Simple standing platform for installing skeleton revetment precast block
By designing a simple standing platform for installing precast blocks for the slope protection frame, the problem of construction workers having difficulty standing stably on the inclined precast blocks was solved, enabling construction workers to stand stably on the inclined surface and improving construction efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CHINA RAILWAY NO 2 ENG GROUP CO LTD
- Filing Date
- 2025-06-05
- Publication Date
- 2026-06-02
AI Technical Summary
The existing precast slope protection blocks are installed at an angle, making it difficult for construction workers to stand stably and affecting construction efficiency.
A simple standing platform for installing precast blocks for slope protection was designed, including an installation platform, support legs, and a bonding component. The support legs are connected to the installation platform in an "L" shape. A hook is provided at the end of the installation platform away from the support legs. The bonding component is connected to the bottom of the support legs. The bonding component adapts to the tilt angle of the precast blocks through hinge blocks and deflection grooves, thereby increasing stability.
A temporary construction platform was provided to accommodate precast blocks in an inclined position, enhancing the stability of construction workers and improving construction efficiency.
Smart Images

Figure CN224314215U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of precast slope protection blocks, and more specifically, to a simple standing platform for installing precast slope protection blocks. Background Technology
[0002] Precast slope protection blocks refer to the framework installed on the slope of the roadbed to stabilize the slope.
[0003] The existing precast slope protection blocks are installed in segments on the slope. Since the slope itself is inclined, the precast blocks are also installed at an angle. This makes it difficult for construction workers to stand stably on the inclined precast blocks to carry out construction, which affects the efficiency of construction. Utility Model Content
[0004] The purpose of this utility model is to provide a simple standing platform for installing precast slope protection blocks, which solves the problem that construction workers have difficulty standing and moving stably when the existing precast slope protection blocks are installed in sections because they are installed at an angle.
[0005] This utility model is achieved through the following technical solution:
[0006] This utility model provides a simple standing platform for installing precast blocks for a skeletal slope protection structure, including precast blocks, one end of which is connected to an installation platform, one end of which is provided with a support leg, and the end of the installation platform away from the support leg is provided with a hook. The bottom of the support leg is connected to a fitting component, which swings along an axis.
[0007] Preferably, the support legs are connected to the mounting platform in an "L" shape.
[0008] Preferably, the installation platform also includes a crossbar, which is located in the middle of the installation platform.
[0009] Preferably, several crossbars are arranged in a row.
[0010] Preferably, the hook is a protrusion that bends downward at one end of the mounting platform.
[0011] Preferably, the bonding component includes a bonding block, a hinge block, an anti-slip block, and a deflection groove. The deflection groove is disposed at the bottom of the support leg, the bonding block is connected to the bottom of the support leg, the hinge block is disposed at the top of the bonding block, and the anti-slip block is disposed at the bottom of the bonding block.
[0012] Preferably, the bonding block is hinged in the deflection groove via a top hinge block, and a gap is left between the bonding block and the bottom of the support leg.
[0013] Preferably, the anti-slip block is a triangular protrusion that extends to one side at the bottom of the adhesive block.
[0014] The technical solution of this utility model has at least the following advantages and beneficial effects:
[0015] 1. The installation platform in this device can be used to build a temporary construction platform at one end of the precast block. The "L" shape of the installation platform can accommodate the inclined surface of the precast block, allowing construction workers to move and carry out construction work at one end of the precast block more easily.
[0016] 2. The device is also equipped with a bonding component, which allows the support leg at one end of the installation platform to deflect according to the tilt angle of the precast block when supporting the surface of the precast block, thus bonding more firmly and comprehensively to the surface of the precast block. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the overall structure of this utility model.
[0018] Figure 2 This is a schematic diagram of the overall structure of the installation platform of this utility model.
[0019] Figure 3 This utility model Figure 2 A magnified structural diagram of point A in the middle.
[0020] Figure 4 This is a side view sectional structural diagram of the support leg of this utility model.
[0021] Reference numerals: 1-Precast block, 2-Installation platform, 201-Support leg, 2011-Fitting block, 2012-Hinge block, 2013-Anti-slip block, 2014-Deflection groove, 202-Crossbar, 203-Hook. Detailed Implementation
[0022] The following is combined Figures 1 to 4 This utility model will be described in detail.
[0023] A simple standing platform for installing precast blocks for slope protection includes a precast block 1. One end of the precast block 1 is connected to an installation platform 2. One end of the installation platform 2 is provided with a support leg 201. The end of the installation platform 2 away from the support leg 201 is provided with a hook 203. The bottom of the support leg 201 is connected to a fitting component, which swings along an axis. The support leg 201 and the installation platform 2 are connected in an "L" shape. The installation platform 2 also includes a crossbar 202, which is located in the middle of the installation platform 2. Several crossbars 202 are arranged in a row. The hook 203 is a protrusion that bends downward at one end of the installation platform 2.
