Adjustable electromechanical support for electromechanical installation engineering and construction method thereof
By designing an adjustable electromechanical support structure, and utilizing a combination of threaded connections and limiting rods, the problems of high welding pollution, high labor costs, and low installation efficiency in existing technologies have been solved, achieving efficient and convenient installation of electromechanical equipment and improving the load-bearing capacity of the support.
Patent Information
- Application Number
- CN202310287668.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-03-23
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2043-03-23
AI Technical Summary
The welding connection method used in the installation of existing electromechanical equipment is highly polluting, has high labor costs, low installation efficiency, and is difficult to control in terms of flatness, resulting in insufficient load-bearing capacity of the support structure.
An adjustable electromechanical support is adopted, which uses a combination structure of crossbars, uprights, crossarms and telescopic rods. It uses threaded connections and limit rods to achieve movable plug-in connection, and combined with reinforcing plates to improve connection strength and adjustment accuracy, simplifying the installation process.
It enables efficient and convenient installation of electromechanical equipment, reduces workload, and improves installation accuracy and the load-bearing capacity of the bracket.
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Figure CN116085541B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of building engineering, in particular to an adjustable mechanical and electrical support for mechanical and electrical installation engineering and a construction method thereof. BACKGROUND
[0002] Mechanical and electrical equipment is a kind of equipment widely used in production and life, and a support is often used when installing mechanical and electrical equipment, which installs the mechanical and electrical equipment on the floor through the support fixed on the floor. In order to meet the installation and size requirements of the mechanical and electrical equipment, the support accessories are mostly made on site in the prior art of mechanical and electrical installation engineering, and the on-site welding installation method is adopted.
[0003] The prior art support and its installation method mainly have the following disadvantages: the welding connection method pollutes more, professional welders are needed for operation, the installation personnel are required to be higher, the labor cost is increased, the floor is made of concrete, the flatness deviation is large, the length of the vertical rod needs to be cut and adjusted on site, the work load of the installation personnel is increased, the installation efficiency is low, and the bearing capacity of the support for the mechanical and electrical equipment is affected. SUMMARY
[0004] In view of the deficiencies of the prior art, the present application provides an adjustable mechanical and electrical support for mechanical and electrical installation engineering and a construction method thereof, which solves the problems of installation efficiency, reduces the work intensity and difficulty.
[0005] To achieve the above purpose, the technical scheme is as follows: an adjustable mechanical and electrical support for mechanical and electrical installation engineering and a construction method thereof, comprising a horizontal rod, left and right sides of the horizontal rod are fixedly connected with connecting blocks, the bottom of the horizontal rod is connected with first sliding blocks, the bottom of the first sliding block is connected with a first threaded rod, the bottom of the first threaded rod is fixedly connected with a mounting block, the bottom of the mounting block is fixedly connected with a vertical rod, the front and rear ends of the vertical rod are fixedly connected with reinforcing plates, the inner sides of the vertical rod and the reinforcing plates are connected with cross beams, the cross beams are connected with telescopic rods, the outer wall of the cross beam is connected with a second mounting frame, the outer wall of the cross beam is connected with a first mounting frame, the outer wall of the cross beam is connected with a first sliding frame, the outer wall of the cross beam is connected with a second sliding frame, and the first sliding frame and the second sliding frame are provided with sliding grooves.
[0006] Preferably, the bottom of the connecting block is threaded and screwed with a fixing screw at the middle of the front and back ends.
[0007] Preferably, the top of the crossbar is threaded and provided with uniformly distributed screw holes, and the screw holes are screwed with the first threaded rod.
[0008] Preferably, the side of the cross arm adjacent to the stand is threaded and slidingly connected with a limiting rod, and the limiting rod is threaded and slidingly connected with the stand and the reinforcing plate.
[0009] Preferably, the left and right sides of the second mounting frame are fixedly connected with rubber pads.
[0010] Preferably, the front and back ends of the first and second mounting frames are fixedly connected with uniformly distributed limiting frames, and the front and back ends of the first and second mounting frames are threaded and slidingly connected with limiting blocks, and the limiting blocks are slidingly connected with the limiting frames.
[0011] Preferably, the top of the first and second sliding frames is provided with a fixed plate, the bottom of the fixed plate is fixedly connected with a second sliding block, the top of the fixed plate is fixedly connected with a limiting arc, the middle of the top of the limiting arc is threaded and screwed with a second threaded rod, and the bottom of the second threaded rod is provided with a clamping block.
