Novel aluminum-magnesium-manganese roof wind uplift-resistant component
By creating through channels between aluminum-magnesium-manganese roofing surfaces and using components such as fixing blocks, reinforced fixing columns, and connecting plates, the problem of cumbersome installation of traditional aluminum-magnesium-manganese roofing wind-resistant components is solved, enabling rapid installation and enhancing structural strength, thus ensuring construction progress and building safety.
Patent Information
- Application Number
- CN202520032421.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-07
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-01-07
AI Technical Summary
The installation of traditional aluminum-magnesium-manganese roofing wind-resistant components is cumbersome, resulting in slow construction speed, affecting project progress, and making later maintenance and repair difficult.
A through groove is formed between the aluminum-magnesium-manganese roofing section 1 and the roofing section 2. Through the combined design of components such as fixing blocks, reinforced fixing columns, screws and connecting plates, rapid installation and enhanced structural strength are achieved.
It significantly shortens construction time, reduces process complexity and maintenance costs, while improving the roof's resistance to wind uplift and its safety under strong winds.
Smart Images

Figure CN223738848U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to wind -proof component technology field especially relates to a novel aluminium magnesium manganese roof wind -proof component. BACKGROUND
[0002] Aluminium magnesium manganese roof is a kind of lightweight roof system using aluminium, magnesium, manganese alloy material, with corrosion resistance, light weight, good plasticity, long service life and other advantages, widely used in large-span building, gymnasium, airport and other buildings needing large-area covering. However, due to the influence of wind load and bad weather, traditional roof system may produce wind -proof problem under strong wind, thus needs to use novel aluminium magnesium manganese roof wind -proof component. These components enhance the connection strength of roof and main structure by optimizing support, edge locking technology and fastener, effectively disperse wind pressure, prevent roof panel from being lifted, ensure the safety and durability of building.
[0003] The use of traditional and novel aluminium magnesium manganese roof wind -proof component mainly reflects in structure fixation and wind force dispersion. Traditional wind -proof component firmly connects aluminium magnesium manganese plate to roof structure by fixed support, screw and edge locking technology, ensures that roof panel is not easily lifted under wind force. And novel wind -proof component enhances the flexibility and strength of roof panel by more advanced design, such as sliding support, hidden fastener, improved edge locking technology, makes it better adapt to thermal expansion and contraction, effectively disperses and weakens wind pressure, improves overall wind -proof performance and durability, further safeguards building safety.
[0004] Traditional novel aluminium magnesium manganese roof wind -proof component usually adopts screw and special workpiece to connect and fix, and installation must be highly accurate, leading to slow construction speed, especially in large-area roof project, which will affect overall project progress, and it is difficult to maintain and repair in later period. UTILITY MODEL CONTENTS
[0005] In order to make up for the above shortcomings, the utility model provides a novel aluminium magnesium manganese roof wind -proof component, which aims at improving the problem that traditional roof wind -proof component installation is more complicated, leading to slow construction speed, which will affect overall project progress, and it is difficult to maintain and repair in later period.
[0006] To achieve the above object, the utility model provides the following technical scheme: a novel aluminium magnesium manganese roof wind -proof component, including aluminium magnesium manganese roof one, the outer wall one side of aluminium magnesium manganese roof one is attached with aluminium magnesium manganese roof two, the aluminium magnesium manganese roof one and aluminium magnesium manganese roof two form through slot, the lower surface of aluminium magnesium manganese roof one and aluminium magnesium manganese roof two is slidably connected with fixed block, the outer wall of fixed block is provided with positioning assembly, the inside of fixed block is provided with connecting assembly;
[0007] The connecting assembly comprises a reinforcing fixed column, an outer wall of the reinforcing fixed column is slidably connected in the inside of the fixed block, a screw rod one is rotatably connected in the inside of the reinforcing fixed column, one end of the screw rod one is fixedly connected with a handle, a trapezoidal push block is threadedly connected on the outer wall of the screw rod one, a T-shaped sliding block is slidably connected in the inside of the trapezoidal push block, and a clamping block is fixedly connected on the outer wall of the T-shaped sliding block.
