Composite fireproof aluminum veneer supporting structure
By setting corner codes and board designs at the corners of the composite fireproof aluminum veneer, the problem of insufficient corner stability of traditional veneers is solved, and higher structural stability and simple installation process are achieved.
Patent Information
- Application Number
- CN202421375473.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-17
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-06-17
AI Technical Summary
Traditional composite fireproof aluminum veneer has shortcomings in structural design and stability, especially in the corner treatment of the veneer, its stability and durability need to be improved.
A composite fireproof aluminum veneer support structure is designed. By setting an angle code at the four peripheral corners of the veneer, a backing plate is set at the sharp corners of the angle code, the backing plate is inserted into the notch, and the side of the angle code is closely in contact with the side of the veneer, forming a stable support structure.
It significantly improves the structural stability of the corners of the veneer, prevents the corners from deformation or damage when subjected to external forces, simplifies the installation process and improves construction efficiency.
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Figure CN222862747U_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of building curtain walls, and in particular to a composite fireproof aluminum single plate supporting structure. Background Art
[0002] With the continuous development of modern construction technology, the requirements for building materials are also increasing. Especially in terms of fire safety, the fireproof performance of building materials is particularly important. As a high-quality fireproof building material, composite fireproof aluminum veneer has been widely used in the field of architectural decoration. However, traditional composite fireproof aluminum veneer still has certain deficiencies in structural design and stability, especially in the edge processing of the veneer, its stability and durability need to be improved.
[0003] In the traditional composite fireproof aluminum veneer design, the composite fireproof aluminum veneer is bent and formed, so there are gaps formed by bending at the four corners of the composite fireproof aluminum veneer, but the corners often lack sufficient protection measures and are easily deformed or damaged by external forces. In order to enhance the stability and durability of the composite fireproof aluminum veneer, this patent proposes a new composite fireproof aluminum veneer structure. Summary of the invention
[0004] In order to solve the above problems, the present invention discloses a composite fireproof aluminum single plate supporting structure.
[0005] In order to achieve the above purpose, the present invention provides the following technical solutions: a composite fireproof aluminum veneer support structure, wherein the four corners of the composite fireproof aluminum veneer are formed with notches by bending, including corner codes correspondingly arranged around the composite fireproof aluminum veneer, a backing plate is arranged at a sharp corner of the corner code, the backing plate is used to be inserted into the notch, and the two side edges of the corner code are in contact with and cooperate with the side edges of the composite fireproof aluminum veneer.
[0006] Specifically, the composite fireproof aluminum veneer is a double-layer shell structure, and a barb structure is arranged on the inner wall surface of the double-layer shell of the composite fireproof aluminum veneer. When the double-layer shell is filled with a fireproof layer, the barb structure is embedded in the fireproof layer.
[0007] Furthermore, a mounting plate is connected between adjacent corner brackets, and a connecting ear plate extending outward is provided on the mounting plate.
[0008] Specifically, the lower end of the connecting ear plate is slidably sleeved on the mounting plate and is locked with the mounting plate through a locking mechanism.
[0009] Among them, the locking mechanism includes a plurality of arc-shaped slots arranged at the top of the mounting plate, and a limit column slidably arranged at the lower end of the connecting ear plate. The limit column is located on the upper side of the mounting plate and is used to align with the arc-shaped slot. A locking screw is passed between the outer end of the limit column and a base slidably connected to the bottom end of the mounting plate. By tightening the locking screw, the limit column is inserted into the arc-shaped slot to limit the connecting ear plate.
[0010] In the above solution, the corner code is in a triangular shape, and the interior of the corner code is a hollow structure.