[0012] Preferably, a construction method of an adjustable mechanical and electrical support for mechanical and electrical installation engineering comprises the following steps:
[0013] Step 1: Place the crossbar and the connecting block on the floor, and fix the crossbar and the connecting block on the floor by the fixing screw;
[0014] Step 2: Thread and screw the mounting block on the stand with the first threaded rod and the first sliding block, adjust the distance between the left and right stands, and when the distance is determined, rotate the stand to fix the first threaded rod on the crossbar through the threaded hole;
[0015] Step 3: According to the position of the placed air pipe or pipeline, fix the cross arm and the telescopic rod on the stand through the limiting rod, place the first mounting frame, the second mounting frame, the first sliding frame and the second sliding frame according to the distance between the stands, and insert the limiting block into the limiting frame;
[0016] Step 4: Slide the second sliding block on the fixed plate into the sliding groove, pass the pipeline out of the limiting arc, rotate the second threaded rod, and clamp the pipeline with the second threaded rod and the clamping block;
[0017] Step 5: Adjust the distance between the two crossbars through the limiting rod.
[0018] Working principle: the cross rod and the connecting block are placed on the floor, the cross rod and the connecting block are fixed on the floor through fixing screws, the mounting block on the vertical rod is screwed with the first threaded rod and the first sliding block, the spacing of the left and right vertical rods is adjusted, when the spacing is determined, the first threaded rod is fixed on the cross rod by rotating the vertical rod, according to the position of the placed air pipe or pipeline, the cross arm and the telescopic rod are fixed on the vertical rod through the limiting rod, according to the spacing between the vertical rods, the first mounting frame, the second mounting frame, the first sliding frame and the second sliding frame are placed, the limiting block is inserted into the limiting frame, the second sliding block on the fixed plate is slid into the sliding groove, the pipeline is passed out of the limiting arc, the second threaded rod is rotated, the second threaded rod and the clamping block are driven to clamp the pipeline, and the spacing between the two cross rods is adjusted through the limiting rod.
[0019] The application provides an adjustable electromechanical support for electromechanical installation engineering and a construction method thereof.
[0020] 1、The application realizes the movable insertion of the vertical rod and the cross arm through the limiting rod by arranging the uniformly distributed holes on the vertical rod and the through hole in the cross arm, the connection is convenient and the operation is simple, the longitudinal height and the horizontal degree of the cross arm can be adjusted, the adjustment precision is high, and the connection strength is also improved through the reinforcing plate.
[0021] 2、The application inserts the limiting block into the limiting frame, slides the second sliding block on the fixed plate into the sliding groove, passes the pipeline out of the limiting arc, rotates the second threaded rod, drives the second threaded rod and the clamping block to clamp the pipeline, and reduces the working strength of the installation personnel.
[0022] 3、The application is screwed with the first threaded rod and the first sliding block through the mounting block on the vertical rod, the spacing of the left and right vertical rods is adjusted, when the spacing is determined, the first threaded rod is fixed on the cross rod by rotating the vertical rod, the cross arm and the telescopic rod are fixed on the vertical rod through the limiting rod, and therefore the connection stability and the positioning precision of the insertion part are improved. DETAILED DESCRIPTION
[0023] Figure 1 It is a perspective view of the application;
[0024] Figure 2 It is a first sliding block schematic view of the application;
[0025] Figure 3 It is a second mounting frame schematic view of the application;
[0026] Figure 4 It is a first sliding frame schematic view of the application;
[0027] Figure 5 It is a storage schematic view of the application.
[0028] The components are as follows: 1. Crossbar; 2. Threaded hole; 3. Connecting block; 4. Fixing screw; 5. Upright pole; 6. Reinforcing plate; 7. First slider; 8. First threaded rod; 9. Mounting block; 10. Crossbeam; 11. Telescopic rod; 12. Limiting rod; 13. First mounting frame; 14. Second mounting frame; 15. Limiting block; 16. Limiting frame; 17. Rubber pad; 18. First sliding frame; 19. Second sliding frame; 20. Slide groove; 21. Fixing plate; 22. Second slider; 23. Limiting arc; 24. Second threaded rod; 25. Clamping block. Detailed Implementation
[0029] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0030] Example 1:
[0031] like Figures 1-5 As shown, this embodiment of the invention provides an adjustable electromechanical support for electromechanical installation engineering, including a crossbar 1. Connecting blocks 3 are fixedly connected to both the left and right sides of the crossbar 1. First sliders 7 are slidably connected through and to the bottom center of the crossbar 1 on both the left and right sides. A first threaded rod 8 is threadedly connected through and to the bottom center of the first slider 7. An installation block 9 is fixedly connected to the bottom of the first threaded rod 8. A vertical pole 5 is fixedly connected to the bottom of the installation block 9. Reinforcing plates 6 are fixedly connected to the middle of both the front and rear ends of the vertical pole 5. A crossbeam 10 is slidably connected through and to the middle of the inner sides of the vertical pole 5 and the reinforcing plate 6. A telescopic rod 11 is slidably connected between the crossbeams 10. A second mounting frame 14 is slidably connected to the top center of the outer wall of the upper crossbeam 10. The upper left crossbeam... The top left and top right positions of the outer wall of the crossarm 10 are slidably connected to the first mounting frame 13. The middle top position of the outer wall of the lower crossarm 10 is slidably connected to the first sliding frame 18. The top left and top right positions of the outer wall of the lower left crossarm 10 are slidably connected to the second sliding frame 19. The top middle positions of the first sliding frame 18 and the second sliding frame 19 are both provided with sliding grooves 20. The crossarm 1 and the connecting block 3 are placed on the floor slab and fixed to the floor slab by fixing screws 4. The mounting block 9 on the upright 5 is threadedly connected to the first threaded rod 8 and the first slider 7. The distance between the left and right uprights 5 is adjusted. After the distance is determined, the upright 5 is rotated so that the first threaded rod 8 is fixed to the crossarm 1 through the threaded hole 2.
