Innovative rapid assembly structure for steel structure engineering

The combined structure of the T-shaped anti-slip plate and anti-slip groove, combined with the locking, tightening and limiting mechanisms, solves the problems of time-consuming installation of light steel structure wall panels and easy rust of bolt connections, and achieves fast and stable wall panel installation.

CN119531499BActive Publication Date: 2025-09-16SICHUAN KAISHENG STEEL STRUCTURE CO LTD
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Patent Information

Application Number
CN202411919593.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2025-09-16
Estimated Expiration
2044-12-25

AI Technical Summary

Technical Problem

The installation of existing light steel structure wall panels is time-consuming and the bolt connections are prone to rust and loosening, causing the external wall panels to fall off.

Method used

The combined structure of T-shaped anti-slip plates and anti-slip grooves, combined with locking mechanisms, fastening mechanisms and limiting mechanisms, can achieve rapid positioning and locking of wall panels and steel skeletons, avoiding corrosion problems of bolt connections.

Benefits of technology

It achieves rapid installation of wall panels and steel skeletons, improves installation efficiency, avoids rust, loosening and falling off caused by bolt connections, and enhances structural stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the field of building technology, and in particular to an innovative rapid assembly structure for steel structure projects. The assembly structure comprises wall panels and steel dragon frames that are arranged in conflict with each other, wherein a T-shaped anti-slip plate is fixedly arranged on the wall panel, and a T-shaped anti-slip groove is provided on the steel dragon frame, and the T-shaped anti-slip plate is movably inserted in the T-shaped anti-slip groove. The invention also comprises two locking mechanisms arranged on opposite sides of the combined structure of the wall panel and the steel dragon frame, wherein the locking mechanism comprises a second locking groove and a first locking groove respectively provided on the wall panel and the steel dragon frame, and a locking plate is movably inserted in the first locking groove and the second locking groove, and the locking plate is arranged to limit the relative movement of the wall panel and the steel dragon frame in the vertical direction. The arrangement of the locking mechanism of the present invention avoids the problem that the traditional bolt connection will rust and loosen due to long-term use, causing the external wall panel to fall off.
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Description

Technical Field

[0001] The present invention relates to the field of building technology, in particular to a rapid assembly structure for innovative steel structure engineering. Background Art

[0002] Lightweight steel structures are primarily used in load-bearing buildings that don't bear heavy loads. These prefabricated, low-rise and multi-story steel structures are constructed using lightweight H-shaped steel (welded or rolled; variable or uniform cross-section) as a portal frame. C-shaped and Z-shaped cold-formed thin-walled steel sections serve as purlins and wall beams. Corrugated steel sheets or lightweight sandwich panels serve as roof and wall enclosures. High-strength bolts, standard bolts, self-tapping screws, and other fasteners, along with sealing materials, are used to assemble these structures.

[0003] At present, the installation of light steel structure wall panels is generally to build the light steel keel and then fix the outer wall surface one by one on the light steel keel, which is quite time-consuming. In addition, during the installation of the external wall panels, most of them use bolts to reinforce the structure. However, the bolt connections will rust and loosen due to long-term use, causing the external wall panels to fall off. Therefore, those skilled in the art have provided an innovative rapid assembly structure for steel structure engineering to solve the above-mentioned problems. Summary of the Invention

[0004] To achieve the above-mentioned objectives, the present invention provides an innovative rapid assembly structure for steel structure projects, including wall panels and steel dragon frames that are arranged in conflict with each other, a T-shaped anti-slip plate is fixedly provided on the wall panel, a T-shaped anti-slip groove is provided on the steel dragon frame, and the T-shaped anti-slip plate is movably inserted in the T-shaped anti-slip groove. It also includes two locking mechanisms arranged on opposite sides of the combined structure of the wall panel and the steel dragon frame, the locking mechanism including a second locking groove and a first locking groove respectively provided on the wall panel and the steel dragon frame, a locking plate movably inserted in the first locking groove and the second locking groove, and the setting of the locking plate to limit the relative movement of the wall panel and the steel dragon frame in the vertical direction.

[0005] Optionally, the locking mechanism also includes a first guide support assembly with one end fixedly connected to the locking plate and the other end connected to the side wall of the second locking groove. The first guide support assembly includes a first guide support rod, a first guide support tube and a first guide support spring. The first guide support rod is movably inserted in the first guide support tube, the first guide support spring is wound outside the first guide support rod, and one end of the first guide support spring is fixedly connected to the side wall of the first guide support rod, and the other end of the first guide support spring is fixedly connected to the outer side wall of the first guide support tube.

