the balance platform deviate, therefore, the present application provides an intelligent balance platform for electromechanical equipment installation. SUMMARY

[0003] The utility model discloses a kind of intelligent balance platform for electromechanical equipment installation, slow down the speed of electromechanical equipment placement, under the action of spring, electromechanical equipment slowly rises, play the role of slow impact;The height of electromechanical equipment is fine-tuned, so that the height of electromechanical equipment cooperates with the equipment hoisted by lifting tool, reduces the height deviation caused by buffering device being pressed, improves practicality.

[0004] To achieve the above object, the utility model adopts the following technical scheme: it contains base and fixed plate;Base is equipped with fixed plate;

[0005] It also contains:

[0006] Air cylinder, the air cylinder is fixed on the base;

[0007] Fixed cylinder, the fixed cylinder is inserted and fixed in the air cylinder, and the ring wall of the fixed cylinder is provided with through holes on the left and right sides;

[0008] Plug plate, the plug plate is embedded in the fixed cylinder;

[0009] No. 1 connecting rod, the no. 1 connecting rod is fixed on the plug plate, and the upper end of the no. 1 connecting rod is connected with the fixed plate;

[0010] Air bag, the number of air bags is two, and they are respectively threaded and connected to the top plate of the air cylinder, and the air bag is connected with the air cylinder;

[0011] Spring, the spring is sleeved on the air cylinder and no. 1 connecting rod, the bottom of the spring is fixed on the base, and the upper end of the spring is fixed on the fixed plate;

[0012] The electric push rods are in annular distribution and are fixed on the base respectively, the electric push rods are connected with external power supply, the upper end of the electric push rod is fixed with a rubber pad, the left side of the ring wall of the rubber pad on the leftmost side is fixed with a laser emitter, and the laser emitter is connected with external power supply.

[0013] The laser receiver is fixed on the upper surface of the base through the second connecting rod, and the laser receiver is connected with external power supply.

[0014] Preferably, the fixed plate is provided with a moving plate, the ring wall of the moving plate is fixed with the third connecting rod in front and back, the third connecting rod is provided in "L" shape structure, the bottom of the third connecting rod is fixed with a moving block, the moving block is provided with a screw rod through threaded splicing, the both ends of the screw rod are connected with the base through bearing seat, the left end of the screw rod is connected with a rotating shaft through a bevel gear pair, a double-head motor is fixed on the base, the double-head motor is connected with external power supply, and the output shaft of the double-head motor is connected with the rotating shaft.

[0015] Preferably, the upper surface of the fixed plate is provided with a sliding groove, a plurality of balls are rollingly embedded in the sliding groove, and the balls are abutted against the bottom of the moving plate.

[0016] Preferably, a plurality of sliding support mechanisms are arranged on the right side of the fixed plate and are arranged on the base; the sliding support mechanism comprises a support, a pulley and a fourth connecting rod; a plurality of pulleys are rotatably connected in the support through shafts and bearings, the upper end of the pulley is flush with the upper surface of the fixed plate; and the support is fixed on the base through the fourth connecting rod.

[0017] Preferably, a rotating motor is fixed on the moving plate, the output shaft of the rotating motor is connected with a placing plate through a shaft, and the rotating motor is connected with external power supply.

[0018] Preferably, an annular slide rail is fixed on the moving plate, a plurality of sliding blocks are slidingly arranged on the annular slide rail, and the sliding blocks are fixed with the placing plate through the fifth connecting rod.

[0019] Compared with the prior art, the utility model has the advantages that:

[0020] 1. The speed of the electromechanical equipment is slowed down when being placed, the electromechanical equipment slowly rises under the action of the spring, and the impact is reduced;

[0021] 2. The height of the electromechanical equipment is finely adjusted, the height of the electromechanical equipment is matched with the equipment hoisted by the lifting tool, the height deviation caused by the buffer device being pressed is reduced, and the practicability is improved. DRAWINGS

[0022] Figure 1 It is a structural schematic diagram of the utility model.

