Building construction installation supporting platform
By introducing sliding rails and sliding components into the support platform for building construction and installation, the platform can be quickly adjusted in position, solving the problem of wide support range requirements, improving construction efficiency and reducing costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CHONGQING CONSTR RESIDENTIAL ENG
- Filing Date
- 2025-05-29
- Publication Date
- 2026-05-01
AI Technical Summary
Existing building construction and installation support platforms have a wide range of support requirements on the horizontal plane, which leads to the need for a large number of disc-type and steel pipe fasteners for installation, increasing construction costs and reducing construction efficiency.
The design employs slide rails and sliding components. By laying the slide rails and locking the sliding components, the horizontal position of the support platform can be adjusted, reducing the need for structural components and improving assembly and disassembly efficiency.
The design of the slide rails and sliding components allows for rapid changes in the installation position of the support platform, reducing construction costs and improving construction efficiency.
Smart Images

Figure CN224187136U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of building construction technology, and in particular to a building construction installation support platform. Background Technology
[0002] Construction and installation support platforms refer to temporary structural systems erected during construction to provide a safe and stable working surface, support construction loads (such as personnel, materials, and equipment), and ensure construction accuracy and safety. They are essential temporary facilities in construction and are widely used in various engineering scenarios.
[0003] Currently, scaffolding for building construction and installation often uses a combination of disc-lock scaffolding and steel pipe couplers. The support rods of this combination typically rest stably against the ground, making horizontal movement of the entire platform difficult. This necessitates a wide horizontal support range for the platform, requiring a large number of disc-lock scaffolding and steel pipe couplers, leading to high construction costs. Furthermore, the disassembly of these couplers after construction is time-consuming and labor-intensive, reducing construction efficiency. Utility Model Content
[0004] To address the shortcomings of existing technologies, this utility model provides a building construction and installation support platform. This solves the problem that when the support platform requires a wide range of support on the horizontal plane, it is necessary to use a large number of disc-type and steel pipe fasteners for installation, resulting in high construction costs.
[0005] To achieve the above objectives, the basic solution of this utility model is as follows: A building construction and installation support platform, comprising a support platform body and a support column located on the lower side of the support platform body, and further comprising a horizontal position adjustment unit, the horizontal position adjustment unit comprising:
[0006] Several slide rails are arranged horizontally, and the ends of the slide rails can be connected and communicated in sequence; a first wing plate that can be fixedly connected to the ground is fixedly installed on the side wall of the slide rail.
[0007] Several sliding components are provided, which are slidably locked to the slide rail. The side of the sliding component away from the slide rail is detachably connected to the lower end of the support column.
[0008] The technical principle of this utility model is as follows: When using the building construction installation support platform, firstly, several slide rails are laid according to the construction location of the building, and the ends of two adjacent slide rails are connected. Then, the sliding component is installed on the slide rail, the support column is installed on the sliding component, and then the support platform body is installed on the support column. Then, according to the construction location, the entire support platform body is moved horizontally along the slide rail. When the support platform body moves to the corresponding position, the sliding component is locked on the slide rail. Construction personnel can climb onto the support platform body to carry out construction. During construction, the assembled and fixed slide rail provides stable support for the support platform body.
[0009] When the construction location changes, the locking between the sliding component and the slide rail is released, and the support platform body is moved horizontally along the slide rail again. The installation position of the support platform body can be changed quickly, and the support platform body can correspond to different construction locations. The number of structural components that need to be installed on the support platform body is reduced, which can effectively improve the assembly and disassembly efficiency of the building construction installation support platform and reduce construction costs.
[0010] Furthermore, the slide rail is provided with a groove whose longitudinal cross-sectional profile is inverted "T" shaped, and the sliding assembly includes:
[0011] The slider body is detachably connected to the lower end of the support column;
[0012] The sliding component is an inverted "T" shaped component that can be embedded in the sliding groove, and the upper end of the sliding component is fixedly connected to the lower side of the slider body.
[0013] With the above configuration, the "T"-shaped groove can cooperate with the "T"-shaped sliding component, so that the sliding component and the inner wall of the groove are stably abutted and not easy to separate, making the cooperation between the sliding component and the slide rail more stable; at the same time, the slider body is easier to cooperate and install with the support column, thus making the cooperation between the support platform body and the slide rail more stable.
[0014] Furthermore, several balls are rotatably embedded in the lower surface of the sliding component, and the balls slide in contact with the inner wall of the slide groove of the slide rail.
[0015] With the above settings, when the support platform body slides horizontally along the slide rail, the balls can roll into contact with the inner wall of the slide rail groove, reducing the resistance when the support platform body slides horizontally and improving the smoothness of the horizontal sliding of the support platform body.
[0016] Furthermore, a second wing plate is provided on both vertical sides of the slide rail end, and fastening bolts can be detachably installed on the second wing plate of two adjacent slide rail ends.
[0017] With the above setup, when connecting two adjacent slide rails, the second wing plates at the ends of the two adjacent slide rails are made to fit together, and then the two second wing plates are fixedly connected with fastening bolts to achieve a stable and precise splicing connection between the two adjacent slide rails.
