A scaffold upright fixing device for a ramp surface

By designing an adjustable mounting base and support pad for the scaffold uprights, the problem of fixing uprights on sloping ground is solved, achieving stable locking and improved safety, adapting to different slopes, and reducing construction difficulty and cost.

CN224679099UActive Publication Date: 2026-08-25YUNNAN CONSTR INVESTMENT HLDG GRP CO LTD
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Patent Information

Application Number
CN202521856654.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-29
Publication Date
2026-08-25
Estimated Expiration
2035-08-29

AI Technical Summary

Technical Problem

When erecting scaffolding on sloping ground, traditional fixing methods cannot effectively adjust the angle, resulting in the inability to fix the uprights, which poses a risk of slippage and may cause the entire structure to collapse, resulting in poor stability and safety.

Method used

A fixing device is designed, which includes an adjustable mounting base, an adjustable support, a pole fixing component, and a support pad. It is connected to the slope through a pre-embedded part, and the pole is stabilized by the adjustable support and locking assembly. A leveling device is provided to ensure verticality, and the support pad has a wedge-shaped structure for anti-slip and stability.

Benefits of technology

It achieves secure locking of the uprights, prevents slippage, ensures the overall stability of the scaffolding, reduces the risk of slippage caused by slope, improves construction safety and efficiency, adapts to different slopes, reduces terrain modification costs, extends the life of the equipment, and improves visibility.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a scaffold vertical rod fixing device for slope surface, include: adjustable mounting seat, adjustable mounting seat is connected with the slope through embedded part, adjustable support spare, the below of adjustable support spare is detachably installed on adjustable mounting seat through connecting component, and is locked and fixed after adopting locking assembly through adjusting adjustable support spare to suitable position, vertical rod fixing spare, vertical rod fixing spare is detachably installed on the top of adjustable support spare through mounting assembly, is used for the vertical rod of plug -in formula installation scaffold, support cushion block, support cushion block is detachably installed between adjustable support spare and vertical rod insertion tube. The utility model simple structure, design novel and reasonable, and the whole stability and safety of guaranteeing scaffold, offsetting the sliding risk of gradient, realize firmly locking the vertical rod position of scaffold, prevent its along the slope surface and slide down, avoid the whole instability collapse of scaffold from the root.
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Description

Technical Field

[0001] This utility model relates to a fixing device, specifically a scaffolding upright fixing device for sloping surfaces. It is mainly used to assist in the installation and fixing of scaffolding uprights when erecting scaffolding on sloping sites, and belongs to the field of construction supplies technology. Background Technology

[0002] As we all know, scaffolding is an indispensable temporary facility in construction. Its role runs through the entire construction process, playing a key role from foundation construction to main structure and decoration. By erecting stable uprights, horizontal bars and footboards, scaffolding forms a horizontal or vertical working surface, allowing workers to operate on a relatively flat and stable platform, avoiding direct climbing or suspended work, and greatly reducing the risk of falling from heights.

[0003] During construction, scaffolding is often erected at specific work locations. While this is convenient and quick on flat ground, it becomes problematic on sloping sites. Due to angle differences, the uprights cannot be directly fixed to the slope. Traditional methods, such as building steps or adding reinforcing bars and base plates, are used to adjust the angle, but these methods cannot be adapted to the specific needs of the construction process. Building steps is time-consuming and labor-intensive, cannot be dismantled and reused, and has extremely poor stability. Excavating steps may damage the original terrain, while concrete base plates require a curing period, extending the construction time. Adding reinforcing bars and base plates or using timber provides insufficient stability, easily causing the uprights to become unstable, leading to an imbalance in the entire scaffold structure and potentially causing a complete collapse. In short, these methods are often very inconvenient.

[0004] Therefore, the key to solving the above-mentioned technical problems lies in developing a scaffolding upright fixing device with strong practicality and high reliability for use on sloping surfaces. Summary of the Invention

[0005] In view of the many defects and deficiencies in the above-mentioned background technology, this utility model has made improvements and innovations, with the aim of providing a simple structure, novel and reasonable design, quick and convenient installation and dismantling, and the ability to be repeatedly and sequentially reused to ensure the overall stability and safety of the scaffolding, and to offset the risk of slippage caused by the slope. Through the design of this adjustable structure, the position of the scaffolding uprights can be firmly locked to prevent them from sliding down the slope, thus avoiding the overall instability and collapse of the scaffolding from the root.