[0006] Optionally, it also includes a fastening mechanism, wherein the fastening mechanism includes a first threaded hole provided on the T-shaped anti-slip plate, and a threaded rod that can be threadedly inserted into the first threaded hole, the T-shaped anti-slip plate is provided with a first fastening groove and a second fastening groove, the first fastening groove and the second fastening groove are respectively provided on both sides of the first threaded hole, and the first fastening groove and the second fastening groove are both connected to the first threaded hole, a first fastening plate is movably arranged in the first fastening groove, one end of the first fastening plate located outside the first fastening groove extends into the first threaded hole, a second fastening plate is movably arranged in the second fastening groove, one end of the second fastening plate located outside the second fastening groove extends into the first threaded hole, and the second fastening plate and one end of the first fastening plate located in the first threaded hole are both provided with anti-stuck grooves.

[0007] Optionally, both the second fastening plate and the first fastening plate are provided with a support assembly, the support assembly includes a support slide groove opened on the first fastening plate, a support slide movably provided in the support slide groove, the support slide is fixedly provided on the T-shaped anti-slip plate, and the side wall of the support slide is fixedly connected to the second guide support assembly, the free end of the second guide support assembly is fixedly connected to the side wall of the support slide groove, the second guide support assembly includes a second guide support rod, a second guide support tube and a second guide support spring, the second guide support rod is movably inserted in the second guide support tube, the second guide support spring is wound around the outside of the second guide support rod, and the two ends of the second guide support spring are respectively fixedly connected to the side walls of the second guide support rod and the outer side walls of the second guide support tube.

[0008] Optionally, it also includes a first limiting mechanism, which includes a first movable groove opened on the wall panel and the steel dragon frame, and a second movable groove opened on the wall panel, the second movable groove and the first movable groove are connected to each other, a first movable rod is movably arranged in the first movable groove, the first movable rod is fixedly arranged on the first fastening plate, the side wall of the first movable rod is fixedly connected to the limiting rod assembly, the limiting rod assembly is movably arranged in the second movable groove, the free end of the limiting rod assembly is fixedly connected with an anti-stuck cap, and the locking plate is provided with a first limiting groove matching the limiting rod assembly.

[0009] Optionally, the limit rod assembly includes a first limit rod and a second limit rod respectively connected to the first moving rod and the anti-jamming cap, the first limit rod is fixedly provided with a plug-in rod, the second limit rod is provided with a plug-in slot, the plug-in rod is movably plugged into the plug-in slot, and anti-slip grooves are provided on the upper and lower end surfaces of the plug-in rod, an anti-slip block is movably provided in the anti-slip groove, and the anti-slip block is fixedly provided on the side wall of the plug-in slot.

[0010] Optionally, the limit rod assembly also includes a third guide support assembly with one end fixedly connected to the plug rod and the other end fixedly connected to the side wall of the plug slot. The third guide support assembly includes a third guide support rod, a third guide support tube and a third guide support spring. The third guide support rod is movably inserted in the third guide support tube, and the third guide support spring is wound outside the third guide support rod. One end of the third guide support spring is fixedly connected to the side wall of the third guide support rod, and the other end of the third guide support spring is fixedly connected to the outer side wall of the third guide support tube.

[0011] Optionally, it also includes a second limiting mechanism, which includes a movable plate movably arranged in the first threaded hole, one end of a push-pull rod being hinged on the lower end surface of the movable plate, and the other end of the push-pull rod being hinged on the upper end surface of the third limiting rod, the push-pull rod being tilted, and the third limiting rod being movably arranged in a third movable groove, and the third movable groove being opened on the T-shaped anti-slip plate, and the side wall of the third movable groove being fixedly connected to one end of a limiting spring, and the other end of the limiting spring being fixedly connected to the third limiting rod, and a second limiting groove being provided on the steel dragon frame to match the third limiting rod, and the end of the third limiting rod facing the second limiting groove is set to a round head structure.

[0012] Optionally, it also includes a side blocking mechanism, which includes a side blocking plate, one end of the side blocking plate is fixedly connected to a first fixing plate, the first fixing plate is fixedly set on the side wall of the wall panel, the other end of the side blocking plate is fixedly connected to a second fixing plate, the second fixing plate is slidably connected to the steel dragon frame, the second fixing plate is fixedly connected to a guide plate at one end close to the steel dragon frame, the guide plate is movably inserted in a guide groove, and the guide groove is provided on the steel dragon frame, wherein the side blocking plate, the first fixing plate and the second fixing plate form a U-shaped structure, and the U-shaped structure is used to block the side gaps between the wall panel and the steel dragon frame.

[0013] Optionally, it also includes a top sealing plate fixedly arranged on the upper ends of the side sealing plates, the first fixed plate and the second fixed plate, and the top sealing plate is used to seal the upper end gap of the wall panel and the steel dragon frame. A second threaded hole is opened on the top sealing plate, and the second threaded hole is connected to the first threaded hole, and the second threaded hole and the threaded rod are matched with each other.