[0011] The solution of the embodiment of the present application significantly improves the structural stability of the corners of the composite fireproof aluminum veneer through the close cooperation between the corner bracket and the notches around the composite fireproof aluminum veneer. The back plate of the corner bracket is inserted into the notch, and is in close contact with the two side edges of the corner bracket and the side edges of the composite fireproof aluminum veneer, forming a stable support structure, which effectively prevents the corners of the veneer from being deformed or damaged when subjected to external forces. The matching design of the corner bracket and the notch makes the installation process simpler and faster. The installation can be completed by simply inserting the back plate of the corner bracket into the notch and ensuring that the side edges of the corner bracket are tightly fitted with the side edges of the aluminum veneer, which greatly improves the construction efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 This is a front view of the composite fireproof aluminum veneer support structure in the embodiment of the present application;
[0013] Figure 2 for Figure 1 A partial enlarged schematic diagram in the middle;
[0014] Figure 3 A three-dimensional diagram of the composite fireproof aluminum veneer support structure in the embodiment of the present application;
[0015] Figure 4 This is a schematic diagram of the position of the limiting column in the embodiment of the present application;
[0016] Figure 5 This is a schematic diagram of the structure of the angle code in the embodiment of the present application;
[0017] Figure 6 Schematic diagram of the position of the barb structure in the embodiment of the present application. DETAILED DESCRIPTION
[0018] In order to make the purpose, technical solutions and advantages of the present invention more clear, the present invention will be further described in detail below with reference to the accompanying drawings.
[0019] The terms used in the following embodiments are only for the purpose of describing specific embodiments and are not intended to be limiting of the present invention. As used in the specification of the present invention and the appended claims, the singular expressions "a", "an", "above", "the" and "this" are intended to also include expressions such as "one or more", unless the context clearly indicates otherwise.
[0020] References to "one embodiment" or "some embodiments" etc. described in this specification mean that a particular feature, structure or characteristic described in conjunction with the embodiment is included in one or more embodiments of the present invention. Thus, the phrases "in one embodiment", "in some embodiments", "in some other embodiments", "in some other embodiments", etc. appearing in different places in this specification do not necessarily refer to the same embodiment, but mean "one or more but not all embodiments", unless otherwise specifically emphasized in other ways. The terms "including", "comprising", "having" and their variations all mean "including but not limited to", unless otherwise specifically emphasized in other ways.
[0021] Example 1: Figure 1-3 ,as well as Figure 5 As shown, a composite fireproof aluminum veneer support structure, wherein the composite fireproof aluminum veneer 100 is bent and formed, and notches 101 are formed at the four corners of the composite fireproof aluminum veneer 100 by bending;
[0022] In order to increase the stability of the four corners of the composite fireproof aluminum veneer 100, corner codes 200 are set at the four corners of the composite fireproof aluminum veneer 100, and a support plate 300 is set at a sharp corner of the corner code 200. The support plate 300 is used to be inserted into the notch 101, and the two side edges of the corner code 200 are in contact and cooperation with the side edges of the composite fireproof aluminum veneer 100.
[0023] During installation, insert the backing plate into the notch on the composite fireproof aluminum veneer to ensure that it fits tightly without shaking. Use appropriate fixing methods (such as screws, rivets, etc.) to firmly fix the backing plate and the composite fireproof aluminum veneer together to enhance the stability of the overall structure.
[0024] The end face of the side of the composite fireproof aluminum veneer 100 can be against the backing plate 300, and the backing plate 300 supports it. At the same time, the side of the composite fireproof aluminum veneer 100 can contact the side of the angle bracket 200 to form a stable support for both. The design of the angle bracket 200 and the backing plate 300 strengthens the corners of the composite fireproof aluminum veneer, improving the stability and bearing capacity of the overall structure.
[0025] The corner code 200 is in a triangular shape, and the interior of the corner code 200 is a hollow structure.
[0026] The triangular corner bracket design can improve the structural stability of the corners of the composite fireproof aluminum veneer and prevent deformation and damage. The hollow structure design inside the corner bracket helps to reduce the overall weight and facilitates handling, installation and maintenance.
[0027] Example 2: Figure 6 As shown, the composite fireproof aluminum veneer 100 is a double-layer shell structure, and a barb structure 102 is provided on the inner wall surface of the double-layer shell of the composite fireproof aluminum veneer 100. When the double-layer shell is filled with a fireproof layer, the barb structure 102 is embedded in the fireproof layer. Specifically, the barb structure can be made on the inner wall surface of the inner aluminum plate by stamping or etching. These barbs can be evenly distributed small protrusions or irregular tooth-shaped structures.
[0028] The fireproof layer can be made of flame retardant foam, mineral wool or other non-flammable materials. The fireproof material is filled into the gap of the double shell structure to ensure that the filling is uniform and dense. During the filling process, the barb structure will be embedded in the fireproof layer to enhance the bonding force between the fireproof layer and the aluminum plate.
