Hanging seat device capable of adjusting pitch angle of climbing frame

By designing a hanging device that can adjust the pitch angle of the climbing frame and utilizing vertical and horizontal adjustment components, the problems of excessive cantilever distance and horizontal protection defects of traditional climbing frames in the construction of special-shaped buildings are solved, thus achieving safe and efficient construction protection.

CN223386956UActive Publication Date: 2025-09-26CHINA CONSTR THIRD ENG BUREAU GRP CO LTD +1
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Patent Information

Application Number
CN202422802560.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-18
Publication Date
2025-09-26
Estimated Expiration
2034-11-18

AI Technical Summary

Technical Problem

Traditional vertical climbing systems are difficult to meet the construction needs of special-shaped buildings, especially when the facade tapers too large, resulting in excessive support cantilever distances and horizontal protection defects, low operational safety, and high material input costs.

Method used

A hanging device with adjustable pitch angle of climbing frame is designed, which includes vertical adjustment component and horizontal adjustment component. The horizontal displacement and angle adjustment of the building climbing frame are achieved through the coordinated work of supporting diagonal braces, connecting shafts, mounting claw head seats, fixed support sliding guide rails, oil cylinders and limit pins.

Benefits of technology

It realizes flexible adjustment of the pitch angle of the climbing frame to meet the construction requirements of special-shaped facades, improves construction safety and efficiency, and reduces material costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a hanging seat device capable of adjusting the pitch angle of a climbing frame, which relates to the field of building construction, and comprises a building climbing frame and an adjusting hanging seat device for adjusting the pitch angle of the building climbing frame, and the adjusting hanging seat device comprises a vertical adjusting component and a horizontal adjusting component, the vertical adjusting assembly comprises a supporting inclined supporting rod, a connecting rotating shaft and a mounting claw head seat, one end of the supporting inclined supporting rod is connected with the upper portion of the mounting claw head seat through the connecting rotating shaft, the horizontal adjusting assembly comprises a fixed support sliding guide rail, an oil cylinder, a mounting pre-embedded nail and a limiting plug pin, and the mounting pre-embedded nail is pre-embedded in a building. The top of the building body is connected with the fixed support sliding guide rail through mounting embedded nails, and the end, away from the supporting inclined supporting rod, of the mounting claw head seat is connected with the top of one end of the fixed support sliding guide rail through a connecting rotating shaft; according to the hanging seat capable of adjusting the pitch angle of the climbing frame, more flexible, efficient and safe protection is provided for construction of a building with a special-shaped vertical face, and the protection requirement of attachments is met.
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Description

Technical Field

[0001] The utility model mainly relates to the technical field of building construction, and in particular relates to a hanging seat device capable of adjusting the pitch angle of a climbing frame. Background Art

[0002] Climbing frames are needed in construction. Climbing frames are temporary attached lifting scaffolding used in high-rise building construction. The climbing frames are mainly composed of columns, beams, support columns, cross beams, full-station heads, ropes, carrying poles, and anchors.

[0003] Climbing frames are increasingly used as a protective system in the construction of high-rise / super-high-rise structures. With the innovative development of architectural design schemes, buildings with irregular facades are becoming more and more popular among architects. However, traditional vertical climbing climbing frames are difficult to meet the protection needs during the construction of irregular buildings.

[0004] Conventional climbing frames are often used in buildings with special-shaped facades, which often result in excessive support cantilever distances and horizontal protection defects due to the large scale of the facade taper. Climbing frames may even be impossible to use, and cantilevered steel pipe scaffolding must be used. These scaffolds face difficulties such as high construction difficulty, low operational safety, and high material input costs. Utility Model Content

[0005] Based on this, the purpose of the present invention is to provide a hanging seat device that can adjust the pitch angle of the climbing frame to solve the technical problems raised in the above background technology.

