Building climbing frame mesh connecting structure

By setting extrusion parts and positioning mating holes on the building climbing scaffold mesh, the problem of mismatched support mesh claws was solved, enabling fine adjustment and stable connection of the support frame, and improving installation efficiency and stability.

CN223853816UActive Publication Date: 2026-01-30SHANDONG DAYUAN IND
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Patent Information

Application Number
CN202520393527.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-07
Publication Date
2026-01-30
Estimated Expiration
2035-03-07

AI Technical Summary

Technical Problem

During the assembly process of existing building climbing scaffold mesh panels, the clamps of the supporting mesh panels cannot match the supporting frame due to the assembly status or deformation of the supporting frame, which affects the installation work.

Method used

By setting extrusion components on the mesh body, including an extrusion output end and a center part, the extrusion output end is driven by a drive arm to extrude the support rod from one side, causing the support to undergo slight deformation, ensuring that the claws can be locked into the support rod, and achieving a stable connection of the mesh through positioning and mating holes.

Benefits of technology

It enables fine-tuning in cases of improper bracket installation, ensuring that the claws can smoothly engage with the support rods, thereby improving the installation efficiency and stability of the mesh panels.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223853816U_ABST
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Abstract

The utility model is suitable for the field of building auxiliary construction equipment, and provides a building climbing frame mesh connecting structure which comprises a mesh body, a lap joint structure arranged at the end of the mesh body and an extrusion part rotationally installed at the preset position of the mesh body. The extrusion part comprises an extrusion output end which is in contact with the supporting rod and extrudes in the direction perpendicular to the axis direction of the supporting rod and a central part for supporting the supporting rod to rotate, so that the supporting rod can be extruded from one side through the rotating extrusion output end, the bracket is slightly deformed, and the clamping jaw is further clamped into the supporting rod; and the extrusion output end also plays a role in auxiliary positioning of the adjacent mesh bodies.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of building auxiliary construction equipment, especially relates to a building climbing frame mesh connecting structure. BACKGROUND

[0002] The building climbing frame (also called as the scaffold) is the temporary structure commonly used in the construction, is used for supporting the worker and the material, so that the construction, the maintenance or the repair of the building are carried out. Among them, the building climbing frame includes the support frame body and the support mesh on the frame, when assembling, the support mesh is overlapped on the support frame body through the claw set on its one side. But, in the above-mentioned assembling process, since the support frame body is also assembled, the distance between the support frame pipe for overlapping the mesh will be affected by the assembling state or the deformation, so that the claw of the support mesh cannot be matched, thus affecting the installation work of the support mesh.

[0003] Therefore, the building climbing frame mesh connecting structure is needed. UTILITY MODEL CONTENTS

[0004] In view of the above-mentioned defects, the utility model aims at providing a building climbing frame mesh connecting structure, which can extrude the support rod from one side through the rotating extrusion output end, so that the support frame produces micro-deformation, and then the claw is clamped into the support rod, and the extrusion output end also plays the auxiliary positioning work of the adjacent mesh body.

[0005] In order to realize the above-mentioned purpose, the utility model provides a building climbing frame mesh connecting structure, which comprises a mesh body, an overlapping structure arranged at the end of the mesh body, and an extrusion piece rotatably installed at a predetermined position of the mesh body.

[0006] According to the building climbing frame mesh connecting structure of the utility model, the predetermined position of the mesh body is provided with a mounting hole for mounting the center part, the center part is an axle type component, and the center part is rotatably installed in the mounting hole.

[0007] According to the building climbing frame mesh connecting structure of the utility model, the extrusion output end is a horizontally placed "「" type rod structure.

[0008] According to the building climbing frame mesh connecting structure of the utility model, the center part can move in the axial direction of the mounting hole, and the end of the center part is provided with a stopper for positioning the axial movement of the center part.

[0009] According to the building climbing frame mesh connecting structure of the utility model, the mesh body is provided with a positioning matching hole for inserting the extrusion output end of the extrusion piece on the adjacent mesh body.

