Beam auxiliary in-position mechanism for load-bearing construction hoisting

By using beam auxiliary positioning mechanism in construction, combined with beam positioning climbing module and positioning module, accurate positioning of beams is achieved, solving the problem of inaccurate installation during beam lifting, and improving construction efficiency and safety.

CN223018211UActive Publication Date: 2025-06-24JIANGXI UNITED INSURANCE ENG CONSULTING CO LTD +1
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Patent Information

Application Number
CN202422736993.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-11
Publication Date
2025-06-24
Estimated Expiration
2034-11-11

AI Technical Summary

Technical Problem

During construction, the lifting process of beams in load-bearing construction components is difficult to ensure the accuracy of installation, which affects the working efficiency and safety of the overall lifting and installation construction.

Method used

A beam auxiliary positioning mechanism for load-bearing construction hoisting is provided, including a beam positioning climbing module and a beam positioning module. The beam positioning module drives the beam positioning module to climb up and down on the installation column, and combines the beam positioning first direction positioning component and second direction positioning component to achieve accurate positioning of the width and length of the installation beam.

Benefits of technology

Accurate positioning of the installation beams is achieved, ensuring the accuracy of the lifting and improving the work efficiency of construction.

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Patent Text Reader

Abstract

The utility model provides a beam auxiliary in-position mechanism for bearing construction hoisting, and relates to the technical field of hoisting auxiliary positioning. The beam in-place climbing and positioning mechanism comprises a beam in-place climbing module and a beam in-place positioning module, and in the actual hoisting process, a mounting beam is positioned on a mounting column for in-place mounting; therefore, the beam in-place climbing module drives the beam in-place positioning module to climb up and down on the mounting column to adjust the corresponding position so as to realize subsequent hoisting in-place positioning of the mounting beam; the two oppositely-arranged first direction positioning assemblies in the beam in-place positioning module can achieve hoisting positioning of the installation beam in the width direction, the beam in-place second direction positioning assemblies are perpendicular to the beam in-place first direction positioning assemblies in the orientation direction, and hoisting positioning of the installation beam in the length direction can be achieved; therefore, accurate in-place hoisting and positioning of the mounting beam are realized, the hoisting accuracy is ensured, and the working efficiency of construction is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of hoisting auxiliary positioning, in particular to a beam auxiliary positioning mechanism for load-bearing construction hoisting. Background Art

[0002] With the continuous development of building design and construction technologies, high-rise and super high-rise buildings have become increasingly common in modern architecture. The continuous increase in building height and the increasing complexity of facade changes have also put forward higher requirements for building-related hoisting construction technologies. During the building construction process, the load-bearing construction components in prefabricated buildings include the hoisting and installation of beams. In order to ensure the stability, strength, and safety of the building structure, it is necessary to ensure the installation accuracy of each construction load-bearing component. During the actual construction process, it is difficult to ensure the installation accuracy during the hoisting process of the beams in the load-bearing construction components, which affects the overall work efficiency and safety of the overall hoisting and installation construction. Summary of the Utility Model

[0003] In view of the above-mentioned disadvantages of the prior art, the purpose of the present utility model is to provide a beam auxiliary positioning mechanism for load-bearing construction hoisting to solve the problems in the background art.

[0004] To achieve the above object and other related objects, the present utility model provides a beam auxiliary positioning mechanism for load-bearing construction hoisting, including:

[0005] A beam positioning climbing module and a beam positioning module;

[0006] The beam positioning module is installed on the beam positioning climbing module, and the beam positioning climbing module drives the beam positioning module to adjust the position in the height direction;

[0007] The beam positioning module includes a first-direction beam positioning component and a second-direction beam positioning component. There are two groups of the first-direction beam positioning components, and the two groups of the first-direction beam positioning components are oppositely arranged. The first-direction beam positioning component is used for hoisting positioning in the width direction of the installation beam. The orientation direction of the second-direction beam positioning component is perpendicular to the orientation direction of the first-direction beam positioning component. The second-direction beam positioning component is used for hoisting positioning in the length direction of the installation beam.

