Fabricated structure construction supporting device
By using scaffolding devices in prefabricated housing construction, combined with laser detection and display devices, the problem of construction errors was solved, construction accuracy and efficiency were improved, and the verticality of the walls was ensured.
Patent Information
- Application Number
- CN202511578027.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-31
- Publication Date
- 2026-02-13
AI Technical Summary
In existing prefabricated housing construction, the support devices cannot effectively reduce construction errors, resulting in wall tilting and overall structural instability, and consuming a lot of manpower and time.
The system employs a support structure, including struts, mounting bases, and detection and display devices. Laser detection is used to measure the angle between the wall and the ground, displaying any errors and making adjustments to ensure verticality and improve construction accuracy.
It enables rapid and accurate wall fixing and angle adjustment, improving construction quality and efficiency while reducing labor costs.
Smart Images

Figure CN121519733A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of building equipment technology, and in particular to a prefabricated structure construction support device. Background Technology
[0002] During the assembly of prefabricated houses, temporary supports are needed after the walls are hoisted to facilitate subsequent fixing. Currently, the struts used in the construction process can only temporarily fix the walls. Construction workers also need to repeatedly measure each component to reduce errors during construction. The whole process consumes a lot of time and labor costs, reducing construction efficiency. Moreover, if there is a slight deviation in the installation angle during the assembly process, it is difficult for construction workers to detect it effectively and in time. This can cause the wall to tilt at a small angle and not be accurately perpendicular to the ground. As slight deviations accumulate during construction, they can even lead to instability or failure of the overall structure in severe cases. Therefore, we propose a prefabricated structure construction support device. Summary of the Invention
[0003] To overcome the shortcomings of the prior art, the present invention discloses a prefabricated structure construction support device. The present invention provides support for the wall surface during the prefabricated building construction process by setting several supports between the ground and the wall surface, thereby improving the overall quality of the building.
[0004] To achieve the aforementioned objective, the present invention employs the following technical solution: A prefabricated structural construction support device includes a support installed between the ground and the wall. The support consists of a strut, a lower fixed seat, a connecting pipe, a fixed rod, and an upper fixed seat. The lower fixed seat is located at the lower end of the strut and is installed on the ground. The connecting pipe is rotatably connected to the strut at the upper end. A threaded fixed rod is located inside the connecting pipe. The lower end of the fixed rod is located inside the connecting pipe. The upper fixed seat is rotatably connected to the upper end of the fixed rod and is fixedly installed on the wall. A detection device is provided on the support, and a display device is located below the support and is located on the ground. The detection device is used to detect the angle between the wall and the floor, and the display device is used to display the angle difference between the wall and the floor.
[0005] The connecting pipe is coaxially arranged with the support rod, and the connecting pipe rotates at the upper end of the support rod. The detection device is located below the support rod.
[0006] The detection device includes a sleeve, an adjustable laser lamp, a pressure plate, a connecting rod, a fixing clamp, and a linkage rod. The sleeve is fitted onto the support rod. An adjustable laser lamp is provided on the side of the sleeve, and the upper end of the adjustable laser lamp is rotatably connected to the side of the sleeve. A linkage rod is provided on the side of the adjustable laser lamp, and the lower end of the linkage rod is hinged to the adjustable laser lamp. A pressure plate is provided on the upper end of the linkage rod, and the upper end of the linkage rod is hinged to the pressure plate. One side of the pressure plate is attached to the wall, and the other side of the pressure plate is provided with a connecting rod. A fixing clamp is provided on the upper end of the connecting rod, and the fixing clamp is fixedly installed on the upper fixing seat.
[0007] The adjustable laser light is arranged parallel to the pressure plate, and two connecting rods are provided between the adjustable laser light and the pressure plate. The two connecting rods are arranged parallel to each other, and the light emitted from the lower end of the adjustable laser light is directed toward the display device below.
