A connecting structure of a mechanical and electrical pipe support
By using multi-directional screws and support mechanisms in the electromechanical pipeline support connection structure, the problem of inclined connection of pipelines in the air is solved, enabling flexible adjustment and efficient construction.
Patent Information
- Application Number
- CN202310784557.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-29
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2043-06-29
AI Technical Summary
During the installation of electromechanical pipelines, the pipelines are difficult to connect when tilted in the air, and need to be fixed on the ground and adjusted, which makes the operation cumbersome and affects the construction progress and quality inspection efficiency.
An electromechanical pipe support connection structure is adopted, including a mounting base, a docking plate, a support main plate and a clamping mechanism. By using a multi-directional screw and a support mechanism, and through the cooperation of a slider and a ball, the pipe can be flexibly adjusted and fixed.
It simplifies the pipeline connection process, improves construction efficiency, facilitates secondary adjustments and optimizations, and enhances the convenience of construction progress and quality inspection.
Smart Images

Figure CN116817027B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of pipe support, in particular to a connecting structure of a mechanical and electrical pipe support. BACKGROUND
[0002] The mechanical and electrical pipe is a pipeline system composed of power lines, signal lines, gas pipelines, heat conduction pipelines and the like, and is mainly used for arranging and connecting mechanical and electrical equipment to a certain pipeline system. The hanger, as a support structure of equipment, pipelines and electrical equipment, plays an important role in mechanical and electrical installation engineering, and is directly related to whether the entire system can normally operate and whether the safety of people's lives and property can be ensured. In addition, it also seriously affects the overall appearance of the project. Therefore, it is of great significance to reasonably select the type of support and the manufacturing and installation process. At present, the connecting mechanism of the mechanical and electrical pipe support generally adopts the form of bolt clamping, which has the advantages of simple structure, convenient disassembly and assembly, and can effectively prevent burning or thermal damage after being treated with fireproof paint. However, the structure still has some deficiencies in actual use.
[0003] In the actual installation process of the mechanical and electrical pipe, when the pipe is hoisted and connected in sections, the pipe is prone to tilt in the air, so the pipe needs to be fixed on the ground in advance before hoisting and connecting. However, the connecting nodes of the pipe cannot be properly connected, so the position of the pipe needs to be further adjusted. Specifically, the pipe needs to be fixed, and then the pipe needs to be fixed again after the connection is completed. This method is complicated, which not only slows down the construction progress, but also makes it difficult to adjust and optimize the position of the pipe in the subsequent use. In addition, it is not conducive for the construction management personnel to check the installation and connection quality of the pipe and timely rectify the quality problems.
[0004] In view of the above problems, the present application provides a connecting structure of a mechanical and electrical pipe support, which aims to facilitate the construction personnel to adjust the butt joint position of the mechanical and electrical pipe, increase the construction efficiency, and enable the position of the pipe to be adjusted and optimized twice in the subsequent use, and make corresponding pipe layout and adjustment. SUMMARY
[0005] In view of the above problems, the present application provides a connecting structure of a mechanical and electrical pipe support, which aims to facilitate the construction personnel to adjust the butt joint position of the mechanical and electrical pipe, increase the construction efficiency, and enable the position of the pipe to be adjusted and optimized twice in the subsequent use, and make corresponding pipe layout and adjustment.
[0006] The utility model provides a connecting structure of electromechanical pipeline support, including mounting seat and butt joint board and support main plate and support auxiliary board, the inside of mounting seat is connected with four connecting seat, the inside of butt joint board is installed with butt joint mechanism, butt joint mechanism is matched with connecting seat, the top of support main plate is installed with clamping mechanism and support mechanism,
[0007] The clamping mechanism includes an installation plate, the number of the installation plate is two, two The installation plate is fixedly connected with the support main plate, the inside of the installation plate is rotatably connected with a multi-directional screw rod, the outer wall of the multi-directional screw rod is provided with three groups of bidirectional threads, the outer wall of each thread of the multi-directional screw rod is threadedly connected with a sliding block, the sliding block is slidably connected with the installation plate, and the top of the sliding block is fixedly connected with a clamping jaw.
