Slope finding structure for outer cornice of aluminum window

By designing a slope-finding structure for the outer eaves of the aluminum window, and using components such as triangular patch panels and flat panels to form a slope and a stable connection, the existing aluminum window outer eaves of the aluminum window structure has solved the problem of rainwater accumulation and leakage risks caused by the slope-finding structure without slope-finding, and achieved safe and effective rainwater drainage effect.

CN222949466UActive Publication Date: 2025-06-06南京铧顺房地产开发有限公司
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Patent Information

Application Number
CN202421881910.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-05
Publication Date
2025-06-06
Estimated Expiration
2034-08-05

AI Technical Summary

Technical Problem

The existing aluminum window outer eaves structure has not been found for slopes, which has caused rainwater to be unable to be discharged smoothly, and it has accumulated a gap in the aluminum window, increasing the risk of leakage of aluminum windows. The use of secondary plastering to find slopes has a risk of hollowing and falling, which affects the safety of the owners' living.

Method used

A slope-finding structure for the outer eaves of the aluminum window is designed, including the outer eaves of the aluminum window and the triangle patch panel. The slope is formed by fitting the slope through the inclined surface of the triangle patch panel, and the combination of the flat plate, connecting sleeve rod, connecting rod and locking bolt is achieved to achieve stable connection and adjustment of the structure.

Benefits of technology

It effectively reduces rainwater accumulation at the eaves outside the aluminum window, reduces the risk of leakage of aluminum windows, and avoids the risk of hollow falling from secondary plastering slopes, ensuring the safety of the owners.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a slope making structure for an aluminum window outer cornice, which comprises an aluminum window outer cornice structural body and a triangular patch board, the triangular patch board is arranged at one corner of the upper end of the aluminum window outer cornice structural body, the inclined plane of the triangular patch board is attached to the aluminum window outer cornice structural body, a leveling plate is arranged below the aluminum window outer cornice structural body, and the aluminum window outer cornice structural body is provided with a slope. A connecting sleeve rod is arranged on one side of the leveling plate, the connecting sleeve rod and the leveling plate are spliced into a whole, a connecting rod is arranged on one side of the triangular patch plate, the connecting rod and the triangular patch plate are spliced into a whole, and one end of the connecting rod extends into the connecting sleeve rod. The triangular patch is arranged at the outer cornice of the aluminum window, a structural slope is formed after pouring forming, and compared with a traditional method of not making a slope or making a slope through secondary plastering, rainwater is not prone to being accumulated at the outer cornice of the aluminum window, the time for soaking the seam plugging position of the aluminum window by the rainwater is shortened, and the leakage risk of the aluminum window is reduced from the structural level.
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Description

Technical Field

[0001] The utility model relates to the technical field of aluminum window outer cornices, in particular to a slope leveling structure for aluminum window outer cornices. Background Art

[0002] The eaves of aluminum windows are typical horizontal parts with protruding strips at the top of the building composition. They refer specifically to the eaves of buildings made of aluminum. They are located above the windows and play the role of decoration, waterproofing, and sunshade. Through their unique shape and color, they can enhance the overall beauty of the building and coordinate with the architectural style. In rainy weather, the eaves can effectively prevent rain from dripping directly on the windows or walls, avoiding damage to the walls caused by rain erosion. Structural slope adjustment is to tilt the structural layer of the floor or roof to form the required drainage slope without adding slope adjustment materials on the roof.

[0003] The Chinese patent announcement number is CN218714222U, and the authorization announcement date is March 24, 2023. A slope structure and a roof. The slope structure includes a first support assembly and a cover assembly. The first support assembly includes a plurality of first support members, and the heights of the plurality of first support members decrease successively along the first direction. A first groove is provided on the first support member, and the cover assembly includes a plurality of cover plates, and the boundary of each cover plate is directly opposite to the first groove. By setting a plurality of first support members, and then covering the cover plate on the first support assembly, the hollow structure of the first support assembly replaces most of the weight of the fine stone concrete. This slope structure greatly reduces the weight of the slope layer. At the same time, the boundary of the cover plate is directly opposite to the first groove, and the seeping water can flow into the first groove and flow out of the first support member along the first groove, thereby preventing water from seeping from the slope layer to other layers of the roof. By adopting the above-mentioned slope structure, the roof is lighter, has lower cost, and is not easy to leak.