[0008] Optionally, the beam positioning climbing module includes an upper climbing component, a lower climbing component, a climbing telescopic driving member, and a climbing transmission component;

[0009] Both the upper climbing assembly and the lower climbing assembly can be clamped on the installation column. The upper climbing assembly and the lower climbing assembly are slidably matched through the climbing transmission assembly. The climbing telescopic driving member is arranged between the upper climbing assembly and the lower climbing assembly.

[0010] Optionally, the upper climbing assembly includes an upper climbing platform frame and an upper climbing clamping assembly;

[0011] The upper climbing clamping assembly is installed on the upper climbing platform frame. The upper climbing clamping assembly includes two groups of upper clamping telescopic driving members. The two groups of upper clamping telescopic driving members are arranged oppositely. An upper climbing clamping plate is connected to the telescopic end of the upper clamping telescopic driving member.

[0012] Optionally, the lower climbing assembly includes a lower climbing platform frame and a lower climbing clamping assembly;

[0013] The lower climbing clamping assembly is installed under the lower climbing platform frame. The lower climbing clamping assembly includes two groups of lower clamping telescopic driving members. The two groups of lower clamping telescopic driving members are arranged oppositely. A lower climbing clamping plate is connected to the telescopic end of the lower clamping telescopic driving member.

[0014] Optionally, the climbing transmission assembly includes a climbing slider and a climbing sliding shaft. The climbing slider and the climbing sliding shaft are slidably matched;

[0015] The climbing slider is fixedly installed on the upper climbing assembly. The climbing sliding shaft is fixedly installed on the upper climbing assembly or the climbing slider is fixedly installed on the lower climbing assembly. The climbing sliding shaft is fixedly installed on the lower climbing assembly.

[0016] Optionally, the first-direction positioning assembly for beam placement includes a first-direction positioning rod for beam placement and a first-direction positioning plate for beam placement. One end of the first-direction positioning rod for beam placement is installed on the upper climbing assembly, and the other end of the first-direction positioning rod for beam placement is connected to the first-direction positioning plate for beam placement;

[0017] The second-direction positioning assembly for beam placement includes a second-direction positioning rod for beam placement and a second-direction positioning plate for beam placement. One end of the second-direction positioning rod for beam placement is installed on the upper climbing assembly, and the other end of the second-direction positioning rod for beam placement is connected to the second-direction positioning plate for beam placement.

[0018] Optionally, the first-direction beam positioning and placing component further includes a first-direction beam positioning and adjusting driving member, which is installed on the upper climbing component. The first-direction beam positioning and adjusting driving member is drivingly connected to the first-direction beam positioning rod, and the first-direction beam positioning and adjusting driving member drives the first-direction beam positioning plate to move and adjust through the first-direction beam positioning rod.

[0019] The second-direction beam positioning and placing component further includes a second-direction beam positioning and adjusting driving member, which is installed on the upper climbing component. The second-direction beam positioning and adjusting driving member is drivingly connected to the second-direction beam positioning rod, and the second-direction beam positioning and adjusting driving member drives the second-direction beam positioning plate to move and adjust through the second-direction beam positioning rod.

[0020] Optionally, the beam positioning and climbing module further includes a climbing auxiliary surrounding component, which is installed on the upper climbing component. The climbing auxiliary surrounding component includes two climbing auxiliary surrounding plates and a climbing auxiliary surrounding rod. The two climbing auxiliary surrounding plates are installed on the upper climbing platform in parallel at intervals, and the climbing auxiliary surrounding rod is installed between the two climbing auxiliary surrounding plates.

[0021] Optionally, a plurality of surrounding mounting holes are provided in the length direction of the climbing auxiliary surrounding plate, and the climbing auxiliary surrounding rod is matched with the surrounding mounting holes.