[0008] The support mechanism includes a housing and a supporting block, the housing and the supporting block are fixedly connected with the support main plate, the housing is rotatably connected with a movement shaft, one end of the movement shaft is fixedly connected with a gear, the outer wall of the movement shaft is provided with a synchronous belt two, the movement shaft and the multi-directional screw rod are drivingly connected through the synchronous belt two, the inside of the supporting block is slidably connected with a supporting seat, the inside of the supporting seat is rotatably connected with a plurality of ball bearings, one side of the supporting seat is fixedly connected with a connecting rod, one side of the connecting rod is fixedly connected with a rack, the rack and the gear are intermeshed, and the connecting rod and the supporting block are slidably connected.
[0009] Further, the top of the mounting seat is fixedly connected with four fixing seats, every two of the four fixing seats form a group, the inside of the two groups of fixing seats is rotatably connected with a driving screw rod and a driven screw rod respectively, and the outer walls of the driving screw rod and the driven screw rod are threadedly connected with the four connecting seats respectively.
[0010] Further, the two sides of the support main plate and the butt joint board are fixedly connected with bases, the bottom of two of the bases is fixedly connected with adjusting blocks, the top of the other two bases is fixedly connected with adjusting seats, the two adjusting blocks are slidably connected with the two adjusting seats respectively, and the adjusting blocks can be fixedly connected with the adjusting seats through bolts.
[0011] Further, the support auxiliary plate is fixedly connected with the support main plate through bolts, and the bottom of the support auxiliary plate is provided with a supporting mechanism.
[0012] The supporting mechanism includes a main seat and a clamping seat, and the main seat and the clamping seat are fixedly connected with the support auxiliary plate, one side of the main seat is hingedly connected with a supporting rod, the other end of the supporting rod is clamped in the inside of the clamping seat, the bottom of the main seat is fixedly connected with a limiting block one, one side of the supporting rod is fixedly connected with three limiting blocks two, and the number of the main seat and the clamping seat is three.
[0013] Further, the outer wall of the driving screw is provided with a synchronous belt I, the driving screw and the driven screw are drivingly connected through the synchronous belt I, the inside of the mounting seat is rotatably connected with a rotating shaft, one end of the rotating shaft is fixedly connected with a driving bevel gear, the outer wall of the driving screw is fixedly connected with a driven bevel gear, the driving bevel gear and the driven bevel gear are meshed with each other, the bottom of the rotating shaft is fixedly connected with a hand wheel, and the hand wheel is fixedly connected with the mounting seat through bolts.
[0014] Further, the docking mechanism comprises four adjusting screws, the four adjusting screws are rotatably connected to the inside of the docking plate, the outer walls of the four adjusting screws are all threadedly connected with movement blocks, the movement blocks are slidably connected with the docking plate, the top of each movement block is fixedly connected with a fixed plate, the inside of each fixed plate is rotatably connected with a rotating disc, the top of each rotating disc is fixedly connected with a connecting frame, one end of each connecting frame is fixedly connected with a connecting block, and four connecting blocks are fixedly connected with four connecting seats through bolts.
[0015] Further, the two multidirectional screws and one end of the four adjusting screws are all provided with internal hexagonal grooves, the two multidirectional screws are closely matched with the mounting plate, and the four adjusting screws are closely matched with the docking plate.
[0016] Further, the number of the shells and the supporting blocks is six, every three of the six shells and the supporting blocks form a group, two groups of the shells and the supporting blocks are located on the sides of the two mounting plates, and the number of the rotatable balls in the inside of each supporting seat is four.
[0017] Further, the top of the mounting seat is fixedly connected with a protective shell, and four fixed seats are located in the inside of the protective shell.
