An assembled building outer wall and floor support plate connecting component for a wind farm
By combining threaded rods and sleeves, L-shaped fixing plates, and reinforcing components, the structural instability between the exterior wall and floor slab of the prefabricated building in the wind farm was solved, achieving efficient connection and simplifying the construction process.
Patent Information
- Application Number
- CN202511552729.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-28
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2045-10-28
AI Technical Summary
Traditional wind farms use prefabricated building exterior walls and floor decks, which have poor structural rationality and stability, and the construction and installation process is cumbersome.
The connection is enhanced by using threaded rods and sleeves, combined with L-shaped fixing plates and reinforcing components, and through threaded connection and concrete solidification; a tight connection is achieved by using arc-shaped inserts and driving components; concrete injection holes and waterproof mortar layers are set on the surface of the floor deck to improve connectivity and stability.
It improves the connection stability between the building's exterior walls and the floor decking, enhances the convenience of construction and installation, strengthens the structural rationality, and simplifies the construction process.
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Figure CN121024229B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of building construction, in particular to a connecting component for an assembled building outer wall and floor support plate of a wind farm. BACKGROUND
[0002] Compared with the traditional reinforced concrete structure building, the steel structure whole assembled building of a wind farm can be built more simply and quickly.
[0003] The traditional wall and floor support plate of a wind farm have poor structural rationality and stability, and the construction and installation process is complicated. SUMMARY
[0004] The present application relates to the technical field of building construction, in particular to a connecting component for an assembled building outer wall and floor support plate of a wind farm.
[0005] To achieve the above-mentioned purpose, the present application provides the following technical scheme: a connecting component for an assembled building outer wall and floor support plate of a wind farm, comprising a building outer wall and a floor support plate, a threaded hole one for threaded rod one threaded connection is formed on the surface of the building outer wall, a sleeve is threaded connected on the surface of the threaded rod one, a sleeve sleeve cavity is formed on the surface of the floor support plate, L-shaped fixing plates are fixedly installed on the upper and lower sides of the floor support plate through fixing bolts two, fixing plates are commonly fixedly installed on the left side of the building outer wall through fixing bolts one on the surfaces of the two L-shaped fixing plates, and reinforcing components for reinforcing the connection performance between the building outer wall and the floor support plate are arranged on the surfaces of the two L-shaped fixing plates.
[0006] Optionally, the reinforcing component comprises a connecting seat one fixedly connected to the upper surface of the L-shaped fixing plate, a connecting rod one is hingedly connected to the surface of the connecting seat one, an L-shaped rod is fixedly connected to the surface of the connecting rod one, an arc-shaped insertion rod one is fixedly connected to the surface of the L-shaped rod, an insertion groove one for the arc-shaped insertion rod one to pass through is formed on the surfaces of the building outer wall and the L-shaped fixing plate, a sleeve block is slidingly sleeved on the surface of the connecting rod one, a supporting plate is fixedly connected to the surface of the connecting rod one, a spring is commonly fixedly connected to the surface of the supporting plate and the surface of the sleeve block, a connecting rod two is hingedly connected to the surface of the sleeve block, a connecting rod three is hingedly connected to the surface of the connecting rod one, the upper end of the connecting rod two is hingedly connected to the lower end of the connecting rod three, an arc-shaped insertion rod two is fixedly connected to the upper end of the connecting rod three, an insertion groove two for the arc-shaped insertion rod two to insert is formed on the surface of the building outer wall, and a driving component for driving the arc-shaped insertion rod one and the arc-shaped insertion rod two to be inserted into the insertion groove one and the insertion groove two respectively is arranged on the surface of the L-shaped fixing plate.
[0007] Optionally, the driving component comprises a connecting seat two fixedly connected to the upper surface of the L-shaped fixing plate, the surface of the connecting seat two is hingedly connected with a connecting cylinder, the inner wall of the connecting cylinder is fixedly connected with a threaded rod two in an axial rotation mode, the surface of the threaded rod two is threadedly connected with an extending rod, the end of the extending rod is hingedly connected with the surface of the sleeve block, the surface of the connecting cylinder is provided with a through hole one for the threaded rod two to pass through and be fixedly connected in an axial rotation mode, and the left end of the threaded rod two is drivingly connected with the surface of the threaded rod two through a bevel gear transmission mechanism.
