Mechanical and electrical installation stable construction device for decorative fair-faced concrete structure
By using a multi-component construction device for precise positioning and visual simulation in decorative fair-faced concrete structures, the problem of positioning deviation in the electromechanical installation of decorative fair-faced concrete structures was solved, thus improving construction quality and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-02-07
- Publication Date
- 2026-04-10
AI Technical Summary
In the existing technology, the lack of visualization simulation means in the electromechanical installation process of decorative fair-faced concrete structures makes it easy for manual positioning to be inaccurate, affecting construction quality, efficiency and safety.
The construction device employs multiple components, including a base plate, a load-bearing plate, a connecting component, a transmission component, a linkage component, and a control component. The control component enables precise positioning and visual simulation, thus avoiding positioning deviations.
It enables precise positioning during electromechanical installation, avoids conflicts between pipelines and other structures or equipment, improves construction quality and efficiency, and reduces safety risks.
Smart Images

Figure CN121840988A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of construction auxiliary equipment, and particularly relates to a stable construction device for mechanical and electrical installation of a decorative fair-faced concrete structure. BACKGROUND
[0002] The decorative fair-faced concrete structure refers to a concrete structure without a covering layer or coating on the surface of a building or other concrete structure, and the appearance and texture of which are specially treated to achieve a decorative effect. The fair-faced concrete refers to ordinary concrete that is not coated or otherwise surface-treated, and is usually mixed according to a certain proportion of cement, sand, aggregate and water. In addition, the decorative fair-faced concrete structure still needs to meet the functional requirements of the building, such as power supply, lighting, ventilation, air conditioning, water supply and drainage, etc. These functions depend on the installation and operation of the mechanical and electrical system equipment.
[0003] In actual use of the decorative fair-faced concrete structure, mechanical and electrical installation is needed. The mechanical and electrical installation is needed to meet the requirements of functionality, safety, comfort and convenience, etc. and needs to be coordinated with the decorative design to ensure that the installed equipment and pipes not only meet the functional requirements but also are integrated with the decorative style to maintain the overall aesthetic effect.
[0004] In the actual construction process, during the mechanical and electrical installation, the pre-installed mechanical and electrical equipment needs to be laid with pipes. Similarly, before the pipe laying treatment, the pipe pre-burying position needs to be positioned. The prior art uses manual positioning for the pipes, which cannot visually simulate the pipe construction after the construction and is hindered in controllability. Since the visual simulation after the construction and the controllability are hindered, the following adverse effects will be caused.
[0005] Firstly, since the visual simulation cannot be performed, the manual positioning is prone to deviation, which leads to that the pipe installation position does not meet the design requirements and may cause the pipe to conflict with other structures or equipment, thereby affecting the construction quality and functionality.
[0006] Secondly, due to the lack of visual simulation means, the construction personnel cannot accurately master the position and arrangement of the pipes, which may need to be adjusted and re-constructed multiple times, thereby increasing the construction time and cost and reducing the construction efficiency.
[0007] In addition, due to the above factors, corresponding positioning deviation will be caused in the construction process, and the positioning deviation will lead to the interference between the pipes and other equipment or structures, thereby increasing the safety risk.
[0008] Therefore, it is urgent to provide a stable construction device for mechanical and electrical installation of a decorative fair-faced concrete structure. SUMMARY
[0009] The purpose of the present application is to solve the shortcomings in the prior art, and to realize visual simulation and manual positioning.