[0018] The beneficial effects of the present application are as follows:
[0019] (1) The connecting structure of the mechanical and electrical pipeline support can be used for inserting the upper internal hexagonal wrench into the inside of the multidirectional screw to rotate, releasing the clamping jaw from clamping the pipeline, and allowing the supporting seat to rise, so that the ball contacts the pipeline, the construction personnel can move the pipeline, the docking position of the pipeline is adjusted again, after the docking is completed, the multidirectional screw is rotated, the clamping jaw can clamp and fix the pipeline, and the ball is away from the pipeline, so that the contact friction force between the pipeline and the supporting block is increased, and the pipeline is effectively supported in cooperation with the supporting block. The connecting structure can release the pipeline from being fixed, the ball contacts the pipeline and rolls with the pipeline, the friction force of the pipeline is reduced, the construction personnel can greatly adjust the docking position of the mechanical and electrical pipeline, the labor degree of the workers is reduced, and the construction efficiency is improved.
[0020] (2) The connecting structure of the mechanical and electrical pipeline support, through the rotation of the hand wheel, the installation position of the connecting structure of the mechanical and electrical pipeline support can be finely adjusted, and the connecting frame can be rotated through the rotation of the rotating disc in the fixed plate, the construction personnel can change the angle of the connecting block by rotating the connecting frame, so that the threaded hole is consistent with the direction of the threaded hole of the connecting seat, so as to facilitate the connection with the connecting seat, in this way, when the embedded mounting seat is installed, the subsequent butt joint direction of the mechanical and electrical pipeline does not have to be considered, not only the construction progress is accelerated, but also the position of the pipeline can be adjusted and optimized again in the subsequent use, and corresponding pipeline layout and adjustment can be made.
[0021] (3) The connecting structure of the mechanical and electrical pipeline support, if the connecting structure is installed at the node of the cross pipeline, the support vice plate can be added, and the cross pipeline can be supported by the supporting mechanism, wherein the supporting rod is hinged, the supporting rod is clamped in the inside of the clamping seat, and the cross pipeline is supported by the limiting block two, this way increases the practicability and flexibility of the connecting structure of the mechanical and electrical pipeline support, and greatly increases the application range. BRIEF DESCRIPTION OF DRAWINGS
[0022] The application will be further described below in combination with the drawings and examples.
[0023] Figure 1 The structural schematic diagram provided by the application is shown in the figure;
[0024] Figure 2 The structural schematic diagram of the mounting seat part provided by the application is shown in the figure;
[0025] Figure 3 The sectional view of the mounting seat part provided by the application is shown in the figure;
[0026] Figure 4 The structural schematic diagram of the support main plate part provided by the application is shown in the figure;
[0027] Figure 5 The sectional view of the clamping mechanism part provided by the application is shown in the figure;
[0028] Figure 6 The structural schematic diagram of the bearing mechanism and clamping mechanism part provided by the application is shown in the figure;
[0029] Figure 7 The structural schematic diagram of the support vice plate part provided by the application is shown in the figure;
[0030] Figure 8 The structural schematic diagram of the butt joint plate part provided by the application is shown in the figure;
[0031] Figure 9 The sectional view of the butt joint plate part provided by the application is shown in the figure.