[0008] Optionally, the surface of the floor support plate is provided with a concrete injection hole in communication with the sleeve sleeve cavity.
[0009] Optionally, the lower surface of the L-shaped fixing plate above the floor support plate is provided with a waterproof mortar layer, and the waterproof mortar layer is attached to the upper surface of the floor support plate.
[0010] Optionally, the upper surface of the L-shaped fixing plate below the floor support plate is provided with a polyethylene foam rod, and the upper surface of the polyethylene foam rod is attached to the lower surface of the floor support plate.
[0011] Optionally, the lower surface of the fixing bolt two is provided with a backing plate.
[0012] Optionally, the end of the rotating rod is fixedly connected with a handle, and the surface of the handle is provided with a pattern.
[0013] Optionally, the backing plate is a rust-proof galvanized sheet.
[0014] Optionally, the upper and lower sides of the fixing plate are fixedly connected with sealing waterproof strips, and the side surface of the sealing waterproof strip is attached to the surface of the building outer wall.
[0015] Compared with the prior art, the beneficial effects of the present application are as follows:
[0016] Firstly, the sleeve is installed on the surface of the building outer wall through the threaded rod one, which can increase the radius of the threaded rod one, increase the diameter, and enhance the bearing capacity. Then the floor support plate with the sleeve sleeve cavity is hoisted, the sleeve sleeve cavity is aligned with the floor support plate, the L-shaped fixing plate is installed on the upper and lower sides of the floor support plate through the fixing bolt two, the fixing bolt one is installed on the surface of the L-shaped fixing plate, the fixing plate is installed on the left side of the building outer wall through the fixing bolt one, and the installation of the floor support plate on the upper and lower sides is completed. After installation, the concrete is injected from the concrete injection hole, the concrete flows into the sleeve sleeve cavity, and the sleeve sleeve cavity and the sleeve are bonded after the concrete solidifies, thereby improving the connectivity and stability between the floor support plate and the building outer wall.
[0017] Secondly, after installation, the arc-shaped insertion rod one is inserted into the insertion slot one, the insertion slot one is composed of the L-shaped fixing plate and the building outer wall, the arc-shaped insertion rod one can be rotated into the insertion slot one, the L-shaped fixing plate and the building outer wall are tightly connected, the arc-shaped insertion rod two is inserted into the insertion slot two of the building outer wall, so that the building outer wall is hooked, the connection between the building outer wall and the L-shaped fixing plate is more tightly, and the stable installation of the floor support plate is realized. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 The axonometric view of the structure assembly of the present application;
[0019] Figure 2 The front view of the building outer wall and the floor support plate structure of the present application;
[0020] Figure 3 The front view of the building outer wall, the floor support plate and the reinforcing component structure of the present application;
[0021] Figure 4 The side view of the floor support plate structure of the present application;
[0022] Figure 5 The enlarged view of the structure A in the present application; Figure 1
[0023] The enlarged view of the structure B in the present application; Figure 6 Figure 2 The enlarged view of the structure C in the present application;
[0024] Figure 7 Figure 3 The enlarged view of the structure D in the present application;
[0025] Figure 8 The front view of the connecting cylinder structure of the present application;
[0026] Figure 9 The enlarged view of the structure D in the present application; Figure 2
[0027] In the drawing: 1, building outer wall; 2, floor support plate; 3, threaded rod one; 4, sleeve; 5, sleeve sleeve cavity; 6, fixing plate; 7, L-shaped fixing plate; 8, fixing bolt one; 9, fixing bolt two; 10, concrete injection hole; 11, connecting seat one; 12, connecting rod one; 13, L-shaped rod; 14, arc-shaped insertion rod one; 15, connecting seat two; 16, connecting cylinder; 17, protruding rod; 18, sleeve block; 19, spring; 20, supporting plate; 21, connecting rod two; 22, connecting rod three; 23, arc-shaped insertion rod two; 24, threaded rod two; 25, conical gear transmission mechanism; 26, rotating rod; 27, polyethylene foam stick; 28, waterproof mortar layer; 29, pad; 30, handle; 31, sealing waterproof strip. DETAILED DESCRIPTION
[0028] The technical solutions in the embodiments of the present application will be apparently and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by a person of ordinary skill in the art without creative work fall within the protection scope of the present application.
