Quick positioning structure for large-span roof panel
Patent Information
- Application Number
- CN202522404160.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-12
- Publication Date
- 2026-09-29
- Estimated Expiration
- 2035-11-12
AI Technical Summary
[0004]本实用新型提供了一种大跨度屋面板快速安装定位结构,具有安装效率高,屋面板拼接精度高的优点,以解决现有的屋面板前置安装作业繁琐导致效率低,以及屋面板拼接精度低的问题
本实用新型通过一体式的定位架板,可以在安装屋面板前,快捷的进行屋面板安装前的前置件的安装,使屋面板直接固定在定位架板上,提高了屋面板的安装效率,且通过调节定位机构中的滑动槽板,可以根据屋面板的宽度对定位架板进行分隔,使屋面板可以快速定位进行横向拼接,提高了安装精度。
Smart Images

Figure CN224813517U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of roof panel installation, specifically a rapid installation and positioning structure for large-span roof panels. Background Technology
[0002] Large-span roof panels typically refer to roof structures with spans exceeding a certain size. Their main function is to cover large spaces and meet the functional requirements of buildings. Roof panel materials are mostly steel or concrete composite materials, which have the characteristics of high strength and light weight, effectively reducing the load on the overall structure. Their installation efficiency and accuracy directly affect the quality and progress of the overall project.
[0003] Existing installation methods typically involve fixing channel steel or other steel components to the roof truss with bolts and then splicing them segment by segment. The roof panels are then spliced and fixed to the steel components one by one with bolts. During implementation, the steel components need to be installed and spliced multiple times, resulting in low installation efficiency. Furthermore, when splicing the roof panels laterally, manual alignment and positioning are required, which affects the splicing accuracy. Utility Model Content
[0004] This utility model provides a rapid installation and positioning structure for large-span roof panels, which has the advantages of high installation efficiency and high roof panel splicing accuracy, thus solving the problems of cumbersome pre-installation work for roof panels leading to low efficiency and low splicing accuracy of existing roof panels.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a rapid installation and positioning structure for large-span roof panels, comprising a beam frame structure, a positioning and installation mechanism, a top panel positioning mechanism, and an adjustment and positioning mechanism, wherein: The beam frame structure includes multiple crossbeams, a central crossbeam, and a bottom support frame. The crossbeams are arranged longitudinally on the top of the support frame, and the central crossbeam is symmetrically installed in the middle of the support frame. As another preferred technical solution of this utility model, the positioning and installation mechanism includes a positioning frame plate, which is fixed to the top of the crossbeam frame by bolts and has a side plate installed on its side. The positioning frame plate is connected to the top plate positioning mechanism by an installation component. As another preferred technical solution of this utility model, the positioning frame is inclined along the crossbeam frame, and the side plate is fixed on the four sides of the positioning frame so that the positioning frame and the side plate form a groove for placing the roof panel. Multiple longitudinally arranged positioning plates are installed at equal intervals on the top of the positioning frame.
[0006] As another preferred technical solution of this utility model, the positioning groove is fitted with the adjacent side plate, and the top of the positioning groove and the adjacent side plate are provided with multiple corresponding embedding grooves. The mounting component is a U-shaped steel component, and the positioning frame plate and the bottom of the positioning groove are provided with mounting holes. The two sides of the mounting component are fixed to the mounting holes of the positioning frame plate and the positioning groove by mounting bolts.
[0007] The top plate positioning mechanism includes a positioning groove installed on the top of the middle crossbeam for installing the middle roof panel; As another preferred technical solution of this utility model, the positioning groove is further provided with multiple top frame plates, and the bottom of the top frame plates are symmetrically installed with fixing plates. The fixing plates are connected to the positioning groove by bolts, and the upper end of the top frame plates is provided with multiple assembly holes.
[0008] As another preferred technical solution of this utility model, a horizontally extending positioning base plate is installed in the center of the bottom surface of the positioning groove, and the positioning base plate is located between the fixing plates and both sides are attached to the side ends of the fixing plates.
[0009] The adjustment and positioning mechanism is slidably connected inside the positioning frame plate and is used to position the roof panel by separating the top space of the positioning frame plate.
[0010] As another preferred technical solution of this utility model, the adjusting positioning mechanism includes a sliding groove plate, the bottom of which is attached to and slidably connected to the positioning frame plate, and the sliding groove plate is fixedly connected to the positioning frame plate through a connecting piece.
