Assembly device for steel structural member

By designing an assembly device for support rods, limiting grooves, and reinforcing steel components, the problems of inaccurate positioning and insufficient support structure in the traditional assembly of steel structure components were solved, achieving efficient and precise assembly of steel structure components and improving project quality and safety.

CN224259922UActive Publication Date: 2026-05-19JIANGSU XIANGBEI STEEL STRUCTURE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGSU XIANGBEI STEEL STRUCTURE CO LTD
Filing Date
2025-04-09
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

Traditional steel structure component assembly devices lack precise positioning and limiting mechanisms, resulting in large deviations during assembly. Furthermore, the support structure design is insufficient, making it difficult to withstand the weight of large or heavy components, thus affecting stability and safety.

Method used

An assembly device comprising a base, a support rod, a limiting groove, and reinforcing steel components was designed. Precise positioning is achieved through threaded connections and snap-fit ​​engagement. The combined design of the support rod and the limiting groove provides stable support, and the reinforcing steel components on the inner side of the base enhance the structural strength.

Benefits of technology

It achieves precise positioning and stable limiting of steel structure components, improves assembly accuracy and load-bearing capacity of the device, reduces construction time and cost, and ensures project quality and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of assembling equipment, and discloses an assembling device of a steel structural member, which comprises a base, two groups of seven threaded connection holes which are transversely distributed at equal intervals are respectively arranged at two ends of the top of the base, and two supporting rods which are transversely distributed at equal intervals are arranged at one end of the top of the base. According to the device, through mutual cooperation of the structures, accurate positioning, effective limiting and stable supporting of a steel structure component in the assembling process are achieved, the position accuracy of the component is ensured, the assembling efficiency is improved, and the assembling efficiency is improved. The bearing capacity and the stability of the device are improved through the design of the reinforced supporting structure and the base, so that the assembly efficiency is remarkably improved, the construction cost is reduced, an efficient and reliable solution is provided for assembly of steel structural components, and the device is more practical.
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Description

Technical Field

[0001] This utility model relates to the field of assembly equipment technology, specifically to an assembly device for steel structure components. Background Technology

[0002] In modern architecture and engineering, steel structural components are widely used in various large-scale buildings, bridges, and industrial facilities due to their high strength, lightweight, and excellent seismic performance. The assembly of steel structural components is a crucial step in the entire construction process, and its precision and efficiency directly affect the quality, safety, and schedule of the entire project. Therefore, developing an efficient and precise steel structural component assembly device is of great significance for improving construction standards, ensuring project quality, and shortening construction periods.

[0003] However, traditional steel structure component assembly technology has revealed many shortcomings in practical applications. On the one hand, traditional assembly devices often lack precise positioning and limiting mechanisms, leading to deviations in steel structure components during assembly, which in turn affects the stability and safety of the entire structure. On the other hand, traditional devices have deficiencies in support structure design and base strength, making it difficult to withstand the weight and torque of large or heavy steel structure components, easily resulting in deformation or damage. This not only increases construction difficulty and cost but may also pose a threat to the safety of construction workers. These technical bottlenecks severely restrict the development of steel structure component assembly technology and urgently need to be addressed through innovative design and technological upgrades. To this end, we propose an assembly device for steel structure components. Utility Model Content

[0004] In view of the shortcomings of the existing technology, this utility model provides an assembly device for steel structure components, which solves the above-mentioned problems.

[0005] To achieve the above-mentioned objectives, the present invention provides the following technical solution: an assembly device for steel structure components, including a base, wherein two sets of seven threaded connection holes are respectively opened at both ends of the top of the base, and two support rods are provided at one end of the top of the base, which are distributed horizontally at equal intervals. Two second support rods are provided at the end of the top of the base away from the support rods.

[0006] Preferably, the support rod and the bottom of the second support rod are welded with bolts, the bolts at the bottom of the support rod and the second support rod are threadedly connected to the threaded connection hole, and the support rod and the second support rod are parallel.

[0007] Preferably, five vertically equidistant support blocks are welded to the outer wall of the support rod near the second support rod, and five output-oriented second support blocks are welded to the outer wall of the second support rod near the support rod. The support blocks are parallel to the second support blocks.

[0008] Preferably, the cross-sections of the support block and the second support block are L-shaped relative to each other.

