Roof splicing structure of steel structure factory building
By adopting a sliding connection design for the supporting beams and connecting seats in the splicing structure of the steel structure factory roof, combined with locking components and connecting components, the problem of inconvenient installation was solved, achieving a fast and stable splicing effect, and improving installation efficiency and structural stability.
Patent Information
- Application Number
- CN202423317932.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2034-12-31
AI Technical Summary
The existing steel structure factory roof splicing structure has inconveniences during installation, especially due to the low installation efficiency caused by the use of fixing nails.
The design employs a sliding connection between the supporting beam and the connecting seat, combined with locking components, connecting structures, and connecting components to achieve rapid assembly and stable locking. The cooperation of the movable opening, limiting opening, locking components, and connecting components improves the ease of installation and stability.
It enables rapid installation and stable connection of steel structure factory roofs, improves installation efficiency and overall structural usability, and enhances structural stability and waterproofing.
Smart Images

Figure CN223867501U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of roof structure technology, specifically a splicing structure for the roof of a steel structure factory building. Background Technology
[0002] Steel structure buildings have many advantages such as high strength, light weight and good overall rigidity, making them suitable for building large-span, super-high and super-heavy buildings, especially for building factories. In the construction of steel structure industrial factory roofs, color plates are often laid on the inside of the purlins to improve the waterproofness of the whole building and the aesthetic appearance of the interior.
[0003] For example, a Chinese patent (publication number: CN221664022U) discloses a steel structure factory roof splicing structure, including a ridge unit. The ridge unit consists of two folded panel seats, a connecting rod, a connecting beam, an annular socket beam, and a ridge plate mechanism. The folded panel seats are located on both sides of the connecting rod, the connecting beam is installed on the lower surface of the folded panel seats, the annular socket beam is installed on the connecting rod above the two folded panel seats, and the ridge plate mechanism is located above the two folded panel seats. This utility model utilizes the clamping of the roof color steel plate by the first and second filling layers and the fixing of the fixing nails to make the ridge and the roof color steel plate tightly and firmly connected, avoiding the problem of ridge swaying due to excessive wind force. The cooperation between the expanded square rubber seat and the annular socket beam enables the ridge to be quickly fixed, and the compression of the tapered beam makes the ridge fixation more secure. At the same time, the number of fixing screws is small, which can improve the installation efficiency of the ridge.
[0004] This patent uses two filling layers to clamp the roof color steel plate and fix it with fixing nails to make the ridge and the roof color steel plate tightly and firmly connected. However, this patent requires the use of fixing nails during installation, which makes the installation inconvenient. Therefore, a steel structure factory roof splicing structure is proposed to solve the above-mentioned problems. Utility Model Content
[0005] To address the shortcomings of existing technologies, this utility model provides a steel structure factory roof splicing structure, which has the advantage of convenient installation and solves the problem of inconvenient installation.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a steel structure factory roof splicing structure, including a supporting beam plate, with connecting seats movably connected to both the left and right sides of the supporting beam plate, and fixing plates fixed on opposite sides of the two connecting seats, a pressure plate fixed on the right side of the left connecting seat, and a mounting plate fixed on the left side of the right connecting seat, with connecting plates fixed on opposite sides of the pressure plate and the mounting plate, and locking components provided on both connecting plates, and a connecting structure provided at the bottom of the supporting beam plate;
[0007] The connecting structure includes a connecting component, a fixed column, a connecting frame, a support plate, and a connecting beam. The connecting component is fixed to the bottom of the supporting beam plate, the fixed column is fixed to the connecting component, the connecting frame is fixed to the bottom of the fixed column, the support plate is fixed to the top of the connecting frame, the connecting beam is fixed to the bottom of the connecting frame, and the support plate is attached to the bottom of the fixed plate.
[0008] By adopting this technical solution, it is beneficial to make an initial connection through the supporting beam and the connecting seat, to lock the connecting seat and the supporting beam through the locking component, and to extend the structure through the setting of the connecting structure, which is conducive to improving the ease of use of the structure.
[0009] Furthermore, movable openings are provided on both the left and right sides of the receiving beam plate, the connecting seat is slidably connected to the receiving beam plate through the movable openings, and a weight is fixed to the inner side of the fixed plate.