[0006] To solve the above problems and achieve the above-mentioned invention objectives, this utility model provides a scaffolding upright fixing device for sloping surfaces, which is achieved by adopting the following design structure and the following technical solution:

[0007] A scaffolding upright fixing device for sloping surfaces, comprising:

[0008] Adjustable mounting base, which is connected to the slope via embedded parts;

[0009] The adjustable support is detachably mounted on the adjustable mounting base via a connecting component at its lower part, and is locked in place by a locking component after the adjustable support is adjusted to the appropriate position.

[0010] Upright fixing components are detachably mounted on top of adjustable supports via mounting assemblies for plug-and-play installation of scaffold uprights.

[0011] Support pad, which is detachably installed between the adjustable support and the upright insert.

[0012] Preferably, it also includes a leveling device, which is mounted on the pole fixing component via a mounting bracket.

[0013] Preferably, the leveling device is a bubble level or a spirit level.

[0014] Preferably, the adjustable mounting base includes:

[0015] The connecting plate has through holes at all four corners for the embedded parts to pass through.

[0016] Support, the support is connected to the upper middle part of the connecting plate, and is used to install adjustable support components;

[0017] The support is a U-shaped seat with an open top. Multiple adjustment holes are arranged in rows on the upper end face of both sides of the U-shaped seat, either at equal or unequal intervals. A mounting hole for connecting components to pass through is also provided in the middle of the support.

[0018] The embedded part is a high-strength bolt;

[0019] Alternatively, it may consist of a high-strength bolt and a washer that is tightened and fitted onto the high-strength bolt.

[0020] Preferably, the adjustable support includes:

[0021] The mounting post has a connecting hole that matches the mounting hole in the middle of its lower part, and a locking hole that is symmetrically opened in the upper part of the mounting post for the locking assembly to pass through.

[0022] The support body is connected to the top of the mounting column; wherein, mounting holes are provided at equal or unequal intervals around the perimeter of the support body.

[0023] Preferably, the connection component includes:

[0024] The connecting bolts pass through the mounting holes and the connecting holes to connect the adjustable support and the adjustable mounting base into a whole.

[0025] Connecting gasket, the connecting gasket passes through the connecting bolt and is located at the top of the connecting plate;

[0026] Connecting nuts are tightened onto the end of the connecting bolts.

[0027] Preferably, the locking assembly includes:

[0028] The locking bolt passes through the adjustment hole to connect the adjustable support and the adjustable mounting base into a whole.

[0029] Locking washer, the locking washer passes through the locking bolt and is located at the top of the connecting plate;

[0030] Lock nut, which is tightened onto the end of the locking bolt.

[0031] Preferably, the pole fixing component includes:

[0032] The mounting plate has mounting holes that are equidistant or unequally spaced around its perimeter.

[0033] The pole insert is connected to the center of the top of the mounting plate.

[0034] The pole insert is a threaded sleeve with a smooth inner wall or an internal thread section.

[0035] Preferably, the mounting components include:

[0036] The mounting bolts pass through the mounting holes on the mounting plate, the pad fixing holes on the support pad, and the mounting holes on the support body in sequence from top to bottom, connecting the upright fixing component and the support pad to the adjustable support component as a whole, and the ends are locked and fixed by the mounting nuts.

[0037] Install a gasket, which passes through the mounting bolt and is located at the top of the connecting plate;

[0038] Install the nut, and tighten the nut onto the end of the mounting bolt;

[0039] The support pad is generally a wedge-shaped structure in the shape of a disc or a semi-disc.

[0040] Several pad fixing holes are circumferentially opened on the support pad.

[0041] Preferably, the adjustable mounting base, embedded parts, adjustable support parts, connecting components, locking components, pole fixing parts and installation components, as well as the outer surface of the support pad are sequentially sprayed from the inside to the outside with an injection molding layer, an anti-rust layer, a waterproof layer and a warning layer, and the warning layer is coated with fluorescent powder.