[0009] Preferably, the second support rod has five vertically equidistant limiting grooves on its outer wall near the second support block. The limiting grooves are parallel to the second support block, and the output end of the limiting groove has an inverted L-shaped cross-section.

[0010] Preferably, a steel structure component is placed at the top output end of the support block and the second support block. A limiting rod is provided on the outer wall of the steel structure component near the second support block. The outer wall of one end of the limiting rod is engaged with the bottom of the inner wall of the limiting groove.

[0011] Preferably, the inner wall of the base is welded with a reinforcing steel component, which is an I-shaped steel component placed at a 45° angle.

[0012] Compared with the prior art, this utility model provides an assembly device for steel structure components, which has the following beneficial effects:

[0013] 1. Compared to the common problems of inaccurate positioning and unreliable limiting in traditional steel structure component assembly techniques, this assembly device achieves precise positioning and effective limiting of steel structure components during assembly through a unique design of limiting grooves and limiting rods. Traditional techniques often rely on manual experience and simple tools for positioning, resulting in large deviations between components and affecting the overall structural stability. In this device, the carefully designed limiting grooves on the support rods and second support rods fit tightly with the limiting rods on the steel structure components, forming a stable locking structure. This not only ensures the accuracy of the component's position during assembly but also effectively prevents displacement and shaking during assembly, thus significantly improving assembly precision and providing strong assurance for project quality.

[0014] 2. Compared to traditional steel structure assembly devices, this assembly device often suffers from deficiencies in support structure design and base strength, making it difficult to withstand the weight and torque of large or heavy steel structure components, and prone to deformation or damage. However, this device effectively improves the overall load-bearing capacity by optimizing the layout of the support rods and the second support rod, and strengthening the structural design of the base. The support rods and the second support rod are made of high-strength materials and are securely connected to the base with bolts, forming a stable support frame. Simultaneously, the reinforcing steel components welded to the inner wall of the base further enhance its structural strength, enabling it to withstand greater pressure and torque, ensuring the stability and safety of the device during assembly, and providing a reliable guarantee for the assembly of large or heavy steel structure components.

[0015] 3. Compared to traditional steel structure component assembly techniques, which often suffer from inaccurate positioning, unreliable positioning, and unstable support structures, leading to cumbersome and time-consuming assembly processes and increased rework and repair costs, this steel structure component assembly device significantly improves assembly efficiency through precise positioning and positioning mechanisms and reinforced support structures. Components can be quickly and accurately placed in their predetermined positions and securely fixed via the interlocking action of positioning grooves and rods, reducing adjustment and correction time during assembly. Furthermore, the device's stability and load-bearing capacity lower the risk of rework and repair due to deformation or damage, further saving construction costs. Therefore, the application of this device not only improves construction efficiency but also brings significant economic benefits to enterprises. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of this utility model;

[0017] Figure 2 This is a cross-sectional view of the base of this utility model;

[0018] Figure 3 This is a side view of the present invention.

[0019] In the diagram: 1. Base; 2. Threaded connection hole; 3. Support rod; 4. Second support rod; 5. Bolt; 6. Support block; 7. Second support block; 8. Limiting groove; 9. Steel structure component; 10. Limiting rod; 11. Reinforcing steel component. Detailed Implementation

[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0021] Please see Figure 1-3 An assembly device for a steel structure component includes a base 1. Two sets of seven horizontally equidistant threaded connection holes 2 are respectively provided at both ends of the top of the base 1, providing stable installation positions for support rods 3 and second support rods 4, ensuring they can be accurately fixed to the base 1 and guaranteeing the stability of the entire device. Two horizontally equidistant support rods 3 are provided at one end of the top of the base 1, and two horizontally equidistant second support rods 4 are provided at the end of the top of the base 1 away from the support rods 3. The support rods 3 and second support rods 4 together form the support frame of the steel structure component 9, providing stable support for the steel structure component 9 and enabling it to remain horizontal during assembly.

[0022] Furthermore, bolts 5 are welded to the bottom of the support rod 3 and the second support rod 4. The bolts 5 at the bottom of the support rod 3 and the second support rod 4 are threadedly connected to the threaded connection hole 2. The support rod 3 and the second support rod 4 are parallel. Through the threaded connection of the bolts 5 and the threaded connection hole 2, the support rod 3 and the second support rod 4 are stably connected to the base 1, ensuring the parallelism of the support rod 3 and the second support rod 4, and providing uniform support force for the steel structure component 9.