[0014] The beneficial effects of the present invention are as follows:

[0015] The present invention improves the existing steel structure. The improved steel structure is provided with a combination structure of T-shaped anti-slip grooves and T-shaped anti-slip plates on the wall panels and the steel dragon frame. The arrangement of the combination structure is used to realize the rapid positioning and installation of the wall panels and the steel dragon frame. A locking mechanism for locking the wall panels and the steel dragon frame is also provided. The arrangement of the locking mechanism avoids the problem that the traditional bolt connection will rust and loosen due to long-term use, causing the external wall panels to fall off. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 This is a schematic diagram of an embodiment of the innovative rapid assembly structure for steel structure engineering according to the present invention;

[0017] Figure 2 The invention innovates the rapid assembly structure of steel structure engineering Figure 1 A magnified schematic diagram of the structure in the middle;

[0018] Figure 3 This is a schematic structural diagram of the fastening mechanism in the rapid assembly structure of the innovative steel structure engineering of the present invention;

[0019] Figure 4 The invention innovates the rapid assembly structure of steel structure engineering Figure 3 A magnified schematic diagram of the structure B in the middle;

[0020] Figure 5 This is a structural diagram of the first limiting mechanism in the rapid assembly structure of the innovative steel structure engineering of the present invention;

[0021] Figure 6 This is a schematic structural diagram of the innovative steel structure engineering quick assembly structure limit rod assembly of the present invention;

[0022] Figure 7 This is a structural diagram of the second limiting mechanism in the rapid assembly structure of the innovative steel structure engineering of the present invention;

[0023] Figure 8 This is a schematic structural diagram of the side blocking mechanism in the rapid assembly structure of the innovative steel structure engineering of the present invention;

[0024] Figure 9 The invention innovates the rapid assembly structure of steel structure engineering Figure 8 A magnified schematic diagram of the C structure in the middle;

[0025] Figure 10 This is a structural schematic diagram of the top sealing plate in the rapid assembly structure of the innovative steel structure engineering of the present invention.

[0026] Description of Reference Numerals

[0027] Wall panel 1, steel dragon frame 2, T-type anti-slip groove 3, T-type anti-slip plate 4, locking mechanism 5, locking plate 51, first locking groove 52, second locking groove 54, first guide support assembly 55, first guide support rod 551, first guide support cylinder 552, first guide support spring 553, fastening mechanism 6, first threaded hole 61, first fastening groove 62, first fastening plate 63, second fastening plate 64, second fastening groove 65, threaded rod 66, support assembly 7, support slide 71, support slide groove 72, second guide support assembly 73, second guide support rod 731, second guide support cylinder 732, second guide support spring 733, first limiting mechanism 8, first movable groove 81, second movable groove 82, The first moving rod 83, the limiting rod assembly 84, the first limiting rod 841, the second limiting rod 842, the plug-in rod 843, the plug-in slot 844, the anti-slip block 845, the anti-slip slot 846, the third guide support assembly 847, the third guide support rod 8471, the third guide support cylinder 8472, the third guide support spring 8473, the first limiting slot 85, the anti-stuck cap 86, the second limiting mechanism 9, the moving plate 91, the push-pull rod 92, the third limiting rod 93, the third moving slot 94, the limiting spring 95, the second limiting slot 96, the side blocking mechanism 10, the side blocking plate 101, the first fixed plate 102, the second fixed plate 103, the guide plate 104, the guide slot 105, the top blocking plate 11, and the second threaded hole 12. DETAILED DESCRIPTION

[0028] In order to make the purpose, technical solutions and advantages of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention. Unless otherwise defined, the technical terms or scientific terms used herein should be the common meanings understood by people with ordinary skills in the field to which the present invention belongs. The words "including" and similar words used in this article mean that the elements or objects appearing before the word cover the elements or objects listed after the word and their equivalents, without excluding other elements or objects.

[0029] In view of the problems existing in the prior art, the embodiments of the present invention provide a rapid assembly structure for innovative steel structure engineering, such as Figure 1 and Figure 2As shown, the rapid assembly structure of the innovative steel structure project includes a wall panel 1 and a steel dragon frame 2 that are arranged to conflict with each other, the wall panel 1 is fixedly provided with a T-shaped anti-slip plate 4, and the steel dragon frame 2 is provided with a T-shaped anti-slip groove 3, the T-shaped anti-slip plate 4 is movably inserted into the T-shaped anti-slip groove 3, and the T-shaped anti-slip groove 3 and the T-shaped anti-slip plate 4 are both arranged in the vertical direction. Through the mutual conflict between the T-shaped anti-slip plate 4 and the T-shaped anti-slip groove 3, the wall panel 1 will not fall off from the steel dragon frame 2 even if a fixing device is not provided. At the same time, the special shapes of the T-shaped anti-slip groove 3 and the T-shaped anti-slip plate 4 are provided. When installing the wall panel 1 and the steel dragon frame 2, it is only necessary to align the T-shaped anti-slip plate 4 and the T-shaped anti-slip groove 3 to align the installation positions of the wall panel 1 and the steel dragon frame 2, thereby making the installation process of the wall panel 1 and the steel dragon frame 2 more convenient and more efficient.