[0042] The working principle is as follows: Before using the above-mentioned scaffolding upright fixing device for sloping surfaces, it is necessary to install the already manufactured scaffolding upright fixing device as a backup.

[0043] Before construction, the operators first conduct surveying and setting out, and then carry out the setting out operation according to the specific slope conditions, so as to achieve the coaxial installation of multiple scaffolding upright fixing devices of this utility model in rows on the same slope.

[0044] During installation, the operator, based on the specific location of the layout measurement according to this utility model, installs each adjustable mounting base to the designated layout position at each layout point using the pre-embedded parts. Then, the operator detachably installs the adjustable support onto the support using the connecting assembly. To facilitate later adjustment according to the slope inclination, the connecting nut at the end of the adjustable support does not need to be tightened temporarily when connecting it with the connecting assembly. Simultaneously, the position of the adjustable support is adjusted according to the slope inclination angle. After adjusting to the appropriate position, the adjustable support is fixed in place using the locking assembly. After adjustment, the locking bolt passes through the adjustment hole and locking hole to connect and secure the adjustable support to the adjustable mounting base as a whole. Before connection, the locking washer passes through the locking bolt and is located at the top of the connecting plate. Finally, the locking nut is tightened to the end of the locking bolt. After reliable installation and placement in the appropriate position, the connecting assembly is tightened again for secure stability. Then, the operator, based on the slope inclination and the installation position of the scaffolding uprights, proceeds... Install support pads of appropriate size onto the support body. Then, adjust the support body to the appropriate position. Align the support pads with the upright fixing components and adjust them to the appropriate position. Next, use the installation components to connect and secure the upright fixing components and support pads to the adjustable support as a whole. Ensure the verticality of the upright fixing components meets the actual construction requirements. Then, the operator tightens the installation and locking components of this utility model to ensure practical safety and reliability during construction. During use, the operator can check the verticality of the upright fixing components using the leveling device. If it does not meet the requirements, adjust it. After adjusting to the appropriate position, follow the above installation method to complete the installation of other scaffold upright fixing devices. Finally, the operator simply installs the pre-prepared scaffold uprights onto the corresponding upright fixing components. After the scaffold uprights are installed, connect them to other parts of the scaffold to form the scaffold, and then proceed with subsequent construction procedures.

[0045] The beneficial effects of this utility model compared with the prior art are:

[0046] 1. This utility model has a simple structure, novel and reasonable design, and is quick and convenient to install and disassemble, and can be reused multiple times.

[0047] Repeated and sequential use ensures the overall stability and safety of the scaffolding, offsetting the risk of slippage caused by the slope. Through the design of this adjustable structure, the position of the scaffolding uprights can be firmly locked, preventing them from sliding down the slope and avoiding the overall instability and collapse of the scaffolding from the root.

[0048] 2. This utility model allows the uprights to remain vertical even on inclined slopes by adjusting their verticality.

[0049] The vertical stress state ensures that the load is evenly transferred to the foundation or substructure, reducing the risk of overload of the members.

[0050] 3. This utility model allows for flexible adjustment to match different slopes, and can adapt to the inclination angle of the slope, such as...

[0051] With angles of 15°, 35°, and 45°, the verticality of the scaffolding uprights and the position of the fixing points can be flexibly adjusted without the need for large-scale leveling of the slope, saving on terrain modification costs.

[0052] 4. Because this utility model is equipped with a leveling device, it enables intuitive and convenient position monitoring during use, solving the problems of low efficiency and large error in traditional calibration methods. It ensures the rationality of the force on the uprights and the overall stability of the scaffolding from the source of erection, while reducing construction difficulty and improving the safety and efficiency of scaffolding.

[0053] 5. By setting support pads and designing the support pads as wedge-shaped structures, this utility model realizes the functions of angle adjustment compensation and anti-slip stability during use. The angle can be adjusted to be horizontal, solving the problem of stable fixation of the upright on the inclined foundation, and ensuring construction efficiency and safety.

[0054] 6. The exterior of this utility model is coated with anti-rust paint and a waterproof layer, thus preventing rusting while also...

