Adjustable support for constructional engineering supervision and detection
Through the combined design of hydraulic lift control mechanism and auxiliary support rod, the existing bracket control method is solved and the problems of single and poor buffering effect are achieved, flexible height adjustment and tool delivery of the detection platform are realized, and operation convenience and safety are improved.
Patent Information
- Application Number
- CN202421855010.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-01
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-08-01
AI Technical Summary
The existing construction project supervision and inspection bracket has a single control method, poor buffering effect, insufficient functions, cushioning, and cumbersome operation, and the inspector needs to re-adjust the tool.
A hydraulic lift control mechanism is used to combine the auxiliary support rod. The top of the auxiliary support rod is equipped with a support plate and a suspension plate. The bottom end of the auxiliary support rod is controlled to move along the slide chute through the reel, so as to realize height adjustment and tool delivery, and a buffer mechanism is combined to improve operational convenience and safety.
It realizes flexible height adjustment of the detection platform, has a variety of functions, is convenient to operate, has good buffering effect, is high safety, and is convenient to deliver tools.
Smart Images

Figure CN223076676U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of supports for supervision and inspection, and particularly relates to an adjustable support for building engineering supervision and inspection. Background Technique
[0002] The supervision and inspection of building engineering is an important link to ensure the quality, safety and benefit of building engineering. The supervision agency or supervisor monitors and inspects the various works in the construction process of building public tests through specialized detection means and methods to ensure that the project quality meets the expected standards. When it is necessary to detect the high parts of a building, in order to ensure the safety of the detection personnel and facilitate the operation, temporary supports or working platforms are usually built.
[0003] For example, the Chinese utility model patent with the publication number of CN217519601U discloses an adjustable support for building engineering supervision and inspection. By arranging an outer sleeve rod on the lower end face of the tray, and hinging the tray and the outer sleeve rod, it can be adjusted with the height to meet different angle rotation requirements; a double pin shaft is adopted between the outer sleeve rod and the inner sleeve rod, and outer pin hole groups and inner pin hole groups are arranged on the outer sleeve rod and the inner sleeve rod, so that different height requirements can be met. The height adjustment is realized by the way of inserting or embedding the outer sleeve rod and the inner sleeve rod in a staggered manner.
[0004] However, in the above disclosed technical solution, its control method is single, the buffering effect is poor, and the functions are not complete enough. After the detection personnel are lifted, if there are missing tools, it is necessary to readjust, and the operation is cumbersome. Content of the Utility Model
[0005] The purpose of the utility model is to overcome the above-mentioned defects of the prior art, and provide an adjustable support for building engineering supervision and inspection that can flexibly adjust the height of the detection platform, can play an auxiliary supporting role through the auxiliary support rod and has a buffering effect, has a tool delivery function, and has diverse control methods and functions.
[0006] The utility model is realized by the following technical solutions: an adjustable support for building engineering supervision and inspection, comprising:
[0007] A moving platform, wherein moving wheels are arranged on the bottom side of the moving platform, and two chutes distributed along the length direction of the moving platform and symmetrically parallel to each other are arranged on the top side of the moving platform;
[0008] A detection platform, which is located directly above the moving platform, and the detection platform and the moving platform are connected by a hydraulic lifting control mechanism;
[0009] A buffering mechanism, which is arranged on the hydraulic lifting control mechanism, and the buffering mechanism is used for buffering the vibration of the detection platform;
[0010] Auxiliary support rods, there are two auxiliary support rods, and the two auxiliary support rods are respectively located on both sides of the hydraulic lifting control mechanism. The middle of each auxiliary support rod is hinged to the hydraulic lifting control mechanism. The bottom end of each auxiliary support rod is arranged in the corresponding chute through a horizontal movement control structure. The top end of each auxiliary support rod is provided with a support suspension mechanism. The horizontal movement control structure drives the support suspension mechanism at the end of the auxiliary support rod to support on the bottom side of the detection platform or extend to the side of the detection platform.
[0011] Furthermore, a fence is arranged around the top side of the moving platform.
[0012] Furthermore, the hydraulic lifting control mechanism includes a hydraulic telescopic column and a connecting plate. The bottom end of the hydraulic telescopic column is connected to the center of the top side of the moving platform, and the top end of the hydraulic telescopic column is connected to the center of the bottom side of the detection platform through the connecting plate.