[0010] According to the building climbing frame mesh connecting structure, the overlapping structure is a claw provided at the end of the mesh body.

[0011] The utility model provides a kind of building climbing frame mesh connecting structure, including mesh body and the overlapping structure being set to its end, the overlapping structure is the claw being set at the end of mesh body, the opening direction of the claw is downward, only need to place mesh body on support during the assembly process of mesh body, claw is naturally stuck, realize positioning work. Extrusion piece is rotatably installed at the predetermined position of mesh body;In the case where the installation distance between support is not suitable, extrusion piece can be used to adjust (fine tuning) support position, so that the claw is inserted into the position of support. The extrusion piece includes extrusion output end and center portion which supports its rotation and is in contact with support rod and extrudes perpendicular to the axis direction thereof, the predetermined position of mesh body is provided with mounting hole for mounting center portion, and the center portion is a shaft component, which is rotatably installed in the mounting hole;Center portion side is provided with driving arm for driving rotation. After mesh body is overlapped on support, when the claw cannot be inserted into support rod, during position adjustment, handheld driving arm drives center portion to rotate, further drives extrusion output end (the extrusion output end is horizontally arranged "「" type rod structure), and the rotating extrusion output end extrudes support rod from one side, so that support is slightly deformed, and then the claw is inserted into support rod. BRIEF DESCRIPTION OF DRAWINGS

[0012] Figure 1 It is the structural schematic diagram of the utility model;

[0013] Figure 2 It is the cooperation schematic diagram of the claw and support rod of the utility model;

[0014] Figure 3 It is the first working schematic diagram of the utility model;

[0015] Figure 4 It is the second working schematic diagram of the utility model;

[0016] In the drawing, 1-mesh body, 2-overlapping structure, 3-extrusion piece, 31-extrusion output end, 32-center portion, 4-support rod, 5-driving arm, 6-positioning matching hole, 7-stop block, 9-claw. DETAILED DESCRIPTION

[0017] In order to make the purpose, technical scheme and advantages of the utility model more clear and obvious, the utility model is further described in detail in the following with the help of drawings and examples, and it should be understood that the specific examples described here are only used to explain the utility model, and are not used to limit the utility model.

[0018] Referring to Figure 1 andFigure 2 The utility model provides a kind of building climbing frame mesh connecting structure, which comprises a mesh body 1 and a lap joint structure 2 arranged at the end thereof, the lap joint structure 2 is a claw 9 arranged at the end of the mesh body 1, the opening direction of the claw 9 is downward, during the assembly process of the mesh body 1, only need to place the mesh body 1 on the support, the claw 9 is naturally clamped (in the case of appropriate installation distance between supports), positioning work is realized.

[0019] The mesh body 1 is rotatably installed with an extrusion piece 3 at a predetermined position; in the case of inappropriate installation distance between supports (too large or too small), the position of the support can be adjusted (fine tuning) by the extrusion piece 3, so that the claw 9 is clamped into the support position.

[0020] The extrusion piece 3 includes an extrusion output end 31 in contact with the support rod 4 and extruding perpendicular to the axis direction, and a central part 32 supporting the rotation thereof, specifically in the present embodiment, the predetermined position of the mesh body 1 is provided with a mounting hole for mounting the central part 32, the central part 32 is an axle type component, which is rotatably installed in the mounting hole (the central part 32 is installed in the mounting hole in a clearance fit manner); one side of the central part 32 is provided with a driving arm 5 driving the rotation thereof.