[0010] In order to achieve the above-mentioned purpose, the present application adopts the following technical scheme: including the bottom frame plate, characterized in that: the top of the bottom frame plate is provided with a bearing frame plate, the bottom frame plate is fixedly connected with a receiving assembly through the bearing frame plate, the front surface of the receiving assembly is provided with a transmission assembly, the receiving assembly is connected with a linkage assembly through the transmission assembly, the front surface of the linkage assembly is provided with a regulating assembly, the regulating assembly comprises a connecting frame plate connected with the linkage assembly, the outer surface of the connecting frame plate is provided with a connecting piece, the front surface of the connecting frame plate is provided with a horizontal adjusting assembly, the horizontal adjusting assembly comprises a fixed short plate provided on the front surface of the connecting frame plate, the fixed short plate is provided with two, and a fixed shaft is inserted between the outer surfaces of the two fixed short plates, a connecting sleeve ring is sleeved on the outer surface of the fixed shaft, a linkage shaft plate is connected to the outer surface of the connecting sleeve ring, a placing groove is formed on the outer surface of the linkage shaft plate, and a short rod is inserted into the inner surface of the placing groove, the outer surface of the short rod is rotatably connected with a moving frame plate, and the front surface of the moving frame plate is connected with a vertical adjusting assembly.
[0011] As a preferred embodiment, the vertical adjusting assembly comprises a connecting end plate connected with the outer surface of the moving frame plate, the outer surface of the connecting end plate is connected with a concave frame plate, the outer surface of the concave frame plate is provided with a rectangular groove, and the inner surface of the rectangular groove is provided with a bearing ring plate, the bearing ring plate is provided with two, and a middle shaft is inserted between the outer surfaces of the two bearing ring plates, the outer surface of the middle shaft is rotatably connected with a movable clamping plate, and the outer surface of the movable clamping plate is provided with a clamping groove.
[0012] As a preferred embodiment, the movable clamping plate is connected with a positioning assembly through the clamping groove, the positioning assembly comprises a clamping branch plate connected with the clamping groove, the outer surface of the clamping branch plate is matched with the inner surface of the clamping groove of the movable clamping plate, the outer surface of the clamping branch plate is connected with a connecting straight plate, the outer surface of the connecting straight plate is provided with a connecting bolt, the connecting straight plate is connected with a bearing short plate through the connecting bolt, the outer surface of the bearing short plate is provided with a chuck body, and the bearing short plate is connected with a positioning branch rod through the chuck body.
[0013] As a preferred embodiment, the receiving assembly comprises a receiving support column connected with the top surface of the bearing frame plate, the outer surface of the receiving support column is provided with a side sliding groove, the side sliding groove is provided with two, and the two side sliding grooves are respectively located on the two sides of the outer surface of the receiving support column, and the front surface of the receiving support column is provided with a receiving straight groove.
[0014] As a preferred implementation, the linkage assembly comprises a linkage main plate in sliding connection with the inner surface of the straight groove, the outer surface of the linkage main plate is provided with a mounting groove matched with the connecting piece, and the outer surface of the linkage main plate is provided with an extension side plate.
[0015] As a preferred implementation, the outer surface of the extension side plate is connected with a side frame plate, the outer surface of the side frame plate is provided with a positioning sleeve, the inner surface of the positioning sleeve is inserted with a linkage rod, the top end of the linkage rod is provided with a circular ring plate, and the bottom end of the circular ring plate is connected with a linkage slider.
[0016] As a preferred implementation, the extension side plate is provided with two, and the two extension side plates are located on the outer surface of the linkage main plate, the linkage slider is provided with two, and the two linkage sliders correspond to the two side sliding grooves, and the outer surface of the linkage slider is matched with the inner surface of the side sliding groove.
[0017] As a preferred implementation, the transmission assembly comprises a bearing frame provided on the front surface of the bearing support column, the inner surface of the bearing frame is a hollow structure, and the inner surface of the bearing frame is provided with an electric push rod, and the output end of the electric push rod extends to the outside of the bearing frame.
[0018] As a preferred implementation, the output end of the electric push rod is connected with a top plate, the top of the top plate is connected with a bearing support plate, and the top of the bearing support plate is connected with the bottom surface of the linkage main plate.