[0032] Fig. 1, mounting seat; 2, protective shell; 3, docking plate; 4, docking mechanism; 401, adjusting screw; 402, moving block; 403, fixed plate; 405, rotating disc; 406, connecting frame; 407, connecting block; 5, support auxiliary plate; 6, supporting mechanism; 601, main seat; 602, clamping seat; 603, limiting block one; 604, supporting rod; 605, limiting block two; 7, clamping mechanism; 701, mounting plate; 702, multidirectional screw; 703, sliding block; 704, clamping claw; 8, supporting mechanism; 801, shell; 802, supporting block; 803, supporting seat; 804, ball; 805, moving shaft; 806, gear; 807, synchronous belt two; 808, connecting rod; 809, rack; 9, base; 10, fixed seat; 11, driving screw; 12, driven screw; 13, synchronous belt one; 14, driving bevel gear; 15, driven bevel gear; 16, connecting seat; 17, rotating shaft; 18, hand wheel; 19, adjusting block; 20, adjusting seat; 21, support main plate. Embodiment
[0033] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the present application will be briefly introduced below in combination with the drawings and the description of the embodiments or the prior art. Obviously, the following description of the drawings structure is only some embodiments of the present application, and for those skilled in the art, other drawings can be obtained without creative labor. It should be noted that the description of these embodiment modes is used to help understand the present application, but does not constitute a limitation on the present application. Embodiment
[0034] As shown in FIGS. 1-9, the present application provides a kind of connection structure of electromechanical pipeline support, including mounting seat 1 and docking plate 3 and support main plate 21 and support auxiliary plate 5, four connecting seats 16 are slidably connected in the inside of mounting seat 1, docking plate 3 is provided with docking mechanism 4 in the inside, docking mechanism 4 is matched with connecting seat 16, clamping mechanism 7 and supporting mechanism 8 are installed on the top of support main plate 21;
[0035] The clamping mechanism 7 comprises two mounting plates 701, both of which are fixedly connected with the support main plate 21, the inside of each mounting plate 701 is rotatably connected with a multidirectional screw rod 702, the outer wall of the multidirectional screw rod 702 is provided with three groups of bidirectional threads, the outer wall of each thread of the multidirectional screw rod 702 is threadedly connected with a sliding block 703, the sliding block 703 is slidably connected with the mounting plate 701, the top of the sliding block 703 is fixedly connected with a clamping claw 704, by inserting a hexagonal wrench into the inside of the multidirectional screw rod 702 and rotating, the multidirectional screw rod 702 is driven to rotate, the sliding block 703 is slid in the inside of the mounting plate 701, the clamping claw 704 moves towards each other, and the electromechanical pipeline is clamped, the supporting mechanism 8 comprises a housing 801 and a supporting block 802, both of which are fixedly connected with the support main plate 21, the inside of the housing 801 is rotatably connected with a movement shaft 805, one end of the movement shaft 805 is fixedly connected with a gear wheel 806, the outer wall of the movement shaft 805 is provided with a synchronous belt two 807, the movement shaft 805 is drivingly connected with the multidirectional screw rod 702 through the synchronous belt two 807, the inside of the supporting block 802 is slidably connected with a supporting seat 803, the inside of the supporting seat 803 is rotatably connected with a plurality of ball bearings 804, one side of the supporting seat 803 is fixedly connected with a connecting rod 808, one side of the connecting rod 808 is fixedly connected with a rack 809, the rack 809 is meshed with the gear wheel 806, the connecting rod 808 is slidably connected with the supporting block 802, by the transmission of the synchronous belt two 807, the movement shaft 805 and the gear wheel 806 are driven to rotate, by the meshing of the gear wheel 806 and the rack 809, the supporting seat 803 is slid and lowered in the inside of the supporting block 802, at this time, the electromechanical pipeline is fixed by the clamping claw 704 and supported by the supporting block 802, and the pipeline can be effectively prevented from tilting or falling during the hoisting process.
