Steel structure and construction method thereof

By using connection methods such as internal threaded blocks, threaded shafts, and locking posts in the steel structure, the problem of insufficient sound insulation control in the steel structure is solved, thereby enhancing the sound insulation effect and improving safety.

CN121853706APending Publication Date: 2026-04-14庄贤生
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-12-19
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

Existing steel structures are inadequate in terms of sound insulation control and cannot effectively improve sound insulation performance.

Method used

A steel structure construction method is adopted, which uses the connection of components such as internal threaded blocks, threaded shafts, adjustment covers and clamping columns on the partition plate to realize the assembly and adjustment of the steel structure and enhance the sound insulation effect.

Benefits of technology

By adjusting the relative positions of the partition plates, the sound insulation effect can be effectively controlled, the safety and connection stability of the steel structure can be improved, and the safety and sound insulation performance of the steel structure during use can be ensured.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN121853706A_ABST
    Figure CN121853706A_ABST
Patent Text Reader

Abstract

The invention relates to the technical field of building structures, in particular to a steel structure and a construction method thereof. The method comprises the steps that firstly, a base is placed, two partition plates are placed on the base, and an adjusting cover is connected to the two partition plates; secondly, a left clamping column and a right clamping column are in sliding connection with an adjusting cover, and a threaded column can be in threaded connection with a threaded hole; thirdly, the concave clamping grooves and the convex clamping columns are slidably connected to the left clamping columns and the right clamping columns correspondingly, and the concave clamping grooves are slidably connected with the corresponding convex clamping columns; and fourthly, the steps are repeated, all the steel structures are made to be complete, the steel structures are connected with other steel structures, and construction is completed. The steel structure comprises two partition plates, each partition plate is fixedly connected with an internal thread block, and each partition plate is provided with a plurality of circular grooves which are evenly distributed. The two partition plates are in sliding connection, and the upper ends of the two partition plates are in contact connection with an adjusting cover; the sound insulation regulation and control capability of the steel structure can be enhanced.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of building structure technology, and more specifically to a steel structure and its construction method. Background Technology

[0002] Steel structures, composed of steel materials, are one of the main types of building structures. The structure mainly consists of steel beams, steel columns, steel trusses, and other components made of shaped steel and steel plates, and employs rust removal and prevention processes such as silanization, pure manganese phosphating, water washing and drying, and galvanizing. Based on the industry's development status, the development of three areas—offshore oil engineering equipment, steel structure housing, and steel structure bridges—should attract the attention of relevant national authorities. With sufficient attention and policy encouragement, the goal of doubling the industry's growth can be fully achieved. Under current technology, steel structures suffer from the problem of uncontrollable sound insulation. Therefore, to solve this problem, this application proposes a steel structure and its construction method that can enhance the sound insulation control capabilities of steel structures. Summary of the Invention

[0003] To overcome the shortcomings of existing technologies, this invention provides a steel structure and its construction method, which can enhance the sound insulation control capability of the steel structure.

[0004] The technical solution adopted by this invention to solve its technical problem is:

[0005] A steel structure construction method includes the following steps:

[0006] Step 1: Place the base, place the two partitions on the base, and adjust the cover to connect to the two partitions;

[0007] Step 2: The left and right locking pins are slidably connected to the adjustment cover, and the threaded pin can be threadedly connected to the threaded hole;

[0008] Step 3: The concave groove and the convex pin are slidably connected to the left pin and the right pin respectively, and the concave groove is slidably connected to the corresponding convex pin;

[0009] Step 4: Repeat the above steps to complete each steel structure, and connect the steel structures to other steel structures to complete the construction;

[0010] A steel structure includes two partition plates, each partition plate having an internally threaded block fixedly attached to it, and each partition plate having a plurality of evenly distributed circular grooves.

[0011] The two partition plates are slidably connected, and an adjustable cover is connected to the upper end of the two partition plates.

[0012] The adjustment cover is provided with a groove, and two threaded shafts are rotatably connected in the groove. Each threaded shaft is rotatably connected in a corresponding internal threaded block, and the two internal threaded blocks are slidably connected in the groove. Attached Figure Description

[0013] The present invention will now be described in further detail with reference to the accompanying drawings and specific implementation methods.