[0019] Compared with the prior art, the advantages and positive effects of the present application are that:
[0020] By setting the regulating assembly to regulate the size angle, the purpose of accurate positioning is achieved, thereby avoiding the technical problem that manual positioning is prone to deviation, resulting in that the installation position of the pipeline does not meet the design requirements, which may cause the pipeline to conflict with other structures or equipment, and further, through the linkage of the positioning assembly and the regulating assembly, the visualization simulation after pipeline laying is realized, thereby avoiding the subsequent problem that the position and arrangement of the pipeline are difficult for the construction personnel to accurately master due to the lack of visualization simulation means, which may require multiple adjustments and re-construction, and at the same time, through the mutual cooperation between multiple assemblies, the generation of positioning deviation in construction is avoided, thereby avoiding the safety problem that positioning deviation will cause the pipeline to interfere with other equipment or structures. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 A perspective view of the overall component of the decorative fair-faced concrete structure mechanical and electrical installation stable construction device is provided.
[0022] Figure 2A side view of the overall component of the mechanical and electrical installation stable construction device for the decorative fair-faced concrete structure is shown in the figure;
[0023] Figure 3 A perspective view of the receiving assembly in the mechanical and electrical installation stable construction device for the decorative fair-faced concrete structure is shown in the figure;
[0024] Figure 4 A side view of the receiving assembly in the mechanical and electrical installation stable construction device for the decorative fair-faced concrete structure is shown in the figure;
[0025] Figure 5 A bottom view of part of the mechanical and electrical installation stable construction device for the decorative fair-faced concrete structure is shown in the figure;
[0026] Figure 6 A perspective view of the mechanical and electrical installation stable construction device for the decorative fair-faced concrete structure is shown in the figure; Figure 5 An enlarged schematic view of the structure at A in the mechanical and electrical installation stable construction device for the decorative fair-faced concrete structure is shown in the figure;
[0027] Figure 7 A perspective view of the control assembly in the mechanical and electrical installation stable construction device for the decorative fair-faced concrete structure is shown in the figure.
[0028] Figure 8 A top view of the control assembly in the mechanical and electrical installation stable construction device for the decorative fair-faced concrete structure is shown in the figure.
[0029] Figure 9 A side view of the positioning assembly in the mechanical and electrical installation stable construction device for the decorative fair-faced concrete structure is shown in the figure.
[0030] Figure 10 A bottom view of the positioning assembly in the mechanical and electrical installation stable construction device for the decorative fair-faced concrete structure is shown in the figure.
[0031] Legend:
[0032] 1, base plate; 2, bearing frame plate; 3, receiving assembly; 4, transmission assembly; 5, linkage assembly; 6, control assembly; 7, positioning assembly;
[0033] 301, receiving support column; 302, side sliding groove; 303, receiving straight groove;
[0034] 401, bearing frame; 402, electric push rod; 403, top plate; 404, receiving support plate;
[0035] 501, linkage main plate; 502, extension side plate; 503, extension support plate; 504, side frame plate; 505, positioning sleeve; 506, circular ring plate; 507, linkage rod; 508, linkage sliding block;
[0036] 601, connecting frame plate; 602, connecting piece; 603, transverse adjustment assembly; 604, longitudinal adjustment assembly;
[0037] 6031, fixed short plate; 6032, fixed shaft; 6033, connecting sleeve ring; 6034, linkage shaft plate; 6035, short rod; 6036, moving frame plate;
[0038] 6041, connecting end plate; 6042, concave frame plate; 6043, bearing ring plate; 6044, middle shaft; 6045, movable clamping plate;
[0039] 701, clamping branch plate; 702, connecting straight plate; 703, connecting bolt; 704, bearing short plate; 705, chuck body; 706, positioning support rod. DETAILED DESCRIPTION
[0040] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0041] Embodiment 1