[0036] The top of the mounting seat 1 is fixedly connected with four fixing seats 10, every two of the four fixing seats 10 form a group, the inner parts of the two groups of fixing seats 10 are rotationally connected with a driving screw rod 11 and a driven screw rod 12 respectively, the outer walls of the driving screw rod 11 and the driven screw rod 12 are threadedly connected with four connecting seats 16 respectively, the top of the mounting seat 1 is fixedly connected with a protective shell 2, the four fixing seats 10 are all located inside the protective shell 2, the driving screw rod 11 and the driven screw rod 12 can be protected by the protective shell 2, the outer wall of the driving screw rod 11 is provided with a synchronous belt one 13, the driving screw rod 11 and the driven screw rod 12 are drivingly connected through the synchronous belt one 13, the inside of the mounting seat 1 is rotationally connected with a rotating shaft 17, one end of the rotating shaft 17 is fixedly connected with a driving bevel gear 14, the outer wall of the driving screw rod 11 is fixedly connected with a driven bevel gear 15, the driving bevel gear 14 and the driven bevel gear 15 are mutually engaged, the bottom of the rotating shaft 17 is fixedly connected with a hand wheel 18, the hand wheel 18 is fixedly connected with the mounting seat 1 through bolts, the hand wheel 18 and the mounting seat 1 are fixed by the bolts, the fixing of the connecting seat 16 can be guaranteed, the butt joint mechanism 4 comprises four adjusting screw rods 401, the four adjusting screw rods 401 are all rotationally connected inside the butt joint plate 3, the outer walls of the four adjusting screw rods 401 are all threadedly connected with movement blocks 402, the movement blocks 402 are slidingly connected with the butt joint plate 3, the top of each movement block 402 is fixedly connected with a fixing plate 403, the inside of each fixing plate 403 is rotationally connected with a rotating disc 405, the top of each rotating disc 405 is fixedly connected with a connecting frame 406, one end of each connecting frame 406 is fixedly connected with a connecting block 407, the four connecting blocks 407 are all fixedly connected with the four connecting seats 16 through bolts, the two multi-directional screw rods 702 and one end of the four adjusting screw rods 401 are all provided with internal hexagonal grooves, the two multi-directional screw rods 702 are closely matched with the mounting plate 701, the four adjusting screw rods 401 are closely matched with the butt joint plate 3, without the help of an internal hexagonal wrench, the multi-directional screw rod 702 and the adjusting screw rod 401 will not rotate, by rotating the hand wheel 18, the driving bevel gear 14 and the driven bevel gear 15 are engaged, thereby driving the driving screw rod 11 to rotate, at the same time, by the synchronous belt one 13, the driven screw rod 12 can be rotated, the rotation of the driving screw rod 11 and the driven screw rod 12 can simultaneously drive the four connecting seats 16 to move synchronously, thereby the installation position of the connecting structure of the electromechanical pipeline support can be finely adjusted, by the cooperation of the rotatable connecting frame 406, when the pre-buried mounting seat 1 is installed, the butt joint direction of the subsequent electromechanical pipeline does not have to be considered, not only the construction progress is accelerated, but also the position of the pipeline can be secondarily adjusted and optimized in the subsequent use, the corresponding pipeline layout and adjustment can be made.
[0037] In the embodiment, the synchronous belt two 807 is connected with the multi-directional screw rod 702 and the movement shaft 805 through a belt wheel, the synchronous belt one 13 is connected with the driving screw rod 11 and the driven screw rod 12 through a belt wheel, which is prior art and will not be described here.
[0038] The two sides of the support main plate 21 are fixedly connected with the butt joint plate 3, and the bottoms of the two bases 9 are fixedly connected with the adjusting blocks 19, and the tops of the other two bases 9 are fixedly connected with the adjusting seats 20, the two adjusting blocks 19 are slidably connected with the two adjusting seats 20 respectively, and the adjusting block 19 can be fixedly connected with the adjusting seat 20 through a bolt, the two adjusting blocks 19 are slidably inserted into the interiors of the two adjusting seats 20 respectively, and the height of the adjusting block 19 in the interior of the adjusting seat 20 can be adjusted according to the size of the electromechanical pipeline, and then the adjusting block 19 is fixed with the adjusting seat 20 through a bolt, so that the connection of the butt joint plate 3 and the support main plate 21 is completed.