[0022] As described above, the beam auxiliary positioning and placing mechanism for load-bearing construction hoisting of the present utility model has at least the following beneficial effects:

[0023] The present utility model provides a beam auxiliary positioning and placing mechanism for load-bearing construction hoisting, which can be used for precise positioning and hoisting construction of installation beams in building construction. The present utility model includes a beam positioning and climbing module and a beam positioning module. In the actual hoisting process of the mechanism of the present utility model, the installation beam is positioned on the installation column for positioning and installation. Therefore, in the present utility model, the beam positioning and climbing module drives the beam positioning module to climb up and down on the installation column to adjust the corresponding positions, so as to realize the subsequent hoisting and positioning of the installation beam; the two oppositely arranged first-direction positioning components in the beam positioning module can realize the hoisting positioning in the width direction of the installation beam, and the second-direction beam positioning component is perpendicular to the orientation direction of the first-direction beam positioning component, which can realize the hoisting positioning in the length direction of the installation beam, thereby realizing the precise positioning and hoisting of the installation beam, ensuring the accuracy of hoisting and improving the working efficiency of construction. Description of the Drawings

[0024] Figure 1Shown is a schematic structural view of the auxiliary beam positioning mechanism of the present utility model;

[0025] Figure 2 Shown is a front view of the auxiliary beam positioning mechanism of the present utility model;

[0026] Figure 3 Shown is a top view of the auxiliary beam positioning mechanism of the present utility model;

[0027] Figure 4 Shown is a schematic layout view of the auxiliary hoisting of the auxiliary beam positioning mechanism of the present utility model. Detailed implementation manners

[0028] The following specific embodiments illustrate the implementation manners of the present utility model. Those skilled in this technology can easily understand other advantages and effects of the present utility model from the content disclosed in this specification.

[0029] Please refer to Figures 1 to 4 . It should be noted that the structures, ratios, sizes, etc. shown in the drawings of this specification are only used to cooperate with the content disclosed in the specification for those skilled in this technology to understand and read, and are not used to limit the limiting conditions under which the present utility model can be implemented. Therefore, they do not have a substantial technical meaning. Any modification of the structure, change of the proportional relationship, or adjustment of the size, without affecting the effects that the present utility model can produce and the purposes that can be achieved, should still fall within the scope covered by the technical content disclosed in the present utility model. At the same time, the terms such as "upper", "lower", "left", "right", "middle", and "one" cited in this specification are only for the convenience of clear narration and are not used to limit the scope under which the present utility model can be implemented. The change or adjustment of their relative relationships, without substantial change in the technical content, should also be regarded as the scope within which the present utility model can be implemented.

[0030] The following individual embodiments are only for illustration. Combinations can be made between the individual embodiments, and it is not limited to the content shown in the following single embodiment.

[0031] Please refer to Figures 1 - 4, the present utility model provides a beam auxiliary positioning mechanism 2 for load-bearing construction hoisting, including a beam positioning and climbing module 21 and a beam positioning module 22; the beam positioning module 22 is installed on the beam positioning and climbing module 21, and the beam positioning and climbing module 21 drives the beam positioning module 22 to adjust the position in the height direction; the beam positioning module 22 includes a first-direction beam positioning component and a second-direction beam positioning component. There are two sets of the first-direction beam positioning components, and the two sets of the first-direction beam positioning components are oppositely arranged. The first-direction beam positioning component is used for hoisting and positioning the installation beam 02 in the width direction. The orientation direction of the second-direction beam positioning component is perpendicular to the orientation direction of the first-direction beam positioning component. The second-direction beam positioning component is used for hoisting and positioning the installation beam 02 in the length direction. The present utility model includes a beam positioning and climbing module 21 and a beam positioning module 22. In the actual hoisting process of the mechanism of the present utility model, the installation beam 02 is positioned on the installation column 01 for installation. Therefore, in the present utility model, the beam positioning and climbing module 21 drives the beam positioning module 22 to climb up and down on the installation column 01 to adjust the corresponding position to realize the subsequent hoisting and positioning of the installation beam 02; the two oppositely arranged first-direction positioning components in the beam positioning module 22 can realize the hoisting and positioning of the installation beam 02 in the width direction. The orientation direction of the second-direction beam positioning component is perpendicular to the orientation direction of the first-direction beam positioning component, which can realize the hoisting and positioning of the installation beam 02 in the length direction, thereby realizing the accurate hoisting and positioning of the installation beam 02, ensuring the accuracy of hoisting, and improving the work efficiency of construction.