[0006] To achieve the above objectives, the present invention provides the following technical solutions:

[0007] A mounting device capable of adjusting the pitch angle of a climbing frame comprises a building climbing frame and an adjusting mounting device for adjusting the pitch angle of the building climbing frame, wherein the adjusting mounting device comprises a vertical adjustment component and a horizontal adjustment component, and the building climbing frame comprises a frame body, wherein the frame body is uniformly provided with clamping through slots;

[0008] The vertical adjustment assembly includes a supporting diagonal brace, a connecting shaft and a mounting claw head seat, wherein one end of the supporting diagonal brace is connected to the upper portion of the mounting claw head seat through the connecting shaft;

[0009] The horizontal adjustment assembly includes a fixed support sliding guide rail, an oil cylinder, an embedded installation nail and a limit pin. The embedded installation nail is embedded in the building body, and the top of the building body is connected to the fixed support sliding guide rail through the embedded installation nail. The end of the mounting claw head seat away from the supporting diagonal brace is connected to the top of one end of the fixed support sliding guide rail through the connecting shaft, and the mounting claw head seat is clamped and connected to the clamping through-slot hole on the frame.

[0010] Specifically, the fixed support sliding guide rail includes a bottom support seat body and a sliding rod sliding inside the bottom support seat body. The side surface of the bottom support seat body is arranged in a U-shaped structure. The outer wall of the bottom support seat body is evenly penetrated with a limiting through-hole, and the outer wall of the sliding rod is evenly penetrated with a pin through-hole corresponding to the limiting through-hole. The limiting through-hole and the pin through-hole are connected by the limiting pin.

[0011] Specifically, the oil cylinder is located parallel to the sliding guide rail of the fixed support, and the outer walls on both sides of the oil cylinder are connected with fixed plates, and the fixed plates are connected to the outer wall of the bottom support seat by screws. The top of the sliding rod away from the mounting claw head seat is connected with a mounting seat, the output end of the oil cylinder is connected to the mounting seat, and the supporting diagonal brace rod is connected to the mounting seat at one end away from the mounting claw head seat.

[0012] Specifically, the technical solution of the present invention is that after the mounting claw head seat is connected to the clamping through-slot hole on the frame body by clamping, the building climbing frame connected to the mounting claw head seat is horizontally displaced by the horizontal adjustment component.

[0013] Specifically, the technical solution of the present invention is that after the mounting claw head seat is connected to the clamping through-slot hole on the frame body by clamping, the building climbing frame connected to the mounting claw head seat is adjusted in angle through the vertical adjustment component.

[0014] Specifically, the supporting diagonal brace is an adjustable threaded diagonal brace.

[0015] In summary, the present invention has the following beneficial effects:

[0016] 1. In response to the problems in the background technology, the present application adjusts the main body of the building climbing frame by adjusting the hanging device, thereby achieving adjustment in two dimensions: horizontal distance and vertical angle. The relative position relationship between the main body of the building climbing frame and the attached structure can be realized to meet both the force requirements of the climbing frame itself and the protection requirements of the attached objects;

[0017] 2. This device, which features an adjustable pitch angle for a building climbing frame, and its construction method, addresses the problems of excessive support overhang distance and horizontal protection defects encountered when using traditional vertical climbing systems during the construction of buildings with irregular facades. By introducing vertical and horizontal adjustment components, the pitch angle of the climbing frame can be flexibly adjusted, allowing the climbing frame to better adapt to the construction requirements of irregular facades.

[0018] 3. The vertical adjustment assembly includes a supporting diagonal brace, a connecting shaft, and a mounting claw head seat. The pitch angle of the building climbing frame is adjusted by extending and retracting the supporting diagonal brace. The horizontal adjustment assembly includes a fixed support sliding guide rail, an oil cylinder, an installation embedded nail, and a limit pin. The horizontal displacement of the building climbing frame is achieved by the extension and retraction of the oil cylinder. In addition, the mounting claw head seat is connected to the clamping slot on the building climbing frame through clamping, which can further ensure the stability and safety of the climbing frame.

[0019] First, the adjustment bracket device is installed with the building climbing frame and the building body, and then the pitch angle of the climbing frame is gradually adjusted accurately through the steps of preliminary horizontal distance adjustment, preliminary angle adjustment, fine horizontal distance adjustment and fine angle adjustment. Finally, the above construction method is repeated during the climbing installation process to ensure that the climbing frame remains stable and safe throughout the entire construction process. The bracket device with adjustable pitch angle of the climbing frame and its construction method provide a more flexible, efficient and safe protection solution for the construction of special-shaped facade buildings, and realize the relative position relationship between the climbing frame body and the attached structure to meet both the force requirements of the climbing frame itself and the protection requirements of the attachments. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 This is the overall flow chart of the utility model.