[0008] The display device includes a base plate, a support frame, a reflector, and a display panel. The upper surface of the base plate is provided with a support frame arranged in parallel. The upper surface of the support frame has a sloping structure. The reflector is set on the sloping surface of the support frame and is positioned directly below the adjustable laser light. The display panel is located on the side of the base plate near the reflector. The reflector reflects light onto the display panel.
[0009] The bottom surface of the base plate is provided with bases, and each base is provided with two legs, the upper end of which is threadedly connected to the base.
[0010] The upper surface of the base plate is equipped with a level, which is set in conjunction with the support legs.
[0011] Both ends of the lower end face of the base plate are provided with fixed tubes, and each fixed tube is provided with a lead screw. The lead screw passes through the fixed tube and is threadedly connected to the fixed tube. Each lead screw is provided with a pressure block on its outer end face, and each pressure block is provided with an anti-slip layer on its outer end face.
[0012] The upper surface of the base plate is provided with a longitudinally arranged telescopic tube. The upper movable end of the telescopic tube has an inverted U-shaped structure. The upper movable end of the telescopic tube is provided with a rotatably connected positioning laser light. The positioning laser light and each adjustment laser light are arranged on the same plane. The light emitted from the lower end of the positioning laser light shines on a reflector. The positioning laser light is provided with a counterweight.
[0013] The display panel includes a bracket, a fixing frame, and a display panel. An L-shaped bracket is distributed on the side of the base plate near the mirror surface of the reflector. A fixing frame is provided at the upper end of the bracket. The display panel is located inside the fixing frame. The light reflected by the reflector shines on the display panel, which has horizontally set scale lines.
[0014] The prefabricated structure construction support device described in this invention is highly practical and very convenient to use. By setting up supports, the installed wall can be quickly fixed, facilitating subsequent construction. With the cooperation of detection and display devices, the angle difference between the wall and the ground can be quickly and intuitively observed, facilitating timely adjustments, thereby improving the construction accuracy and quality of prefabricated houses. Attached Figure Description
[0015] Figure 1 This is a three-dimensional structural diagram of the present invention; Figure 2 This is a side view of the brace of the present invention; Figure 3 This is an enlarged view of point A in the present invention; Figure 4 This is a three-dimensional structural diagram of the detection device of the present invention; Figure 5 This is an enlarged view of section B of the present invention; Figure 6 This is a top view of the display device of the present invention; Figure 7 This is the main view of the display panel of the present invention; In the diagram: 1. Support; 2. Base plate; 3. Bracket; 4. Reflector; 5. Display board; 6. Support rod; 7. Lower fixed seat; 8. Connecting pipe; 9. Sleeve; 10. Adjustable laser light; 11. Linkage rod; 12. Fixed rod; 13. Upper fixed seat; 14. Fixed clamp; 15. Connecting rod; 16. Pressure plate; 17. Bracket; 18. Fixed pipe; 19. Screw rod; 20. Pressure block; 21. Base; 22. Support leg; 23. Telescopic pipe; 24. Positioning laser light; 25. Counterweight; 26. Level; 27. Fixed frame; 28. Display panel; 29. Scale line. Detailed Implementation
[0016] The present invention will be explained in detail through the following embodiments. The purpose of disclosing the present invention is to protect all technical improvements within the scope of the present invention.
[0017] Combined with appendix Figures 1-7 A prefabricated structural construction support device includes a support 1 installed between the ground and a wall. At least one support 1 is installed between the ground and the wall, and the supports 1 are distributed in parallel. Each support 1 consists of a strut 6, a lower fixed seat 7, a connecting pipe 8, a fixed rod 12, and an upper fixed seat 13. The lower fixed seat 7 is located at the lower end of the strut 6 and is installed on the ground. The connecting pipe 8 is rotatably connected to the strut 6 at the upper end. A threaded fixed rod 12 is located inside the connecting pipe 8, and the lower end of the fixed rod 12 is located inside the connecting pipe 8. The upper fixed seat 13 is rotatably connected to the upper end of the fixed rod 12 and is fixedly installed on the wall. A detection device is provided on the support 1, and a display device is located below the support 1 and is located on the ground. The detection device is used to detect the angle between the wall and the floor, and the display device is used to display the angle difference between the wall and the floor, which facilitates construction personnel to quickly eliminate errors and improve construction quality.