[0039] The support auxiliary plate 5 is fixedly connected with the support main plate 21 through a bolt, the bottom of the support auxiliary plate 5 is provided with the supporting mechanism 6, the supporting mechanism 6 comprises the main seat 601 and the clamping seat 602, the main seat 601 and the clamping seat 602 are fixedly connected with the support auxiliary plate 5, one side of the main seat 601 is hingedly connected with the supporting rod 604, the other end of the supporting rod 604 is clamped in the interior of the clamping seat 602, the bottom of the main seat 601 is fixedly connected with the limiting block one 603, the limiting block one 603 can prevent the opening angle of the supporting rod 604 from being too large, one side of the supporting rod 604 is fixedly connected with the three limiting blocks two 605, the intersecting pipelines can be supported through the limiting blocks two 605, the number of the main seat 601 and the clamping seat 602 is three, if the connecting structure of the electromechanical pipeline support is installed at the node of the intersecting pipelines, the support auxiliary plate 5 can also be installed at the bottom of the support main plate 21 through a bolt, after the intersecting pipelines are installed, the supporting rod 604 is clamped in the upper interior of the clamping seat 602 through the hinged supporting rod 604, and the practicability and flexibility of the connecting structure of the electromechanical pipeline support are improved, and the application range is greatly increased.
[0040] The number of the shell 801 and the supporting block 802 is six, every three of the six shells 801 and supporting blocks 802 form a group, the two groups of shells 801 and supporting blocks 802 are located at the sides of the two mounting plates 701 respectively, and the number of the rolling balls 804 rotating in the interior of each supporting seat 803 is four, the rolling balls 804 can facilitate the movement of the pipelines by the construction personnel, greatly facilitate the construction personnel to adjust the butt joint positions of the electromechanical pipelines, and improve the butt joint efficiency of the pipelines.
[0041] Specific working mode:
[0042] In use, according to the arrangement positions and construction procedures of the electromechanical pipelines, the mounting seat 1 is pre-buried on the top of the factory building through a bolt, when the electromechanical pipelines need to be hoisted to butt joint two sections of electromechanical pipelines,
[0043] First, the electromechanical pipeline is placed on the bearing block 802 on the ground, and the ball 804 inside the bearing seat 803 can be used to adjust the front and rear position of the pipeline by the construction personnel, after adjustment, the upper internal hex wrench is inserted into the inside of the multi-directional screw rod 702 to rotate, which drives the multi-directional screw rod 702 to rotate, so that the sliding block 703 slides in the inside of the mounting plate 701, the clamping jaw 704 moves towards each other, so as to clamp the electromechanical pipeline, in addition, through the transmission of the synchronous belt two 807, the movement shaft 805 and the gear 806 are driven to rotate, and then the gear 806 is engaged with the rack 809, so that the bearing seat 803 slides and descends in the inside of the bearing block 802, at this time, the electromechanical pipeline is fixed by the clamping jaw 704 and supported by the bearing block 802, which can effectively prevent the pipeline from tilting or falling during hoisting;
[0044] Then connect the butt joint plate 3 with the support main plate 21, specifically: slide two adjusting blocks 19 into the inside of two adjusting seats 20 respectively, wherein, according to the size of the electromechanical pipeline, appropriately adjust the height of the adjusting block 19 in the adjusting seat 20, and then fix the adjusting block 19 with the adjusting seat 20 through the bolt, so as to complete the connection of the butt joint plate 3 with the support main plate 21;
[0045] Secondly, determine the butt joint direction of the electromechanical pipeline, and rotate the connecting block 407 through the rotation of the connecting block 407 in the inside of the fixed plate 403, so that the connecting block 407 can be rotated, the construction personnel can change the angle of the connecting block 407 by rotating the connecting block 407, so that the screw hole direction of the connecting block 407 is consistent with that of the connecting seat 16, so as to facilitate the connection with the connecting seat 16, then insert the internal hex wrench into the inside of the adjusting screw rod 401 to rotate, which drives the threaded connecting block 402 to slide in the inside of the butt joint plate 3, so as to adjust the position of the connecting block 407, so as to facilitate the connection with the connecting seat 16, rotate the hand wheel 18 to make the driving bevel gear 14 engage with the driven bevel gear 15, so as to drive the driving screw rod 11 to rotate, at the same time, the synchronous belt one 13 can make the driven screw rod 12 rotate, the rotation of the driving screw rod 11 and the driven screw rod 12 can simultaneously drive the four connecting seats 16 to move synchronously, thereby the installation position of the connecting structure of the electromechanical pipeline support can be finely adjusted, then the butt joint plate 3 is lifted together with the electromechanical pipeline, and the connecting block 407 is connected with the connecting seat 16, in this way, when embedding the mounting seat 1, it is not necessary to consider the butt joint direction of the subsequent electromechanical pipeline, which not only speeds up the construction progress, but also facilitates the secondary adjustment and optimization of the position of the pipeline in subsequent use, and can make corresponding pipeline layout and adjustment;