[0029] Please refer to Figures 1 to 9 The present application provides a technical solution: a kind of wind farm with assembly type building outer wall and floor support plate connecting component, including building outer wall 1 and floor support plate 2, the surface of building outer wall 1 is equipped with the threaded hole one for threaded rod one 3 threaded connection, the surface of threaded rod one 3 is connected with sleeve 4, the surface of floor support plate 2 is equipped with sleeve sleeve cavity 5, the upper and lower sides of floor support plate 2 are fixedly installed with L-shaped fixed plate 7 by fixed bolt two 9, the surface of two L-shaped fixed plate 7 is fixedly installed with fixed plate 6 by fixed bolt one 8 at the left side of building outer wall 1, the surface of two L-shaped fixed plate 7 is provided with reinforcing component, which can increase the connection performance between building outer wall 1 and floor support plate 2, by installing threaded rod one 3 on the surface of building outer wall 1, then threaded connecting sleeve 4 on the surface of threaded rod one 3, sleeve 4 can increase the radius of threaded rod one 3, make it thick, the bearing capacity is enhanced, then hoist floor support plate 2 with sleeve sleeve cavity 5, so that floor support plate 2 and sleeve 4 are in the same horizontal line, align sleeve sleeve cavity 5 with floor support plate 2 for butt joint, after butt joint is completed, install L-shaped fixed plate 7 on the upper and lower sides of floor support plate 2 by fixed bolt two 9, and install fixed plate 6 on the left side of building outer wall 1 by installing fixed bolt one 8 on the surface of L-shaped fixed plate 7, fixed plate 6 and L-shaped fixed plate 7 are connected by fixed bolt one 8, so as to complete the fixed installation of the upper and lower sides of floor support plate 2, after installation is completed, the connection and stability between floor support plate 2 and building outer wall 1 are improved by the action of reinforcing component.
[0030] In order to improve the connection stability between the building outer wall 1 and the floor support plate 2, further, the reinforcing component includes a connecting seat one 11 fixedly connected to the upper surface of the L-shaped fixed plate 7, the surface of the connecting seat one 11 is hingedly connected with a connecting rod one 12, the surface of the connecting rod one 12 is fixedly connected with an L-shaped rod 13, the surface of the L-shaped rod 13 is fixedly connected with an arc-shaped insertion rod one 14, the surface of the building outer wall 1 and the L-shaped fixed plate 7 is provided with an insertion slot one for the arc-shaped insertion rod one 14 to penetrate, the surface of the connecting rod one 12 is slidably sleeved with a sleeve block 18, the surface of the connecting rod one 12 is fixedly connected with a supporting plate 20, the surface of the supporting plate 20 and the surface of the sleeve block 18 are fixedly connected with a spring 19, the surface of the sleeve block 18 is hingedly connected with a connecting rod two 21, the surface of the connecting rod one 12 is hingedly connected with a connecting rod three 22, the upper end of the connecting rod two 21 is hingedly connected with the lower end of the connecting rod three 22, the upper end of the connecting rod three 22 is fixedly connected with an arc-shaped insertion rod two 23, the surface of the building outer wall 1 is provided with an insertion slot two for the arc-shaped insertion rod two 23 to insert, the surface of the L-shaped fixed plate 7 is provided with a driving component for driving the arc-shaped insertion rod one 14 and the arc-shaped insertion rod two 23 to be inserted into the insertion slot one and the insertion slot two respectively, after installation, under the action of the driving component, the sleeve block 18 is subjected to the abutting force on the right side, and under the action of the spring 19, the sleeve block 18 has a leftward force on the connecting rod one 12, so as to drive the connecting rod one 12 to rotate counterclockwise, through the counterclockwise rotation of the connecting rod one 12, the L-shaped rod 13 is rotated to the left side, through the movement of the L-shaped rod 13, the arc-shaped insertion rod one 14 is inserted into the insertion slot one, the insertion slot one is composed of the L-shaped fixed plate 7 and the building outer wall 1, the arc-shaped insertion rod one 14 can be rotated into the insertion slot one, so as to tightly connect the L-shaped fixed plate 7 and the building outer wall 1, through the continuous extension of the extending rod 17, since the arc-shaped insertion rod one 14 has been inserted into the bottom of the insertion slot one, the arc-shaped insertion rod one 14 no longer moves, at this time, the continuous extension of the extending rod 17, the elastic force of the spring 19 is not enough to continue to block the movement of the sleeve block 18 along the connecting rod one 12, the sleeve block 18 moves upward along the connecting rod one 12, through the movement of the sleeve block 18, the connecting rod two 21 is driven to move upward and rotate, through the movement of the connecting rod two 21, the connecting rod three 22 is rotated, through the rotation of the connecting rod three 22, the arc-shaped insertion rod two 23 is inserted into the insertion slot two of the building outer wall 1, so as to hook the building outer wall 1, so that the connection between the building outer wall 1 and the L-shaped fixed plate 7 is more tightly, so as to realize the stable installation of the floor support plate 2.