[0018] The connecting pipe 8 is coaxially arranged with the support rod 6. The connecting pipe 8 rotates at the upper end of the support rod 6. The detection device is located below the support rod 6. Rotating the connecting pipe 8 causes the fixed rod 12 to extend or retract, thereby pulling the wall and adjusting the angle between the wall and the ground to maintain the perpendicular state required for construction.
[0019] The detection device includes a sleeve 9, an adjustable laser lamp 10, a pressure plate 16, a connecting rod 15, a fixing clamp 14, and a linkage rod 11. The sleeve 9 is fitted onto the support rod 6. An adjustable laser lamp 10 is provided on the side of the sleeve 9. The upper end of the adjustable laser lamp 10 is rotatably connected to the side of the sleeve 9. A linkage rod 11 is provided on the side of the adjustable laser lamp 10. The lower end of the linkage rod 11 is hinged to the adjustable laser lamp 10. A pressure plate 16 is provided on the upper end of the linkage rod 11. The upper end of the linkage rod 11 is hinged to the pressure plate 16. One side of the pressure plate 16 is attached to the wall. When the angle of the wall changes, the angle of the pressure plate 16 changes simultaneously. A connecting rod 15 is provided on the other side of the pressure plate 16. A fixing clamp 14 is provided on the upper end of the connecting rod 15. The fixing clamp 14 is fixedly installed on the upper fixing seat 13. The fixing clamp 14 facilitates the disassembly and adjustment of the detection device.
[0020] The adjustable laser light 10 is arranged parallel to the pressure plate 16. Two connecting rods 11 are provided between the adjustable laser light 10 and the pressure plate 16. The two connecting rods 11 are arranged parallel to each other. The light emitted from the lower end of the adjustable laser light 10 is directed toward the display device below. The angle of the pressure plate 16 changes, which in turn drives the angle of the adjustable laser light 10 to change through the two connecting rods 11.
[0021] The display device includes a base plate 2, a support 3, a reflector 4, and a display panel 5. The upper surface of the base plate 2 is provided with a support 3 arranged in parallel. The upper surface of the support 3 is a sloping structure. The reflector 4 is set on the sloping surface of the support 3 and is located directly below the adjustable laser light 10. The display panel 5 is located on the side of the base plate 2 near the mirror surface of the reflector 4. The reflector 4 reflects light onto the display panel 5.
[0022] The lower end face of the base plate 2 is provided with bases 21, and each base 21 is provided with two legs 22, the upper end of the legs 22 being threadedly connected to the base 21.
[0023] The upper surface of the base plate 2 is equipped with a level 26. The level 26 is set in conjunction with the support legs 22. The state of the base plate 2 is observed by the level 26, and the support legs 22 are adjusted to keep the base plate 2 parallel to the ground.
[0024] Both ends of the lower end face of the base plate 2 are provided with fixing tubes 18, and both fixing tubes 18 are provided with screw rods 19. The screw rods 19 pass through the fixing tubes 18 and are threadedly connected to the fixing tubes 18. Both screw rods 19 are provided with pressure blocks 20 on their outer end faces. Both pressure blocks 20 are provided with anti-slip layers on their outer end faces. After the base plate 2 is installed and adjusted, the screw rods 19 are rotated to press the pressure blocks 20 against the two side walls to keep the display device stable.