[0032] In this embodiment, please refer to FIG. Figures 1 - 4, the beam positioning and climbing module 21 includes an upper climbing component, a lower climbing component, a climbing telescopic driving member 23 and a climbing transmission component; both the upper climbing component and the lower climbing component can be clamped on the mounting column 01, the upper climbing component and the lower climbing component are slidably matched through the climbing transmission component, and the climbing telescopic driving member 23 is arranged between the upper climbing component and the lower climbing component. During the actual climbing process, first, the upper climbing component is loosened, the lower climbing component is clamped on the mounting column 01, the climbing telescopic driving member 23 extends, the distance between the upper climbing component and the lower climbing component increases, and the relative position of the upper climbing component on the mounting column 01 rises. Then, the upper climbing component is clamped on the mounting column 01, the climbing telescopic driving member 23 retracts, the distance between the lower climbing component and the lower climbing component decreases, and the relative position of the lower climbing component on the mounting column 01 rises. And the operations are cycled in sequence until the beam positioning module 22 is driven to the specified height position on the mounting column 01 to realize the positioning and hoisting of the subsequent installed beam 02. The position can be adjusted without manual operation, and the processing efficiency is higher. Optionally, the climbing telescopic driving member 23 can be a telescopic cylinder or a telescopic motor or other devices that meet the conditions. The main body of the climbing telescopic driving member 23 can be arranged on the lower climbing component, and the telescopic end of the climbing telescopic driving member 23 can be arranged on the upper climbing component.

[0033] In this embodiment, please refer to Figures 1 - 3 , the upper climbing component includes an upper climbing platform frame 24 and an upper climbing clamping component; the upper climbing clamping component is installed on the upper climbing platform frame 24, the upper climbing clamping component includes two groups of upper clamping telescopic driving members 25, the two groups of upper clamping telescopic driving members 25 are arranged oppositely, and an upper climbing clamping plate 26 is connected to the telescopic end of the upper clamping telescopic driving member 25. Two groups of upper clamping telescopic driving members 25 are arranged in the upper climbing clamping component, and the two groups of upper clamping telescopic driving members 25 are arranged oppositely. During the climbing process, the two groups of upper clamping telescopic driving members 25 are started, and the opposite sides of the mounting column 01 are tightly attached and pressed through the upper climbing clamping plate 26 to achieve the clamping effect. Optionally, the upper clamping telescopic driving member 25 can be a telescopic cylinder or a telescopic motor or other devices that meet the conditions.

[0034] In this embodiment, please refer to Figures 1 - 3, the lower climbing component includes a lower climbing platform 27 and a lower climbing clamping component; the lower climbing clamping component is installed under the lower climbing platform 27, and the lower climbing clamping component includes two sets of lower clamping telescopic driving members 28, the two sets of lower clamping telescopic driving members 28 are arranged oppositely, and a lower climbing clamping plate 29 is connected under the telescopic end of the lower clamping telescopic driving member 28. Two sets of lower clamping telescopic driving members 28 are arranged in the lower climbing clamping component, and the two sets of lower clamping telescopic driving members 28 are arranged oppositely. During the climbing process, the two sets of lower clamping telescopic driving members 28 are started, and the opposite sides of the mounting column 01 are tightly attached and pressed by the lower climbing clamping plate 29 to achieve the clamping effect. Optionally, the lower clamping telescopic driving member 28 can be selected from a telescopic cylinder, a telescopic motor or other devices that meet the conditions.