[0018] Furthermore, the side of the first wing plate is fixedly connected to the end face of the second wing plate near the middle of the slide rail, and the horizontal plane where the first wing plate is located is perpendicular to the vertical plane where the second wing plate is located, and the lower surface of the first wing plate is coplanar with the lower surface of the slide rail.
[0019] With the above configuration, the first and second wing plates can reinforce the ends of the slide rails and also reinforce the joints between the ends of two adjacent slide rails, making the connection between the two slide rails more stable when providing sliding support for the support platform body.
[0020] Furthermore, the first wing plate is detachably fitted with mounting bolts that can be connected to the ground.
[0021] With the above configuration, the first wing plate can be more stably installed on the ground using mounting bolts, which makes the slide rail configuration more stable and provides more stable support for the platform body.
[0022] Furthermore, the sliding component also includes:
[0023] The locking pin has a first insertion hole on the sliding part for the locking pin to pass through horizontally, and a number of second insertion holes on the side wall of the slide rail for the locking pin to pass through horizontally. The number of second insertion holes are evenly arranged along the axial direction of the slide rail, and the first insertion hole can coincide with the second insertion hole.
[0024] With the above settings, when locking the sliding component and the slide rail, the first socket on the sliding component is aligned with the closest second socket on the slide rail. The locking pin is then inserted into the first and second sockets to lock and fix the sliding component and the slide rail. The locking pin is then removed horizontally to loosen the sliding component and the slide rail, allowing for adjustment of the horizontal position of the support platform body. The locking and sliding control of the support platform body is convenient and quick. Attached Figure Description
[0025] Figure 1 This is a schematic diagram of the axial direction of a building construction and installation support platform according to an embodiment of the present utility model.
[0026] Figure 2 This is an enlarged view of the horizontal position adjustment unit in a building construction and installation support platform according to an embodiment of the present utility model.
[0027] Figure 3 This is an enlarged view of a sliding component in a building construction and installation support platform according to an embodiment of the present utility model.
[0028] In the above-mentioned attached figures: support platform body 10, floor slab 101, guardrail 102, stairs 103, support column 20, slide rail 30, slide groove 301, first wing plate 302, mounting bolt 303, second wing plate 304, fastening bolt 305, second insertion hole 306, slider body 401, sliding component 402, first insertion hole 403, locking pin 404, ball bearing 405. Detailed Implementation
[0029] The technical solution of this utility model will be further described below with reference to the accompanying drawings and embodiments.
[0030] This embodiment is basically as follows: Figure 1 , Figure 2 and Figure 3 As shown in the figure, this utility model embodiment proposes a building construction and installation support platform, including a support platform body 10, four support columns 20 located on the lower side of the support platform body 10, and a horizontal position adjustment unit. The support platform body 10 is composed of several floor slabs 101, guardrails 102, and stairs 103. The support platform body 10 has a multi-layer plate structure, which can support construction personnel to carry out multi-layer support construction. The four support columns 20 are vertically fixed to the lower side of the support platform body 10 by bolt structure.
[0031] like Figure 1 , Figure 2 and Figure 3 As shown, the horizontal position adjustment unit includes several slide rails 30 and four sliding components, with each of the four sliding components corresponding to the lower end of one of the four support columns 20; as shown... Figure 1-3 As shown, the slide rail 30 is horizontally arranged, and the slide rail 30 has a groove 301 with an inverted "T" shaped longitudinal section. The side walls at both ends of the slide rail 30 are integrally formed with first wing plates 302 that can be fixedly connected to the ground. The first wing plates 302 are detachably mounted with mounting bolts 303 that can be connected to the ground. At the same time, the two vertical sides at the ends of the slide rail 30 are integrally formed with second wing plates 304. Fastening bolts 305 are detachably mounted at the second wing plates 304 at the ends of two adjacent slide rails 30. The side of the first wing plate 302 and the end face of the second wing plate 304 near the middle of the slide rail 30 are integrally formed, and the horizontal plane of the first wing plate 302 is perpendicular to the vertical plane of the second wing plate 304. The lower surface of the first wing plate 302 is coplanar with the lower surface of the slide rail 30, so that the ends of several slide rails 30 can be connected and communicated in sequence.
[0032] At the same time, such as Figure 1 , Figure 2 and Figure 3As shown, the sliding assembly includes a slider body 401, a sliding member 402, and a locking pin 404. The upper surface of the slider body 401 is detachably connected to the mounting hole at the lower end of the support column 20 via bolts. The sliding member 402 is an inverted "T"-shaped sliding member that can be embedded into the sliding groove 301. The upper end of the sliding member 402 is integrally formed with the lower side of the slider body 401. Figure 3 The sliding member 402 shown has several balls 405 embedded and rotatably mounted on its lower surface. The balls 405 slide in contact with the inner wall of the groove 301 of the slide rail 30. At the same time, the sliding member 402 is provided with a first insertion hole 403 for the locking pin 404 to pass through horizontally. The side wall of the slide rail 30 is provided with several second insertion holes 306 for the locking pin 404 to pass through horizontally. The several second insertion holes 306 are evenly arranged along the axial direction of the slide rail 30. The first insertion hole 403 can coincide with the second insertion hole 306.