[0055] This extends the lifespan of the entire device, achieving environmental protection while saving resources. In addition, the exterior of the device is coated with a self-illuminating fluorescent material, which can clearly mark the location of the device at night or in dark indoor and underground construction environments, effectively serving as a safety warning, increasing visibility, making it easy for people to identify, and increasing safety in construction and daily life. Attached Figure Description

[0056] The specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings, wherein:

[0057] Figure 1This is a schematic diagram of the overall usage state of this utility model;

[0058] Figure 2 This is one of the schematic diagrams showing the installation and use of this utility model;

[0059] Figure 3 This is the second schematic diagram of the installation and use status of this utility model;

[0060] Figure 4 This is the third schematic diagram of the installation and use status of this utility model;

[0061] Figure 5 This is an exploded view of the overall structure of this utility model;

[0062] Figure 6 This is one of the schematic diagrams of the overall assembly structure of this utility model;

[0063] Figure 7 This is the second schematic diagram of the overall assembly structure of this utility model;

[0064] Figure 8 This is the third schematic diagram of the overall assembly structure of this utility model;

[0065] Figure 9 This is a schematic diagram of the overall structure of another design of this utility model;

[0066] Figure 10 This is a schematic diagram of the overall structure of the support pad (8) component of this utility model;

[0067] Figure 11 This is a schematic diagram of the overall structure of another design structure of the support pad (8) component of this utility model;

[0068] In the figure, the numbers are: 1—adjustable mounting base, 11—connecting plate, 12—support, 121—adjustment hole, 122—mounting hole;

[0069] 2—Embedded parts;

[0070] 3—Adjustable support component; 31—Mounting column; 311—Connecting hole; 312—Locking hole; 32—Support component body;

[0071] 4—Connecting component, 41—Connecting bolt, 42—Connecting washer, 43—Connecting nut;

[0072] 5—Locking assembly, 51—Locking bolt, 52—Locking washer, 53—Locking nut;

[0073] 6—Upright fixing component; 61—Mounting plate; 62—Upright insertion tube;

[0074] 7—Mounting component, 71—Mounting bolt, 72—Mounting washer, 73—Mounting nut;

[0075] 8—Support pad, 81—Pack fixing hole;

[0076] 9—Leveling device; 91—Mounting bracket;

[0077] 10—slope, 101—scaffolding, 102—scaffolding uprights. Detailed Implementation

[0078] To make the technical means, inventive features, objectives, and effects of this utility model readily understandable, the technical solution of this utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that, unless otherwise specified, the embodiments and features in the embodiments of this application can be combined with each other. The present utility model will now be described in detail with reference to the accompanying drawings and embodiments.

[0079] Example 1

[0080] like Figures 1 to 11 The scaffolding upright fixing device shown includes:

[0081] Adjustable mounting base, which is connected to the slope via embedded parts;

[0082] The adjustable support is detachably mounted on the adjustable mounting base via a connecting component at its lower part, and is locked in place by a locking component after the adjustable support is adjusted to the appropriate position.

[0083] Upright fixing components are detachably mounted on top of adjustable supports via mounting assemblies for plug-and-play installation of scaffold uprights.

[0084] Support pad, which is detachably installed between the adjustable support and the upright insert.

[0085] Furthermore, the adjustable mounting base includes:

[0086] The connecting plate has through holes at all four corners for the embedded parts to pass through.

[0087] Support, the support is connected to the upper middle part of the connecting plate, and is used to install adjustable support components;

[0088] The support is a U-shaped seat with an open top. Multiple adjustment holes are arranged in rows on the upper end face of both sides of the U-shaped seat, either at equal or unequal intervals. A mounting hole for connecting components to pass through is also provided in the middle of the support.

[0089] The embedded part is a high-strength bolt;

[0090] Alternatively, it may consist of a high-strength bolt and a washer that is tightened and fitted onto the high-strength bolt.

[0091] Furthermore, the adjustable support includes:

[0092] The mounting post has a connecting hole that matches the mounting hole in the middle of its lower part, and a locking hole that is symmetrically opened in the upper part of the mounting post for the locking assembly to pass through.

[0093] The support body is connected to the top of the mounting column; wherein, mounting holes are provided at equal or unequal intervals around the perimeter of the support body.

[0094] Furthermore, the connection component includes:

[0095] The connecting bolts pass through the mounting holes and the connecting holes to connect the adjustable support and the adjustable mounting base into a whole.