[0032] The middle positions of the top of the cross rod 1 are penetrated and uniformly distributed with threaded holes 2, and the threaded holes 2 are threadedly connected with the first threaded rods 8.
[0033] The middle positions of the top of the cross rod 1 are penetrated and uniformly distributed with threaded holes 2, and the threaded holes 2 are threadedly connected with the first threaded rods 8.
[0034] The positions adjacent to the vertical rods 5 of the cross arms 10 are penetrated and slidingly connected with the limiting rods 12, and the limiting rods 12 are penetratingly and slidingly connected with the vertical rods 5 and the reinforcing plates 6, the spacing between the two cross arms 10 is adjusted through the limiting rods 12, the vertical rods 5 and the cross arms 10 are movably inserted through the limiting rods 12 by arranging uniformly distributed holes on the vertical rods 5 and setting through holes in the cross arms, the connection is convenient and the operation is simple, the longitudinal height and the horizontal degree of the cross arms 10 can be adjusted with high adjustment precision, and the connection strength is also improved through the reinforcing plates 6.
[0035] The left and right positions of the second mounting frame 14 are fixedly connected with rubber pads 17.
[0036] The bottom positions of the front and rear ends of the first mounting frame 13 and the second mounting frame 14 are fixedly connected with uniformly distributed limiting frames 16, the bottom positions of the front and rear ends of the first mounting frame 13 and the second mounting frame 14 are penetratingly and slidingly connected with limiting blocks 15, and the limiting blocks 15 are slidingly connected with the limiting frames 16, the cross arms 10 and the telescopic rods 11 are fixed on the vertical rods 5 through the limiting rods 12 according to the positions of the placed air pipes or pipelines, the first mounting frame 13, the second mounting frame 14, the first sliding frame 18 and the second sliding frame 19 are placed according to the spacing between the vertical rods 5, and the limiting blocks 15 are inserted into the limiting frames 16.
[0037] The top middle positions of the first sliding frame 18 and the second sliding frame 19 are provided with fixed plates 21, the bottom positions of the two sides of the fixed plates 21 are fixedly connected with second sliding blocks 22, the second sliding blocks 22 are slidingly connected with sliding grooves 20, the top positions of the fixed plates 21 are fixedly connected with limiting arcs 23, the top middle positions of the limiting arcs 23 are penetratingly and threadedly connected with second threaded rods 24, the bottom positions of the second threaded rods 24 are provided with clamping blocks 25, the second sliding blocks 22 on the fixed plates 21 are slid into the sliding grooves 20, the pipelines are penetrated out of the limiting arcs 23, the second threaded rods 24 are rotated to drive the second threaded rods 24 and the clamping blocks 25 to clamp the pipelines.
[0038] Embodiment two:
[0039] The construction method of the adjustable electromechanical support for electromechanical installation engineering provided by the embodiment of the application comprises the following steps:
[0040] Step 1: placing the cross rod 1 and the connecting block 3 on the floor, and fixing the cross rod 1 and the connecting block 3 on the floor through the fixing screws 4;
[0041] Step 2: thread the mounting block 9 on the upright 5 with the first threaded rod 8 and the first sliding block 7, adjust the distance between the left and right uprights 5, and when the distance is determined, rotate the upright 5 so that the first threaded rod 8 is fixed on the crossbar 1 through the threaded hole 2;
[0042] Step 3: according to the position of the air pipe or pipe, fix the cross arm 10 and the telescopic rod 11 on the upright 5 through the limiting rod 12, place the first mounting frame 13, the second mounting frame 14, the first sliding frame 18 and the second sliding frame 19 according to the distance between the uprights 5, and insert the limiting block 15 into the limiting frame 16;
[0043] Step 4: slide the second sliding block 22 on the fixed plate 21 into the sliding groove 20, pass the pipe out of the limiting arc 23, rotate the second threaded rod 24 to drive the second threaded rod 24 and the clamping block 25 to clamp the pipe;
[0044] Step 5: adjust the distance between the two cross arms 10 through the limiting rod 12.