[0031] To drive the arc-shaped insert rod 14 and arc-shaped insert rod 23 into slots 1 and 2, the driving component further includes a connecting seat 2 15 fixedly connected to the upper surface of the L-shaped fixing plate 7. A connecting cylinder 16 is hinged to the surface of the connecting seat 2 15. A threaded rod 24 is rotatably connected to the inner wall of the connecting cylinder 16. An extension rod 17 is threadedly connected to the surface of the threaded rod 24. The end of the extension rod 17 is hinged to the surface of the sleeve block 18. A through hole 1 is provided on the surface of the connecting cylinder 16 for the rotating rod 26 to pass through and rotatably connect to it. The left end of the rotating rod 26 is connected to the surface of the threaded rod 24 via a bevel gear transmission mechanism 25. By rotating the rotating rod 26, the threaded rod 24 is rotated under the action of the bevel gear transmission mechanism 25. The rotation of the threaded rod 24 causes the extension rod 17 to extend. Figure 7 As shown, the extension of the extension rod 17 causes the sleeve block 18 to be subjected to the abutment force on the right side. Under the action of the spring 19, the sleeve block 18 exerts a leftward force on the connecting rod 12, thereby causing the connecting rod 12 to rotate counterclockwise. Through the movement of the connecting rod 12, with the cooperation of the above-mentioned components, the arc-shaped insert rod 14 and the arc-shaped insert rod 23 can be inserted into the slot 1 and slot 2, which can further improve the connection stability between the building exterior wall 1 and the floor deck 2.
[0032] To further improve the connection and stability between the floor deck 2 and the exterior wall 1, a concrete injection hole 10 is provided on the surface of the floor deck 2, which is connected to the sleeve insertion cavity 5. By injecting concrete into the concrete injection hole 10, the concrete flows into the sleeve insertion cavity 5, and the concrete solidifies and bonds the sleeve insertion cavity 5 and the sleeve 4, thereby improving the connection and stability between the floor deck 2 and the exterior wall 1.
[0033] To further improve the stability between the L-shaped fixing plate 7 and the floor deck 2, a waterproof mortar layer 28 is provided on the lower surface of the L-shaped fixing plate 7 located above the floor deck 2. The waterproof mortar layer 28 is bonded to the upper surface of the floor deck 2. By providing the waterproof mortar layer 28, which has good weather resistance, durability, impermeability, density, and extremely high adhesion as well as strong waterproof and anti-corrosion effects, it can prevent the fine gaps between the floor deck 2 and the L-shaped fixing plate 7 from being eroded by weathering and other reasons.
[0034] To further improve the practicality of the floor deck 2, a polyethylene foam rod 27 is provided on the upper surface of the L-shaped fixing plate 7 located below the floor deck 2. The upper surface of the polyethylene foam rod 27 is attached to the lower surface of the floor deck 2, and the polyethylene foam rod 27 can play the roles of heat preservation, waterproofing and sound insulation.
[0035] In order to prevent the fixed bolt two 9 from being damaged when fixed, further, the lower surface of the fixed bolt two 9 is provided with a pad plate 29.
[0036] In order to facilitate the rotation of the handle 30, further, the end of the rotating rod 26 is fixedly connected with the handle 30, and the surface of the handle 30 is provided with a texture.