[0008] Further, the positioning assembly comprises a positioning block, an outer wall of the positioning block is fixedly connected on one side of the outer wall of the fixed block, and an installation groove is formed in the inside of the fixed block.
[0009] Further, an outer wall of the fixed block is fixedly connected with a rotating shaft, an outer wall of the rotating shaft is rotatably connected with a connecting plate one, one end of the connecting plate one is attached with a connecting plate two, outer walls of the connecting plate one and the connecting plate two are both fixedly connected with a supporting protrusion, and a fixing assembly is arranged in the inside of the supporting protrusion.
[0010] The fixing assembly comprises a screw rod two, one end of the screw rod two is rotatably connected in the inside of the supporting protrusion, a nut is threadedly connected on the outer wall of the screw rod two, and an outer wall of the nut is fixedly connected with a gasket.
[0011] Further, the gasket is attached with the supporting protrusion, and the gasket is used for increasing the friction force between the nut and the supporting protrusion.
[0012] Further, an outer wall of the clamping block is slidably connected in the inside of the reinforcing fixed column and the fixed block, and the clamping block is used for fixing the fixed block.
[0013] Further, an outer wall of the trapezoidal push block is slidably connected in the inside of the reinforcing fixed column, and the trapezoidal push block is used for pushing the clamping block to move.
[0014] Further, the connecting plate one and the connecting plate two are arranged below the aluminum-magnesium-manganese roof one, and the connecting plate one and the connecting plate two are used for further improving the strength of the aluminum-magnesium-manganese roof one.
[0015] Further, an outer wall of the fixed block is slidably connected in the inside of the through groove, and the fixed block is used for fixing the aluminum-magnesium-manganese roof one and the aluminum-magnesium-manganese roof two.
[0016] The utility model has the advantages of the following beneficial effects:
[0017] 1. The utility model discloses a first aluminium magnesium manganese roof and a second aluminium magnesium manganese roof are abutted and pasted to form a through groove, then the two fixing blocks are positioned through positioning blocks and are placed on both sides of the through groove, finally the reinforcing fixing column is pushed and the handle is rotated, the clamping block is driven to move to the inside of the fixing block by cooperation of the screw rod one, trapezoidal push block and T-shaped sliding block, quick installation is realized, the problem that the component installation is more complicated, leads to the construction speed is slower, can influence the overall project progress, simultaneously the later maintenance and repair are more difficult is solved, reach can shorten the construction time, reduce the complexity of process and the time and cost required for daily maintenance, can also more stably play the wind lifting resistance performance.
[0018] 2. The utility model discloses first pull the cooperation pivot of link board one and link board two makes them adhere to each other, then pull the screw rod two cooperation support convex, nut and gasket link board one and link board two are connected and fixed, reached the structure strength of roof is effectively improved, can better resist strong wind, typhoon and other bad weather, thereby ensure the safety of building in strong wind. DRAWINGS
[0019] Figure 1 A three-dimensional structure schematic diagram of a novel aluminium magnesium manganese roof wind lifting resistance component is provided for the utility model;
[0020] Figure 2 A link board one side structure schematic diagram of a novel aluminium magnesium manganese roof wind lifting resistance component is provided for the utility model;
[0021] Figure 3 A fixing block one side structure schematic diagram of a novel aluminium magnesium manganese roof wind lifting resistance component is provided for the utility model;
[0022] Figure 4 A reinforcing fixing column internal structure schematic diagram of a novel aluminium magnesium manganese roof wind lifting resistance component is provided for the utility model;
[0023] Figure 5 A link board two structure schematic diagram of a novel aluminium magnesium manganese roof wind lifting resistance component is provided for the utility model.