[0045] Although embodiments of the present application have been shown and described, it is to be understood that various modifications, substitutions, replacements and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. An adjustable mechanical and electrical bracket for mechanical and electrical installation works, comprising a crossbar (1), characterised in that: The left and right sides of the crossbar (1) are fixedly connected with connecting blocks (3), the bottom middle left and right sides of the crossbar (1) are penetrated and slidably connected with first sliding blocks (7), the bottom middle position of the first sliding block (7) is penetrated and threadedly connected with a first threaded rod (8), the bottom position of the first threaded rod (8) is fixedly connected with a mounting block (9), the bottom position of the mounting block (9) is fixedly connected with a vertical rod (5), the front and rear ends of the vertical rod (5) are fixedly connected with reinforcing plates (6), the inner middle positions of the vertical rod (5) and the reinforcing plates (6) are penetrated and slidably connected with crosspieces (10), the positions between the crosspieces (10) are penetrated and slidably connected with telescopic rods (11), the middle top positions of the outer walls of the crosspieces (10) are slidably connected with second mounting frames (14), the top left side of the outer wall of the crosspiece (10) and the top right side of the outer wall of the crosspiece (10) are slidably connected with first mounting frames (13), the middle top positions of the outer walls of the crosspieces (10) are slidably connected with first sliding frames (18), the top left side of the outer wall of the crosspiece (10) and the top right side of the outer wall of the crosspiece (10) are slidably connected with second sliding frames (19), the middle top positions of the first sliding frame (18) and the second sliding frame (19) are penetrated and provided with sliding grooves (20). The middle positions of the bottom front and rear ends of the connecting block (3) are penetrated and threadedly connected with fixed screws (4). The middle position of the top of the crossbar (1) is penetrated and provided with uniformly distributed threaded holes (2), and the threaded holes (2) are threadedly connected with the first threaded rod (8). The side positions adjacent to the crosspieces (10) and the vertical rod (5) are penetrated and slidably connected with limiting rods (12), and the limiting rods (12) are penetrated and slidably connected with the vertical rod (5) and the reinforcing plates (6). The front and rear ends of the first mounting frame (13) and the second mounting frame (14) are fixedly connected with uniformly distributed limiting frames (16), and the front and rear ends of the first mounting frame (13) and the second mounting frame (14) are penetrated and slidably connected with limiting blocks (15), and the limiting blocks (15) are slidably connected with the limiting frames (16). The middle positions of the top of the first sliding frame (18) and the second sliding frame (19) are provided with fixed plates (21), the two side positions of the bottom of the fixed plate (21) are fixedly connected with second sliding blocks (22), the second sliding blocks (22) are slidably connected with the sliding grooves (20), the top of the fixed plate (21) is fixedly connected with a limiting arc (23), the middle position of the top of the limiting arc (23) is penetrated and threadedly connected with a second threaded rod (24), and the bottom position of the second threaded rod (24) is provided with a clamping block (25).
2. An adjustable mechanical and electrical support for mechanical and electrical installation works according to claim 1, characterized in that: The left and right side positions of the second mounting frame (14) are fixedly connected with rubber pads (17).
3. The construction method of an adjustable mechanical and electrical support for mechanical and electrical installation engineering according to claim 1, characterized in that: The steps include: Step 1: Put the crossbar (1) and the connecting block (3) on the floor, and fix the crossbar (1) and the connecting block (3) on the floor by the fixing screw (4); Step 2: Screw the mounting block (9) on the vertical rod (5) with the first threaded rod (8) and the first sliding block (7), adjust the distance between the left and right vertical rods (5), and then rotate the vertical rod (5) to fix the first threaded rod (8) on the crossbar (1) through the threaded hole (2); Step 3: According to the position of the air pipe or pipeline, fix the cross arm (10) and the telescopic rod (11) on the vertical rod (5) through the limiting rod (12), and place the first mounting frame (13), the second mounting frame (14), the first sliding frame (18) and the second sliding frame (19) according to the distance between the vertical rods (5), and insert the limiting block (15) into the limiting frame (16); Step 4: Slide the second sliding block (22) on the fixed plate (21) into the sliding groove (20), pass the pipeline out of the limiting arc (23), and rotate the second threaded rod (24) to drive the second threaded rod (24) and the clamping block (25) to clamp the pipeline; Step 5: Adjust the distance between the two cross arms (10) through the limiting rod (12).
Citation Information
Patent Citations
Comprehensive heavy detachable support for electromechanical pipeline
CN114636020A
Support for building electromechanical pipeline
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