[0010] By adopting this technical solution, it is beneficial for the connecting seat and the supporting beam to slide quickly and stably, thereby improving the overall ease of use of the structure.
[0011] Furthermore, the receiving beam plate is provided with a limiting opening that communicates with the movable opening, and a limiting block is fixed on one side of each of the two connecting seats opposite to each other. The limiting block is slidably connected to the receiving beam plate through the limiting opening.
[0012] By adopting this technical solution, it is beneficial to further limit the position of the connector by limiting the port, thereby improving the stability of the connector insertion and further enhancing the overall structural stability.
[0013] Furthermore, the locking assembly includes a housing, an insert plate, a stabilizing spring, a displacement plate, a limiting plate, and a fixing plate. The insert plate is slidably connected to the right side of the housing. The stabilizing spring is fixed to the top of the insert plate. The displacement plate is fixed to the top of the stabilizing spring. The limiting plate is fixed to the top of the displacement plate. The fixing plate is fixed to the top of the limiting plate. The housing is fixed to the top of the pressure plate and the bottom of the mounting plate, respectively.
[0014] By adopting this technical solution, it is easier to lock the two connecting seats, thereby facilitating a stable connection between the connecting seats and the supporting beam, which in turn improves the ease of use of the overall structure and increases the installation efficiency of the structure.
[0015] Furthermore, a groove-shaped limiting opening is provided on the outer side of the outer shell, and the left and right sides of the groove-shaped limiting opening are adapted to the limiting plate, and the diameter of the limiting plate is larger than the diameter of the fixed plate.
[0016] By adopting this technical solution, it is beneficial to limit the position of the limit plate, thereby facilitating the control of the overall component operation and improving the stability of the component.
[0017] Furthermore, the connecting plate has a through-hole on its right side, and the insert plate is inserted into the connecting plate through the through-hole.
[0018] By adopting this technical solution, it is beneficial to make stable insertion between the insert plate and the connecting plate, which is conducive to further improving the stability of use.
[0019] Furthermore, the connecting assembly includes a fixed sleeve, a stabilizing plate, a movable column, an actuating block, a return spring, a connecting column, a movable block, and a fixed block. The fixed sleeve is fixed to the bottom of the supporting beam plate, the stabilizing plate is fixed to the bottom of the fixed sleeve, the inner side of the stabilizing plate is movably connected to the movable column, the actuating block is fixed to the side of the movable column near the fixed sleeve, the left and right sides of the return spring are fixed to the stabilizing plate and the actuating block, respectively, the connecting column is fixed to the top of the fixed column, the movable block is slidably connected to the outer side of the connecting column, and the fixed block is fixed to the top of the connecting column.
[0020] By adopting this technical solution, it is beneficial to realize the positioning of the movable column on the fixed block, thereby realizing the positioning of the fixed column, which is conducive to the rapid installation and disassembly of the bottom structure, improving the convenience of the structure and increasing the efficiency of assembly and disassembly.
[0021] Furthermore, the tops of both the movable block and the fixed block are frustum structures, the bottom of the fixed block has a storage opening that is adapted to the movable block, and the side of the actuating block closest to the connecting column is inclined.
[0022] By adopting this technical solution, it is easier to accommodate the storage opening and the movable block, which in turn facilitates the downward displacement of the fixed block from the fixed sleeve after the active block contacts the movable block, thereby improving the ease of disassembly and assembly.
[0023] Compared with the prior art, the technical solution of this application has the following beneficial effects:
[0024] The steel structure factory roof splicing structure achieves rapid splicing of the external frame through the sliding connection of the supporting beams and connecting seats. The locking components lock the two connecting seats, enabling rapid installation of the top structure. The connecting components also enable rapid locking of the fixed columns and supporting beams, which is beneficial for supporting the top structure while extending the bottom structure. This facilitates the convenient use of the overall structure, which is simple and easy to install. Attached Figure Description
[0025] Figure 1 This is a schematic diagram of the structure of this utility model;
[0026] Figure 2 This is a sectional perspective view of the locking component of this utility model;
[0027] Figure 3 This is a schematic diagram of the connecting component structure of this utility model;
[0028] Figure 4 This is a three-dimensional view of the fixing block structure of this utility model.