[0035] In this embodiment, please refer to Figure 2 , the climbing transmission component includes a climbing slider 210 and a climbing sliding shaft 211, and the climbing slider 210 and the climbing sliding shaft 211 are slidably matched; the climbing slider 210 is fixedly installed on the upper climbing component, the climbing sliding shaft 211 is fixedly installed on the upper climbing component or the climbing slider 210 is fixedly installed on the lower climbing component, and the climbing sliding shaft 211 is fixedly installed on the lower climbing component. During the telescopic process of the climbing telescopic driving member 23, the upper climbing component and the lower climbing component can adjust the relative distance through the up and down sliding cooperation of the climbing slider 210 and the climbing sliding shaft 211, and the adjustment is more stable and safe.

[0036] In this embodiment, please refer to Figures 1 - 4 , the first-direction positioning component for beam placement includes a first-direction positioning rod for beam placement and a first-direction positioning plate 212 for beam placement. One end of the first-direction positioning rod for beam placement is installed on the upper climbing component, and the other end of the first-direction positioning rod for beam placement is connected to the first-direction positioning plate 212 for beam placement; the second-direction positioning component for beam placement includes a second-direction positioning rod for beam placement and a second-direction positioning plate 213 for beam placement. One end of the second-direction positioning rod for beam placement is installed on the upper climbing component, and the other end of the second-direction positioning rod for beam placement is connected to the second-direction positioning plate 213 for beam placement. The first-direction positioning plate 212 in the first-direction positioning component for beam placement is fixedly installed through the first-direction positioning rod for beam placement, and the two sets of first-direction positioning components for beam placement are arranged oppositely. Therefore, the first-direction positioning plates 212 on both sides can be attached to both sides in the width direction of the mounting beam 02 to achieve the positioning operation. Similarly, the second-direction positioning plate 213 in the second-direction positioning component for beam placement is fixedly installed through the second-direction positioning rod for beam placement, and the second-direction positioning plate 213 can be attached to the end direction of the mounting beam 02 to achieve the positioning operation. Refer to Figure 4, at the end of the installation beam 02, there is a width-direction positioning member 218 for positioning and cooperating with the first-direction positioning assembly, and at the bottom of the installation beam 02, there is a length-direction positioning member 219 for positioning and cooperating with the second-direction positioning assembly.

[0037] In this embodiment, please refer to Figures 1 - 3 , the beam positioning first-direction positioning assembly further includes a beam positioning first-direction positioning adjustment driving member 214, the beam positioning first-direction positioning adjustment driving member 214 is installed on the upper climbing assembly, the beam positioning first-direction positioning adjustment driving member 214 is drivingly connected to the beam positioning first-direction positioning rod, and the beam positioning first-direction positioning adjustment driving member 214 drives the beam positioning first-direction positioning plate 212 to move and adjust through the beam positioning first-direction positioning rod; the beam positioning second-direction positioning assembly further includes a beam positioning second-direction positioning adjustment driving member 215, the beam positioning second-direction positioning adjustment driving member 215 is installed on the upper climbing assembly, the beam positioning second-direction positioning adjustment driving member 215 is drivingly connected to the beam positioning second-direction positioning rod, and the beam positioning second-direction positioning adjustment driving member 215 drives the beam positioning second-direction positioning plate 213 to move and adjust through the beam positioning second-direction positioning rod. By setting the first-direction positioning adjustment driving member and the second-direction positioning adjustment driving member, the position parameters of the beam positioning first-direction positioning assembly and the beam positioning second-direction positioning assembly can be changed according to different sizes and hoisting environments, and it can adapt to the positioning and installation of the installation beam 02 with different sizes.