[0096] Connecting gasket, the connecting gasket passes through the connecting bolt and is located at the top of the connecting plate;

[0097] Connecting nuts are tightened onto the end of the connecting bolts.

[0098] Furthermore, the locking assembly includes:

[0099] The locking bolt passes through the adjustment hole to connect the adjustable support and the adjustable mounting base into a whole.

[0100] Locking washer, the locking washer passes through the locking bolt and is located at the top of the connecting plate;

[0101] Lock nut, which is tightened onto the end of the locking bolt.

[0102] Furthermore, the pole fixing component includes:

[0103] The mounting plate has mounting holes that are equidistant or unequally spaced around its perimeter.

[0104] The pole insert is connected to the center of the top of the mounting plate.

[0105] The pole insert is a threaded sleeve with a smooth inner wall or an internal thread section.

[0106] Furthermore, the installation components include:

[0107] The mounting bolts pass through the mounting holes on the mounting plate, the pad fixing holes on the support pad, and the mounting holes on the support body in sequence from top to bottom, connecting the upright fixing component and the support pad to the adjustable support component as a whole, and the ends are locked and fixed by the mounting nuts.

[0108] Install a gasket, which passes through the mounting bolt and is located at the top of the connecting plate;

[0109] Install the nut, and tighten the nut onto the end of the mounting bolt;

[0110] The support pad is generally a wedge-shaped structure in the shape of a disc or a semi-disc.

[0111] Several pad fixing holes are circumferentially opened on the support pad.

[0112] In this invention, by setting up support pads and designing the support pads as wedge-shaped structures, the angle adjustment compensation function and anti-slip and stabilizing function are realized during use, solving the problem of stable fixation of the uprights on inclined foundations and ensuring construction efficiency and safety.

[0113] Furthermore, the adjustable mounting base, embedded parts, adjustable support parts, connecting components, locking components, pole fixing parts and installation components, as well as the outer surface of the support pad are all sequentially sprayed with an injection molding layer, an anti-rust layer, a waterproof layer and a warning layer from the inside out, and the warning layer is coated with fluorescent powder.

[0114] Specifically, in this invention, a polymer wear-resistant material is injection molded onto the injection molding layer; the anti-rust layer includes an epoxy zinc-rich primer and a chlorinated rubber topcoat, as well as an epoxy micaceous iron oxide intermediate paint located between the epoxy zinc-rich primer and the chlorinated rubber topcoat; the waterproof layer is a polyurethane waterproof coating; and the warning layer is a yellow or black reflective warning tape, reflective film, or reflective paint.

[0115] In this utility model, all bolts or high-strength bolts mentioned are ordinary hexagonal bolts or flat-head bolts, and nuts refer to ordinary hexagonal nuts or flat-head nuts.

[0116] Meanwhile, in this utility model, all connections referred to are fixed connections, movable connections, or detachable connections. Fixed connections are welded connections or directly processed into an integral structure; movable connections or detachable connections are hinged connections, threaded connections, bayonet connections, plug-in connections, bolt assembly connections, or screw connections.

[0117] Before using the above-mentioned scaffolding upright fixing device for sloping surfaces, it is necessary to install it along with the already manufactured scaffolding upright fixing device as a backup.

[0118] Before construction, the operators first conduct surveying and setting out, and then carry out the setting out operation according to the specific slope conditions, so as to achieve the coaxial installation of multiple scaffolding upright fixing devices of this utility model in rows on the same slope.