[0021] After the mesh body 1 is lapped on the support, if the claw cannot be clamped into the support rod 4, during the position adjustment process, the central part 32 is rotated by holding the driving arm 5, further driving the extrusion output end 31 (in the present embodiment, the extrusion output end 31 is a horizontally placed "「" type rod structure), the rotating extrusion output end 31 extrudes the support rod 4 from one side (as shown in the figure), so that the support is slightly deformed, and the claw is clamped into the support rod 4. Figure 3

[0022] Referring to Figure 4 Preferably, the extrusion output end 31 of the present application is a horizontally placed "「" type rod structure, which not only can adjust the support, but also can realize the position positioning between the mesh bodies 1, the central part 32 of the utility model can move in the axis direction along the mounting hole; the end of the central part 32 is provided with a stop block 7 positioning the axial movement thereof. Correspondingly, the mesh body 1 is provided with a positioning matching hole 6 for inserting the extrusion output end 31 of the extrusion piece 3 on the adjacent mesh body 1.

[0023] ​After the mesh body 1 is lapped on the support, at this time, the center part 32 can be pulled up (the center part 32 can move along the mounting hole in the axial direction), then the center part 32 is continuously rotated, so that the end of the extrusion output end 31 corresponds to the positioning fitting hole 6 (the positioning fitting hole 6 on the adjacent mesh body 1), the center part 32 is lowered, so that the end of the extrusion output end 31 is clamped into the positioning fitting hole 6, the connection work between the adjacent mesh body 1 is realized, and the stability after the mesh body 1 is installed is optimized.

[0024] In conclusion, the utility model provides a kind of building climbing frame mesh connecting structure, including mesh body and the lapping structure of setting at its end, the lapping structure is the claw of setting at the end of mesh body, the opening direction of claw is downward, during the assembly of mesh body, only need to place mesh body on support, claw is naturally clamped, realize positioning work.The extrusion piece is rotatably installed at the predetermined position of mesh body;In the case where the installation distance between support is not suitable, the position of support can be adjusted (fine tuning) using extrusion piece, so that claw is clamped into support position.The extrusion piece includes extrusion output end and center part, and the extrusion output end is in contact with support rod and extrudes perpendicular to the axial direction of support rod, and the center part supports the rotation of the extrusion output end, the predetermined position of mesh body is provided with mounting hole for mounting the center part, the center part is a shaft component, and is rotatably installed in the mounting hole, one side of the center part is provided with driving arm for driving the rotation of the center part.After mesh body is lapped on support, when claw cannot be clamped into support rod, during position adjustment, center part is rotated by hand-held driving arm, further drive extrusion output end (the extrusion output end is horizontally arranged "「" type rod structure), and the extrusion output end is extruded from one side of support rod, so that support rod is slightly deformed, and then claw is clamped into support rod.

[0025] Of course, the utility model also can have other various embodiments, without departing from the spirit and essence of the utility model, skilled in the art person can make various corresponding changes and deformation according to the utility model, but these corresponding changes and deformation should all belong to the protection scope of the claims attached to the utility model.

Claims

1. A construction climbing scaffold mesh connection structure, characterized in that, The mesh body, the overlapping structure arranged at the end of the mesh body, and the extruding member rotatably arranged at a predetermined position of the mesh body; The extruding member comprises an extruding output end in contact with the supporting rod and extruding perpendicularly to the axial direction of the supporting rod, and a central part supporting the rotation of the extruding output end.

2. The building climbing frame mesh connection structure according to claim 1, characterized in that, A predetermined position of the mesh body is provided with a mounting hole for mounting the central part, which is an axle type part rotatably arranged in the mounting hole. One side of the central part is provided with a driving arm for driving the rotation of the central part.

3. The building climbing frame mesh connection structure according to claim 1, characterized in that, The extruding output end is a horizontally arranged "「”" type rod structure.

4. The building climbing frame mesh connection structure according to claim 2, characterized in that, The central part is movable along the mounting hole in the axial direction, and the end of the central part is provided with a stopper for positioning the axial movement of the central part.

5. The building climbing frame mesh connection structure according to claim 3, characterized in that, The mesh body is provided with a positioning and matching hole for inserting the extruding output end of the extruding member on the adjacent mesh body.

6. The building climbing frame mesh connection structure according to claim 1, characterized in that, The overlapping structure is a claw arranged at the end of the mesh body.