[0042] As Figure 1 , Figure 2 , Figure 7 and Figure 8As shown, the present application provides a technical scheme: a kind of decorative fair-faced concrete structure mechanical and electrical installation stable construction device, including base plate 1, the top of base plate 1 is provided with bearing frame plate 2, base plate 1 is fixedly connected with receiving assembly 3 by bearing frame plate 2, the front surface of receiving assembly 3 is provided with transmission assembly 4, receiving assembly 3 is connected with linkage assembly 5 by transmission assembly 4, the front surface of linkage assembly 5 is provided with control assembly 6, control assembly 6 includes the connecting frame plate 601 connected with linkage assembly 5, the outer surface of connecting frame plate 601 is provided with connecting piece 602, the front surface of connecting frame plate 601 is provided with horizontal adjustment assembly 603, horizontal adjustment assembly 603 includes the fixed short plate 6031 of being arranged in the front surface of connecting frame plate 601, two fixed short plates 6031 are provided, and fixed shaft 6032 is inserted between the outer surfaces of the two fixed short plates 6031, connecting sleeve ring 6033 is sleeved on the outer surface of fixed shaft 6032, linkage shaft plate 6034 is connected to the outer surface of connecting sleeve ring 6033, the outer surface of linkage shaft plate 6034 is provided with placing groove, and the inner surface of placing groove is inserted with short rod 6035, the outer surface of short rod 6035 is rotatably connected with moving frame plate 6036, the front surface of moving frame plate 6036 is connected with longitudinal adjustment assembly 604, longitudinal adjustment assembly 604 includes the connecting end plate 6041 connected with the outer surface of moving frame plate 6036, the outer surface of connecting end plate 6041 is connected with concave frame plate 6042, the outer surface of concave frame plate 6042 is provided with rectangular slot, and the inner surface of rectangular slot is provided with bearing ring plate 6043, two bearing ring plates 6043 are provided, and the outer surfaces of the two bearing ring plates 6043 are inserted with middle shaft 6044, the outer surface of middle shaft 6044 is rotatably connected with movable clamping plate 6045, and the outer surface of movable clamping plate 6045 is provided with clamping groove.
[0043] Wherein, in the above content, it needs to be explained that short rod 6035 and moving frame plate 6036 are rotatably connected, and moving frame plate 6036 can be fixed after rotation, more specifically, short rod 6035 and moving frame plate 6036 are in key connection state.
[0044] Wherein, in the above content, it needs to be explained that middle shaft 6044 and movable clamping plate 6045 are also in key connection state, and can be self-locked after rotation.
[0045] Wherein, in the above content, it needs to be explained that two connecting pieces 602 fix connecting frame plate 601 to the front surface of linkage main plate 501, and the outer surfaces of two connecting pieces 602 are connected with the inner surfaces of two linkage main plates 501.
[0046] In this embodiment, when the corresponding angle adjustment process is needed, the expected position of the lateral angle adjustment is first confirmed, and after the confirmation is completed, the linkage shaft plate 6034 is held and pushed towards the expected adjustment position. During the pushing process, the linkage shaft plate 6034 will drive the connecting sleeve ring 6033 to rotate on the outer surface of the fixed shaft 6032. By continuously pushing the linkage shaft plate 6034, the linkage shaft plate 6034 will also drive the short rod 6035 and other components to make a large angle adjustment. After the linkage shaft plate 6034 moves to the expected angle, the mobile frame plate 6036 is used for small angle fine adjustment;
[0047] During the small angle fine adjustment process, the mobile frame plate 6036 is held and pushed towards the expected adjustment angle. During the pushing process, the mobile frame plate 6036 will rotate on the outer surface of the short rod 6035. Continuous pushing is performed until the mobile frame plate 6036 drives the longitudinal adjustment assembly 604 to move to the expected angle, and then the rotation is stopped. At this time, the mobile frame plate 6036 and the longitudinal adjustment assembly 604 are in a static state.
[0048] If the longitudinal angle adjustment process is needed, the expected adjustment angle is confirmed, and then the longitudinal adjustment assembly 604 is used for longitudinal adjustment. During the longitudinal adjustment process using the longitudinal adjustment assembly 604, the movable clamping plate 6045 is held and pushed towards the expected angle. During the pushing process, the movable clamping plate 6045 will rotate on the outer surface of the central shaft 6044. Continuous pushing is performed until the movable clamping plate 6045 is adjusted to the expected angle, and then the pushing is stopped.