[0119] During installation, the operator, based on the specific location of the layout measurement according to this utility model, installs each adjustable mounting base to the designated layout position at each layout point using the pre-embedded parts. Then, the operator detachably installs the adjustable support onto the support using the connecting assembly. To facilitate later adjustment according to the slope inclination, the connecting nut at the end of the adjustable support does not need to be tightened temporarily when connecting it with the connecting assembly. Simultaneously, the position of the adjustable support is adjusted according to the slope inclination angle. After adjusting to the appropriate position, the adjustable support is fixed in place using the locking assembly. After adjustment, the locking bolt passes through the adjustment hole and locking hole to connect and secure the adjustable support to the adjustable mounting base as a whole. Before connection, the locking washer passes through the locking bolt and is located at the top of the connecting plate. Finally, the locking nut is tightened to the end of the locking bolt. After reliable installation and placement in the appropriate position, the connecting assembly is tightened again for secure stability. Then, the operator, based on the slope inclination and the installation position of the scaffolding uprights, proceeds... Install support pads of appropriate size onto the support body. Then, adjust the support body to the appropriate position. Align the support pads with the upright fixing components and adjust them to the appropriate position. Next, use the installation components to connect and secure the upright fixing components and support pads to the adjustable support as a whole. Ensure the verticality of the upright fixing components meets the actual construction requirements. Then, the operator tightens the installation and locking components of this utility model to ensure practical safety and reliability during construction. During use, the operator can check the verticality of the upright fixing components using the leveling device. If it does not meet the requirements, adjust it. After adjusting to the appropriate position, follow the above installation method to complete the installation of other scaffold upright fixing devices. Finally, the operator simply installs the pre-prepared scaffold uprights onto the corresponding upright fixing components. After the scaffold uprights are installed, connect them to other parts of the scaffold to form the scaffold, and then proceed with subsequent construction procedures.

[0120] Throughout the entire implementation process described above, operators can choose to use [the appropriate method / tool] as needed. Figure 10 Or Figure 11 When selecting support blocks, the choice should be based on the slope's inclination.

[0121] Example 2

[0122] This embodiment 2 is the same as other embodiments, except that, as Figures 5 to 8 As shown, it also includes a leveling device, which is mounted on the pole fixing component via a mounting bracket.

[0123] In this utility model, the mounting bracket is a C-shaped bracket, which is installed on the outer wall of the lower end of the upright fixing member by bolts or screws.

[0124] Specifically, the leveling device is a bubble level or a spirit level.

[0125] In this utility model, the leveling device enables intuitive and convenient position monitoring during use, solving the problems of low efficiency and large error in traditional calibration methods. It ensures the rationality of the force on the uprights and the overall stability of the scaffolding from the source of erection, while reducing construction difficulty and improving the safety and efficiency of scaffolding.

[0126] In this embodiment, the usage is the same as other embodiments. The only difference is that in this embodiment, during use, the operator can check the verticality of the pole fixing component of this utility model through the leveling device. If it does not meet the requirements, it can be adjusted. After adjusting to the appropriate position, the utility model can be installed and fixed. Other uses are the same as in embodiment 1, and will not be repeated here.

[0127] In this second embodiment, the installation of a leveling device enables intuitive and convenient position monitoring during use, solving the problems of low efficiency and large errors in traditional calibration methods. This ensures the rationality of the force on the uprights and the overall stability of the scaffolding from the source of erection, while reducing construction difficulty and improving scaffolding safety and efficiency.

[0128] Example 3

[0129] This embodiment 3 is the same as other embodiments, except that when the slope is a standard slope, the following method is used: Figure 10 The design of the support pad block shown is such that, when in use, if the angle between the fixing holes of two adjacent pad blocks is a slope of 15°, 30°, or 45°, the operator can directly use... Figure 10 The support pads shown in the diagram can be used in conjunction with the design structure for installation.

[0130] The specific installation and usage of this embodiment 3 are the same as those of other embodiments, and will not be repeated here.

[0131] Example 4

[0132] This embodiment 4 is the same as other embodiments, except that when the slope is an irregular slope, the following method is used: Figure 11 The design of the support pad shown is used to adjust the difference. When in use, for example, with a 16° slope, the fixing holes of the adjustment pad reach 15°, and the remaining 1° is achieved using... Figure 11The design structure shown is supplemented with support pads to adjust and achieve a suitable angle.

[0133] The specific installation and usage of this embodiment 4 are the same as those of other embodiments, and will not be repeated here.

[0134] Finally, it should be noted that the specific embodiments of this utility model have been described in detail above with reference to the accompanying drawings. However, this utility model is not limited to the above-described embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made to it.

Claims

1. A scaffolding upright fixing device for sloping surfaces, characterized in that, include: Adjustable mounting base (1), which is connected to the slope via embedded part (2); The adjustable support (3) is detachably mounted on the adjustable mounting base (1) via the connecting component (4) below, and is locked and fixed by the locking component (5) after the adjustable support (3) is adjusted to a suitable position. Upright fixing component (6), which is detachably mounted on top of adjustable support component (3) via mounting component (7) for plug-in installation of scaffold uprights; Support pad (8) is detachably installed between the adjustable support (3) and the upright insert (62).