[0046] According to the butt joint of the mechanical and electrical pipeline, the inner hexagonal wrench can be inserted into the inside of the multi-directional screw rod 702 to rotate, the clamping jaw 704 can be released from clamping the pipeline, the supporting seat 803 can be lifted, the ball 804 can be contacted with the pipeline, the construction personnel can move the pipeline, the butt joint position of the pipeline can be adjusted again, after the butt joint is completed, the multi-directional screw rod 702 is rotated, the pipeline can be clamped and fixed, and the ball 804 is away from the pipeline, the pipeline is supported by the supporting block 802, the connecting structure is convenient for the construction personnel to adjust the butt joint position of the mechanical and electrical pipeline, the labor degree of the workers is reduced, and the construction efficiency is improved;
[0047] Finally, if the connecting structure of the mechanical and electrical pipeline support is installed at the node of the cross pipeline, the cross pipeline can be supported by adding the support auxiliary plate 5, specifically, the support auxiliary plate 5 is installed at the bottom of the support main plate 21 through bolts, after the cross pipeline is installed, the supporting rod 604 is clamped in the inside of the clamping seat 602 through the hinged supporting rod 604, and the cross pipeline is supported through the limiting block two 605, the practicability and flexibility of the connecting structure of the mechanical and electrical pipeline support are improved, and the application range is greatly improved.
[0048] Finally, it should be noted that: the above only describes the preferred embodiments of the present application, and is not used to limit the protection scope of the present application. 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. A connection structure of an electromechanical pipe support, comprising a mounting base (1), characterized in that: The lower part of the mounting base (1) is provided with a support main plate (21), and the top of the support main plate (21) is provided with a clamping mechanism (7) and a supporting mechanism (8); The clamping mechanism (7) comprises two installation plates (701), both of which are fixedly installed on the top of the support main plate (21), and the inner part of the installation plate (701) is rotatably connected with a multidirectional screw rod (702), the outer wall of the multidirectional screw rod (702) is provided with three groups of bidirectional threads, the outer wall of each thread of the multidirectional screw rod (702) is threadedly connected with a sliding block (703), the sliding block (703) is slidably connected with the installation plate (701), and the top of the sliding block (703) is fixedly connected with a clamping jaw (704); The supporting mechanism (8) comprises a housing (801) and a supporting block (802), both of which are fixedly connected with the support main plate (21), the inner part of the housing (801) is rotatably connected with a movement shaft (805), one end of the movement shaft (805) is fixedly connected with a gear (806), the outer wall of the movement shaft (805) is provided with a synchronous belt II (807), the movement shaft (805) is drivingly connected with the multidirectional screw rod (702) through the synchronous belt II (807), the inner part of the supporting block (802) is slidably connected with a supporting seat (803), the inner part of the supporting seat (803) is rotatably connected with a plurality of ball bearings (804), one side of the supporting seat (803) is fixedly connected with a connecting rod (808), one side of the connecting rod (808) is fixedly connected with a rack (809), the rack (809) is intermeshed with the gear (806), and the connecting rod (808) is slidably connected with the supporting block (802); The inner part of the mounting base (1) is slidably connected with four connecting seats (16), the top of the mounting base (1) is fixedly connected with four fixed seats (10), every two of the four fixed seats (10) form a group, the inner parts of the two groups of fixed seats (10) are rotatably connected with a driving screw rod (11) and a driven screw rod (12), respectively, the outer walls of the driving screw rod (11) and the driven screw rod (12) are threadedly connected with the four connecting seats (16), respectively, and the rotation of the driving screw rod (11) and the driven screw rod (12) can simultaneously drive the four connecting seats (16) to move synchronously, so that the installation position of the connecting structure of the electromechanical pipeline support is adjusted; The bottom of the support main plate (21) is fixedly connected with a support secondary plate (5) through bolts, and the bottom of the support secondary plate (5) is provided with a supporting mechanism (6) which can support the intersecting pipelines.