[0023] Figure 2Southwest isometric view of the utility model.

[0024] Figure 3 Southwest isometric view of the utility model. Figure 2 A part enlarged view in

[0025] Figure 4 Southwest isometric view of the utility model.

[0026] Figure 5 Southwest isometric view of the utility model. Figure 4 B part enlarged view in

[0027] Figure 6 Southwest isometric view of the utility model.

[0028] Explanation of reference signs:

[0029] Base 1, fixed plate 2, air cylinder 3, fixed cylinder 4, blocking plate 5, first connecting rod 6, air bag 7, spring 8, electric push rod 9, rubber pad 10, laser emitter 11, laser receiver 12, moving plate 13, third connecting rod 14, moving block 15, screw rod 16, bevel gear pair 17, double-head motor 18, rotating shaft 19, ball 20, sliding support mechanism 21, support 21-1, pulley 21-2, fourth connecting rod 21-3, rotating motor 22, placing plate 23, annular slide rail 24, sliding block 25, fifth connecting rod 26, second connecting rod 27. DETAILED DESCRIPTION

[0030] The technical solutions in the utility model will be described clearly and completely below with reference to the drawings, and the preferred embodiments in the description are only taken as examples, and all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0031] The specific embodiment adopts the following technical solutions:

[0032] Embodiment 1

[0033] Please refer to Figures 1-6 , and the embodiment 1 comprises a base 1 and a fixed plate 2; the base 1 is provided with the fixed plate 2;

[0034] It is characterized in that it further comprises:

[0035] Air cylinder 3, the air cylinder 3 is fixed on the base 1 through bolts;

[0036] Fixed cylinder 4, the fixed cylinder 4 is inserted and fixed in the air cylinder 3, and the ring wall of the fixed cylinder 4 is provided with through holes on the left and right;

[0037] Blocking plate 5, the blocking plate 5 is embedded in the fixed cylinder 4;

[0038] The first connecting rod 6 is fixed on the baffle plate 5 by bolts, and the upper end of the first connecting rod 6 is connected with the fixed plate 2;

[0039] The air bag 7 is provided in two numbers, and is threadedly connected to the top plate of the air cylinder 3, and the air bag 7 is connected with the air cylinder 3;

[0040] The spring 8 is sleeved on the air cylinder 3 and the first connecting rod 6, the bottom of the spring 8 is fixed on the base 1, and the upper end of the spring 8 is fixed on the fixed plate 2;

[0041] The electric push rod 9 is provided in a plurality of numbers, and is fixed on the base 1 in a ring shape by bolts; the electric push rod 9 is connected with an external power supply, and the specific type of the electric push rod 9 is directly purchased, installed and used according to actual use requirements; the upper end of the electric push rod 9 is fixed with a rubber pad 10 by bolts; the ring wall left side of the leftmost rubber pad 10 is fixed with a laser emitter 11 by bolts, the laser emitter 11 is connected with an external power supply, and the specific type of the laser emitter 11 is directly purchased, installed and used according to actual use requirements;

[0042] The laser receiver 12 is fixed on the upper surface left side of the base 1 through the second connecting rod 27, the laser receiver 12 is connected with an external power supply, and the specific type of the laser receiver 12 is directly purchased, installed and used according to actual use requirements.

[0043] Embodiment 2:

[0044] Please refer to Figures 1-5 On the basis of embodiment 1, the fixed plate 2 is provided with a moving plate 13, the ring wall front and back of the moving plate 13 are fixed with third connecting rods 14 by bolts, and the third connecting rods 14 are provided in an “L” shape structure; the bottom of the third connecting rod 14 is fixed with a moving block 15 by bolts, the moving block 15 is provided with a screw rod 16 by threadedly inserting, the two ends of the screw rod 16 are connected with the base 1 through bearing seats; the left end of the screw rod 16 is connected with a rotating shaft 19 through a bevel gear pair 17; a double-head motor 18 is fixed on the base 1 by bolts, the double-head motor 18 is connected with an external power supply, and the specific type of the double-head motor 18 is directly purchased, installed and used according to actual use requirements; the output shafts of the double-head motor 18 are connected with the rotating shaft 19; the upper surface of the fixed plate 2 is provided with a sliding groove, a plurality of rolling balls 20 are rollingly embedded in the sliding groove, and the rolling balls 20 abut against the bottom of the moving plate 13;