2. The scaffolding upright fixing device for sloping surfaces according to claim 1, characterized in that, It also includes a leveling device (9), which is mounted on the pole fixing member (6) via a mounting bracket (91).

3. The scaffolding upright fixing device for sloping surfaces according to claim 2, characterized in that, The leveling device (9) is a bubble level or a spirit level.

4. The scaffolding upright fixing device for sloping surfaces according to claim 1, characterized in that, The adjustable mounting base (1) includes: The connecting plate (11) has fixed holes through the four corners for the embedded parts (2) to pass through; Support (12) is connected to the upper middle part of the connecting plate (11) and is used to install the adjustable support (3). Among them, the support (12) is a U-shaped seat with an open top. Multiple adjustment holes (121) are arranged in rows on the upper end face of both sides of the U-shaped seat at equal or unequal intervals. A mounting hole (122) for the connecting component (4) to pass through is also connected in the middle of the support (12). The embedded part (2) is a high-strength bolt; Alternatively, it may consist of a high-strength bolt and a washer that is tightened and fitted onto the high-strength bolt.

5. The scaffolding upright fixing device for sloping surfaces according to claim 1, characterized in that, The adjustable support (3) includes: Mounting post (31), with a connecting hole (311) that matches the mounting hole (122) through the lower center of the mounting post (31), and a locking hole (312) symmetrically through the upper part of the mounting post (31) for the locking assembly (5) to pass through. The support body (32) is connected to the top of the mounting column (31); wherein, mounting holes are provided at equal or unequal intervals around the edge of the support body (32).

6. The scaffolding upright fixing device for sloping surfaces according to claim 1, characterized in that, The connection component (4) includes: The connecting bolt (41) passes through the mounting hole (122) and the connecting hole (311) to connect the adjustable support (3) and the adjustable mounting base (1) into a whole; A connecting washer (42) passes through a connecting bolt (41) and is located at the top of the connecting plate (11); Connecting nut (43) is screwed onto the end of connecting bolt (41).

7. The scaffolding upright fixing device for sloping surfaces according to claim 1, characterized in that, The locking assembly (5) includes: The locking bolt (51) passes through the adjustment hole (121) and the locking hole (312) to connect the adjustable support (3) and the adjustable mounting base (1) into a whole; Locking washer (52) passes through locking bolt (51) and is located at the top of connecting plate (11); Locking nut (53) is screwed onto the end of locking bolt (51).

8. The scaffolding upright fixing device for sloping surfaces according to claim 1, characterized in that, The pole fixing component (6) includes: Mounting plate (61) has mounting holes that are equidistant or unequally spaced around its perimeter; The pole insert (62) is connected to the top center of the mounting plate (61), wherein, The pole insert (62) is a threaded sleeve with a smooth inner wall or an internal thread section.

9. The scaffolding upright fixing device for sloping surfaces according to claim 1, characterized in that, The installation component (7) includes: The mounting bolt (71) passes through the mounting hole on the mounting plate (61), the pad fixing hole (81) on the support pad (8), and the mounting hole on the support body (32) in sequence from top to bottom, and then connects the pole fixing member (6) and the support pad (8) with the adjustable support member (3) into a whole, and the end is locked and fixed by the mounting nut (73); Mounting gasket (72), which passes through mounting bolt (71) and is located at the top of connecting plate (11); Install nut (73), which is tightened onto the end of mounting bolt (71); The support pad (8) is a wedge-shaped structure in the shape of a disc or a semi-disc. Several pad fixing holes (81) are provided in a ring through the support pad (8).

10. The scaffolding upright fixing device for sloping surfaces according to claim 1, characterized in that, The outer surfaces of the adjustable mounting base (1), embedded part (2), adjustable support part (3), connecting assembly (4), locking assembly (5), pole fixing part (6), installation assembly (7), and support pad (8) are sequentially sprayed with an injection molding layer, an anti-rust layer, a waterproof layer, and a warning layer from the inside to the outside. The warning layer is coated with fluorescent powder.