[0021] Figure 2 It is a side structural diagram of the building climbing frame and the adjustment bracket device of the utility model.

[0022] Figure 3 This is a schematic diagram of the fixed support sliding guide structure of the utility model.

[0023] Figure 4 This is a top view of the fixed support sliding guide rail of the utility model.

[0024] Figure 5 It is a schematic diagram of the vertical adjustment of the hanging seat device of the utility model.

[0025] Figure 6 It is a front and back schematic diagram of the horizontal adjustment of the mounting bracket device of the present invention.

[0026] Description of the accompanying drawings: 1. Building climbing frame; 11. Frame body; 2. Adjustment of the hanging seat device; 21. Support diagonal brace; 22. Connecting shaft; 23. Installation of claw head seat; 24. Fixed support sliding guide rail; 241. Bottom support seat body; 2411. Limiting through hole; 242. Sliding rod; 2421. Pin through hole; 243. Mounting seat; 25. Oil cylinder; 251. Fixing plate; 26. Installation of embedded nails; 27. Limiting pin. DETAILED DESCRIPTION

[0027] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. The embodiments described below with reference to the drawings are exemplary and are only used to explain the present invention, and cannot be understood as limiting the present invention.

[0028] The following describes an embodiment of the present invention based on its overall structure. Example

[0029] Please see the attached Figure 1-6As shown, a mounting device for adjusting the pitch angle of a climbing frame comprises a building climbing frame 1 and an adjusting mounting device 2 for adjusting the pitch angle of the building climbing frame 1, wherein the adjusting mounting device 2 comprises a vertical adjustment component and a horizontal adjustment component, and the building climbing frame 1 comprises a frame body 11, and the frame body 11 is evenly penetrated with clamping through slots; the vertical adjustment component comprises a supporting diagonal brace 21, a connecting shaft 22 and a mounting claw head seat 23, one end of the supporting diagonal brace 21 is connected to the upper part of the mounting claw head seat 23 through the connecting shaft 22, and the supporting diagonal brace 21 is an adjustable threaded diagonal brace, and the horizontal adjustment component comprises a fixed support sliding guide rail 24, an oil cylinder 25, an installation Install the embedded nails 26 and the limit pins 27, and the embedded nails 26 are embedded in the building body. The top of the building body is connected to the fixed support sliding guide rail 24 by installing the embedded nails 26. The installation claw head seat 23 is connected to the top of one end of the fixed support sliding guide rail 24 through the connecting shaft 22 away from the supporting diagonal brace 21. The installation claw head seat 23 is clamped and connected to the clamping through slot hole on the frame 11; the fixed support sliding guide rail 24 includes a bottom support seat body 241 and a sliding rod 242 slidingly located inside the bottom support seat body 241. The side of the bottom support seat body 241 is arranged in a U-shaped structure, and the outer wall of the bottom support seat body 241 is evenly penetrated. There are limited through holes 2411, and latch through holes 2421 are evenly opened on the outer wall of the slide rod 242, which match the limited through holes 2411. The limited through holes 2411 and the latch through holes 2421 are connected by limited latches 27. The oil cylinder 25 is located parallel to the fixed support sliding guide rail 24, and the outer walls on both sides of the oil cylinder 25 are connected with fixed plates 251. The fixed plates 251 are connected to the outer wall of the bottom support seat 241 by screws. The top of the end of the slide rod 242 away from the mounting claw seat 23 is connected with a mounting seat 243, and the output end of the oil cylinder 25 is connected to the mounting seat 243. The end of the supporting diagonal brace rod 21 away from the mounting claw seat 23 is connected to the mounting seat 243 is connected, and after the mounting claw head seat 23 is connected to the clamping through slot hole on the frame body 11 by clamping, the building climbing frame 1 connected by the mounting claw head seat 23 is horizontally displaced by the horizontal adjustment component, and after the mounting claw head seat 23 is connected to the clamping through slot hole on the frame body 11 by clamping, the building climbing frame 1 connected by the mounting claw head seat 23 is adjusted in angle by the vertical adjustment component. When the oil cylinder 25 is pushed out, the sliding rod 242 sliding on the bottom support seat body 241 is retracted, and at this time the distance between the frame body 11 and the building body is reduced; when adjusting the supporting diagonal brace 21, the mounting claw head seat 23 performs a circular adjustment movement around the connecting shaft 22 at the top of the fixed support sliding guide rail 24.