[0025] The upper end of the base plate 2 is provided with a longitudinally arranged telescopic tube 23. The upper movable end of the telescopic tube 23 has an inverted U-shaped structure. The upper movable end of the telescopic tube 23 is provided with a rotatably connected positioning laser lamp 24. The positioning laser lamp 24 and each adjustment laser lamp 10 are arranged on the same plane. The light emitted from the lower end of the positioning laser lamp 24 illuminates the reflector 4. The positioning laser lamp 24 is provided with a counterweight 25. The positioning laser lamp 24 is kept perpendicular to the base plate 2 by gravity. The beam of light emitted by the positioning laser lamp 24 to the reflector 4 and the beam of light after reflection play a role in calibration and positioning, so that the beams emitted by each adjustment laser lamp 10 have a clear reference.
[0026] The display panel 5 includes a bracket 17, a fixing frame 27, and a display panel 28. An L-shaped bracket 17 is distributed on the side of the base plate 2 near the mirror surface of the reflector 4. The fixing frame 27 is provided on the upper end of the bracket 17. The display panel 28 is located inside the fixing frame 27. The light reflected by the reflector 4 shines on the display panel 28. Horizontally set scale lines 29 are distributed on the display panel 28. The position difference of the emitted beam of each adjustable laser lamp 10 can be accurately found through each scale line 29, so as to make targeted and effective adjustments to the length of the corresponding support 1 and improve the construction accuracy.
[0027] The prefabricated structural construction support device described in this embodiment involves fixing the lower end of support 1 to the ground and the upper end of support 1 to the wall. After installation, the pressure plates 16 of the detection devices on each support 1 are attached to the wall. Then, the display device is placed directly below each adjustable laser light 10. The position of the base plate 2 is adjusted so that the positioning laser light 24 and each adjustable laser light 10 are on the same plane. The base plate 2 of each support leg 22 is adjusted so that it remains parallel to the ground. After the base plate 2 is installed and adjusted, the screw rod 19 is rotated to press the pressure block 20 against the two side walls to keep the display device stable. The positioning laser light 24 is kept perpendicular to the base plate 2 by gravity. The beam emitted by the laser lamp 24 to the reflector 4 and the reflected beam serve as a calibration and positioning tool, providing a clear reference point for the beams emitted by each adjustable laser lamp 10. Based on the position of the beams of each adjustable laser lamp 10 illuminating the display panel 28, the lengths of the connecting pipe 8 and the fixing rod 12 are adjusted, thereby causing a change in the wall angle and a change in the pressure plate 16 on the wall. The change in the angle of the pressure plate 16, through the two linkage rods 11, causes a change in the angle of the adjustable laser lamp 10. The scale lines 29 on the display panel 28 can accurately detect the positional difference of the beams emitted by each adjustable laser lamp 10, thereby allowing for targeted and effective adjustment of the length of the corresponding support 1, improving construction accuracy.
[0028] The parts of this invention not described in detail are prior art. Although the invention has been specifically shown and introduced in conjunction with preferred embodiments, there are many methods and approaches to implement this technical solution. The above description is only a preferred embodiment of the invention. However, those skilled in the art should understand that various changes in form and detail can be made to the invention without departing from the spirit and scope of the invention as defined in the appended claims, and all such changes are within the scope of protection of the invention.
Claims
1. A prefabricated structural construction support device, comprising a support (1) installed between the ground and the wall, the support (1) being composed of a strut (6), a lower fixing seat (7), a connecting pipe (8), a fixing rod (12), and an upper fixing seat (13), characterized in that: The lower end of the support rod (6) is provided with a lower fixed seat (7), which is installed on the ground. The upper end of the support rod (6) is provided with a connecting pipe (8), which is rotatably connected to the support rod (6). The connecting pipe (8) is provided with a threaded fixed rod (12), the lower end of which is located inside the connecting pipe (8). The upper end of the fixed rod (12) is provided with a rotatably connected upper fixed seat (13), which is fixedly installed on the wall. The support (1) is provided with a detection device, and the support (1) is provided with a display device below it. The display device is located on the ground. The detection device is used to detect the angle between the wall and the floor, and the display device is used to display the angle difference between the wall and the floor.