[0014] Figure 1 This is a schematic diagram of the construction method of the steel structure in this invention;

[0015] Figure 2 This is a schematic diagram of the steel structure in this invention;

[0016] Figure 3 This is a schematic diagram of the partition plate in this invention;

[0017] Figure 4 This is a partial structural diagram of the steel structure in this invention;

[0018] Figure 5 This is a schematic diagram of the structure of the adjusting cover in this invention;

[0019] Figure 6 This is a schematic diagram of the right locking post in this invention;

[0020] Figure 7 This is a cross-sectional view of the right locking post in this invention;

[0021] Figure 8 This is a schematic diagram of the structure of the left locking pin in this invention;

[0022] Figure 9 This is a schematic diagram of the push button structure in this invention;

[0023] Figure 10 This is a schematic diagram of the adjusting column assembly in this invention. Detailed Implementation

[0024] Through observation Figures 1 to 10 An exemplary working process of the construction method can be derived from the content shown in the figure:

[0025] A construction method for a steel structure includes the following steps:

[0026] Step 1: Place the base 07, place the two partition plates 06 on the base 07, and connect the adjustment cover 01 to the two partition plates 06;

[0027] Step 2: The left locking pin 02 and the right locking pin 03 are slidably connected to the adjusting cover 01 respectively, and the threaded pin 09 can be threadedly connected to the threaded hole;

[0028] Step 3: The concave slot 05 and the convex pin 04 are slidably connected to the left pin 02 and the right pin 03 respectively, and the concave slot 05 is slidably connected to the corresponding convex pin 04;

[0029] Step 4: Repeat the above steps to complete each steel structure, and connect the steel structures to other steel structures to complete the construction.

[0030] Through observation Figures 1 to 10 An exemplary working process for adjusting sound insulation, as shown in the diagram, is as follows:

[0031] A steel structure includes two partition plates 06, each with an internally threaded block 10 fixedly connected to one partition plate 06. Several evenly distributed circular grooves 11 are provided on the corresponding partition plate 06. When the steel structure is fabricated and assembled, the two partition plates 06 are fitted together, connecting the evenly distributed circular grooves 11 within each partition plate 06. The space between the two partition plates 06 varies depending on the different positions of the grooves 11. Each partition plate 06 has an internally threaded block 10 fixedly connected to it, and each internally threaded block 10 has a threaded through hole. A threaded shaft 12 is threadedly connected to the internally threaded block 10. Rotating the threaded shaft 12 causes the internally threaded block 10 to move along the threaded direction, thereby changing the relative position of the two partition plates 06 and thus achieving sound insulation adjustment.

[0032] Through observation Figures 1 to 10 An exemplary working process of the limit switch can be obtained from the content shown in the figure:

[0033] The two partition plates 06 are slidably connected, and an adjustment cover 01 is in contact with the upper end of the two partition plates 06. When the steel structure is assembled after processing, when the steel structure is connected, and when the two partition plates 11 are adjusted, the two partition plates 06 need to be pressed together and an adjustment cover 01 is placed on their upper end so that the two partition plates 06 will not separate when moving, thus affecting the normal operation of the steel structure. At the same time, it provides longitudinal limit for the two partition plates 06, thereby ensuring the normal operation of the two partition plates 06 and achieving the effect of limiting the steel structure.

[0034] Through observation Figures 1 to 10 An exemplary working process to ensure safety, based on the content shown in the figure, is as follows:

[0035] The groove is provided on the adjustment cover 01, and two threaded shafts 12 are rotatably connected in the groove. Each internal threaded block 10 is rotatably connected to a corresponding threaded shaft 12, and two internal threaded blocks 10 are slidably connected in the groove. When the steel structure is processed and assembled, the two partition plates 06 need to be threadedly connected to the corresponding threaded shafts 12 through the internal threaded blocks 10 fixed on them. Both internal threaded blocks 10 slide in the groove. As the partition plate 06 moves, the threaded shafts 12 threadedly connected to it through the internal threaded blocks 10 will rotate, thereby preventing the threaded shafts 12 from being unable to rotate and affecting the normal movement of the partition plate 06. Furthermore, because the internal threaded blocks 10 slide in the groove, the range of movement of the partition plate 06 is restricted, and it can only move within the specified range without deviation, thereby achieving the effect of ensuring safety.