[0023] Furthermore, five vertically equidistant support blocks 6 are welded to the outer wall of the support rod 3 near the second support rod 4, and five output-oriented second support blocks 7 are welded to the outer wall of the second support rod 4 near the support rod 3. The support blocks 6 and the second support blocks 7 are parallel to each other. The support blocks 6 and the second support blocks 7 provide additional support points for the steel structure component 9, increasing the stability of the steel structure component 9 during the assembly process and preventing it from shaking or tilting.

[0024] Furthermore, the cross-sections of support block 6 and second support block 7 are L-shaped relative to each other. The L-shaped cross-section design allows support block 6 and second support block 7 to better fit the side wall of steel structure component 9, providing a larger support area and enhancing the support effect.

[0025] Furthermore, five vertically equidistant limiting grooves 8 are provided on the outer wall of the second support rod 4 near the second support block 7. The limiting grooves 8 are parallel to the second support block 7. The output end cross section of the limiting groove 8 is an inverted L-shape. The limiting grooves 8 provide a snap-fit ​​position for the limiting rod 10 on the steel structure component 9. Through the snap-fit ​​cooperation between the limiting rod 10 and the limiting groove 8, the steel structure component 9 is accurately positioned to prevent displacement during assembly.

[0026] Furthermore, a steel structure component 9 is placed on the top output end of the support block 6 and the second support block 7. A limiting rod 10 is provided on the outer wall of the steel structure component 9 near the second support block 7. The outer wall of one end of the limiting rod 10 is engaged with the bottom of the inner wall of the limiting groove 8. The engagement between the limiting rod 10 and the limiting groove 8 allows the steel structure component 9 to be accurately placed on the support block 6 and the second support block 7 and remain stable, ensuring assembly accuracy.

[0027] Furthermore, a reinforcing steel component 11 is welded to the inner wall of the base 1. The reinforcing steel component 11 is an I-shaped steel component placed at a 45° angle. The reinforcing steel component 11 enhances the structural strength of the base 1, improves the load-bearing capacity and stability of the entire assembly device, and prevents deformation or damage due to excessive force during the assembly process.

[0028] Instructions for use

[0029] Structural Description: 1. Base 1: As the basic support structure of the entire assembly device, it provides installation positions for other components. Two sets of seven threaded connection holes 2 are provided at both ends of its top.

[0030] 2. Support rod 3: Together with the second support rod 4, it forms the support frame of the steel structure component 9. Bolts 5 are welded to its bottom and are connected to the threaded connection hole 2 at the top of the base 1 through threads. It is parallel to the second support rod 4 and located at one end of the top of the base 1.

[0031] 3. Second support rod 4: Together with support rod 3, it supports steel structure component 9. Bolt 5 is welded to its bottom and is connected to threaded connection hole 2 at the top of base 1 through thread. It is parallel to support rod 3 and located at the top of base 1 away from support rod 3.

[0032] 4. Bolt 5: Used to fix the support rod 3 and the second support rod 4 to the base 1, welded to the bottom of the support rod 3 and the second support rod 4 and threaded to the threaded connection hole 2 of the base 1;

[0033] 5. Support block 6: Provides additional support points for steel structure component 9, welded to the outer wall of support rod 3 near the second support rod 4 and distributed vertically at equal intervals, parallel to the second support block 7;

[0034] 6. Second support block 7: Also provides support for steel structure component 9, welded to the outer wall of the second support rod 4 near the support rod 3 and distributed vertically at equal intervals, parallel to support block 6;

[0035] 7. Limiting groove 8: Provides a snap-fit ​​position for the limiting rod 10 on the steel structure component 9. It is opened on the outer wall of the second support rod 4 near the second support block 7 and is distributed vertically at equal intervals. It is parallel to the second support block 7 and its output end cross section is an inverted L shape.

[0036] 8. Steel structure component 9: The main structure to be assembled, placed at the top output end of the support block 6 and the second support block 7, with a limiting rod 10 on the outer wall near the second support block 7.