[0024] Legend:
[0025] 1, aluminium magnesium manganese roof one;2, aluminium magnesium manganese roof two;3, through groove;4, fixing block;5, positioning block;6, reinforcing fixing column;7, screw rod one;8, handle;9, trapezoidal push block;10, T-shaped sliding block;11, clamping block;12, installation groove;13, pivot;14, link board one;15, link board two;16, support convex;17, screw rod two;18, nut;19, gasket. DETAILED DESCRIPTION
[0026] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model.
[0027] With reference to Figure 1 , Figure 4 The utility model provides an embodiment: a new type aluminium magnesium manganese roof wind -resisting component that uncovers, including aluminium magnesium manganese roof one 1, the outer wall one side of aluminium magnesium manganese roof one 1 is bonded with aluminium magnesium manganese roof two 2, the aluminium magnesium manganese roof one 1 with aluminium magnesium manganese roof two 2 is made of aluminium, magnesium, manganese alloy material, makes the roof have corrosion -resistant, light weight, good plasticity, long service life and so on, the through groove 3 is formed between aluminium magnesium manganese roof one 1 and aluminium magnesium manganese roof two 2, through the bonding of aluminium magnesium manganese roof one 1 and aluminium magnesium manganese roof two 2 to form the through groove 3, the lower surface of aluminium magnesium manganese roof one 1 and aluminium magnesium manganese roof two 2 is all slidingly connected with fixed block 4, the two fixed blocks 4 after splicing are inserted into the inside of through groove 3, the outer wall of fixed block 4 is wrapped around the bottom of aluminium magnesium manganese roof one 1 and aluminium magnesium manganese roof two 2, realizes the primary positioning, the outer wall of fixed block 4 is provided with positioning assembly, and the inside of fixed block 4 is provided with connecting assembly;
[0028] Connecting assembly includes reinforcing fixed column 6, the outer wall of reinforcing fixed column 6 is slidingly connected in the inside of fixed block 4, the inside of reinforcing fixed column 6 is rotatably connected with screw rod one 7, one end of screw rod one 7 is fixedly connected with handle 8, and driving handle 8 can drive screw rod one 7 to rotate in the inside of reinforcing fixed column 6. The outer wall of screw rod one 7 is threadedly connected with trapezoidal push block 9, the inside of trapezoidal push block 9 is slidingly connected with T type sliding block 10, the outer wall of T type sliding block 10 is fixedly connected with clamping block 11, through the threaded relationship between reinforcing fixed column 6 and trapezoidal push block 9, trapezoidal push block 9 slides in the inside of reinforcing fixed column 6 along with the rotation of screw rod one 7, and then trapezoidal push block 9 outer wall's slope pushes clamping block 11 to slide in the inside of reinforcing fixed column 6 and fixed block 4, realizes the fixing of two fixed blocks 4, in addition, through the limitation of T type sliding block 10, it is convenient to pull back clamping block 11 to the inside of reinforcing fixed column 6 when disassembling, and then the connection of aluminium magnesium manganese roof one 1 and aluminium magnesium manganese roof two 2 is fixed, positioned assembly includes locating block 5, and the outer wall of locating block 5 is fixedly connected on the outer wall of fixed block 4. The inside of fixed block 4 is provided with mounting groove 12, and the positioning connection between the two fixed blocks 4 is realized through locating block 5, then the reinforcing fixed column 6 is conveniently inserted into the positioning through mounting groove 12.