[0004] The existing eaves structure of aluminum windows has not been leveled, and the eaves may slope backward during construction, resulting in rainwater being unable to drain smoothly and accumulating in the aluminum window caulkings, increasing the risk of aluminum window leakage. The use of secondary plastering to level the slope may result in hollowing and the risk of falling, affecting the owner's living safety and failing to meet usage requirements. Utility Model Content

[0005] The utility model aims to provide a slope leveling structure for the outer eaves of aluminium windows, so as to solve the problems raised in the above-mentioned background technology that the outer eaves structure of the existing aluminium windows has no slope leveling and the outer eaves may slope backward during the construction process, resulting in the inability to discharge rainwater smoothly and accumulating in the caulking joints of the aluminium windows, increasing the risk of leakage of the aluminium windows, and the use of secondary plastering for slope leveling may result in hollowing and the risk of falling, affecting the living safety of the owners and failing to meet the use requirements.

[0006] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a slope leveling structure for an aluminum window eaves, comprising an aluminum window eaves structure and a triangular patch plate, wherein the triangular patch plate is arranged at a corner of the upper end of the aluminum window eaves structure, and the inclined surface of the triangular patch plate is fitted with the aluminum window eaves structure, a leveling plate is arranged below the aluminum window eaves structure, a connecting sleeve rod is arranged on one side of the leveling plate, and the connecting sleeve rod and the leveling plate are spliced ​​as one body, a connecting rod is arranged on one side of the triangular patch plate, and the connecting rod and the triangular patch plate are spliced ​​as one body, one end of the connecting rod extends to the interior of the connecting sleeve rod, and the connecting rod is slidably connected to the connecting sleeve rod.

[0007] Preferably, a locking bolt is provided on one side of the upper end of the connecting sleeve rod, and the locking bolt is threadedly connected to the connecting sleeve rod.

[0008] Preferably, a connecting buckle is provided on one side of the triangular patch plate and the leveling plate, and the connecting buckle is fixedly connected to the leveling plate, and a first connecting slot is provided on the side walls of the lower end of the connecting sleeve rod and the upper end of the connecting rod, and the first connecting slot is arranged corresponding to the connecting buckle.

[0009] Preferably, the cross-sections of the connecting buckle and the first connecting slot are both arranged in a right-angle L-shape, and the connecting buckle is clamped with the connecting sleeve rod and the connecting rod.

[0010] Preferably, a connecting protrusion is provided at one end of the triangular patch board, and the connecting protrusion is fixedly connected to the triangular patch board, and a second connecting slot is provided at the other end of the triangular patch board, and the second connecting slot is correspondingly arranged to the connecting protrusion.

[0011] Preferably, the upper end of the leveling plate is provided with friction convex particles, at least four friction convex particles are provided, and the friction convex particles are equidistantly arranged at the upper end of the leveling plate, and the friction convex particles and the leveling plate are provided as a whole.

[0012] Compared with the prior art, the beneficial effects of the utility model are:

[0013] 1. The utility model device is provided with a triangular patch plate, a connecting protrusion and a second connecting slot. The inclined surface of the triangular patch plate is attached to the upper end of the aluminum window outer cornice structure, and a slope is formed at the upper end of the cast aluminum window outer cornice structure. After casting, the triangular patch plate is removed, and a structural slope is formed at the upper end of the aluminum window outer cornice. The connecting protrusion is aligned with the second connecting slot and inserted into the connection, and the two triangular patch plates are spliced ​​into one. The length of the triangular patch plate is increased, and the slope requirements of the aluminum window outer cornices of different lengths can be met. Compared with the traditional method of no slope or secondary plastering slope, rainwater is not easy to accumulate at the aluminum window outer cornice, and the time for rainwater to soak the aluminum window caulking position is reduced, and the risk of aluminum window leakage is reduced from the structural level, while avoiding the risk of hollow drum falling due to secondary plastering slope.