[0030] It should be noted that, in this embodiment, the mounting device for adjusting the pitch angle of the climbing frame includes a building climbing frame 1 and an adjustment mounting device 2 for adjusting the pitch angle of the building climbing frame 1. The adjustment mounting device 2 includes a vertical adjustment component and a horizontal adjustment component. The vertical adjustment component includes a supporting diagonal brace 21, a connecting shaft 22, and a mounting claw head seat 23. The horizontal adjustment component includes a fixed support sliding guide rail 24, a cylinder 25, an embedded mounting nail 26, and a limit pin 27. Through the coordinated operation of these components, the building climbing frame can be flexibly installed and the angle can be adjusted on buildings with special-shaped facades.

[0031] Furthermore, the building climbing frame 1 is the core part of the entire system and is used for safety protection in the construction of high-rise or super-high-rise structures. It includes a frame body 11, on which clamping slots are evenly opened. These slots are used to connect with the adjustment bracket device 2 to ensure the stability of the entire system.

[0032] Furthermore, the adjustment bracket device 2 is a key component for adjusting the pitch angle of the building climbing frame 1. It includes a vertical adjustment component and a horizontal adjustment component. Through the coordinated work of these two components, the precise adjustment of the building climbing frame can be achieved;

[0033] Furthermore, a vertical adjustment component is provided, which is composed of a supporting diagonal brace 21, a connecting shaft 22 and a mounting claw head seat 23. One end of the supporting diagonal brace 21 is connected to the upper portion of the mounting claw head seat 23 through the connecting shaft 22. The supporting diagonal brace 21 forms a stable triangular structure through three connecting shafts 22. The mounting claw head seat 23 drives the main body of the building climbing frame 1 to realize the adjustment of the vertical angle and form a stable support structure. The supporting diagonal brace is an adjustable threaded diagonal brace, and the length and angle can be adjusted as needed.

[0034] Furthermore, a horizontal adjustment component includes a fixed support sliding guide rail 24, an oil cylinder 25, an embedded installation nail 26, and a limit pin 27. The fixed support sliding guide rail 24 is connected to the top of the building body by installing the embedded installation nail 26 to ensure the stability of the entire system. The oil cylinder 25 is used to provide power to enable the building climbing frame 1 to move horizontally. The mounting claw head seat 23 is connected to the clamping through slot on the frame body 11 by clamping, further enhancing the stability of the system.

[0035] Furthermore, the fixed support sliding guide rail 24 is an important part of the horizontal adjustment assembly, which includes a bottom support base body 241 and a slide rod 242. The bottom support base body 241 is arranged in a U-shaped structure, and a limit through hole 2411 is uniformly formed on the outer wall. The slide rod 242 slides inside the bottom support base body 241. The outer wall is also uniformly formed with a latch through hole 2421 that matches the limit through hole 2411. This design allows the slide rod 242 to slide freely in the bottom support base body 241, while achieving precise positioning through the limit latch 27.

[0036] Furthermore, the oil cylinder 25 is a key component for providing power. It is located parallel to the fixed support sliding guide rail 24, and the outer walls on both sides are connected with fixed plates 251. The fixed plates 251 are connected to the outer wall of the bottom support seat 241 by screws to ensure the stability of the oil cylinder 25. The top of the sliding rod 242 away from the mounting claw seat 23 is connected with a mounting seat 243. The output end of the oil cylinder 25 is connected to the mounting seat 243. This design enables the oil cylinder 25 to drive the sliding rod 242 to move horizontally, thereby driving the building climbing frame 1 to move accordingly.

[0037] Installation process: First, install the adjustment bracket device 2 together with the building climbing frame 1 and the building body. Specifically, connect the bottom support base 241 of the fixed support sliding guide rail 24 with the pre-buried installation nails 26 inside the building body. Then, adjust the distance and angle between the building climbing frame 1 and the attachment space as needed. This can be achieved by adjusting the telescopic displacement of the oil cylinder 25 to achieve horizontal distance adjustment, and by adjusting the supporting diagonal brace rod 21 to achieve angle adjustment. Finally, lift the frame to the required height and repeat the above steps to complete the entire installation process.