[0013] Furthermore, the buffer mechanism includes a lead screw, a motor, and a sliding seat. There are two lead screws, and the two lead screws are respectively rotatably arranged on both sides of the hydraulic telescopic column through sleeve bolts. The left and right side walls of the hydraulic telescopic column are respectively provided with card slots distributed along its length direction. The sliding seats are arranged in the card slots. The bottom end of each lead screw is connected to the drive shaft of the motor, and the motor is arranged on the sliding seat. The top end of each lead screw is rotatably connected to the connecting plate.
[0014] Furthermore, the horizontal movement structure includes a wire reel, a connecting cable, and a moving seat. There are two wire reels, and the two wire reels are arranged at both ends of the chute. The connecting cable is connected between the two wire reels. The moving seat is fixed to the connecting cable and is located in the chute. The moving seat is hinged to the bottom end of the auxiliary support rod.
[0015] Furthermore, an installation column is arranged on the side wall of the hydraulic telescopic column, and a rotating sleeve is rotatably connected to the installation column. The rotating sleeve is sleeved on the middle of the auxiliary support rod.
[0016] Furthermore, the support suspension mechanism includes a support plate, fixed rods, and a suspension plate. The support plate is connected to the top end of the auxiliary support rod. There are multiple fixed rods, and the multiple fixed rods are arranged in parallel at intervals. The middle of each fixed rod is bent. The support plate and the suspension plate are connected through the fixed rods.
[0017] Furthermore, both the detection platform and the fence are made of aluminum-zinc alloy material.
[0018] Compared with the prior art, the utility model has the following beneficial effects:
[0019] In the utility model, a hydraulic telescopic column is used as a basic lifting control. The hydraulic telescopic column controls the lifting of the detection platform. By arranging auxiliary support rods, a support piece and a suspension plate are arranged at the top end of the auxiliary support rods. A wire winder is used to control the bottom end of the auxiliary support rods to move along the sliding groove, so that the auxiliary support rods swing. The support piece at the top end of the auxiliary support rods is driven to support on the bottom side of the detection platform, which can play an auxiliary support and a certain buffering effect. The top end of the auxiliary support rods can also be driven to extend out of the detection platform, and tools can be hung on the suspension plates of the auxiliary support rods for tool delivery. It has various functions, is convenient to operate and use, has good buffering effect and high safety. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 is a schematic structural view of the utility model Figure 1 ;
[0021] Figure 2 is a schematic structural view of the utility model Figure 2 ;
[0022] Figure 3 is a schematic structural view of the utility model (omitting the detection platform);
[0023] Figure 4 is a schematic structural view of the hydraulic lifting control mechanism and the buffer mechanism of the utility model;
[0024] Figure 5 is a schematic structural view of the auxiliary support rod and the horizontal movement control structure of the utility model.
[0025] DESCRIPTION OF THE REFERENCE NUMERALS: 1 - moving platform, 2 - moving wheel, 3 - sliding groove, 4 - detection platform, 5 - hydraulic lifting control mechanism, 6 - buffer mechanism, 7 - auxiliary support rod, 8 - horizontal movement control structure, 9 - support and suspension mechanism, 10 - fence, 11 - hydraulic telescopic column, 12 - connecting plate, 13 - lead screw, 14 - motor, 15 - sliding seat, 16 - socket, 17 - clamping groove, 18 - wire winder, 19 - connecting cable, 20 - moving seat, 21 - mounting column, 22 - rotating sleeve, 23 - support piece, 24 - fixed rod, 25 - suspension plate. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0026] Figures 1 to 5 is a schematic structural view of an embodiment of an adjustable bracket for building engineering supervision and detection provided by the utility model, including:
[0027] A moving platform 1 is provided with moving wheels 2 on the bottom side and two sliding grooves 3 which are distributed along the length direction of the moving platform 1 and are parallel and symmetrical to each other on the top side.
[0028] The detection platform 4 is located directly above the mobile platform 1, and the detection platform 4 and the mobile platform 1 are connected by a hydraulic lifting control mechanism 5.
[0029] The buffer mechanism 6 is arranged on the hydraulic lifting control mechanism 5, and the buffer mechanism 6 is used to buffer the vibration of the detection platform 4.