[0029] In the diagram: 1. Receiving beam plate; 2. Connecting seat; 3. Fixing plate; 4. Pressure plate; 5. Adhesive plate; 6. Connecting plate; 7. Locking assembly; 701. Outer shell; 702. Insert plate; 703. Stabilizing spring; 704. Displacement plate; 705. Limiting plate; 706. Fixing plate; 8. Connecting assembly; 801. Fixing sleeve; 802. Stabilizing plate; 803. Movable column; 804. Actuating block; 805. Return spring; 806. Connecting column; 807. Movable block; 808. Fixing block; 9. Fixing column; 10. Connecting frame; 11. Support plate; 12. Connecting beam. Detailed Implementation
[0030] 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.
[0031] Please see Figure 1 In this embodiment, a steel structure factory roof splicing structure includes a supporting beam plate 1. The left and right sides of the supporting beam plate 1 are movably connected with connecting seats 2. The opposite sides of the two connecting seats 2 are fixed with fixing plates 3. The left and right sides of the supporting beam plate 1 are provided with movable openings.
[0032] It is understandable that the design of the movable opening facilitates the initial connection between the connecting seat 2 and the supporting beam 1, thereby enabling rapid installation of the structure, improving overall ease of use, and ultimately increasing the installation efficiency of the structure.
[0033] The connecting seat 2 is slidably connected to the receiving beam plate 1 through the movable port. The receiving beam plate 1 has a limiting port that communicates with the movable port. Limiting blocks are fixed on opposite sides of the two connecting seats 2. The limiting blocks are slidably connected to the receiving beam plate 1 through the limiting port.
[0034] The setting of limit blocks and limiting ports facilitates further limiting of the connecting seat 2, thereby improving the stability of the connecting seat 2 during lifting and installation, thus improving the stability of the structure and increasing installation efficiency.
[0035] It is also understandable that the inner side of the fixing plate 3 is fixed with a weight, the right side of the left connecting seat 2 is fixed with a pressure plate 4, the left side of the right connecting seat 2 is fixed with a sticker plate 5, and the opposite sides of the pressure plate 4 and the sticker plate 5 are both fixed with connecting plates 6. Both connecting plates 6 are equipped with locking components 7, and the bottom of the supporting beam plate 1 is equipped with a connecting structure.
[0036] The addition of weights helps to compact the left and right sides of the connecting seat 2, thereby improving the overall structural stability. The addition of the mounting plate 5 and the pressure plate 4 helps to seal the top of the supporting beam 1, thereby preventing rainwater from accumulating inside the structure and improving the overall structural stability.
[0037] It is easy to see that the connecting structure includes a connecting component 8, a fixing column 9, a connecting frame 10, a support plate 11, and a connecting beam 12. The connecting component 8 is fixed to the bottom of the supporting beam plate 1, the fixing column 9 is fixed to the connecting component 8, the connecting frame 10 is fixed to the bottom of the fixing column 9, the support plate 11 is fixed to the top of the connecting frame 10, the connecting beam 12 is fixed to the bottom of the connecting frame 10, and the support plate 11 is attached to the bottom of the fixing plate 3.
[0038] It should be noted that the connection component 8 facilitates the connection of the bottom external structure, thereby improving the structural performance. The support plate 11 supports the bottom of the fixing plate 3, thereby supporting the connecting seat 2 and improving the stability of the structure.
[0039] Please see Figure 2 In order to achieve rapid assembly of the structure, the locking component 7 in this embodiment includes a housing 701, a insert plate 702, a stabilizing spring 703, a displacement plate 704, a limiting plate 705, and a fixing plate 706. The insert plate 702 is slidably connected to the right side of the housing 701, and the left side of the connecting plate 6 has an insertion port that extends through to its right side.
[0040] It is also easy to see that the socket design facilitates connection with the plug board 702, thereby improving the overall stability of the component. The plug-in design also enables locking between the two connectors 2, which facilitates quick installation and locking of the connectors 2, thus improving the overall ease of use.