[0038] In general, this hanging device with adjustable climbing frame pitch angle has the advantages of reasonable structure, easy operation, safety and reliability, etc. It provides a more flexible, efficient and safe protection solution for the construction of special-shaped facade buildings. It can be widely used in the construction of high-rise or super-high-rise structures as part of the safety protection system.

[0039] In this application construction method, please refer to the attached Figure 1 、 5 The construction process and related devices shown in Figure 6, combined with the process steps, are as follows:

[0040] The construction method includes the following steps:

[0041] Step 1: Install the adjustment bracket device 2 with the building climbing frame 1 and the building body. During installation, connect the bottom support base 241 of the fixed support sliding guide rail 24 with the pre-embedded installation nails 26 embedded inside the building body. At this time, the adjustment bracket device 2 is installed on the building body;

[0042] Step 2: Preliminary horizontal distance adjustment: adjust the attachment space between the mounting bracket 2 and the building climbing frame 1. Through the telescopic displacement of the oil cylinder 25, the mounting claw seat 23 at the end of the fixed support sliding guide rail 24 and the building climbing frame 1 maintain an appropriate safe operating space. Use the limiting latch 27 to plug and connect the limiting through hole 2411 on the bottom support seat body 241 with the latch through hole 2421 on the slide rod 242.

[0043] Step 3: Preliminary angle adjustment: adjust the supporting diagonal brace 21 so that the mounting claw head seat 23 connected to the end of the supporting diagonal brace 21 is parallel to the structural facade of the building climbing frame 1;

[0044] Step 4: Finely adjust the horizontal distance. Pull out the limit pin 27 that connects the limit through hole 2411 on the bottom support seat body 241 and the pin through hole 2421 on the slide bar 242, adjust the attachment space between the hanging seat device 2 and the building climbing frame 1, and maintain an appropriate safety distance between the mounting claw seat 23 at the end of the fixed support sliding guide rail 24 and the building climbing frame 1 through the telescopic displacement of the oil cylinder 25. After reaching the target stroke, the limit through hole 2411 on the bottom support seat body 241 and the pin through hole 2421 on the slide bar 242 are connected by the limit pin 27.

[0045] Step 5: Fine angle adjustment: adjust the supporting diagonal brace 21 so that the mounting claw head seat 23 connected to the end of the supporting diagonal brace 21 is parallel to the structural facade of the building climbing frame 1, and the mounting claw head seat 23 is clamped and connected to the clamping through slot hole on the frame body 11;

[0046] Step 6: Climbing installation: lift the frame 11 to the required height and repeat the construction methods of steps 2 to 5.

[0047] The working principle of this utility model is:

[0048] First, install the adjustment bracket device 2 with the building climbing frame 1 and the building body, connect the bottom support seat 241 of the fixed support sliding guide rail 24 with the pre-buried installation nails 26 inside the building body, and then adjust the bracket device 2 to be installed on the building body. Adjust the attachment space between the adjustment bracket device 2 and the building climbing frame 1, and make the installation claw head seat 23 at the end of the fixed support sliding guide rail 24 maintain an appropriate safe operating space with the building climbing frame 1 through the telescopic displacement of the oil cylinder 25. To ensure the safety of the cantilevered body 11, the limiting through hole 2411 on the bottom support seat body 241 is connected to the pin through hole 2421 on the slide bar 242 through the limiting pin 27, and the supporting diagonal brace 21 is adjusted so that the mounting claw head seat 23 connected to the end of the supporting diagonal brace 21 is parallel to the structural facade of the building climbing frame 1, thereby achieving the goal of perfect facade protection, and the limiting through hole 2411 on the bottom support seat body 241 and the pin through hole 2421 on the slide bar 242 are connected. The connected limit pin 27 adjusts the attachment space between the hanging seat device 2 and the building climbing frame 1, and the telescopic displacement of the oil cylinder 25 makes the mounting claw seat 23 at the end of the fixed support sliding guide rail 24 maintain an appropriate safety distance from the building climbing frame 1. After reaching the target stroke, the limit pin 27 connects the limiting through hole 2411 on the bottom support seat body 241 with the pin through hole 2421 on the slide rod 242, and adjusts the supporting diagonal brace rod 21 so that the mounting claw seat 23 connected to the end of the supporting diagonal brace rod 21 is parallel to the structural facade of the building climbing frame 1, so that the mounting claw seat 23 is clamped and connected with the clamping through slot hole on the frame body 11, and the frame body 11 is lifted to the required height, and the above construction method is repeated to make the building climbing frame 1 parallel to the facade of the attached structure, thereby achieving the goal of perfect facade protection. In general, this hanging seat device with adjustable climbing frame pitch angle and its construction method provide a more flexible, efficient and safe protection solution for the construction of special-shaped facade buildings.