[0011] As another preferred technical solution of this utility model, the top of the sliding groove plate is provided with a plurality of equidistantly arranged assembly grooves, the connector is embedded in the assembly grooves, the upper end of the positioning plate is provided with a plurality of equidistantly arranged connecting holes, and the connector is fixed on the positioning plate by connecting bolts passing through the connector.
[0012] Compared with the prior art, this utility model provides a rapid installation and positioning structure for large-span roof panels, which has the following beneficial effects: This utility model uses an integrated positioning frame plate, which allows for the quick installation of pre-installation components before the roof panels are installed. This directly fixes the roof panels onto the positioning frame plate, improving the installation efficiency. Furthermore, by adjusting the sliding groove plate in the positioning mechanism, the positioning frame plate can be divided according to the width of the roof panels, enabling the roof panels to be quickly positioned and horizontally spliced, thus improving installation accuracy. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2This is a schematic diagram of the installation of the positioning and mounting mechanism and the top plate positioning mechanism of this utility model; Figure 3 This is a schematic diagram showing the connection between the positioning and installation mechanism and the top plate positioning mechanism of this utility model; Figure 4 This utility model Figure 3 Enlarged view of area A in the middle; Figure 5 This utility model Figure 4 Enlarged view of area B in the middle; Figure 6 This is a schematic diagram of the top plate positioning mechanism of this utility model.
[0014] In the diagram: 1. Beam frame structure; 11. Crossbeam frame; 12. Support frame; 13. Middle crossbeam; 2. Positioning and installation mechanism; 21. Positioning frame plate; 211. Mounting hole; 212. Embedded groove; 22. Positioning plate; 23. Side plate; 3. Top plate positioning mechanism; 31. Positioning groove; 32. Positioning base plate; 4. Adjusting positioning mechanism; 41. Connecting piece; 42. Connecting bolt; 43. Sliding groove plate; 44. Assembly groove; 45. Connecting hole; 5. Top frame plate; 52. Fixing plate; 53. Assembly hole; 6. Installing piece; 61. Mounting bolt. Detailed Implementation
[0015] 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. Example
[0016] Please see the appendix Figures 1-6 This utility model discloses a rapid installation and positioning structure for large-span roof panels, including a beam frame structure 1, a positioning and installation mechanism 2, a top panel positioning mechanism 3, and an adjustment and positioning mechanism 4, wherein: The beam frame structure 1 includes multiple crossbeam frames 11, a middle crossbeam 13 and a bottom support frame 12. The crossbeam frames 11 are arranged longitudinally on the top of the support frame 12, and the middle crossbeam 13 is symmetrically installed in the middle of the support frame 12. The positioning and installation mechanism 2 includes a positioning frame plate 21, which is fixed to the top of the crossbeam frame 11 by bolts and has a side plate 23 installed on its side. The positioning frame plate 21 is connected to the top plate positioning mechanism 3 by a mounting part 6. The top panel positioning mechanism 3 includes a positioning groove 31 installed on the top of the middle crossbeam 13 for installing the middle roof panel; The adjusting positioning mechanism 4 is slidably connected inside the positioning frame plate 21 and is used to position the roof panel by separating the top space of the positioning frame plate 21.
[0017] Please refer to the appendix. Figure 2 , Figure 3 The positioning frame 21 is inclined along the crossbeam frame 11, and the side plates 23 are fixed on the four sides of the positioning frame 21 so that the positioning frame 21 and the side plates 23 form a groove for placing the roof panel. Multiple longitudinally arranged positioning plates 22 are installed at equal intervals on the top of the positioning frame 21.
[0018] Specifically, the positioning frame plate 21 is transported to the top of the beam frame structure 1 by a lifting device or other equipment, so that the positioning frame plate 21 is attached to the top of the crossbeam frame 11. After the positioning frame plate 21 is aligned, bolts are inserted through the positioning frame plate 21 and screwed into the crossbeam frame 11 to fix the positioning frame plate 21 on the crossbeam frame 11.
[0019] Please refer to the appendix. Figure 4 The positioning groove 31 is fitted with the adjacent side plate 23. The top of the positioning groove 31 and the adjacent side plate 23 are provided with multiple corresponding embedding grooves 212. The mounting part 6 is a U-shaped steel part. The bottom of the positioning frame plate 21 and the positioning groove 31 are provided with mounting holes 211. The two sides of the mounting part 6 are fixed to the mounting holes 211 of the positioning frame plate 21 and the positioning groove 31 by mounting bolts 61.