[0049] Embodiment 2
[0050] As Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 6As shown, the receiving assembly 3 comprises a receiving support column 301 connected with the top surface of the bearing frame plate 2, the outer surface of the receiving support column 301 is provided with a side sliding groove 302, the side sliding groove 302 is provided with two, and the two side sliding grooves 302 are respectively located on both sides of the outer surface of the receiving support column 301, the front surface of the receiving support column 301 is provided with a receiving straight groove 303, the linkage assembly 5 comprises a linkage main plate 501 which is slidingly connected with the inner surface of the receiving straight groove 303, the outer surface of the linkage main plate 501 is provided with a mounting groove which is matched with the connecting piece 602, the outer surface of the linkage main plate 501 is provided with an extension side plate 502, the outer surface of the extension side plate 502 is inserted with an extension support plate 503, the outer surface of the extension support plate 503 is connected with a side frame plate 504, the outer surface of the side frame plate 504 is provided with a positioning sleeve 505, the inner surface of the positioning sleeve 505 is inserted with a linkage rod 507, the top end of the linkage rod 507 is provided with a circular ring plate 506, the bottom end of the circular ring plate 506 is connected with a linkage sliding block 508, the extension side plate 502 is provided with two, and the two extension side plates 502 are respectively located on both sides of the outer surface of the linkage main plate 501, the linkage sliding block 508 is provided with two, and the two linkage sliding blocks 508 correspond to the two side sliding grooves 302, the outer surface of the linkage sliding block 508 is matched with the inner surface of the side sliding groove 302, the transmission assembly 4 comprises a bearing frame 401 provided on the front surface of the receiving support column 301, the inner surface of the bearing frame 401 is a hollow structure, and the inner surface of the bearing frame 401 is provided with an electric push rod 402, the output end of the electric push rod 402 extends to the outside of the bearing frame 401, the output end of the electric push rod 402 is connected with a top plate 403, the top of the top plate 403 is connected with a receiving support plate 404, the top of the receiving support plate 404 is connected with the bottom surface of the linkage main plate 501.
[0051] It should be noted that, in the process of regulating and transmission, the extension support plate 503 will drive the side frame plate 504 to transmit, and the side frame plate 504 will drive the linkage rod 507 connected therewith to displace synchronously.
[0052] It should be noted that, the outer surface of the receiving support plate 404 is provided with a groove surface which is matched with the inner surface of the receiving straight groove 303, and the receiving support plate 404 and the receiving straight groove 303 are slidingly connected.
[0053] In the embodiment, if the corresponding height adjustment process is needed, first, the expected adjustment height needs to be confirmed, and after the confirmation is completed, the electric push rod 402 is turned on. After the electric push rod 402 is turned on, the output end thereof will move upward, and the top plate 403 connected thereto will be displaced synchronously. Similarly, the receiving branch plate 404 connected to the top plate 403 will be synchronously moved upward. The output end of the electric push rod 402 is observed until the electric push rod 402 drives the entire linkage assembly 5 to move to the expected adjustment height, and then the output end of the electric push rod 402 is positioned to keep the current height.
[0054] During the adjustment process, the linkage main plate 501 connected to the receiving branch plate 404 will be displaced synchronously. The linkage main plate 501 will drive the two extension side plates 502 to transmit, and the extension side plate 502 will drive the extension branch plate 503 and the remaining assemblies to transmit. The linkage main plate 501 slides along the inner surface of the receiving straight groove 303. The two linkage sliding blocks 508 slide along the inner surface of the side sliding groove 302. During the continuous regulation process, the linkage sliding block 508 and the linkage main plate 501 continuously slide. Due to the opening of the slot, the overall height is more accurate during the regulation process.