[0045] Several sliding support mechanisms 21 are located on the right side of the fixed plate 2 and are mounted on the base 1. Each sliding support mechanism 21 includes: a bracket 21-1, pulleys 21-2, and a fourth connecting rod 21-3. Several pulleys 21-2 are spun into the bracket 21-1 via shafts and bearings. The upper ends of the pulleys 21-2 are flush with the upper surface of the fixed plate 2. The bracket 21-1 is fixed to the base 1 via the fourth connecting rod 21-3.

[0046] A rotating motor 22 is fixed to the movable plate 13 by bolts. The output shaft of the rotating motor 22 is connected to the placement plate 23 via a shaft. The rotating motor 22 is connected to an external power supply. The specific model of the rotating motor 22 is purchased and installed directly from the market according to the actual usage requirements. A circular slide rail 24 is fixed to the movable plate 13 by bolts. Several sliders 25 are slidably mounted on the circular slide rail 24. The sliders 25 are fixed to the placement plate 23 via a No. 5 connecting rod 26.

[0047] When using this utility model, the fixed cylinder 4 and the air cylinder 3 are filled with damping fluid; the electromechanical equipment is placed on the placement plate 23, and the gravity generated by the placement of the electromechanical equipment will press down the blocking plate 5. The damping fluid slows down the descent speed of the blocking plate 5. The damping fluid enters the air cylinder 3 through the through hole, the air bag 7 expands, and under the action of the spring 8, the fixed plate 2 slowly rebounds back to its original position.

[0048] Start the laser transmitter 11 and laser receiver 12, start the electric push rod 9, and drive the rubber pad 10 to rise. When the laser transmitter 11 and laser receiver 12 are aligned, the electric push rod 9 closes, so that the height of the electromechanical equipment matches the equipment hoisted by the lifting device, which facilitates the installation.

[0049] Based on the orientation of the electromechanical equipment, start the rotating motor 22 to make the placement plate 23 rotate, which in turn drives the electromechanical equipment to rotate, making the orientation of the electromechanical equipment easier to install; start the double-headed motor 18 to make the rotating shaft 19 rotate, which, under the action of the bevel gear pair 17, makes the screw 16 rotate, which drives the moving block 15 to move, which makes the third connecting rod 14 move, which drives the moving plate 13 to move to the right, making the electromechanical equipment extend to the right, which is convenient for installation.

[0050] Compared with the prior art, the beneficial effects of this utility model are:

[0051] 1. The gravity generated by the placement of the electromechanical equipment will press down the blocking plate 5. The damping fluid slows down the descent speed of the blocking plate 5. The damping fluid enters the air cylinder 3 through the through hole, the air bag 7 inflates, and under the action of the spring 8, the fixing plate 2 slowly rebounds back to its original position, which plays a role in reducing the impact.

[0052] 2. The laser transmitter 11 and the laser receiver 12 are started, the electric push rod 9 is started, the rubber pad 10 is lifted, when the laser transmitter 11 and the laser receiver 12 are matched, the electric push rod 9 is closed, the height of the electromechanical equipment is matched with the equipment hoisted by the sling, the height deviation caused by the compression of the buffer device is reduced, and the practicability is improved;

[0053] 3. According to the orientation of the electromechanical equipment, the rotating motor 22 is started, the placing plate 23 is rotated, the electromechanical equipment is rotated, and the orientation of the electromechanical equipment is convenient for installation;

[0054] 4. The double-head motor 18 is started, the rotating shaft 19 is rotated, under the action of the bevel gear pair 17, the screw rod 16 is rotated, the moving block 15 is moved, the No. 3 connecting rod 14 is moved, the moving plate 13 is moved right, the electromechanical equipment is moved right and extended, and installation is convenient.