[0037] In order to prevent the pad plate 29 from rusting, further, the pad plate 29 is a rust-proof galvanized sheet.
[0038] In order to prevent external moisture from flowing into the surface of the fixed bolt one 8 from the gap between the fixed plate 6 and the building outer wall 1, and causing it to rust, further, the upper and lower sides of the fixed plate 6 are fixedly connected with sealing waterproof strips 31, and the side surface of the sealing waterproof strip 31 is attached to the surface of the building outer wall 1.
[0039] Working principle: when the assembly type building outer wall and floor slab connecting component for wind power field is used, the threaded rod one 3 is installed on the surface of the building outer wall 1, then the sleeve 4 is threadedly connected on the surface of the threaded rod one 3, the sleeve 4 can increase the radius of the threaded rod one 3, so that it becomes thick and the bearing capacity is enhanced, then the floor slab 2 with the sleeve is hoisted, so that the floor slab 2 and the sleeve 4 are on the same horizontal line, the sleeve sleeve cavity 5 is aligned with the floor slab 2 for butt joint, after the butt joint is completed, the L-shaped fixed plate 7 is installed on the upper and lower sides of the floor slab 2 through the fixed bolt two 9, and the fixed plate 6 is installed on the left side of the building outer wall 1 through the fixed bolt one 8 installed on the surface of the L-shaped fixed plate 7, the fixed plate 6 and the L-shaped fixed plate 7 are connected by the fixed bolt one 8, that is, the upper and lower sides of the floor slab 2 are fixedly installed, after the installation is completed, the concrete is injected from the concrete injection hole 10, the concrete flows into the sleeve sleeve cavity 5, and the concrete solidifies and adheres between the sleeve sleeve cavity 5 and the sleeve 4, thereby improving the connection and stability between the floor slab 2 and the building outer wall 1.
[0040] After installation, the rotating rod 26 is rotated, the threaded rod two 24 is driven to rotate under the action of the conical gear transmission mechanism 25, the extending rod 17 is extended by the rotation of the threaded rod two 24, and Figure 7As shown, by the extension of the extension rod 17, the sleeve block 18 is subjected to the right abutting force, and under the action of the spring 19, the sleeve block 18 has a left action force on the connecting rod one 12, thereby driving the connecting rod one 12 to rotate counterclockwise, through the counterclockwise rotation of the connecting rod one 12, the L-shaped rod 13 is rotated to the left, through the movement of the L-shaped rod 13, the arc-shaped insertion rod one 14 is inserted into the insertion slot one, the insertion slot one is composed of the L-shaped fixed plate 7 and the building outer wall 1, the arc-shaped insertion rod one 14 can rotate into the insertion slot one, thereby tightly connecting between the L-shaped fixed plate 7 and the building outer wall 1, through the continuous extension of the extension rod 17, since the arc-shaped insertion rod one 14 has been inserted into the bottom of the insertion slot one, the arc-shaped insertion rod one 14 no longer moves, at this time the extension rod 17 continues to extend, the elastic force of the spring 19 is not enough to continue to block the sleeve block 18 along the connecting rod one 12, the sleeve block 18 moves upward along the connecting rod one 12, through the movement of the sleeve block 18, the connecting rod two 21 is moved upward and rotated, through the movement of the connecting rod two 21, the connecting rod three 22 is rotated, through the rotation of the connecting rod three 22, the arc-shaped insertion rod two 23 is inserted into the insertion slot two of the building outer wall 1, thereby hooking the building outer wall 1, making the connection between the building outer wall 1 and the L-shaped fixed plate 7 more tightly, thereby also realizing the stable installation of the floor support plate 2.
[0041] Although embodiments of the present application have been shown and described, it is to be understood that various modifications, substitutions, replacements and changes can be made to these embodiments without departing from the principles and spirit of the present application, the scope of the present application being defined by the appended claims and their equivalents.