[0055] Embodiment 3
[0056] As shown in Figure 1 , Figure 2 , Figure 9 and Figure 10 , the movable clamping plate 6045 is connected with the positioning assembly 7 through the clamping groove. The positioning assembly 7 includes a clamping branch plate 701 connected with the clamping groove. The outer surface of the clamping branch plate 701 is matched with the inner surface of the clamping groove of the movable clamping plate 6045. The outer surface of the clamping branch plate 701 is connected with a connecting straight plate 702. The outer surface of the connecting straight plate 702 is provided with a connecting bolt 703. The connecting straight plate 702 is connected with a bearing short plate 704 through the connecting bolt 703. The outer surface of the bearing short plate 704 is provided with a chuck body 705. The bearing short plate 704 is connected with a positioning branch rod 706 through the chuck body 705.
[0057] It needs to be pointed out that the clamping aperture of the chuck body 705 can be adjusted correspondingly. If a larger aperture is needed, first confirm the specific position of the nut on the outer surface of the chuck body 705. After confirmation, use a wrench to turn the nut counterclockwise so that it no longer fixes the chuck body 705. Then adjust the aperture size as needed. First hold the central screw on the outer surface of the chuck body 705, and then change the aperture of the chuck by rotating the screw. Clockwise rotation of the screw will make the aperture smaller, and counterclockwise rotation will make the aperture larger. Adjust the screw step by step as needed until the desired aperture size is reached. After reaching the corresponding aperture, use a wrench to tighten the nut clockwise to firmly fix the chuck at the desired aperture. Then use a micrometer to check whether the adjusted aperture size meets the requirements. If it still does not meet the requirements, fine-tune it until it meets the requirements.
[0058] In this embodiment, when using the positioning assembly 7 to simulate the position, first wrap the pipeline to be laid around the outer surface of the positioning support rod 706. If the aperture of the positioning support rod 706 does not match the pipeline, remove the support member with a matching aperture and use the chuck body 705 to clamp it. After clamping is complete, extend the pipeline. During the extension control process, use the assembly to control the height and angle, thereby achieving the purpose of assisting construction.
[0059] In addition, when actually using the positioning assembly 7, the positioning support rod 706 can also be adjusted to the position where the pipeline is to be laid, and the pipeline can be wrapped around the outer surface of the positioning support rod 706. After wrapping is complete, adjust the angle and height through the control assembly 6 to simulate the effect after pipeline laying, thereby achieving the purpose of assisting construction positioning.
[0060] Working principle:
[0061] As shown in Figures 1-10 , when actually used, first move the base plate 1 to the intended position. After moving is complete, confirm the position of the pipeline to be laid. After confirmation, adjust the height according to the actual pipeline laying position;
[0062] The height adjustment process first needs to confirm the intended adjustment height. After confirmation, turn on the electric push rod 402. After the electric push rod 402 is turned on, its output end will move upward, and the top plate 403 connected to it will move together. Similarly, the receiving support plate 404 connected to the top plate 403 will move upward synchronously. Observe the output end of the electric push rod 402 until the electric push rod 402 moves the entire linkage assembly 5 to the intended adjustment height, and then limit the output end of the electric push rod 402 to maintain the current height.
[0063] And in the adjustment process, the linkage main plate 501 connected with the receiving branch plate 404 will displace together, the linkage main plate 501 will drive the two extension side plates 502 to transmit, and the extension side plates 502 will drive the extension branch plate 503 and other components to transmit. The linkage main plate 501 slides along the inner surface of the receiving straight slot 303, and the two linkage sliding blocks 508 slide along the inner surface of the side sliding slot 302. During the continuous regulation process, the linkage sliding block 508 and the linkage main plate 501 will continuously slide. Due to the opening of the slot, the overall height is fixed, and the position is more accurate during the regulation process.