[0055] For those skilled in the art, the technical solutions recorded in the foregoing embodiments can be modified, and equivalent replacement of part of the technical features, any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application should be included in the protection scope of the present application.

Claims

1. An intelligent balance platform for electromechanical equipment installation, comprising a base (1) and a fixed plate (2); the base (1) is provided with the fixed plate (2); characterized in that It also comprises: an air cylinder (3), which is fixed on the base (1); a fixed cylinder (4), which is inserted and fixed in the air cylinder (3), and the ring wall of the fixed cylinder (4) is provided with through holes on the left and right sides; a blocking plate (5), which is embedded in the fixed cylinder (4); a first connecting rod (6), which is fixed on the blocking plate (5), and the upper end of the first connecting rod (6) is connected with the fixed plate (2); an air bag (7), which is two in number and is threaded and rotatably connected to the top plate of the air cylinder (3), and the air bag (7) is connected with the air cylinder (3); a spring (8), which is sleeved on the air cylinder (3) and the first connecting rod (6), and the bottom of the spring (8) is fixed on the base (1), and the upper end of the spring (8) is fixed on the fixed plate (2); a plurality of electric push rods (9), which are annularly distributed and fixed on the base (1); the electric push rods (9) are connected with an external power source; the upper end of the electric push rod (9) is fixed with a rubber pad (10); the leftmost rubber pad (10) is fixed with a laser emitter (11) on the left side of the ring wall, and the laser emitter (11) is connected with an external power source; a laser receiver (12), which is fixed on the left side of the upper surface of the base (1) through a second connecting rod (27), and the laser receiver (12) is connected with an external power source.

2. The self-balancing platform of claim 1, wherein: The fixed plate (2) is provided with a moving plate (13), the ring wall of the moving plate (13) is fixed with a third connecting rod (14) on the front and back sides, and the third connecting rod (14) is arranged in an "L" shape; the bottom of the third connecting rod (14) is fixed with a moving block (15), a screw rod (16) is threaded and rotatably inserted in the moving block (15), and the two ends of the screw rod (16) are connected with the base (1) through bearing seats; the left end of the screw rod (16) is connected with a rotating shaft (19) through a bevel gear pair (17); a double-head motor (18) is fixed on the base (1), and the double-head motor (18) is connected with an external power source; the output shafts of the double-head motor (18) are connected with the rotating shaft (19).

3. The self-balancing platform of claim 2, wherein: The upper surface of the fixed plate (2) is provided with a sliding groove, a plurality of rolling balls (20) are embedded in the sliding groove, and the rolling balls (20) abut against the bottom of the moving plate (13).

4. The self-balancing platform of claim 1, wherein: A plurality of sliding support mechanisms (21) are arranged on the right side of the fixed plate (2), and the sliding support mechanisms (21) are arranged on the base (1); each of the sliding support mechanisms (21) comprises a bracket (21-1), a pulley (21-2), and a fourth connecting rod (21-3); a plurality of pulleys (21-2) are rotatably connected in the bracket (21-1) through shafts and bearings, and the upper ends of the pulleys (21-2) are arranged flush with the upper surface of the fixed plate (2); the bracket (21-1) is fixed on the base (1) through the fourth connecting rod (21-3).

5. The self-leveling platform of claim 1, wherein: A rotating motor (22) is fixed on the moving plate (13), an output shaft of the rotating motor (22) is connected with a placing plate (23) through a shaft, and the rotating motor (22) is connected with an external power supply.

6. The self-balancing platform of claim 5, wherein: A plurality of sliding blocks (25) are slidably arranged on a ring-shaped sliding rail (24) fixed on the moving plate (13), and the sliding blocks (25) are fixed with the placing plate (23) through No. 5 connecting rods (26).