[0030] In one embodiment, Figure 2 As shown, the innovative rapid assembly structure of the steel structure engineering further includes two locking mechanisms 5 arranged on opposite sides of the combined structure of the wall panel 1 and the steel dragon frame 2. Figure 1 In the example, it can be understood that two locking mechanisms 5 are respectively provided on the left and right sides of the wall panel 1 and the steel frame 2; the locking mechanism 5 includes a second locking groove 54 and a first locking groove 52 respectively provided on the wall panel 1 and the steel frame 2, wherein a locking plate 51 is movably inserted in the first locking groove 52 and the second locking groove 54, and one end of the locking plate 51 located in the first locking groove 52 is provided with a round head structure, which can move to the left under the resistance of the steel frame 2; the setting of the locking plate 51 is to limit the relative movement of the wall panel 1 and the steel frame 2 in the vertical direction. In this embodiment, the wall panel 1 and the steel frame 2 are locked together by riveting, so that the wall panel 1 and the steel frame 2 do not move relative to each other in the vertical direction. The structural design of the locking mechanism 5 is reasonable, which can not only realize the automatic locking of the wall panel 1 and the steel frame 2, but also avoid drilling holes in the wall panel 1 and the steel frame 2, which may cause the steel structure to rust.

[0031] In one embodiment, Figure 2As shown, the locking mechanism 5 also includes a first guide support assembly 55 having one end fixedly connected to the locking plate 51 and the other end connected to the side wall of the second locking groove 54. The first guide support assembly 55 includes a first guide support rod 551, a first guide support cylinder 552, and a first guide support spring 553. The first guide support rod 551 is movably inserted into the first guide support cylinder 552, and the first guide support spring 553 is wound around the outside of the first guide support rod 551. One end of the first guide support spring 553 is fixedly connected to the side wall of the first guide support rod 551, and the other end of the first guide support spring 553 is fixedly connected to the outer wall of the first guide support cylinder 552. In this embodiment, the provision of the first guide support assembly 55 not only serves as a guide support for the movement of the locking plate 51, allowing the locking plate 51 to move only in the forward and backward directions, but also provides a restoring force for the locking plate 51 during its return process, thereby causing the locking plate 51 to enter the first locking groove 52 and lock the wall panel 1 and the steel frame 2 together.

[0032] During operation, the steel dragon frame 2 is fixed on the foundation, the T-shaped anti-slip plate 4 is aligned and inserted into the T-shaped anti-slip groove 3, and then the wall panel 1 is driven downward along the T-shaped anti-slip groove 3. When the wall panel 1 stops moving downward, the steel dragon frame 2 and the wall panel 1 are precisely assembled. The assembly process does not require adjustment of the position and angle of the wall panel 1, thereby improving the installation efficiency of the steel structure and reducing the installation difficulty; at the same time, in the process of the wall panel 1 moving downward, the upper end edge of the steel dragon frame 2 will contact the locking plate 51 and move into the second locking groove 54. When the locking plate 51 is aligned with the position of the first locking groove 52, the first guide support assembly 55 will push the locking plate 51 to perform a reset movement, causing the locking plate 51 to move backward and enter the first locking groove 52, so that under the action of the locking plate 51, the wall panel 1 and the steel dragon frame 2 are locked together.

[0033] In one embodiment, Figure 3As shown, the rapid assembly structure of the innovative steel structure project also includes a fastening mechanism 6. The setting of the fastening mechanism 6 can firmly lock the T-shaped anti-slip plate 4 in the T-shaped anti-slip groove 3, so as to avoid the wall panel 1 and the steel dragon frame 2 from shaking after the installation is completed; the fastening mechanism 6 includes a first threaded hole 61 provided on the T-shaped anti-slip plate 4, and a threaded rod 66 that can be threadedly inserted into the first threaded hole 61, and the T-shaped anti-slip plate 4 is provided with a first fastening groove 62 and a second fastening groove 65, the first fastening groove 62 and the second fastening groove 65 are respectively provided on both sides of the first threaded hole 61 (respectively provided on the left and right sides of the first threaded hole 61), and the first fastening The fixing groove 62 and the second fastening groove 65 are both connected to the first threaded hole 61. A first fastening plate 63 is movably provided in the first fastening groove 62. One end of the first fastening plate 63 located outside the first fastening groove 62 extends into the first threaded hole 61. A second fastening plate 64 is movably provided in the second fastening groove 65. One end of the second fastening plate 64 located outside the second fastening groove 65 extends into the first threaded hole 61. Anti-stuck grooves are provided at one end of the second fastening plate 64 and the first fastening plate 63 located in the first threaded hole 61. The anti-stuck grooves are provided to enable the second fastening plate 64 and the first fastening plate 63 to move leftward and rightward respectively when they are interfered with.