[0020] Specifically, the mounting component 6 can connect the positioning slot 31 and the positioning bracket plate 21 together, improving the stability of both.
[0021] Please refer to the appendix. Figure 5 The adjusting positioning mechanism 4 includes a sliding groove plate 43. The bottom of the sliding groove plate 43 is attached to the positioning frame plate 21 and slidably connected to the positioning plate 22. The sliding groove plate 43 is fixedly connected to the positioning frame plate 21 through a connector 41.
[0022] Furthermore, the top of the sliding groove plate 43 is provided with multiple equidistantly arranged assembly grooves 44, and the connector 41 is embedded in the assembly groove 44. The upper end of the positioning plate 22 is provided with multiple equidistantly arranged connecting holes 45. The connector 41 is fixed on the positioning plate 22 by the connecting bolt 42 passing through the connector 41.
[0023] Specifically, based on the width of the roof panel to be installed, a certain number of sliding groove plates 43 are placed into the positioning frame plate 21, so that the bottom of the sliding groove plates 43 is slidably connected to the surface of the positioning frame plate 21. At this time, the sliding groove plates 43 are controlled to slide so that the spacing between the sliding groove plates 43 corresponds to the width of the roof panel. Then, the connector 41 can be inserted into the assembly slot 44 and the connecting bolt 42 can be screwed in to fix the sliding groove plates 43 on the positioning frame plate 21. At this time, the roof panel can be hoisted into the positioning frame plate 21 and placed on the positioning frame plate 21 in the spaces separated by the sliding groove plates 43 for splicing and installation, without the need for manual control of the splicing angle. Example
[0024] Based on the above embodiment one, this embodiment provides the positioning and installation of a narrow roof panel at the top center of the roof panel. Please refer to the attached document. Figure 6 The positioning groove 31 is also provided with multiple top frame plates 5. The bottom of the top frame plate 5 is symmetrically equipped with fixing plates 52. The fixing plates 52 are connected to the positioning groove 31 by bolts. The upper end of the top frame plate 5 is provided with multiple assembly holes 53.
[0025] Furthermore, a laterally extending positioning base plate 32 is installed in the center of the bottom surface of the positioning groove 31. The positioning base plate 32 is located between the fixing plates 52 and both sides are attached to the side ends of the fixing plates 52.
[0026] In this embodiment, after the side roof panels are installed, the narrower roof panels at the top bridging point of the roof need to be positioned and installed. The positioning groove 31 is installed on the top of the middle crossbeam 13 with bolts. During this process, the positioning groove 31 needs to correspond with the embedded groove 212 on the side plate 23 of the positioning frame plate 21. Then, the mounting piece 6 is snapped into the embedded groove 212 and fixed with the mounting bolt 61. The mounting piece 6 connects the positioning groove 31 and the positioning frame plate 21 together. The top frame plate 5 is arranged equidistantly in the positioning groove 31 according to the length of the narrow roof panel in the middle. The top frame plate 5 is fixed in the positioning groove 31 by bolts passing through the fixing plate 52. Then, the narrow roof panel in the middle can be hoisted to the top of the top frame plate 5. At this time, the roof panel can be assembled and installed by bolts through the assembly hole 53.
[0027] The working principle and usage process of this utility model are as follows: During installation, the positioning frame plate 21 is transported to the top of the beam frame structure 1 using lifting equipment or other equipment, so that the positioning frame plate 21 is attached to the top of the crossbeam frame 11. After the positioning frame plate 21 is aligned, bolts are inserted through the positioning frame plate 21 and screwed into the crossbeam frame 11 to fix the positioning frame plate 21 to the crossbeam frame 11. Then, according to the width of the roof panel to be installed, a certain number of sliding groove plates 43 are placed into the positioning frame plate 21, so that the bottom of the sliding groove plates 43 slides... The sliding connection is made to the surface of the positioning frame plate 21. At this time, the sliding groove plate 43 is controlled to slide so that the distance between the sliding groove plates 43 corresponds to the width of the roof panel. Then, the connector 41 can be inserted into the assembly groove 44 and the connecting bolt 42 can be screwed in to fix the sliding groove plate 43 on the positioning frame plate 21. At this time, the roof panel can be hoisted into the positioning frame plate 21 and placed on the positioning frame plate 21 in the spaces divided by the sliding groove plate 43 for splicing. Finally, the roof panel is fixed on the positioning frame plate 21 with bolts. Then, the positioning groove 31 is installed on the top of the middle crossbeam 13 by bolts. During this process, the positioning groove 31 needs to correspond with the embedded groove 212 on the side plate 23 of the positioning frame plate 21. Then, the mounting part 6 is snapped into the embedded groove 212 and the mounting part 6 is fixed with the mounting bolt 61. At this time, the mounting part 6 connects the positioning groove 31 and the positioning frame plate 21 together. Arrange the top frame panels 5 at equal intervals in the positioning groove 31 according to the length of the narrow roof panel in the middle, and fix the top frame panels 5 in the positioning groove 31 by passing bolts through the fixing plate 52. Then, the narrow roof panel in the middle can be hoisted to the top of the top frame panel 5, and the roof panel can be installed on the top of the top frame panel 5 by using the mounting holes 53 and bolts.