[0064] After the position regulation is completed, if corresponding angle adjustment processing is required, the regulation component 6 can be directly used for adjustment processing. During the adjustment process, if horizontal angle adjustment is required;
[0065] First, the expected position of horizontal angle adjustment needs to be confirmed. After confirmation, the linkage shaft plate 6034 can be held and pushed towards the expected adjustment position. During the pushing process, the linkage shaft plate 6034 will drive the connecting sleeve ring 6033 to rotate on the outer surface of the fixed shaft 6032. The linkage shaft plate 6034 will also drive the short rod 6035 and other components to make large-angle adjustment. After the linkage shaft plate 6034 moves to the expected angle, the moving frame plate 6036 can be used for small-angle fine adjustment;
[0066] During the small-angle fine adjustment process, the moving frame plate 6036 needs to be held and pushed towards the expected adjustment angle. During the pushing process, the moving frame plate 6036 will rotate on the outer surface of the short rod 6035. Continuous pushing is required until the moving frame plate 6036 drives the longitudinal adjustment component 604 to move to the expected angle, and then the rotation is stopped. At this time, the moving frame plate 6036 and the longitudinal adjustment component 604 are in a static state;
[0067] If longitudinal angle adjustment processing is required, the expected adjustment angle needs to be confirmed. After confirmation, the longitudinal adjustment component 604 can be used for longitudinal regulation. During the longitudinal regulation process using the longitudinal adjustment component 604, the movable clamping plate 6045 needs to be held and pushed towards the expected angle. During the pushing process, the movable clamping plate 6045 will rotate on the outer surface of the central shaft 6044. Continuous pushing is required until the movable clamping plate 6045 is adjusted to the expected angle, and then the pushing is stopped;
[0068] At this point, the position adjustment processing of the angle and height can be completed, and then the positioning component 7 can be used for auxiliary construction processing;
[0069] In the above operation, the positioning assembly 7 has followed the regulating assembly 6 and the linkage assembly 5 to move to the expected angle and height, and the corresponding auxiliary construction positioning can be directly performed; if the positioning assembly 7 has not moved to the corresponding angle and height, the assembly can also be used for fine adjustment processing;
[0070] In the use of the positioning assembly 7, first, the pipeline to be laid is sleeved on the outer surface of the positioning support rod 706; if the hole diameter of the positioning support rod 706 and the pipeline do not match, the support member with a matched hole diameter can be removed, and the chuck body 705 is used for clamping processing; after the clamping is completed, the pipeline is extended; during the extension regulating process, the height and angle of the assembly can be regulated, so as to achieve the purpose of auxiliary construction.
[0071] In addition, in the actual use of the positioning assembly 7, the positioning support rod 706 can also be adjusted to the position where the pipeline is expected to be laid, and the pipeline is sleeved on the outer surface of the positioning support rod 706; after the sleeving is completed, the angle and height are adjusted through the regulating assembly 6 to simulate the effect after the pipeline is laid, so as to achieve the auxiliary construction positioning.
[0072] The above is only a preferred embodiment of the present application, and does not limit the present application in other forms. Any person skilled in the art can use the disclosed technical content to make changes or modifications to equivalent embodiments applied to other fields, but any simple modification, equivalent change and modification made on the basis of the technical essence of the present application to the above embodiments without departing from the technical solution content of the present application still belongs to the protection scope of the present application.
Claims
1. A kind of decorative fair-faced concrete structure electromechanical installation stable construction device, including chassis plate (1), it is characterized in that: The top of the chassis plate (1) is provided with a bearing frame plate (2), the chassis plate (1) is fixedly connected with a receiving assembly (3) through the bearing frame plate (2), the front surface of the receiving assembly (3) is provided with a transmission assembly (4), the receiving assembly (3) is connected with a linkage assembly (5) through the transmission assembly (4), the front surface of the linkage assembly (5) is provided with a regulating assembly (6), the regulating assembly (6) comprises a connecting frame plate (601) connected with the linkage assembly (5), the outer surface of the connecting frame plate (601) is provided with a connecting piece (602), the front surface of the connecting frame plate (601) is provided with a transverse adjusting assembly (603), the transverse adjusting assembly (603) comprises a fixed short plate (6031) arranged on the front surface of the connecting frame plate (601), the fixed short plate (6031) is provided with two, and a fixed shaft (6032) is arranged between the outer surfaces of the two fixed short plates (6031), a connecting sleeve ring (6033) is arranged on the outer surface of the fixed shaft (6032), the outer surface of the connecting sleeve ring (6033) is connected with a linkage shaft plate (6034), the outer surface of the linkage shaft plate (6034) is provided with a placing groove, and a short rod (6035) is arranged in the inner surface of the placing groove, the outer surface of the short rod (6035) is rotatably connected with a moving frame plate (6036), and the front surface of the moving frame plate (6036) is connected with a longitudinal adjusting assembly (604).