2. A mechanical pipe support according to claim 1, wherein: The lower part of the mounting base (1) is provided with a docking plate (3), the two sides of the support main plate (21) are fixedly connected with bases (9), the bottoms of the two bases (9) are fixedly connected with adjusting blocks (19), the tops of the other two bases (9) are fixedly connected with adjusting seats (20), the two adjusting blocks (19) are slidably connected with the two adjusting seats (20) respectively, and the adjusting block (19) can be fixedly connected with the adjusting seat (20) through bolts.
3. A mechanical pipe support according to claim 1, wherein: The supporting mechanism (6) comprises a main seat (601) and a clamping seat (602), the main seat (601) and the clamping seat (602) are fixedly connected with the support secondary plate (5), one side of the main seat (601) is hingedly connected with a supporting rod (604), the other end of the supporting rod (604) is clamped in the inner part of the clamping seat (602), the bottom of the main seat (601) is fixedly connected with a limiting block one (603), one side of the supporting rod (604) is fixedly connected with three limiting blocks two (605), and the number of the main seat (601) and the clamping seat (602) is three.
4. A mechanical pipe support according to claim 1, wherein: The outer wall of the driving screw rod (11) is provided with a synchronous belt one (13), the driving screw rod (11) and the driven screw rod (12) are drivingly connected through the synchronous belt one (13), the inside of the mounting base (1) is rotatably connected with a rotating shaft (17), one end of the rotating shaft (17) is fixedly connected with a driving bevel gear (14), the outer wall of the driving screw rod (11) is fixedly connected with a driven bevel gear (15), the driving bevel gear (14) and the driven bevel gear (15) are meshed with each other, the bottom of the rotating shaft (17) is fixedly connected with a hand wheel (18), and the hand wheel (18) is fixedly connected with the mounting base (1) through bolts.
5. A mechanical pipe support according to claim 2, wherein: The inside of the docking plate (3) is provided with a docking mechanism (4), the docking mechanism (4) comprises adjusting screw rods (401), the number of the adjusting screw rods (401) is four, the four adjusting screw rods (401) are rotatably connected in the inside of the docking plate (3), the outer walls of the four adjusting screw rods (401) are threadedly connected with movement blocks (402), the movement blocks (402) are slidably connected with the docking plate (3), the top of the movement block (402) is fixedly connected with a fixed plate (403), the inside of the fixed plate (403) is rotatably connected with a rotating disc (405), the top of the rotating disc (405) is fixedly connected with a connecting frame (406), one end of the connecting frame (406) is fixedly connected with a connecting block (407), and the four connecting blocks (407) are fixedly connected with four connecting seats (16) through bolts.
6. A mechanical pipe support according to claim 5, wherein: The two multi-directional screw rods (702) and the four adjusting screw rods (401) are provided with internal hexagonal grooves at one end, the two multi-directional screw rods (702) are closely matched with the mounting plate (701), and the four adjusting screw rods (401) are closely matched with the docking plate (3).
7. A mechanical pipe support according to claim 6, wherein: The number of the shell (801) and the supporting block (802) is six, six of the shell (801) and the supporting block (802) are a group, two groups of the shell (801) and the supporting block (802) are located on one side of the two mounting plates (701), and the number of the rotating ball (804) in each supporting seat (803) is four.
8. A mechanical pipe support according to claim 1, wherein: The top of the mounting seat (1) is fixedly connected with a protective shell (2), and four fixing seats (10) are located in the protective shell (2).
Citation Information
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