2. The prefabricated structure construction support device according to claim 1, characterized in that: The connecting pipe (8) is coaxially arranged with the support rod (6), the connecting pipe (8) rotates at the upper end of the support rod (6), and the detection device is set below the support rod (6).
3. The prefabricated structure construction support device according to claim 2, characterized in that: The detection device includes a sleeve (9), an adjustable laser lamp (10), a pressure plate (16), a connecting rod (15), a fixing clamp (14), and a linkage rod (11). The sleeve (9) is fitted onto the support rod (6). An adjustable laser lamp (10) is provided on the side of the sleeve (9). The upper end of the adjustable laser lamp (10) is rotatably connected to the side of the sleeve (9). A linkage rod (11) is provided on the side of the adjustable laser lamp (10). The lower end of the linkage rod (11) is hinged to the adjustable laser lamp (10). A pressure plate (16) is provided on the upper end of the linkage rod (11). The upper end of the linkage rod (11) is hinged to the pressure plate (16). One side of the pressure plate (16) is attached to the wall. A connecting rod (15) is provided on the other side of the pressure plate (16). A fixing clamp (14) is provided on the upper end of the connecting rod (15). The fixing clamp (14) is fixedly installed on the upper fixing seat (13).
4. The prefabricated structure construction support device according to claim 3, characterized in that: The adjustable laser lamp (10) is arranged in parallel with the pressure plate (16). Two connecting rods (11) are provided between the adjustable laser lamp (10) and the pressure plate (16). The two connecting rods (11) are arranged in parallel. The light emitted from the lower end of the adjustable laser lamp (10) is directed toward the display device below.
5. The prefabricated structure construction support device according to claim 4, characterized in that: The display device includes a base plate (2), a support (3), a reflector (4), and a display board (5). The upper surface of the base plate (2) is provided with a support (3) arranged in parallel. The upper surface of the support (3) is a sloping structure. The reflector (4) is set on the sloping surface of the support (3) and is located directly below the adjustable laser light (10). The display board (5) is provided on the side of the base plate (2) near the mirror surface of the reflector (4). The reflector (4) reflects light onto the display board (5).
6. The prefabricated structure construction support device according to claim 5, characterized in that: The bottom plate (2) has bases (21) distributed on its lower end surface. Each base (21) has two legs (22) and the upper end of the legs (22) is threadedly connected to the base (21).
7. The prefabricated structure construction support device according to claim 6, characterized in that: The upper surface of the base plate (2) is provided with a level (26), which is set in conjunction with the support leg (22).
8. The prefabricated structure construction support device according to claim 7, characterized in that: The bottom plate (2) has fixed tubes (18) at both ends of its lower end face. Each fixed tube (18) has a screw rod (19) inside it. The screw rod (19) passes through the fixed tube (18) and is threadedly connected to the fixed tube (18). Each screw rod (19) has a pressure block (20) on its outer end face. Each pressure block (20) has an anti-slip layer on its outer end face.
9. The prefabricated structure construction support device according to claim 8, characterized in that: The upper end of the base plate (2) is provided with a longitudinally arranged telescopic tube (23). The upper movable end of the telescopic tube (23) is an inverted U-shaped structure. The upper movable end of the telescopic tube (23) is provided with a rotatably connected positioning laser lamp (24). The positioning laser lamp (24) and each adjustment laser lamp (10) are set on the same plane. The light emitted from the lower end of the positioning laser lamp (24) shines on the reflector (4). The positioning laser lamp (24) is provided with a counterweight (25).
10. The prefabricated structure construction support device according to claim 5, characterized in that: The display panel (5) includes a bracket (17), a fixing frame (27) and a display panel (28). An L-shaped bracket (17) is distributed on the side of the base plate (2) near the mirror surface of the reflector (4). A fixing frame (27) is provided at the upper end of the bracket (17). A display panel (28) is provided inside the fixing frame (27). The light reflected by the reflector (4) shines on the display panel (28). Horizontally set scale lines (29) are distributed on the display panel (28).