[0014] 2. The utility model device is equipped with a leveling plate, a connecting sleeve rod, a connecting rod and a locking bolt. The leveling plate is placed flat with the lower end surface of the aluminum window outer eaves structure. The locking bolt limits the connecting rod, and the triangular patch plate and the leveling plate are fixedly connected to the aluminum window outer eaves structure to ensure the stability of the casting process. The connecting rod and the connecting sleeve rod are slidably connected, and the distance between the triangular patch plate and the leveling plate can be adjusted, which is convenient for slope finding of aluminum window outer eaves structures of different thicknesses. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0016] Figure 2 This is a diagram showing the connection relationship between the triangular patch plate and the leveling plate of the utility model;

[0017] Figure 3 For the utility model Figure 2 A partial enlarged view of area A;

[0018] Figure 4 This is a connection diagram of a triangular patch board of the utility model;

[0019] Figure 5 This is another connection diagram of a triangular patch board of the utility model.

[0020] In the figure: 1. Aluminum window eaves structure; 2. Triangular patch plate; 3. Leveling plate; 4. Connecting sleeve rod; 5. Connecting rod; 6. Locking bolt; 7. Connecting protrusion; 8. Friction protrusion; 9. Connecting buckle; 10. First connecting slot; 11. Second connecting slot. DETAILED DESCRIPTION

[0021] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all of the embodiments.

[0022] See also Figure 1-5 The utility model provides an embodiment: a slope leveling structure for an aluminum window eaves, comprising an aluminum window eaves structure 1 and a triangular patch plate 2, the triangular patch plate 2 being arranged at a corner of the upper end of the aluminum window eaves structure 1, and the inclined surface of the triangular patch plate 2 is fitted with the aluminum window eaves structure 1, a leveling plate 3 is arranged below the aluminum window eaves structure 1, a connecting sleeve rod 4 is arranged on one side of the leveling plate 3, and the connecting sleeve rod 4 is spliced ​​with the leveling plate 3 as a whole, a connecting rod 5 is arranged on one side of the triangular patch plate 2, and the connecting rod 5 is spliced ​​with the triangular patch plate 2 as a whole, one end of the connecting rod 5 extends to the inside of the connecting sleeve rod 4, and the connecting rod 5 is slidably connected to the connecting sleeve rod 4, a locking bolt 6 is arranged on one side of the upper end of the connecting sleeve rod 4, and the locking bolt 6 is threadedly connected to the connecting sleeve rod 4.

[0023] During use: before pouring, first place the triangular patch plate 2 at the upper end of the aluminum window outer cornice structure 1, then place the leveling plate 3 at the bottom of the aluminum window outer cornice structure 1, assemble the connecting sleeve rod 4 and the connecting rod 5 with the leveling plate 3 and the triangular patch plate 2, align one end of the connecting rod 5 with the connecting sleeve rod 4 and insert it, turn the locking bolt 6 to limit the connecting rod 5, connect the slope structure to the aluminum window outer cornice structure 1, and pour the aluminum window outer cornice. After the pouring is completed, remove the triangular patch plate 2 to form a structural slope after pouring.

[0024] See also Figure 1 , Figure 2 and Figure 3 A connecting buckle 9 is provided on one side of the triangular patch plate 2 and the leveling plate 3, and the connecting buckle 9 is fixedly connected to the leveling plate 3, and a first connecting slot 10 is provided on the side walls of the lower end of the connecting sleeve rod 4 and the upper end of the connecting rod 5, and the first connecting slot 10 is arranged corresponding to the connecting buckle 9, and the cross-sections of the connecting buckle 9 and the first connecting slot 10 are both arranged in a right-angle L-shape, and the connecting buckle 9 is clamped with the connecting sleeve rod 4 and the connecting rod 5. The connecting buckle 9 is aligned with the first connecting slot 10 and inserted into the connecting sleeve rod 4 and the connecting rod 5 to be connected. The right-angle L-shape arrangement can ensure that the slope-finding structure is more closely connected to the eaves structure 1 of the aluminum window, thereby improving the structural slope-finding effect.