[0033] In this embodiment, a building construction and installation support platform is used by first laying several slide rails 30 according to the construction location of the building. When connecting the ends of two adjacent slide rails 30, the second wing plates 304 at the ends of the two adjacent slide rails 30 are made to fit together. Then, fastening bolts 305 are used to fix the two second wing plates 304 together to achieve the splicing connection of the two adjacent slide rails 30. At the same time, mounting bolts 303 are used to fix the first wing plate 302 of the slide rail 30 to the ground to achieve the fixed installation of the slide rail 30.
[0034] Then, the sliding component 402 is installed into the slide groove 301 of the slide rail 30, the support column 20 is installed onto the upper surface of the slider body 401, and the mounting floor 101, guardrail 102 and stairs 103 in the support platform body 10 are assembled onto the support column 20 to realize the installation of the support platform body 10, the support column 20 and the horizontal position adjustment unit.
[0035] Then, according to the construction location, the entire support platform body 10 is moved horizontally along the slide rail 30. The sliding component 402 moves horizontally along the slide groove 301 of the slide rail 30, and the ball bearing 405 on the lower surface of the sliding component 402 slides relative to the inner wall of the slide groove 301. When the support platform body 10 moves to the corresponding position, the first insertion hole 403 on the sliding component 402 is aligned with the closest second insertion hole 306 on the slide rail 30. The locking pin 404 is inserted into the first insertion hole 403 and the second insertion hole 306 to lock and fix the sliding component 402 and the slide rail 30. This simultaneously locks and fixes the overall position of the sliding component, the support column 20, and the support platform body 10, allowing construction personnel to climb onto the support platform body 10 for construction. During construction, the assembled and fixed slide rail 30 provides stable support for the support platform body 10.
[0036] When the construction position changes, the locking pins 404 at the first socket 403 and the second socket 306 are removed, and the support platform body 10 is moved horizontally along the slide rail 30 again. The installation position of the support platform body 10 can be changed quickly, and the support platform body 10 can correspond to different construction positions. After the position of the support platform body 10 is adjusted, the locking pins 404 are inserted into the first socket 403 and the second socket 306 again, and the position of the support platform body 10 can be locked quickly. The position adjustment of the support platform body 10 is convenient and reliable. The number of structural components such as the floor slab 101, guardrail 102 and staircase 103 required in the whole construction process is reduced, which can effectively improve the assembly and disassembly efficiency of the building construction installation support platform and reduce construction costs.
[0037] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model and are not intended to limit it. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this utility model without departing from the spirit and scope of the technical solutions of this utility model, and all such modifications or substitutions should be covered within the scope of the claims of this utility model.
Claims
1. A building construction and installation support platform, comprising a support platform body and a support column located on the lower side of the support platform body, characterized in that, It also includes a horizontal position adjustment unit, which includes: A plurality of slide rails are provided, the slide rails being horizontally arranged, and the ends of the slide rails being sequentially connected and interconnected; a first wing plate that can be fixedly connected to the ground is fixedly provided on the side wall of the slide rail. Several sliding components are provided, which are slidably locked to the slide rail, and the side of the sliding component away from the slide rail is detachably connected to the lower end of the support column.
2. A building construction installation support platform as claimed in claim 1, characterised in that, The slide rail has a groove with an inverted "T" shaped longitudinal cross-section, and the sliding assembly includes: The slider body is detachably connected to the lower end of the support column; The sliding component is an inverted "T" shaped component that can be embedded in a sliding groove, and the upper end of the sliding component is fixedly connected to the lower side of the slider body.
3. A building construction installation support platform as claimed in claim 2, wherein, Several balls are rotatably mounted embedded in the lower surface of the sliding component, and the balls slide in contact with the inner wall of the slide groove of the slide rail.
4. A building construction and installation support platform as described in any one of claims 1-3, characterized in that, The slide rail is provided with a second wing plate on both vertical sides at the end of the slide rail, and fastening bolts can be detachably installed on the second wing plate at the ends of two adjacent slide rails.
5. A building construction and installation support platform as described in claim 4, characterized in that, The side of the first wing plate is fixedly connected to the end face of the second wing plate near the middle of the slide rail, and the horizontal plane where the first wing plate is located is perpendicular to the vertical plane where the second wing plate is located. The lower surface of the first wing plate is coplanar with the lower surface of the slide rail.
6. A building construction installation support platform as claimed in claim 5, wherein, The first wing plate is detachably fitted with mounting bolts that can be connected to the ground.
7. A building construction and installation support platform as described in claim 2, characterized in that, The sliding assembly further includes: The sliding member has a first insertion hole for the locking pin to pass through horizontally, and the side wall of the slide rail has a number of second insertion holes for the locking pin to pass through horizontally. The number of second insertion holes are evenly arranged along the axial direction of the slide rail, and the first insertion hole can coincide with the second insertion hole.