[0036] Through observation Figures 1 to 10 An exemplary working process for fastening a connection, based on the content shown in the figure, is as follows:

[0037] Left locking post 02 and right locking post 03 are slidably connected to both ends of the adjusting cover 01. Threaded holes are provided on the left locking post 02, and threaded post 09 is fixed to the lower end of the left locking post 02. Another threaded post 09 is fixed to the right locking post 03, and another threaded hole is provided at the lower end of the right locking post 03. When the steel structure is processed and assembled, after the partition plate 06 and the adjusting cover 01 are installed, the left locking post 02 and right locking post 03 are slid into both ends of the adjusting cover 01. At the same time, threaded holes and threaded posts 09 are provided at the upper and lower ends of the left locking post 02 and right locking post 03, respectively. When multiple steel structures are connected to each other, the threaded posts 09 on the steel structure need to be threaded into the threaded holes in another steel structure so that the two steel structures can be smoothly connected and tightened, thereby achieving the effect of tightening connection and improving the safety performance during the connection process of the steel structure.

[0038] Through observation Figures 1 to 10 An exemplary workflow that can provide timely support based on the content shown in the diagram is as follows:

[0039] The two baffles 08 are slidably connected to the left locking post 02 and the right locking post 03, respectively.

[0040] Each of the three evenly distributed spring posts 13 is fixed to the corresponding baffle 08. The other ends of the three spring posts 13 are fixed to the left clamp post 02 and the right clamp post 03 respectively. When the steel structure is fabricated and assembled, after the left clamp post 02 and the right clamp post 03 are installed, two partition plates 06 are connected to the opposite side of the left clamp post 02 and the right clamp post 03. At this time, a baffle 08 is connected to each partition plate 06. One of the baffle plates 08 will press against the corresponding partition plate 06, so that the other baffle plate 08 on the other end of the partition plate 06 slides into the right clamp post 03. This prevents gaps from appearing when the partition plate 06 moves, thus avoiding safety hazards. At the same time, when the baffle plate 06 is compressed, it will compress the three spring posts 13 fixed to it. When the partition plate 06 no longer compresses the baffle plate 08, the compressed spring posts 13 will release their elasticity, ensuring that the baffle plate 08 can rebound normally, thereby achieving the effect of timely support and improving the safety performance of the steel structure.

[0041] Through observation Figures 1 to 10 An exemplary working process for a secure connection, as shown in the diagram, is as follows:

[0042] The concave slot 05 is slidably connected to the other side of the left locking post 02, and the convex locking post 04 is slidably connected to the other side of the right locking post 03. When the steel structure is fabricated and assembled, after the left locking post 02 and the right locking post 03 are installed, the concave slot 05 and the convex locking post 04 will be slid into the other side of the left locking post 02 and the right locking post 03 respectively. Since horizontal connection is required when connecting multiple steel structures, the convex locking post 04 on one steel structure is slid into the concave slot 05 on another steel structure, so that the two steel structures are stably connected in the horizontal direction, which strengthens the horizontal bearing capacity of the steel structure and further improves the safety performance of the steel structure, thereby achieving the effect of safe connection.

[0043] Through observation Figures 1 to 10 An exemplary working process of the card lock can be derived from the content shown in the figure:

[0044] Two push buttons 15 are respectively connected to the convex locking post 04 and the concave locking groove 05. Each threaded toothed post 16 is threadedly connected to a push button 15. Each pair of racks 17 are meshed with the threaded toothed post 16. Each locking post 18 is fixed to the other end of a rack 17. When the steel structure is assembled after processing, when the concave locking groove 05 and the convex locking post 04 are engaged in the corresponding left locking post 02 and right locking post 03, they must first be engaged in the corresponding locking groove. At this time, the concave locking groove 05... 5 and the convex locking pin 04 will push the push button 15 to move. As the push button 15 moves, the threaded toothed pin 16 connected to its lower end will rotate. When the threaded toothed pin 16 rotates, the two meshing racks 17 on it will move towards each other, thereby driving the corresponding locking pins 18 fixed on it to move towards each other. At the same time, the four locking pins 18 will respectively lock into the concave locking groove 05 and the convex locking pin 04, so that the concave locking groove 05 and the convex locking pin 04 can be firmly connected in the steel structure, thereby achieving the locking effect.