[0049] Although an embodiment of the present invention has been shown and described, this specific embodiment is merely an explanation of the present invention and is not a limitation of the invention. The specific features, structures, materials or characteristics described may be combined in a suitable manner in any one or more embodiments or examples. After reading this specification, those skilled in the art may make modifications, substitutions and variations to the embodiment without creative contribution as needed without departing from the principles and purpose of the present invention. However, as long as they are within the scope of the claims of the present invention, they are protected by patent law.

Claims

1. A mounting device capable of adjusting the pitch angle of a climbing frame, comprising a building climbing frame (1) and an adjusting mounting device (2) for adjusting the pitch angle of the building climbing frame (1), characterized in that The adjusting mounting device (2) includes a vertical adjusting component and a horizontal adjusting component, and the building climbing frame (1) includes a frame body (11), and the frame body (11) is evenly provided with clamping slot holes; The vertical adjustment assembly comprises a supporting diagonal support rod (21), a connecting shaft (22) and a mounting claw head seat (23), wherein one end of the supporting diagonal support rod (21) is connected to the upper portion of the mounting claw head seat (23) via the connecting shaft (22); The horizontal adjustment assembly includes a fixed support sliding guide rail (24), an oil cylinder (25), an embedded installation nail (26) and a limit pin (27), wherein the embedded installation nail (26) is embedded in the building body, and the top of the building body is connected to the fixed support sliding guide rail (24) through the embedded installation nail (26), and the end of the mounting claw head seat (23) away from the supporting diagonal brace (21) is connected to the top of one end of the fixed support sliding guide rail (24) through the connecting shaft (22), and the mounting claw head seat (23) is clamped and connected to the clamping through slot hole on the frame body (11).

2. A mounting device capable of adjusting the pitch angle of a climbing frame according to claim 1, characterized in that: The fixed support sliding guide rail (24) includes a bottom support seat body (241) and a slide rod (242) slidingly located inside the bottom support seat body (241); the side surface of the bottom support seat body (241) is arranged in a U-shaped structure; a limiting through hole (2411) is uniformly provided on the outer wall of the bottom support seat body (241); a latch through hole (2421) is uniformly provided on the outer wall of the slide rod (242) and matches the limiting through hole (2411); the limiting through hole (2411) and the latch through hole (2421) are connected via the limiting latch (27).

3. The mounting device capable of adjusting the pitch angle of a climbing frame according to claim 2, characterized in that: The oil cylinder (25) is located parallel to the fixed support sliding guide rail (24), and the outer walls on both sides of the oil cylinder (25) are connected with fixed plates (251). The fixed plates (251) are connected to the outer wall of the bottom support seat (241) through screws. The top of the sliding rod (242) away from the mounting claw head seat (23) is connected to the mounting seat (243). The output end of the oil cylinder (25) is connected to the mounting seat (243), and the end of the supporting diagonal brace (21) away from the mounting claw head seat (23) is connected to the mounting seat (243).

4. The mounting device capable of adjusting the pitch angle of a climbing frame according to claim 1, characterized in that: After the mounting claw head seat (23) is connected to the clamping through-slot hole on the frame body (11) by clamping, the building climbing frame (1) connected to the mounting claw head seat (23) is horizontally displaced by the horizontal adjustment component.

5. The mounting device capable of adjusting the pitch angle of a climbing frame according to claim 1, characterized in that: After the mounting claw head seat (23) is connected to the clamping through-slot hole on the frame body (11) by clamping, the building climbing frame (1) connected to the mounting claw head seat (23) is adjusted in angle through the vertical adjustment component.

6. The mounting device capable of adjusting the pitch angle of a climbing frame according to claim 1, characterized in that: The supporting diagonal brace (21) is an adjustable threaded diagonal brace.