[0029] With reference to Figure 1 , Figure 4 and Figure 5The outer wall of the fixed block 4 is fixedly connected with a rotating shaft 13, the outer wall of the rotating shaft 13 is rotationally connected with a connecting plate one 14, one end of the connecting plate one 14 is attached with a connecting plate two 15, the connection of the connecting plate one 14 and the connecting plate two 15 further improves the strength of the roof, the outer walls of the connecting plate one 14 and the connecting plate two 15 are fixedly connected with a supporting protrusion 16, and the inside of the supporting protrusion 16 is provided with a fixing assembly;
[0030] The fixing assembly comprises a screw rod two 17, one end of the screw rod two 17 is rotationally connected in the inside of the supporting protrusion 16, the outer wall of the screw rod two 17 is threadedly connected with a nut 18, the outer wall of the nut 18 is fixedly connected with a gasket 19, the screw rod two 17 is pulled to move to the inside of the supporting protrusion 16, then the threaded relationship between the screw rod two 17 and the nut 18 is improved, so that the nut 18 drives the gasket 19 to slide on the outer wall of the screw rod two 17 while the nut 18 is rotated, and then the connecting plate one 14 and the connecting plate two 15 are fixedly connected, the gasket 19 is attached to the supporting protrusion 16, the gasket 19 is used to increase the friction between the nut 18 and the supporting protrusion 16, the outer wall of the clamping block 11 is slidingly connected in the inside of the reinforced fixed column 6 and the fixed block 4, the clamping block 11 is used to fix the fixed block 4, the outer wall of the trapezoidal push block 9 is slidingly connected in the inside of the reinforced fixed column 6, the trapezoidal push block 9 is used to push the clamping block 11 to move, the connecting plate one 14 and the connecting plate two 15 are arranged below the aluminum-magnesium-manganese roof one 1, and the connecting plate one 14 and the connecting plate two 15 are used to further improve the strength of the aluminum-magnesium-manganese roof one 1, the outer wall of the fixed block 4 is slidingly connected in the inside of the through groove 3, and the fixed block 4 is used to fix the aluminum-magnesium-manganese roof one 1 and the aluminum-magnesium-manganese roof two 2.
[0031] Working principle: when the new aluminum-magnesium-manganese roof wind-resistant structure is needed, the aluminum-magnesium-manganese roof one 1 is attached to the aluminum-magnesium-manganese roof two 2, at this time, the connecting part of the aluminum-magnesium-manganese roof one 1 and the aluminum-magnesium-manganese roof two 2 forms the through groove 3, then the positioning block 5 on the outer wall of the fixed block 4 is inserted into the inside of the other fixed block 4, so as to position the two fixed blocks 4, then the fixed block 4 is inserted into the inside of the aluminum-magnesium-manganese roof one 1 and the aluminum-magnesium-manganese roof two 2, then the reinforced fixed column 6 is pushed to slide in the inside of the fixed block 4, so that the reinforced fixed column 6 moves through the aluminum-magnesium-manganese roof one 1 and the aluminum-magnesium-manganese roof two 2 to the inside of the other fixed block 4, then the driving handle 8 drives the screw rod one 7 to rotate in the inside of the reinforced fixed column 6, so as to drive the trapezoidal push block 9 to slide in the inside of the reinforced fixed column 6, then the inclined surface of the trapezoidal push block 9 is matched to push the clamping block 11 to slide in the inside of the reinforced fixed column 6, and when the clamping block 11 slides to the inside of the fixed block 4, the connection and fixation can be realized;
[0032] Further, the engaging plate one 14 is driven to rotate one end of the engaging plate one 14 at the outer wall of the rotating shaft 13, so that the engaging plate one 14 is attached to the bottom surface of the aluminum magnesium manganese roof one 1, then the engaging plate two 15 on the other side is pulled to attach one end of the engaging plate one 14 and the engaging plate two 15, then the screw rod two 17 is pulled to move to the inside of the supporting protrusion 16 at one end of the engaging plate two 15, then the nut 18 is driven to rotate at the outer wall of the screw rod two 17 to cooperate with the gasket 19 to connect and fix the engaging plate one 14 and the engaging plate two 15, further improving the strength of the roof.