[0045] Through observation Figures 1 to 10 An exemplary working process that can be adjusted based on the content shown in the figure is as follows:

[0046] It also includes a base 07, an adjusting rod 22 rotatably connected to one side of the base 07, a receiving rod 20 fixedly connected to the other end of the adjusting rod 22, each adjusting column group 19 fixedly connected to a receiving rod 20, and each threaded gear shaft 21 internally threadedly connected to a receiving rod 20, with the two threaded gear shafts 21 meshing with each other. When the steel structure is processed and assembled, the base 07 is installed last. During installation, the two partition plates 06 are first attached to the two adjusting column groups 19 that are slidably connected inside the base 07, ensuring that both adjusting column groups 19 are engaged in the circular groove 11, ensuring that each partition plate 06 can move correctly. When the partition plate 06 needs to be adjusted, the adjusting rod 22 is pushed, causing the receiving rod 20 fixedly connected to it to move, so that the adjusting column group 19 fixedly connected to it moves, and at the same time, the threaded gear shaft 21 internally threadedly connected to the threaded rod 20 rotates, thereby causing the other adjusting column group 19 to move, thus achieving the adjustment effect.

Claims

1. A construction method for a steel structure, characterized in that, Includes the following steps: Step 1: Place the base (07), place the two partitions (06) on the base (07), and adjust the cover (01) to connect to the two partitions (06); Step 2: The left locking pin (02) and the right locking pin (03) are slidably connected to the adjusting cover (01) respectively, and the threaded pin (09) can be threadedly connected to the threaded hole; Step 3: The concave card groove (05) and the convex card post (04) are slidably connected to the left card post (02) and the right card post (03) respectively, and the concave card groove (05) is slidably connected to the corresponding convex card post (04); Step 4: Repeat the above steps to complete each steel structure, and connect the steel structures to other steel structures to complete the construction.

2. A steel structure, characterized in that: It includes two partition plates (06), each partition plate (06) is fixed with an internal threaded block (10), and each partition plate (06) is provided with several evenly distributed circular grooves (11).

3. A steel structure according to claim 2, characterized in that: The two partition plates (06) are slidably connected, and an adjustment cover (01) is connected to the upper end of the two partition plates (06).

4. A steel structure according to claim 3, characterized in that: The adjustment cover (01) is provided with a groove, and two threaded shafts (12) are rotatably connected in the groove. Each threaded shaft (12) is rotatably connected in a corresponding internal thread block (10), and the two internal thread blocks (10) are slidably connected in the groove.

5. A steel structure according to claim 4, characterized in that: The adjustment cover (01) is slidably connected to a left locking post (02) and a right locking post (03) at both ends. The left locking post (02) is provided with a threaded hole, and a threaded post (09) is fixedly connected to the lower end of the left locking post (02). Another threaded post (09) is fixedly connected to the right locking post (03), and another threaded hole is provided at the lower end of the right locking post (03).

6. A steel structure according to claim 5, characterized in that: A baffle (08) is slidably connected to both the left locking post (02) and the right locking post (03).

7. A steel structure according to claim 6, characterized in that: Each of the baffles (08) is fixed with three evenly distributed spring posts (13), and the other end of each of the three spring posts (13) is fixed to the left locking post (02) and the right locking post (03) respectively.

8. A steel structure according to claim 7, characterized in that: The left locking post (02) is slidably connected to a recessed locking groove (05) on the other side, and the right locking post (03) is slidably connected to a convex locking post (04) on the other side.

9. A steel structure according to claim 8, characterized in that: A push button (15) is connected to each of the convex locking post (04) and the concave locking groove (05). Each push button (15) is threaded with a threaded toothed post (16). Each threaded toothed post (16) is meshed with two racks (17). Each rack (17) is fixed with a locking post (18) at the other end.

10. A steel structure according to claim 2, characterized in that: It also includes a base (07), on one side of which an adjusting rod (22) is rotatably connected, and on the other end of the adjusting rod (22) a receiving rod (20) is fixedly connected. Each receiving rod (20) is fixedly connected to an adjusting column group (19), and each receiving rod (20) is internally threaded to a threaded gear shaft (21), and the two threaded gear shafts (21) are meshed together.