[0034] During operation, after the wall panel 1 and the steel dragon frame 2 are assembled, the threaded rod 66 is inserted into the first threaded hole 61 and the threaded rod 66 is screwed. The threaded rod 66 will move downward in the first threaded hole 61. The downward movement of the threaded rod 66 will form a resistance to the second fastening plate 64 and the first fastening plate 63, and resist the second fastening plate 64 and the first fastening plate 63 to move left and right respectively. After the second fastening plate 64 and the first fastening plate 63 move to the outside of the second fastening groove 65 and the first fastening groove 62 respectively, they form a resistance effect on the groove wall of the T-shaped anti-slip groove 3, thereby firmly locking the T-shaped anti-slip plate 4 in the T-shaped anti-slip groove 3, thereby avoiding relative shaking between the wall panel 1 and the steel dragon frame 2.

[0035] In one embodiment, Figure 3 and Figure 4 As shown, the second fastening plate 64 and the first fastening plate 63 are both provided with a support assembly 7. Since the support assembly 7 provided on the second fastening plate 64 and the first fastening plate 63 have the same structure, the support assembly 7 on the first fastening plate 63 is used as a representative for description. The setting of the support assembly 7 can not only serve as a guide and support for the movement of the first fastening plate 63, so that the first fastening plate 63 can only move left and right in the horizontal direction, but also provide a reset force for the reset process of the first fastening plate 63 when the first fastening plate 63 loses its resistance force, so that the first fastening plate 63 can be reset to its initial position.

[0036] In one embodiment, Figure 4 As shown, the support assembly 7 includes a support slot 72 opened on the first fastening plate 63, and a support slide 71 is movably arranged in the support slot 72, and the support slide 71 is fixedly set on the T-shaped anti-slip plate 4, and a second guide support assembly 73 is fixedly connected to the side wall of the support slide 71, and the free end of the second guide support assembly 73 is fixedly connected to the side wall of the support slot 72, and the second guide support assembly 73 includes a second guide support rod 731, a second guide support cylinder 732 and a second guide support spring 733, the second guide support rod 731 is movably inserted in the second guide support cylinder 732, and the second guide support spring 733 is wound around the outside of the second guide support rod 731, and the two ends of the second guide support spring 733 are respectively fixedly connected to the side wall of the second guide support rod 731 and the outer side wall of the second guide support cylinder 732.

[0037] In this embodiment, the arrangement of the combined structure of the support slide 71 and the support slot 72 enables the first fastening plate 63 to move left and right in the first fastening slot 62; the arrangement of the second guide support assembly 73 can not only serve as a guide and support for the movement of the first fastening plate 63, but also provide a reset force for the reset movement of the first fastening plate 63.

[0038] In one embodiment, Figure 5 As shown, the rapid assembly structure of the innovative steel structure project also includes a first limiting mechanism 8. The setting of the first limiting mechanism 8 can lock the locking plate 51 in the first locking groove 52 and the second locking groove 54 through a limiting action to prevent the locking plate 51 from shaking in the first locking groove 52 and the second locking groove 54 after the wall panel 1 and the steel dragon frame 2 are installed; the first limiting mechanism 8 includes a first movable groove 81 opened on the wall panel 1 and the steel dragon frame 2, and a second movable groove 82 opened on the wall panel 1, the second movable groove 82 is connected to the first movable groove 81, and a first movable rod 83 is movably arranged in the first movable groove 81, the first movable rod 83 is fixedly arranged on the first fastening plate 63, and the side wall of the first movable rod 83 is fixedly connected to the limiting rod assembly 84, the limiting rod assembly 84 is movably arranged in the second movable groove 82, and the free end of the limiting rod assembly 84 is fixedly connected with an anti-stuck cap 86, and the locking plate 51 is provided with a first limiting groove 85 matching the limiting rod assembly 84.

[0039] The structural design of the first limiting mechanism 8 in the present invention is reasonable, and can be linked with the adjustment process of the fastening mechanism 6, which can not only reduce the operating difficulty of the equipment, but also improve the working efficiency of the equipment. Specifically, in the process of the first fastening plate 63 moving out of the first fastening groove 62, the limiting rod assembly 84 will also move through the first moving rod 83. The movement of the limiting rod assembly 84 will cause the right end to enter the anti-slip block 845, thereby locking the locking plate 51 and preventing the locking plate 51 from moving in the first locking groove 52 and the second locking groove 54.

[0040] In order to make the first fastening plate 63 move to the outside of the first fastening groove 62 and form a conflict with the wall of the T-shaped anti-slip groove 3, the limiting rod assembly 84 also enters the anti-slip block 845. In one embodiment, as shown in FIG. Figure 6 As shown, the limit rod assembly 84 includes a first limit rod 841 and a second limit rod 842 respectively connected to the first moving rod 83 and the anti-stuck cap 86, the first limit rod 841 is fixedly provided with a plug-in rod 843, the second limit rod 842 is provided with a plug-in slot 844, the plug-in rod 843 is movably plugged into the plug-in slot 844, the upper and lower end surfaces of the plug-in rod 843 are provided with anti-slip grooves 846, the anti-slip block 845 is movably provided in the anti-slip groove 846, and the anti-slip block 845 is fixedly provided on the side wall of the plug-in slot 844.