[0030] There are two auxiliary support rods 7. The two auxiliary support rods 7 are respectively located on both sides of the hydraulic lifting control mechanism 5. The middle of each auxiliary support rod 7 is hinged to the hydraulic lifting control mechanism 5. The bottom end of each auxiliary support rod 7 is arranged in the corresponding chute 3 through a horizontal movement control structure 8. The top end of each auxiliary support rod 7 is provided with a support suspension mechanism 9. The horizontal movement control structure 8 drives the support suspension mechanism 9 at the end of the auxiliary support rod 7 to support on the bottom side of the detection platform 4 or extend to the side of the detection platform 4.
[0031] A fence 10 is arranged around the top side of the mobile platform 1.
[0032] During use, when it is necessary to detect the high parts of a building, the detection personnel carry detection equipment and tools and first enter the detection platform 4, and then drive the detection platform 4 to rise through the hydraulic lifting control mechanism 5. This bracket can provide a stable standing and operating space to ensure the smooth progress of the detection work.
[0033] The hydraulic lifting control mechanism 5 includes a hydraulic telescopic column 11 and a connecting plate 12. The bottom end of the hydraulic telescopic column 11 is connected to the center of the top side of the mobile platform 1, and the top end of the hydraulic telescopic column 11 is connected to the center of the bottom side of the detection platform 4 through the connecting plate 12.
[0034] The hydraulic telescopic column 11 is connected to the detection platform 4 through the connecting plate 12, which can increase the connection area and make the connection firm. The height of the detection platform 4 is adjusted by the telescopic movement of the hydraulic telescopic column 11, and the adjustment is carried out by means of hydraulic control, with relatively high stability.
[0035] The buffer mechanism 6 includes a lead screw 13, a motor 14, and a sliding seat 15. There are two lead screws 13. The two lead screws 13 are respectively rotatably arranged on both sides of the hydraulic telescopic column 11 through a socket 16. Only card slots 17 distributed along the length direction are provided on the left and right side walls of the hydraulic telescopic column 11. The sliding seats 15 are arranged in the card slots 17. The bottom end of each lead screw 13 is connected to the drive shaft of the motor 14, and the motor 14 is arranged on the sliding seat 15. The top end of each lead screw 13 is rotatably connected to the connecting plate 12.
[0036] The lead screw 13 is driven to rotate by the motor 14, so that the lead screw 13 moves up and down relative to the socket 16. At the same time, the sliding seat 15 and the motor 14 are lifted and lowered synchronously. The sliding seat 15 moves along the card slot 17, so that when the detection platform 4 vibrates, it can play a certain buffering and anti-falling effect.
[0037] The horizontal moving structure includes a wire reel 18, a connecting cable 19, and a moving seat 20. There are two wire reels 18, and the two wire reels 18 are arranged at both ends of the sliding groove 3. The connecting cable 19 is connected between the two wire reels 18. The moving seat 20 is fixed to the connecting cable 19 and is located in the sliding groove 3. The bottom end of the moving seat 20 is hinged to the auxiliary support rod 7.
[0038] An installation column 21 is arranged on the side wall of the hydraulic telescopic column 11. The installation column 21 is rotatably connected with a rotating sleeve 22, and the rotating sleeve 22 is sleeved on the middle part of the auxiliary support rod 7.
[0039] The support and suspension mechanism 9 includes a support piece 23, a fixing rod 24, and a suspension plate 25. The support piece 23 is connected to the top end of the auxiliary support rod 7. There are multiple fixing rods 24, and the multiple fixing rods 24 are arranged in parallel at intervals, and the middle part of each fixing rod 24 is bent. The support piece 23 and the suspension plate 25 are connected by the fixing rod 24.