[0041] The insert plate 702 is inserted into the connecting plate 6 through the insertion port. The stabilizing spring 703 is fixed to the top of the insert plate 702. The displacement plate 704 is fixed to the top of the stabilizing spring 703. The limiting plate 705 is fixed to the top of the displacement plate 704. The fixing plate 706 is fixed to the top of the limiting plate 705. A slotted limiting port is opened on the outer side of the outer shell 701.
[0042] By setting the slotted limit port, it is beneficial to lock the limit plate 705, thereby preventing the displacement plate 704 from shifting, which is conducive to the stable insertion of the insertion plate 702, and thus improves the overall structural stability.
[0043] It should be noted that the left and right sides of the groove-shaped limiting port are adapted to the limiting plate 705. The diameter of the limiting plate 705 is larger than the diameter of the fixed plate 706. The outer shell 701 is fixed to the top of the pressure plate 4 and the bottom of the plate 5 respectively.
[0044] In this embodiment, the elastic setting of the stabilizing spring 703 helps to control the locking effect between the limiting plate 705 and the outer shell 701, thereby facilitating the sliding insertion of the insert plate 702 and thus promoting the stable and rapid installation of the overall structure.
[0045] Please see Figures 3 to 4 To enable rapid installation, the connecting component 8 in this embodiment includes a fixed sleeve 801, a stabilizing plate 802, a movable column 803, an actuating block 804, a return spring 805, a connecting column 806, a movable block 807, and a fixed block 808. The fixed sleeve 801 is fixed to the bottom of the supporting beam plate 1, the stabilizing plate 802 is fixed to the bottom of the fixed sleeve 801, the inner side of the stabilizing plate 802 is movably connected to the movable column 803, the actuating block 804 is fixed to the side of the movable column 803 near the fixed sleeve 801, and the left and right sides of the return spring 805 are fixed to the stabilizing plate 802 and the actuating block 804, respectively.
[0046] The reset spring 805 helps to support the action block 804, which in turn helps to lock the fixing block 808 in place, which is beneficial to the stable use of the fixing column 9 and thus improves the overall stability of use.
[0047] It should also be noted that the top of the connecting column 806 is fixed to the top of the fixed column 9, the movable block 807 is slidably connected to the outside of the connecting column 806, and the fixed block 808 is fixed to the top of the connecting column 806. The tops of both the movable block 807 and the fixed block 808 are frustum structures.
[0048] The frustum structure facilitates the displacement of the action block 804 when it contacts the movable block 807 and the fixed block 808, thereby facilitating the installation and removal of the fixed column 9 and making the components easier to use.
[0049] It can be seen that the bottom of the fixed block 808 has a storage opening, which is compatible with the movable block 807, and the side of the action block 804 near the connecting post 806 is inclined.
[0050] In this embodiment, the storage opening facilitates the movement of the movable block 807, allowing it to fit against the bottom of the fixed block 808. This makes it easier to remove the fixed column 9, improves the installation effect of the structure, and ultimately enhances the overall ease of use of the structure.
[0051] The working principle of the above embodiments is as follows:
[0052] By using the movable and limiting openings, the connecting seat 2 and the fixing plate 3 slide down from the top of the supporting beam plate 1, achieving the initial splicing of the connecting seat 2 and the supporting beam plate 1. Then, the fixing plate 706 is pressed down, and through the elastic action of the stabilizing spring 703, the limiting plate 705 is driven down, thereby engaging the locking of the displacement plate 704. By pressing and sliding, the insert plate 702 is slid into the insertion port of the connecting plate 6, thereby fixing the connecting seats 2 on both sides and achieving rapid assembly of both sides of the roof beam. Then, it moves upward. The fixed column 9 is formed by the frustum at the top of the fixed block 808, which, together with the inclined structure of the action block 804, pushes the action block 804 outward. The elastic action of the return spring 805 then resets the movable column 803, thereby locking the action block 804 onto the fixed block 808 and locking the fixed column 9. At the same time, the support plate 11 supports its top, and the connecting beam 12 further connects it to the external structure. The overall structure is simple, easy to use, and has high installation efficiency, which is conducive to the realization of the convenient installation function.