Claims
1. A prefabricated building exterior wall and floor decking connection component for wind farms, comprising a building exterior wall (1) and a floor decking (2), characterized in that: The surface of the building exterior wall (1) is provided with a threaded hole for threaded connection of threaded rod (3). The surface of threaded rod (3) is threaded with sleeve (4). The surface of floor deck (2) is provided with sleeve insertion cavity (5). The upper and lower sides of floor deck (2) are fixedly installed with L-shaped fixing plates (7) by fixing bolts (9). The surfaces of the two L-shaped fixing plates (7) are fixedly installed with fixing plates (6) on the left side of the building exterior wall (1) by fixing bolts (8). The surfaces of the two L-shaped fixing plates (7) are provided with reinforcing components to enhance the connection performance between the building exterior wall (1) and the floor deck (2). The reinforcing component includes a connecting seat (11) fixedly connected to the upper surface of the L-shaped fixing plate (7), a connecting rod (12) hinged to the surface of the connecting seat (11), an L-shaped rod (13) fixedly connected to the surface of the connecting rod (12), and an arc-shaped insert rod (14) fixedly connected to the surface of the L-shaped rod (13). The exterior wall of the building (1) and the surface of the L-shaped fixing plate (7) are both provided with slots for the arc-shaped insert rod (14) to pass through. A sleeve block (18) is slidably fitted onto the surface of the connecting rod (12), and a support plate (20) is fixedly connected to the surface of the connecting rod (12). The surface of the support plate (20) and the sleeve block (18) are slidably fitted onto the surface of the connecting rod (12). A spring (19) is fixedly connected to the surface of the block (18). A connecting rod two (21) is hinged to the surface of the sleeve block (18). A connecting rod three (22) is hinged to the surface of the connecting rod one (12). The upper end of the connecting rod two (21) is hinged to the lower end of the connecting rod three (22). An arc-shaped insert rod two (23) is fixedly connected to the upper end of the connecting rod three (22). A slot two for inserting the arc-shaped insert rod two (23) is opened on the surface of the building exterior wall (1). A driving component is provided on the surface of the L-shaped fixing plate (7) for driving the arc-shaped insert rod one (14) and the arc-shaped insert rod two (23) to be inserted into the slot one and the slot two respectively. The driving component includes a connecting seat two (15) fixedly connected to the upper surface of the L-shaped fixed plate (7). A connecting cylinder (16) is hinged to the surface of the connecting seat two (15). A threaded rod two (24) is rotatably connected to the inner wall of the connecting cylinder (16). An extension rod (17) is threadedly connected to the surface of the threaded rod two (24). The end of the extension rod (17) is hinged to the surface of the sleeve block (18). A through hole is opened on the surface of the connecting cylinder (16) for the rotating rod (26) to pass through and rotatably connected to it. The left end of the rotating rod (26) is connected to the surface of the threaded rod two (24) through a bevel gear transmission mechanism (25).
2. The prefabricated building exterior wall and floor decking connection component for wind farms according to claim 1, characterized in that: The surface of the floor deck (2) is provided with a concrete injection hole (10) that communicates with the sleeve insertion cavity (5).
3. The prefabricated building exterior wall and floor decking connection component for wind farms according to claim 2, characterized in that: A waterproof mortar layer (28) is provided on the lower surface of the L-shaped fixing plate (7) located above the floor deck (2), and the waterproof mortar layer (28) is in contact with the upper surface of the floor deck (2).
4. The prefabricated building exterior wall and floor decking connection component for wind farms according to claim 3, characterized in that: A polyethylene foam rod (27) is provided on the upper surface of the L-shaped fixing plate (7) located below the floor deck (2), and the upper surface of the polyethylene foam rod (27) is in contact with the lower surface of the floor deck (2).
5. The prefabricated building exterior wall and floor decking connection component for wind farms according to claim 1, characterized in that: A washer (29) is provided on the lower surface of the fixing bolt 2 (9).
6. The prefabricated building exterior wall and floor decking connection component for wind farms according to claim 1, characterized in that: The end of the rotating rod (26) is fixedly connected to a handle (30), and the surface of the handle (30) is textured.
7. The prefabricated building exterior wall and floor decking connection component for wind farms according to claim 5, characterized in that: The pad (29) is a rust-proof galvanized sheet.
8. The prefabricated building exterior wall and floor decking connection component for wind farms according to any one of claims 2-4, characterized in that: The upper and lower sides of the fixing plate (6) are fixedly connected with sealing waterproof strips (31), and the side of the sealing waterproof strips (31) is in contact with the surface of the building exterior wall (1).
Citation Information
Patent Citations
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