Claims
1. A rapid installation and positioning structure for large-span roof panels, comprising a beam frame structure (1), characterized in that, It also includes a positioning and installation mechanism (2), a top plate positioning mechanism (3), and an adjustment and positioning mechanism (4), wherein: The beam frame structure (1) includes multiple crossbeam frames (11), a middle crossbeam (13) and a bottom support frame (12). The crossbeam frames (11) are arranged longitudinally on the top of the support frame (12), and the middle crossbeam (13) is symmetrically installed in the middle of the support frame (12). The positioning and installation mechanism (2) includes a positioning frame plate (21), which is fixed to the top of the crossbeam frame (11) by bolts and has a side plate (23) installed on its side. The positioning frame plate (21) is connected to the top plate positioning mechanism (3) by a mounting component (6). The top plate positioning mechanism (3) includes a positioning groove (31) installed on the top of the middle crossbeam (13) for installing the middle roof panel; The adjustment and positioning mechanism (4) is slidably connected inside the positioning frame plate (21) and is used to separate the top space of the positioning frame plate (21) to position the roof panel.
2. The rapid installation and positioning structure for large-span roof panels according to claim 1, characterized in that: The positioning frame (21) is inclined along the crossbeam frame (11), and the side plate (23) is fixed on the four sides of the positioning frame (21) so that the positioning frame (21) and the side plate (23) form a groove for placing the roof panel. Multiple longitudinally arranged positioning plates (22) are installed at equal intervals on the top of the positioning frame (21).
3. The rapid installation and positioning structure for large-span roof panels according to claim 1, characterized in that: The positioning groove (31) is fitted with the adjacent side plate (23). The top of the positioning groove (31) and the adjacent side plate (23) are provided with multiple corresponding embedding grooves (212). The mounting part (6) is a U-shaped steel part. The bottom of the positioning frame plate (21) and the positioning groove (31) are provided with mounting holes (211). The mounting part (6) is fixed on both sides to the mounting holes (211) of the positioning frame plate (21) and the positioning groove (31) by mounting bolts (61).
4. The rapid installation and positioning structure for large-span roof panels according to claim 1, characterized in that: The adjustment and positioning mechanism (4) includes a sliding groove plate (43), the bottom of which is attached to the positioning frame plate (21) and slidably connected to the positioning plate (22). The sliding groove plate (43) is fixedly connected to the positioning frame plate (21) through a connector (41).
5. The rapid installation and positioning structure for large-span roof panels according to claim 4, characterized in that: The sliding groove plate (43) has multiple equidistantly arranged assembly slots (44) on its top. The connector (41) is embedded in the assembly slot (44). The upper end of the positioning plate (22) has multiple equidistantly arranged connecting holes (45). The connector (41) is fixed on the positioning plate (22) by the connecting bolt (42) passing through the connector (41).
6. The rapid installation and positioning structure for large-span roof panels according to claim 1, characterized in that: The positioning groove (31) is also provided with multiple top frame plates (5), and the bottom of the top frame plate (5) is symmetrically equipped with fixing plates (52). The fixing plates (52) are connected to the positioning groove (31) by bolts, and the top frame plate (5) is provided with multiple assembly holes (53) at the upper end.
7. The rapid installation and positioning structure for large-span roof panels according to claim 1, characterized in that: The positioning groove (31) has a horizontally extending positioning base plate (32) installed in the center of its bottom surface. The positioning base plate (32) is located between the fixing plates (52) and both sides are attached to the side ends of the fixing plates (52).