[0040] By controlling the winding of the connecting cables 19 at both ends of the moving seat 20 by the wire reel 18, the moving seat 20 is driven to move along the sliding groove 3. The moving seat 20 drives the auxiliary support rod 7 to swing with the installation column 21 as the fulcrum. When the auxiliary support rod 7 swings to the vertical state, its support height is the highest. On the contrary, the smaller the angle formed by its swing, the smaller the support height, so as to play a role in flexibly adjusting the support height. When the top end of the auxiliary support rod 7 supports on the bottom side of the detection platform 4, the support piece 23 contacts the detection platform 4 and can directly lift the detection platform 4. When it is necessary to deliver tools, by driving the moving seat 20 to move to the end close to the sliding groove 3, the top end of the auxiliary support rod 7 is lowered, the tool is hung on the suspension plate 25, and then while resetting, the top end of the swinging auxiliary support rod 7 is controlled to extend from below the detection platform 4, so as to send the tool to the side of the detection platform 4 for easy access by the detection personnel.
[0041] Both the detection platform 4 and the fence 10 are made of aluminum-zinc alloy material.
[0042] The above detailed description is a specific description of the feasible embodiments of the present invention. This embodiment is not intended to limit the patent scope of the present invention. Any equivalent implementation or modification without departing from the present invention should be included in the patent scope of this case.
Claims
1. An adjustable support for building engineering supervision and inspection, characterized in that, Including: A mobile platform, on the bottom side of which there are mobile wheels, and on the top side of which there are two chutes distributed along its length direction and symmetrically parallel to each other; A detection platform, which is located directly above the mobile platform, and is connected to the mobile platform through a hydraulic lifting control mechanism; A buffer mechanism, which is arranged on the hydraulic lifting control mechanism and is used to buffer the vibration of the detection platform; Auxiliary support rods, there are two auxiliary support rods, the two auxiliary support rods are respectively located on both sides of the hydraulic lifting control mechanism, and the middle of each auxiliary support rod is hinged to the hydraulic lifting control mechanism. The bottom end of each auxiliary support rod is arranged in the corresponding chute through a horizontal movement control structure. The top end of each auxiliary support rod is provided with a support suspension mechanism, and the horizontal movement control structure drives the support suspension mechanism at the end of the auxiliary support rod to support on the bottom side of the detection platform or extend to the side of the detection platform.
2. The adjustable support for building engineering supervision and inspection according to claim 1, wherein, A fence is arranged around the top side of the mobile platform.
3. The adjustable support for building engineering supervision and inspection according to claim 1, wherein The hydraulic lifting control mechanism includes a hydraulic telescopic column and a connecting plate. The bottom end of the hydraulic telescopic column is connected to the center of the top side of the mobile platform, and the top end of the hydraulic telescopic column is connected to the center of the bottom side of the detection platform through the connecting plate.
4. The adjustable bracket for building engineering supervision and inspection according to claim 3, characterized in that, The buffer mechanism includes a lead screw, a motor, and a sliding seat. There are two lead screws, and the two lead screws are respectively rotatably arranged on both sides of the hydraulic telescopic column through socket bolts. There are only card slots distributed along the length direction on the left and right side walls of the hydraulic telescopic column, and the sliding seats are arranged in the card slots. The bottom end of each lead screw is connected to the driving shaft of the motor, and the motor is arranged on the sliding seat. The top end of each lead screw is rotatably connected to the connecting plate.
5. The adjustable support for building engineering supervision and inspection according to claim 4, characterized in that, The horizontal movement structure includes a wire reel, a connecting cable, and a moving seat. There are two wire reels, and the two wire reels are arranged at both ends of the chute. The connecting cable is connected between the two wire reels. The moving seat is fixed to the connecting cable and is located in the chute. The moving seat is hinged to the bottom end of the auxiliary support rod.
6. The adjustable support for building engineering supervision and inspection according to claim 5, characterized in that, An installation column is arranged on the side wall of the hydraulic telescopic column, and a rotating sleeve is rotatably connected to the installation column. The rotating sleeve is sleeved on the middle of the auxiliary support rod.
7. The adjustable support for building engineering supervision and inspection according to claim 6, characterized in that, The support suspension mechanism includes a support piece, a fixing rod, and a suspension plate. The support piece is connected to the top end of the auxiliary support rod. There are multiple fixing rods, and the multiple fixing rods are distributed in parallel at intervals. The middle of each fixing rod is bent. The support piece and the suspension plate are connected through the fixing rod.
8. The adjustable support for building engineering supervision and inspection according to claim 7, characterized in that, Both the detection platform and the fence are made of aluminum-zinc alloy material.
Citation Information
Patent Citations
Adjustable support for constructional engineering supervision and detection
CN217519601U