[0041] In this embodiment, the structural design of the limit rod assembly 84 is reasonable and can achieve free change of length. In this way, the first fastening plate 63 can be moved to the outside of the first fastening groove 62 to form a conflict with the wall of the T-type anti-slip groove 3, and the limit rod assembly 84 also enters the anti-slip block 845. On the one hand, this can prevent the equipment from being stuck. On the other hand, it can ensure that the first limit mechanism 8 plays a locking role on the locking plate 51, and at the same time, it can ensure that the fastening mechanism 6 plays a fastening role on the T-type anti-slip plate 4.

[0042] In one embodiment, Figure 6As shown, the limiting rod assembly 84 also includes a third guide support assembly 847 having one end fixedly connected to the plug rod 843 and the other end fixedly connected to the side wall of the plug slot 844. The third guide support assembly 847 includes a third guide support rod 8471, a third guide support cylinder 8472, and a third guide support spring 8473. The third guide support rod 8471 is movably inserted into the third guide support cylinder 8472, and the third guide support spring 8473 is wound around the outside of the third guide support rod 8471. One end of the third guide support spring 8473 is fixedly connected to the side wall of the third guide support rod 8471, and the other end of the third guide support spring 8473 is fixedly connected to the outer wall of the third guide support cylinder 8472. The configuration of the limiting rod assembly 84 in this embodiment not only serves as a guide support for the movement of the first limiting rod 841, so that the first limiting rod 841 can only move left and right, but also provides a reset force for the first limiting rod 841 during its reset process.

[0043] In one embodiment, Figure 7 As shown, the innovative rapid assembly structure of the steel structure project also includes a second limiting mechanism 9, which is used to lock the wall panel 1 and the steel dragon frame 2 to prevent the wall panel 1 and the steel dragon frame 2 from moving relative to each other in the vertical direction, so that they can work together with the locking plate 51; the second limiting mechanism 9 includes a movable plate 91 movably arranged in the first threaded hole 61, and one end of a push-pull rod 92 is hinged on the lower end surface of the movable plate 91, and the other end of the push-pull rod 92 is hinged on the third limiting rod 93 On the upper end surface, the push-pull rod 92 is arranged obliquely, and the third limiting rod 93 is movably arranged in the third movable groove 94. The third movable groove 94 is opened on the T-shaped anti-slip plate 4, and the side wall of the third movable groove 94 is fixedly connected to one end of the limiting spring 95, and the other end of the limiting spring 95 is fixedly connected to the third limiting rod 93. A second limiting groove 96 is provided on the steel dragon frame 2 to match the third limiting rod 93, and the end of the third limiting rod 93 facing the second limiting groove 96 is set as a round head structure.

[0044] During operation, the downward movement of the threaded rod 66 will interfere with the downward movement of the movable plate 91. The downward movement of the movable plate 91 will push the third limiting rod 93 through the push-pull rod 92 to move in the third movable groove 94, and finally enter the second limiting groove 96, thereby locking the steel dragon frame 2 and the T-shaped anti-slip plate 4 together, and then locking the wall panel 1 and the steel dragon frame 2 together, preventing the wall panel 1 and the steel dragon frame 2 from making relative movement in the vertical direction.

[0045] After the wall panel 1 and the steel frame 2 are installed, there will be gaps on the left and right sides. The existence of the gap will allow dust or particles to enter. In order to prevent this from happening, in one embodiment, Figure 8 and Figure 9 As shown, the rapid assembly structure of the innovative steel structure project also includes a side blocking mechanism 10, and the number of the side blocking mechanisms 10 is set in two groups. The two groups of side blocking mechanisms 10 are respectively arranged outside the left and right side gaps of the wall panel 1 and the steel dragon frame 2, so as to effectively block the gaps and prevent dust or object particles from entering the gaps; the side blocking mechanism 10 includes a side blocking plate 101, one end of the side blocking plate 101 is fixedly connected to a first fixing plate 102, the first fixing plate 102 is fixedly arranged on the side wall of the wall panel 1, and the side blocking plate 101 is fixedly connected to the side wall of the wall panel 1. The other end of 01 is fixedly connected to a second fixing plate 103, and the second fixing plate 103 is slidingly connected to the steel dragon frame 2. The second fixing plate 103 is fixedly connected to the end close to the steel dragon frame 2 with a guide plate 104, and the guide plate 104 is movably inserted in the guide groove 105, and the guide groove 105 is opened on the steel dragon frame 2, wherein the side blocking plate 101, the first fixing plate 102 and the second fixing plate 103 form a U-shaped structure, and the U-shaped structure is used to block the side gaps between the wall panel 1 and the steel dragon frame 2.

[0046] In this embodiment, the combined structure of the side blocking plate 101, the first fixing plate 102, the second fixing plate 103 and the guide plate 104 is fixedly connected to the wall panel 1. In a preferred embodiment, the wall panel 1, the side blocking plate 101, the first fixing plate 102, the second fixing plate 103 and the guide plate 104 are integrally formed.