[0024] First, after the bottom section of precast block 1 is erected on the slope of the roadbed, when continuing to install precast block 1, an installation platform 2 is connected to the top of the installed precast block 1. One end of the installation platform 2 is abutted against one end of the precast block 1 by a hook 203, and the other end is supported on the surface of the precast block 1 by a support leg 201. Because of the "L" shape of the support leg 201 and the installation platform 2, when the precast block 1 is tilted on the slope, the support leg 201 and the installation platform 2 will adapt to the slope, so that the top of the installation platform 2 is in a parallel state. This allows the construction workers to stand and move stably on the parallel installation platform 2, which facilitates the installation of the next section of precast block 1. The crossbar 202 in the middle of the installation platform 2 allows the construction workers to make contact with it.
[0025] Furthermore, the bonding assembly includes a bonding block 2011, a hinge block 2012, an anti-slip block 2013, and a deflection groove 2014. The deflection groove 2014 is disposed at the bottom of the support leg 201. The bonding block 2011 is connected to the bottom of the support leg 201. The hinge block 2012 is disposed at the top of the bonding block 2011. The anti-slip block 2013 is disposed at the bottom of the bonding block 2011. The bonding block 2011 is hinged to the deflection groove 2014 through the top hinge block 2012. A gap is left between the bonding block 2011 and the bottom of the support leg 201. The anti-slip block 2013 is a triangular protrusion that extends to one side from the bottom of the bonding block 2011.
[0026] When the support leg 201 is supported against the inclined surface of the precast block 1, it will be supported against the surface of the precast block 1 by the bottom bonding block 2011. The bonding block 2011 is hinged to the deflection groove 2014 by the top hinge block 2012. By deflecting the hinge block 2012 in the deflection groove 2014, the bonding block 2011 can be tilted to adapt to the inclined surface of the precast block 1. This avoids the bottom of the support leg 201 from not being able to fully fit against the surface of the precast block 1, resulting in a small contact area and insufficient support. The anti-slip block 2013 at the bottom of the bonding block 2011 also increases the friction with the surface of the precast block 1.
[0027] The following is a detailed implementation process of this utility model. First, after the bottom section of precast block 1 is erected on the slope of the roadbed, when continuing to install precast block 1, an installation platform 2 is connected to the top of the installed precast block 1. One end of the installation platform 2 is abutted against one end of the precast block 1 by a hook 203, and the other end is supported on the surface of the precast block 1 by a support leg 201. Because of the "L" shape of the support leg 201 and the installation platform 2, when the precast block 1 is tilted on the slope, the support leg 201 and the installation platform 2 will adapt to the slope, making the top of the installation platform 2 parallel. This allows construction workers to stand and move stably on the parallel installation platform 2, facilitating the installation of the next section of precast block 1. The crossbar 202 in the middle of the installation platform 2 allows construction workers to make contact. When the support leg 201 is supported against the inclined surface of the precast block 1, it will be supported against the surface of the precast block 1 by the bottom bonding block 2011. The bonding block 2011 is hinged to the deflection groove 2014 by the top hinge block 2012. By deflecting the hinge block 2012 in the deflection groove 2014, the bonding block 2011 can be tilted to adapt to the inclined surface of the precast block 1. This avoids the bottom of the support leg 201 not being able to fully fit with the surface of the precast block 1, resulting in a small contact area and insufficient support. The anti-slip block 2013 at the bottom of the bonding block 2011 also increases the friction with the surface of the precast block 1.
Claims
1. A simple standing platform for installing precast blocks for slope protection, comprising precast blocks (1), characterized in that, One end of the precast block (1) is connected to an installation platform (2), one end of the installation platform (2) is provided with a support leg (201), the end of the installation platform (2) away from the support leg (201) is provided with a hook (203), the bottom of the support leg (201) is connected to a bonding component, and the bonding component swings along the axis.
2. The simple standing platform for installing precast blocks of a frame slope protection according to claim 1 is characterized in that the supporting leg (201) and the installation platform (2) are connected in an "L" shape.
3. The simple standing platform for installing precast blocks of a skeleton slope protection according to claim 1 is characterized in that the installation platform (2) further includes a crossbar (202), which is arranged in the middle of the installation platform (2).
4. The simple standing platform for installing precast blocks of a frame slope protection according to claim 3 is characterized in that the crossbars (202) are arranged in a plurality of rows.
5. The simple standing platform for installing precast blocks of a frame slope protection according to claim 1 is characterized in that the hook (203) is a protrusion that is bent downward at one end of the installation platform (2).
6. A simple standing platform for installing precast blocks of a frame slope protection structure according to claim 1, characterized in that the bonding component includes a bonding block (2011), a hinge block (2012), an anti-slip block (2013), and a deflection groove (2014), wherein the deflection groove (2014) is disposed at the bottom of the support leg (201), the bonding block (2011) is connected to the bottom of the support leg (201), the hinge block (2012) is disposed at the top of the bonding block (2011), and the anti-slip block (2013) is disposed at the bottom of the bonding block (2011).
7. A simple standing platform for installing precast blocks of a frame slope protection according to claim 6, characterized in that the bonding block (2011) is hinged in the deflection groove (2014) through the top hinge block (2012), and a gap is left between the bonding block (2011) and the bottom of the support leg (201).
8. A simple standing platform for installing precast blocks for a frame slope protection according to claim 6, characterized in that the anti-slip block (2013) is a triangular protrusion extending to one side from the bottom of the bonding block (2011).