[0038] In this embodiment, please refer to Figure 1 and Figure 3 , the beam positioning climbing module 21 further includes a climbing auxiliary surrounding assembly, the climbing auxiliary surrounding assembly is installed on the upper climbing assembly, the climbing auxiliary surrounding assembly includes two climbing auxiliary surrounding plates 216 and a climbing auxiliary surrounding rod 217, the two climbing auxiliary surrounding plates 216 are installed in parallel and at intervals on the upper climbing platform 24, and the climbing auxiliary surrounding rod 217 is installed between the two climbing auxiliary surrounding plates 216. The two climbing auxiliary surrounding plates 216 and the climbing auxiliary surrounding rod 217 of the climbing auxiliary surrounding assembly form a ring-like structure, which can limit the installation column 01 by surrounding it from the other side during the lifting and lowering process of the beam positioning climbing module 21, improving the stability and safety of the up and down adjustment of the beam positioning climbing module 21.

[0039] In this embodiment, the climbing auxiliary surrounding plate 216 is provided with a plurality of surrounding installation holes along the length direction, and the climbing auxiliary surrounding rod 217 cooperates with the surrounding installation holes. The climbing auxiliary surrounding plate 216 is provided with a plurality of surrounding installation holes along the length direction, and the climbing auxiliary surrounding rod 217 can be adjusted to cooperate with the hole positions at different positions for installation, and the surrounding space range can be adjusted, so as to adapt to different installation columns 01.

[0040] In summary, the present utility model includes a beam placement climbing module and a beam placement positioning module. In the actual hoisting process, the mechanism of the present utility model positions the installation beam on the installation column for placement and installation. Therefore, in the present utility model, the beam placement climbing module drives the beam placement positioning module to climb up and down on the installation column to adjust the corresponding position, so as to realize the subsequent hoisting and placement positioning of the installation beam. The two oppositely arranged first-direction positioning components in the beam placement positioning module can realize the hoisting positioning in the width direction of the installation beam. The beam placement second-direction positioning component is perpendicular to the orientation direction of the beam placement first-direction positioning component, and can realize the hoisting positioning in the length direction of the installation beam, thereby realizing the precise placement and hoisting positioning of the installation beam, ensuring the accuracy of hoisting, and improving the construction efficiency.

[0041] The above embodiments are only illustrative of the principles and effects of the present utility model, and are not used to limit the present utility model. Any person familiar with this technology can modify or change the above embodiments without departing from the spirit and scope of the present utility model. Therefore, all equivalent modifications or changes completed by those with ordinary knowledge in the technical field without departing from the spirit and technical ideas disclosed by the present utility model should still be covered by the claims of the present utility model.

Claims

1. A beam auxiliary positioning mechanism for load-bearing construction hoisting, characterized in that: include: Beam in-place climbing module and beam in-place positioning module; The beam in-place positioning module is installed on the beam in-place climbing module, and the beam in-place climbing module drives the beam in-place positioning module to adjust the position in the height direction; The beam-in-place positioning module includes a beam-in-place first-direction positioning component and a beam-in-place second-direction positioning component. The beam-in-place first-direction positioning component is provided with two groups, and the two groups of the beam-in-place first-direction positioning components are arranged opposite to each other. The beam-in-place first-direction positioning component is used for hoisting positioning in the width direction of the installation beam. The orientation direction of the beam-in-place second-direction positioning component is perpendicular to the orientation direction of the beam-in-place first-direction positioning component. The beam-in-place second-direction positioning component is used for hoisting positioning in the length direction of the installation beam.

2. The beam auxiliary positioning mechanism for load-bearing construction hoisting according to claim 1 is characterized in that: The beam-in-place climbing module comprises an upper climbing component, a lower climbing component, a climbing telescopic drive component and a climbing transmission component; The upper climbing assembly and the lower climbing assembly can both be clamped on the mounting column, the upper climbing assembly and the lower climbing assembly are slidably matched through the climbing transmission assembly, and the climbing telescopic driving member is arranged between the upper climbing assembly and the lower climbing assembly.