[0037] 9. Limiting rod 10: It engages with the limiting groove 8 to achieve precise positioning of the steel structure component 9. It is located on the outer wall of the steel structure component 9 near the second support block 7 and engages with the bottom of the inner wall of the limiting groove 8.

[0038] 10. Reinforcing steel component 11: To enhance the structural strength of the base 1, an I-shaped steel component welded to the inner wall of the base 1 and placed at an angle of 45°.

[0039] Working principle: First, the base 1 serves as the basic support structure of the entire device. Two sets of seven horizontally equidistant threaded connection holes 2 are respectively opened at both ends of its top, providing a positioning reference for the installation of the support rods 3 and 4. Bolts 5 welded to the bottom of the support rods 3 and 4 are threaded into the threaded connection holes 2. This connection method not only ensures a stable connection between the support rods 3 and 4 and the base 1, but also allows them to be installed parallel and accurately on the base 1, providing a stable support frame for the subsequent placement of the steel structure components 9. Five vertically equidistant support blocks 6 are welded to the outer wall of the support rod 3 near the second support rod 4, and five vertically equidistant second support blocks 7 are welded to the outer wall of the second support rod 4 near the support rod 3. These two blocks are parallel and have opposing L-shaped cross-sections. This structural design allows support block 6 and the second support block 7 to jointly provide reliable support points for steel structural member 9, ensuring that steel structural member 9 remains horizontal and stable during assembly. Five vertically spaced limiting grooves 8 are opened on the outer wall of the second support rod 4 near the second support block 7, parallel to the second support block 7, with an inverted L-shaped output end cross-section. A limiting rod 10 is installed on the outer wall of the steel structural member 9 near the second support block 7, with one end of its outer wall engaging with the bottom of the inner wall of the limiting groove 8. This limiting structure design allows the steel structural member 9 to be precisely positioned and fixed after being placed on support block 6 and the second support block 7, through the engaging engagement of the limiting rod 10 and the limiting groove 8, preventing displacement or shaking of the steel structural member 9 during assembly and ensuring assembly accuracy and quality. Furthermore, the reinforcing steel member 11 welded to the inner wall of the base 1, as a 45° inclined I-shaped steel member, further enhances the structural strength of the base 1, improving the stability and load-bearing capacity of the entire assembly device.

[0040] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An assembly device for steel structure components, comprising a base (1), characterized in that: The base (1) has two sets of seven threaded connection holes (2) that are equidistantly distributed laterally at both ends of the top. The base (1) has two support rods (3) that are equidistantly distributed laterally at one end of the top. The base (1) has two second support rods (4) that are equidistantly distributed laterally at the other end of the top away from the support rods (3).

2. The assembly device for steel structure components according to claim 1, characterized in that: The support rod (3) and the second support rod (4) are welded with bolts (5) at their bottoms. The bolts (5) at the bottoms of the support rod (3) and the second support rod (4) are threadedly connected to the threaded connection hole (2). The support rod (3) and the second support rod (4) are parallel to each other.

3. The assembly device for steel structure components according to claim 1, characterized in that: The support rod (3) has five vertically equidistant support blocks (6) welded to the outer wall of the side near the second support rod (4), and the second support rod (4) has five output-oriented second support blocks (7) welded to the outer wall of the side near the support rod (3). The support blocks (6) are parallel to the second support blocks (7).

4. The assembly device for a steel structure component according to claim 3, characterized in that: The cross sections of the support block (6) and the second support block (7) are L-shaped relative to each other.

5. The assembly device for a steel structure component according to claim 3, characterized in that: The second support rod (4) has five vertically equidistant limiting grooves (8) on the outer wall near the second support block (7). The limiting grooves (8) are parallel to the second support block (7), and the output end of the limiting grooves (8) has an inverted L-shaped cross section.

6. The assembly device for a steel structure component according to claim 3, characterized in that: A steel structure component (9) is placed on the top output end of the support block (6) and the second support block (7). A limiting rod (10) is provided on the outer wall of the steel structure component (9) near the second support block (7). The outer wall of one end of the limiting rod (10) is engaged with the bottom of the inner wall of the limiting groove (8).

7. The assembly device for a steel structure component according to claim 1, characterized in that: The inner wall of the base (1) is welded with a reinforcing steel part (11), which is an I-shaped steel part placed at an angle of 45°.