[0025] See also Figure 1 , Figure 2 and Figure 4 A connecting protrusion 7 is provided at one end of the triangular patch plate 2, and the connecting protrusion 7 is fixedly connected to the triangular patch plate 2, a second connecting slot 11 is provided at the other end of the triangular patch plate 2, and the second connecting slot 11 is arranged corresponding to the connecting protrusion 7, a friction protrusion 8 is provided at the upper end of the leveling plate 3, at least four friction protrusions 8 are provided, and the friction protrusions 8 are equidistantly arranged at the upper end of the leveling plate 3, the friction protrusions 8 and the leveling plate 3 are arranged as a whole, the friction protrusions 8 increase the friction force, and improve the connection stability between the leveling plate 3 and the aluminum window outer eaves structure 1, the connecting protrusion 7 is aligned with the second connecting slot 11 and inserted into the connection, the two triangular patch plates 2 are spliced ​​into one, the length of the triangular patch plate 2 is increased, and the slope leveling requirements of aluminum window outer eaves of different lengths can be met.

[0026] Working principle: before pouring, the triangular patch plate 2 is placed at the upper end of the aluminum window eaves structure 1, and then the leveling plate 3 is placed under the aluminum window eaves structure 1, the connecting buckle 9 is aligned with the first connecting slot 10 and inserted to connect with the connecting sleeve rod 4 and the connecting rod 5, one end of the connecting rod 5 is aligned with the connecting sleeve rod 4 and inserted, and the locking bolt 6 is rotated to limit the connecting rod 5, and the slope leveling structure is connected to the aluminum window eaves structure 1, and the aluminum window eaves is poured. After the pouring is completed, the triangular patch plate 2 is removed to form a structural slope after pouring; the connecting protrusion 7 is aligned with the second connecting slot 11 and inserted to connect, and the two triangular patch plates 2 are spliced ​​into one, and the length of the triangular patch plate 2 is increased to meet the slope leveling requirements of aluminum window eaves of different lengths.

[0027] The contents not described in detail in this specification belong to the prior art known to professional and technical personnel in this field.

[0028] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A slope leveling structure for an aluminum window cornice, comprising an aluminum window cornice structure (1) and a triangular patch plate (2), characterized in that: The triangular patch plate (2) is arranged at a corner of the upper end of the aluminum window cornice structure (1), and the inclined surface of the triangular patch plate (2) is in contact with the aluminum window cornice structure (1); a leveling plate (3) is arranged below the aluminum window cornice structure (1); a connecting sleeve rod (4) is arranged on one side of the leveling plate (3), and the connecting sleeve rod (4) and the leveling plate (3) are spliced ​​together as one body; a connecting rod (5) is arranged on one side of the triangular patch plate (2), and the connecting rod (5) and the triangular patch plate (2) are spliced ​​together as one body; one end of the connecting rod (5) extends to the inside of the connecting sleeve rod (4), and the connecting rod (5) and the connecting sleeve rod (4) are slidably connected.

2. The slope leveling structure for the eaves of an aluminum window according to claim 1, characterized in that: A locking bolt (6) is provided on one side of the upper end of the connecting sleeve rod (4), and the locking bolt (6) is threadedly connected to the connecting sleeve rod (4).

3. The slope leveling structure for the eaves of an aluminum window according to claim 1, characterized in that: A connecting buckle (9) is provided on one side of the triangular patch plate (2) and the leveling plate (3), and the connecting buckle (9) is fixedly connected to the leveling plate (3). A first connecting slot (10) is provided on the side walls of the lower end of the connecting sleeve rod (4) and the upper end of the connecting rod (5), and the first connecting slot (10) is arranged corresponding to the connecting buckle (9).

4. The slope leveling structure for the eaves of an aluminum window according to claim 3, characterized in that: The cross-sections of the connecting buckle (9) and the first connecting slot (10) are both arranged in a right-angle L-shape, and the connecting buckle (9) is clamped with the connecting sleeve rod (4) and the connecting rod (5).

5. The slope leveling structure for the eaves of an aluminum window according to claim 1, characterized in that: One end of the triangular patch board (2) is provided with a connecting protrusion (7), and the connecting protrusion (7) is fixedly connected to the triangular patch board (2); the other end of the triangular patch board (2) is provided with a second connecting slot (11), and the second connecting slot (11) and the connecting protrusion (7) are arranged correspondingly.

6. The slope leveling structure for the eaves of an aluminum window according to claim 1, characterized in that: The upper end of the leveling plate (3) is provided with friction convex particles (8), at least four friction convex particles (8) are provided, and the friction convex particles (8) are equidistantly arranged at the upper end of the leveling plate (3), and the friction convex particles (8) and the leveling plate (3) are arranged as a whole.