3. The beam auxiliary positioning mechanism for load-bearing construction hoisting according to claim 2 is characterized in that: The climbing assembly comprises an climbing stand and an climbing clamping assembly; The upper climbing clamping assembly is installed on the upper climbing platform, and the upper climbing clamping assembly includes two groups of upper clamping telescopic driving members, the two groups of upper clamping telescopic driving members are arranged opposite to each other, and the telescopic ends of the upper clamping telescopic driving members are connected with upper climbing clamping plates.

4. The beam auxiliary positioning mechanism for load-bearing construction hoisting according to claim 3 is characterized in that: The lower climbing assembly comprises a lower climbing stand and a lower climbing clamping assembly; The lower climbing clamping assembly is installed under the lower climbing platform, and the lower climbing clamping assembly includes two groups of lower clamping telescopic driving members, the two groups of lower clamping telescopic driving members are arranged oppositely, and the lower telescopic end of the lower clamping telescopic driving member is connected to a lower climbing clamping plate.

5. The beam auxiliary positioning mechanism for load-bearing construction hoisting according to claim 4 is characterized in that: The climbing transmission assembly comprises a climbing slider and a climbing sliding shaft, and the climbing slider and the climbing sliding shaft are slidably matched; The climbing slider is fixedly mounted on the upper climbing assembly, the climbing sliding shaft is fixedly mounted on the upper climbing assembly or the climbing slider is fixedly mounted on the lower climbing assembly, and the climbing sliding shaft is fixedly mounted on the lower climbing assembly.

6. The beam auxiliary positioning mechanism for load-bearing construction hoisting according to claim 2, characterized in that: The beam-in-place first-direction positioning assembly comprises a beam-in-place first-direction positioning rod and a beam-in-place first-direction positioning plate, one end of the beam-in-place first-direction positioning rod is mounted on the upper climbing assembly, and the other end of the beam-in-place first-direction positioning rod is connected to the beam-in-place first-direction positioning plate; The beam-in-place second direction positioning assembly includes a beam-in-place second direction positioning rod and a beam-in-place second direction positioning plate, one end of the beam-in-place second direction positioning rod is installed on the upper climbing assembly, and the other end of the beam-in-place second direction positioning rod is connected to the beam-in-place second direction positioning plate.

7. The beam auxiliary positioning mechanism for load-bearing construction hoisting according to claim 6, characterized in that: The beam-in-place first-direction positioning assembly further comprises a beam-in-place first-direction positioning adjustment driving member, the beam-in-place first-direction positioning adjustment driving member is mounted on the upper climbing assembly, the beam-in-place first-direction positioning adjustment driving member is drivingly connected to the beam-in-place first-direction positioning rod, and the beam-in-place first-direction positioning adjustment driving member drives the beam-in-place first-direction positioning plate to move and adjust via the beam-in-place first-direction positioning rod; The beam-in-place second-direction positioning assembly also includes a beam-in-place second-direction positioning adjustment drive component, the beam-in-place second-direction positioning adjustment drive component is installed on the upper climbing assembly, the beam-in-place second-direction positioning adjustment drive component is drivingly connected to the beam-in-place second-direction positioning rod, and the beam-in-place second-direction positioning adjustment drive component drives the beam-in-place second-direction positioning plate to move and adjust via the beam-in-place second-direction positioning rod.

8. The beam auxiliary positioning mechanism for load-bearing construction hoisting according to claim 3, characterized in that: The beam-in-place climbing module also includes a climbing auxiliary embracing component, which is installed on the upper climbing component. The climbing auxiliary embracing component includes two climbing auxiliary embracing plates and a climbing auxiliary embracing rod. The two climbing auxiliary embracing plates are installed in parallel and at intervals on the upper climbing platform, and the climbing auxiliary embracing rod is installed between the two climbing auxiliary embracing plates.

9. The beam auxiliary positioning mechanism for load-bearing construction hoisting according to claim 8, characterized in that: The climbing auxiliary embracing plate is provided with a plurality of embracing mounting holes along the length direction, and the climbing auxiliary embracing rod cooperates with the embracing mounting holes.