Claims
1. A steel structure factory roof splicing structure, comprising a supporting beam (1), characterized in that: The supporting beam plate (1) is movably connected to both the left and right sides by connecting seats (2), and fixed plates (3) are fixed on the opposite sides of the two connecting seats (2). A pressure plate (4) is fixed on the right side of the left connecting seat (2), and a sticker plate (5) is fixed on the left side of the right connecting seat (2). A connecting plate (6) is fixed on the opposite sides of the pressure plate (4) and the sticker plate (5). A locking component (7) is provided on both connecting plates (6). A connecting structure is provided at the bottom of the supporting beam plate (1). The connecting structure includes a connecting component (8), a fixing column (9), a connecting frame (10), a support plate (11), and a connecting beam (12). The connecting component (8) is fixed to the bottom of the supporting beam plate (1), the fixing column (9) is fixed to the connecting component (8), the connecting frame (10) is fixed to the bottom of the fixing column (9), the support plate (11) is fixed to the top of the connecting frame (10), the connecting beam (12) is fixed to the bottom of the connecting frame (10), and the support plate (11) is attached to the bottom of the fixing plate (3).
2. The steel structure factory roof splicing structure according to claim 1, characterized in that: The receiving beam plate (1) has movable openings on both the left and right sides. The connecting seat (2) is slidably connected to the receiving beam plate (1) through the movable openings. The inner side of the fixing plate (3) is fixed with a weight.
3. The steel structure factory roof splicing structure according to claim 2, characterized in that: The receiving beam plate (1) has a limiting port that communicates with the movable port. Each of the two connecting seats (2) has a limiting block fixed on one side opposite to the other. The limiting block is slidably connected to the receiving beam plate (1) through the limiting port.
4. The steel structure factory roof splicing structure according to claim 1, characterized in that: The locking assembly (7) includes a housing (701), a insert plate (702), a stabilizing spring (703), a displacement plate (704), a limiting plate (705), and a fixing plate (706). The insert plate (702) is slidably connected to the right side of the housing (701). The stabilizing spring (703) is fixed to the top of the insert plate (702). The displacement plate (704) is fixed to the top of the stabilizing spring (703). The limiting plate (705) is fixed to the top of the displacement plate (704). The fixing plate (706) is fixed to the top of the limiting plate (705). The housing (701) is fixed to the top of the pressure plate (4) and the bottom of the mounting plate (5), respectively.
5. The steel structure factory roof splicing structure according to claim 4, characterized in that: The outer side of the outer shell (701) is provided with a groove-shaped limiting port, and the left and right sides of the groove-shaped limiting port are adapted to the limiting plate (705). The diameter of the limiting plate (705) is larger than the diameter of the fixed plate (706).
6. The steel structure factory roof splicing structure according to claim 4, characterized in that: The left side of the connecting plate (6) has a through-hole extending to its right side, and the insert plate (702) is inserted into the connecting plate (6) through the through-hole.
7. The steel structure factory roof splicing structure according to claim 1, characterized in that: The connecting assembly (8) includes a fixed sleeve (801), a stabilizing plate (802), a movable column (803), an action block (804), a return spring (805), a connecting column (806), a movable block (807), and a fixed block (808). The fixed sleeve (801) is fixed to the bottom of the supporting beam plate (1), the stabilizing plate (802) is fixed to the bottom of the fixed sleeve (801), the inner side of the stabilizing plate (802) is movably connected to the movable column (803), the action block (804) is fixed to the side of the movable column (803) near the fixed sleeve (801), the left and right sides of the return spring (805) are fixed to the stabilizing plate (802) and the action block (804) respectively, the connecting column (806) is fixed to the top of the fixed column (9), the movable block (807) is slidably connected to the outer side of the connecting column (806), and the fixed block (808) is fixed to the top of the connecting column (806).
8. The steel structure factory roof splicing structure according to claim 7, characterized in that: The top of both the movable block (807) and the fixed block (808) is a frustum structure. The bottom of the fixed block (808) is provided with a storage opening, which is adapted to the movable block (807). The side of the action block (804) near the connecting column (806) is inclined.
Citation Information
Patent Citations
Roof splicing structure of steel structure factory building
CN221664022U