2. The device according to claim 1, characterized in that: The longitudinal adjusting assembly (604) comprises a connecting end plate (6041) connected with the outer surface of the moving frame plate (6036), the outer surface of the connecting end plate (6041) is connected with a concave frame plate (6042), the outer surface of the concave frame plate (6042) is provided with a rectangular groove, and the outer surface of the rectangular groove is provided with a bearing ring plate (6043), the bearing ring plate (6043) is provided with two, and a middle shaft (6044) is arranged between the outer surfaces of the two bearing ring plates (6043), the outer surface of the middle shaft (6044) is rotatably connected with a movable clamping plate (6045), and the outer surface of the movable clamping plate (6045) is provided with a clamping groove.
3. The device according to claim 2, characterized in that: The movable clamping plate (6045) is connected with a positioning assembly (7) through the clamping groove, the positioning assembly (7) comprises a clamping branch plate (701) connected with the clamping groove, the outer surface of the clamping branch plate (701) is matched with the inner surface of the clamping groove of the movable clamping plate (6045), the outer surface of the clamping branch plate (701) is connected with a connecting straight plate (702), the outer surface of the connecting straight plate (702) is provided with a connecting bolt (703), the connecting straight plate (702) is connected with a bearing short plate (704) through the connecting bolt (703), the outer surface of the bearing short plate (704) is provided with a chuck body (705), and the bearing short plate (704) is connected with a positioning branch rod (706) through the chuck body (705).
4. The device according to claim 1, characterized in that: The receiving assembly (3) comprises a receiving support (301) connected with the top surface of the bearing frame plate (2), the outer surface of the receiving support (301) is provided with a side sliding groove (302), the side sliding groove (302) is provided with two, and the two side sliding grooves (302) are located on the two sides of the outer surface of the receiving support (301), and the front surface of the receiving support (301) is provided with a receiving straight groove (303).
5. The device according to claim 4, characterized in that: The linkage assembly (5) comprises a linkage main plate (501) slidably connected with the inner surface of the receiving straight groove (303), the outer surface of the linkage main plate (501) is provided with a mounting groove matched with the connecting piece (602), the outer surface of the linkage main plate (501) is provided with an extension side plate (502), and the outer surface of the extension side plate (502) is provided with an extension support plate (503).
6. The device according to claim 5, wherein the device is characterized by: The outer surface of the extension support plate (503) is connected with a side frame plate (504), the outer surface of the side frame plate (504) is provided with a positioning sleeve (505), the inner surface of the positioning sleeve (505) is provided with a linkage rod (507), the top end of the linkage rod (507) is provided with a circular ring plate (506), and the bottom end of the circular ring plate (506) is connected with a linkage sliding block (508).
7. The device according to claim 6, characterized in that: The extension side plate (502) is provided with two, and the two extension side plates (502) are located on the two sides of the outer surface of the linkage main plate (501), the linkage sliding block (508) is provided with two, and the two linkage sliding blocks (508) correspond to the two side sliding grooves (302), and the outer surface of the linkage sliding block (508) is matched with the inner surface of the side sliding groove (302).
8. The device according to claim 1, characterized in that: The transmission assembly (4) comprises a bearing frame (401) provided on the front surface of the receiving support (301), the inner surface of the bearing frame (401) is a hollow structure, and the inner surface of the bearing frame (401) is provided with an electric push rod (402), and the output end of the electric push rod (402) extends to the outside of the bearing frame (401).
9. The device according to claim 8, characterized in that: The output end of the electric push rod (402) is connected with a top plate (403), the top of the top plate (403) is connected with a receiving support plate (404), and the top of the receiving support plate (404) is connected with the bottom surface of the linkage main plate (501).