[0047] After the wall panel 1 and the steel frame 2 are installed, there will be a gap at the top. The existence of the gap will allow dust or particles to enter. In order to prevent this from happening, in one embodiment, Figure 10 As shown, the rapid assembly structure of the innovative steel structure project also includes a top sealing plate 11 fixedly arranged at the upper ends of the side sealing plates 101, the first fixing plate 102 and the second fixing plate 103. The top sealing plate 11 is used to seal the upper end gap of the wall panel 1 and the steel dragon frame 2. A second threaded hole 12 is provided on the top sealing plate 11. The second threaded hole 12 is interconnected with the first threaded hole 61, and the second threaded hole 12 is matched with the threaded rod 66. The top sealing plate 11 of this embodiment is provided to seal the gap at the top. In a preferred example, the lower end face of the top sealing plate 11 is provided in contact with the upper end face of the wall panel 1 and the steel dragon frame 2, which can better prevent dust or particles from entering the gap. In this embodiment, the second threaded hole 12 is provided to cooperate with the threaded rod 66, so that the threaded rod 66 can pass through and enter the first threaded hole 61.

[0048] While the embodiments of the present invention have been described in detail above, it will be apparent to those skilled in the art that various modifications and variations of these embodiments are possible. However, it should be understood that such modifications and variations are within the scope and spirit of the present invention as set forth in the claims. Furthermore, the invention described herein is susceptible to other embodiments and may be practiced or implemented in a variety of ways.

Claims

1. An innovative rapid assembly structure for steel structure engineering, characterized by: The invention comprises a wall panel (1) and a steel frame (2) which are arranged to contact each other, wherein a T-shaped anti-slip plate (4) is fixedly arranged on the wall panel (1), a T-shaped anti-slip groove (3) is provided on the steel frame (2), and the T-shaped anti-slip plate (4) is movably inserted into the T-shaped anti-slip groove (3). The invention also comprises two locking mechanisms (5) arranged on opposite sides of the combined structure of the wall panel (1) and the steel frame (2), wherein the locking mechanism (5) comprises a second locking groove (54) and a first locking groove (52) respectively provided on the wall panel (1) and the steel frame (2), wherein a locking plate (51) is movably inserted into the first locking groove (52) and the second locking groove (54), and the locking plate (51) is arranged to limit the relative movement of the wall panel (1) and the steel frame (2) in the vertical direction; The invention also includes a fastening mechanism (6), wherein the fastening mechanism (6) includes a first threaded hole (61) provided on the T-shaped anti-slip plate (4), and a threaded rod (66) threadably inserted into the first threaded hole (61), and the T-shaped anti-slip plate (4) is provided with a first fastening groove (62) and a second fastening groove (65), wherein the first fastening groove (62) and the second fastening groove (65) are respectively provided on both sides of the first threaded hole (61), and the first fastening groove (62) and the second fastening groove (65) are both aligned with the first threaded hole (61). The first fastening groove (62) is interconnected, a first fastening plate (63) is movably provided in the first fastening groove (62), one end of the first fastening plate (63) located outside the first fastening groove (62) extends into the first threaded hole (61), a second fastening plate (64) is movably provided in the second fastening groove (65), one end of the second fastening plate (64) located outside the second fastening groove (65) extends into the first threaded hole (61), and the second fastening plate (64) and the first fastening plate (63) are both provided with anti-stuck grooves at their ends located in the first threaded hole (61).

2. The innovative rapid assembly structure for steel structure engineering according to claim 1, characterized in that: The locking mechanism (5) further comprises a first guide support assembly (55) having one end fixedly connected to the locking plate (51) and the other end connected to the side wall of the second locking groove (54), the first guide support assembly (55) comprising a first guide support rod (551), a first guide support cylinder (552) and a first guide support spring (553), the first guide support rod (551) being movably inserted into the first guide support cylinder (552), the first guide support spring (553) being wound around the outside of the first guide support rod (551), one end of the first guide support spring (553) being fixedly connected to the side wall of the first guide support rod (551), and the other end of the first guide support spring (553) being fixedly connected to the outer side wall of the first guide support cylinder (552).

3. The innovative rapid assembly structure for steel structure engineering according to claim 1, characterized in that: The second fastening plate (64) and the first fastening plate (63) are both provided with a support assembly (7), the support assembly (7) comprising a support chute (72) provided on the first fastening plate (63), a support slide (71) being movably provided in the support chute (72), the support slide (71) being fixedly provided on the T-shaped anti-slip plate (4), a second guide support assembly (73) being fixedly connected to the side wall of the support slide (71), and a free end of the second guide support assembly (73) being fixedly connected to the side wall of the support chute (72). The second guide support assembly (73) includes a second guide support rod (731), a second guide support tube (732) and a second guide support spring (733), the second guide support rod (731) is movably inserted into the second guide support tube (732), the second guide support spring (733) is wound around the outside of the second guide support rod (731), and the two ends of the second guide support spring (733) are respectively fixedly connected to the side wall of the second guide support rod (731) and the outer side wall of the second guide support tube (732).