[0033] Finally, it should be noted that: the above is only the preferred embodiment of the present application, and is not intended to limit the present application, although the present application has been described in detail with reference to the foregoing embodiments, for those skilled in the art, it can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement for part of the technical features, any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. A new type of aluminium magnesium manganese roof wind uplift resistant member comprising of aluminium magnesium manganese roof sheeting one (1) characterised in that: The outer wall of the aluminum magnesium manganese roof one (1) is attached with the aluminum magnesium manganese roof two (2), a through groove (3) is formed between the aluminum magnesium manganese roof one (1) and the aluminum magnesium manganese roof two (2), the lower surfaces of the aluminum magnesium manganese roof one (1) and the aluminum magnesium manganese roof two (2) are slidably connected with the fixed block (4), the outer wall of the fixed block (4) is provided with a positioning assembly, and the inside of the fixed block (4) is provided with a connecting assembly; The connecting assembly comprises a reinforcing fixed column (6), the outer wall of the reinforcing fixed column (6) is slidably connected in the inside of the fixed block (4), a screw rod one (7) is rotatably connected in the inside of the reinforcing fixed column (6), one end of the screw rod one (7) is fixedly connected with a handle (8), the outer wall of the screw rod one (7) is threadedly connected with a trapezoidal push block (9), the inside of the trapezoidal push block (9) is slidably connected with a T-shaped sliding block (10), and the outer wall of the T-shaped sliding block (10) is fixedly connected with a clamping block (11).
2. A new type of aluminum-magnesium-manganese roof wind lifting resistant component according to claim 1, characterized in that: The positioning assembly comprises a positioning block (5), the outer wall of the positioning block (5) is fixedly connected with the outer wall of the fixed block (4), and the inside of the fixed block (4) is provided with a mounting groove (12).
3. A new type of aluminum-magnesium-manganese roof wind lifting resistant component according to claim 1, characterized in that: The outer wall of the fixed block (4) is fixedly connected with a rotating shaft (13), the outer wall of the rotating shaft (13) is rotatably connected with a connecting plate one (14), one end of the connecting plate one (14) is attached with a connecting plate two (15), the outer walls of the connecting plate one (14) and the connecting plate two (15) are fixedly connected with a supporting protrusion (16), and the inside of the supporting protrusion (16) is provided with a fixing assembly; The fixing assembly comprises a screw rod two (17), one end of the screw rod two (17) is rotatably connected in the inside of the supporting protrusion (16), the outer wall of the screw rod two (17) is threadedly connected with a nut (18), and the outer wall of the nut (18) is fixedly connected with a gasket (19).
4. A new type of aluminum-magnesium-manganese roof wind lifting resistant component according to claim 3, characterized in that: The gasket (19) is attached with the supporting protrusion (16), and the gasket (19) is used for increasing the friction between the nut (18) and the supporting protrusion (16).
5. A new type of aluminum-magnesium-manganese roof wind lifting resistant component according to claim 1, characterized in that: The outer wall of the clamping block (11) is slidably connected in the inside of the reinforcing fixed column (6) and the fixed block (4), and the clamping block (11) is used for fixing the fixed block (4).
6. A new type of aluminum-magnesium-manganese roof wind lifting resistant component according to claim 1, characterized in that: The outer wall of the trapezoidal push block (9) is slidably connected in the inside of the reinforcing fixed column (6), and the trapezoidal push block (9) is used for pushing the clamping block (11) to move.
7. A new type of aluminum-magnesium-manganese roof wind lifting resistant component according to claim 4, characterized in that: The connecting plate one (14) and the connecting plate two (15) are arranged below the aluminum magnesium manganese roof one (1), and the connecting plate one (14) and the connecting plate two (15) are used for further improving the strength of the aluminum magnesium manganese roof one (1).
8. A new type of aluminum-magnesium-manganese roof wind lifting resistant component according to claim 1, characterized in that: The outer wall of the fixed block (4) is slidably connected in the inside of the through groove (3), and the fixed block (4) is used for fixing the aluminum magnesium manganese roof one (1) and the aluminum magnesium manganese roof two (2).