4. The innovative rapid assembly structure for steel structure engineering according to claim 1, characterized in that: The invention also includes a first limiting mechanism (8), wherein the first limiting mechanism (8) includes a first movable groove (81) provided on the wall panel (1) and the steel dragon frame (2), and a second movable groove (82) provided on the wall panel (1), wherein the second movable groove (82) and the first movable groove (81) are arranged to be interconnected, and a first movable rod (83) is movably provided in the first movable groove (81), wherein the first movable rod (83) is fixedly provided on the first fastening plate (63), and a side wall of the first movable rod (83) is fixedly connected to a limiting rod assembly (84), wherein the limiting rod assembly (84) is movably provided in the second movable groove (82), and a free end of the limiting rod assembly (84) is fixedly connected to an anti-stuck cap (86), and a first limiting groove (85) matching the limiting rod assembly (84) is provided on the locking plate (51).

5. The innovative rapid assembly structure for steel structure engineering according to claim 4, characterized in that: The limiting rod assembly (84) comprises a first limiting rod (841) and a second limiting rod (842) respectively connected to the first moving rod (83) and the anti-stuck cap (86); a plug-in rod (843) is fixedly provided on the first limiting rod (841); a plug-in slot (844) is provided on the second limiting rod (842); the plug-in rod (843) is movably plugged into the plug-in slot (844); anti-slip grooves (846) are provided on the upper and lower end surfaces of the plug-in rod (843); an anti-slip block (845) is movably provided in the anti-slip groove (846); and the anti-slip block (845) is fixedly provided on the side wall of the plug-in slot (844).

6. The innovative rapid assembly structure for steel structure engineering according to claim 5, characterized in that: The limiting rod assembly (84) also includes a third guide support assembly (847) having one end fixedly connected to the plug-in rod (843) and the other end fixedly connected to the side wall of the plug-in slot (844). The third guide support assembly (847) includes a third guide support rod (8471), a third guide support tube (8472) and a third guide support spring (8473). The third guide support rod (8471) is movably plugged into the third guide support tube (8472). The third guide support spring (8473) is wound around the outside of the third guide support rod (8471). One end of the third guide support spring (8473) is fixedly connected to the side wall of the third guide support rod (8471), and the other end of the third guide support spring (8473) is fixedly connected to the outer side wall of the third guide support tube (8472).

7. The innovative rapid assembly structure for steel structure engineering according to claim 1, characterized in that: The invention also includes a second limiting mechanism (9), which includes a movable plate (91) movably arranged in the first threaded hole (61), one end of a push-pull rod (92) is hinged on the lower end surface of the movable plate (91), and the other end of the push-pull rod (92) is hinged on the upper end surface of a third limiting rod (93), the push-pull rod (92) is tilted, and the third limiting rod (93) is movably arranged in a third movable groove (94), the third movable groove (94) is provided on the T-shaped anti-slip plate (4), the side wall of the third movable groove (94) is fixedly connected to one end of a limiting spring (95), the other end of the limiting spring (95) is fixedly connected to the third limiting rod (93), and a second limiting groove (96) is provided on the steel dragon frame (2) to match the third limiting rod (93), and one end of the third limiting rod (93) facing the second limiting groove (96) is provided with a round head structure.

8. The innovative rapid assembly structure for steel structure engineering according to claim 1, characterized in that: The side blocking mechanism (10) further comprises a side blocking plate (101), wherein one end of the side blocking plate (101) is fixedly connected to a first fixing plate (102), the first fixing plate (102) being fixedly arranged on the side wall of the wall panel (1), the other end of the side blocking plate (101) is fixedly connected to a second fixing plate (103), the second fixing plate (103) being slidably connected to the steel dragon frame (2), the second fixing plate (103) being fixedly connected to a guide plate (104) at one end close to the steel dragon frame (2), the guide plate (104) being movably inserted into a guide groove (105), the guide groove (105) being provided on the steel dragon frame (2), wherein the side blocking plate (101), the first fixing plate (102) and the second fixing plate (103) form a U-shaped structure, and the U-shaped structure is used to block the side gaps between the wall panel (1) and the steel dragon frame (2).

9. The innovative rapid assembly structure for steel structure engineering according to claim 8, characterized in that: It also includes a top sealing plate (11) fixedly arranged at the upper ends of the side sealing plates (101), the first fixing plate (102) and the second fixing plate (103), the top sealing plate (11) being used to seal the gap between the upper ends of the wall panel (1) and the steel dragon frame (2), and a second threaded hole (12) being provided on the top sealing plate (11), the second threaded hole (12) being communicated with the first threaded hole (61), and the second threaded hole (12) and the threaded rod (66) being matched with each other.

Citation Information

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