[0029] The double-layer shell structure improves the overall fire resistance and structural strength by adding an aluminum plate and a fireproof layer. The barbed structure design increases the contact area and friction between the aluminum plate and the fireproof layer, thereby enhancing the bonding between the two and preventing the fireproof layer from falling off and shifting.
[0030] Example 3: Figure 3-4 As shown, a mounting plate 400 is connected between adjacent corner brackets 200, and a connecting ear plate 500 extending outward is provided on the mounting plate 400. The connecting ear plate 500 is independently provided on the mounting plate 400 to avoid the connecting ear plate 500 being directly fixed on the side of the composite fireproof aluminum single plate 100, and to avoid excessive force during the installation process, which may cause the side of the composite fireproof aluminum single plate 100 to deform.
[0031] In a possible implementation, the lower end of the connecting ear plate 500 is slidably mounted on the mounting plate 400 and is locked with the mounting plate 400 through a locking mechanism.
[0032] Among them, the locking mechanism includes a plurality of arc-shaped slots 401 arranged at the top of the mounting plate 400, and a limiting column 411 slidably arranged at the lower end of the connecting ear plate 500. The limiting column 411 is located on the upper side of the mounting plate 400, and is used to align with the arc-shaped slot 401. A locking screw 412 is passed between the outer end of the limiting column 411 and a base slidably connected to the bottom end of the mounting plate 400. By tightening the locking screw 412, the limiting column 411 is inserted into the arc-shaped slot 401 to limit the connecting ear plate 500.
[0033] Specifically, the top of the mounting plate 400 has a plurality of arc-shaped slots 401, which are arranged at predetermined positions and intervals to meet the requirements of position limiting at different positions. The shape of the arc-shaped slots 401 should match the cross-sectional shape of the position limiting column 411 to ensure that the position limiting column can be tightly inserted into the slots. The connecting ear plate 500 is designed to be sleeved on the mounting plate 400, and its lower end is open so that it can be sleeved on the mounting plate and slide along it.
[0034] At the lower end of the connecting ear plate 500, there are limit posts 411, which are located on the upper side of the mounting plate 400. Specifically, the limit posts 411 can be placed in the slide grooves vertically opened on the connecting ear plate 500. The other end of the locking screw 412 is equipped with a suitable nut or knob for manual tightening so that the limit posts 411 are tightly clamped in the arc-shaped clamping groove 401.
[0035] A locking screw 412 is provided between the limiting column 411 and the base. The screw has a sufficient length to pass through the base and the limiting column, and a nut or a similar fastening device is provided at the other end.
[0036] The locking mechanism uses the principle of mechanical limit and screw locking. Through the alignment of the arc-shaped slot and the limit column, the precise positioning of the connecting ear plate is achieved. Then, by tightening the locking screw, the limit column is tightly inserted into the arc-shaped slot, thereby ensuring the stability and position accuracy of the connecting ear plate.
[0037] The position of the connecting ear plate can be easily adjusted and fixed by simply sliding the limit column and tightening the locking screw. The tightening action of the locking screw causes the limit column to be tightly clamped into the arc-shaped slot, providing a stable limiting effect to prevent the connecting ear plate from moving or deflecting during use.
[0038] The technical means disclosed in the scheme of the present invention are not limited to the technical means disclosed in the above-mentioned implementation mode, but also include technical schemes composed of any combination of the above-mentioned technical features. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principle of the present invention, and these improvements and modifications are also regarded as the protection scope of the present invention.
Claims
1. A composite fireproof aluminum veneer support structure, wherein: The composite fireproof aluminum veneer (100) is provided with notches (101) at the four corners thereof by bending, and is characterized in that it comprises corner codes (200) correspondingly arranged around the composite fireproof aluminum veneer (100), a support plate (300) being arranged at a sharp corner of the corner code (200), the support plate (300) being used to be inserted into the notch (101), and the two side edges of the corner code (200) being in contact with and matched with the side edges of the composite fireproof aluminum veneer (100).
2. A composite fireproof aluminum veneer support structure as claimed in claim 1, characterized in that: The composite fireproof aluminum single plate (100) is a double-layer shell structure, and a barb structure (102) is provided on the inner wall surface of the double-layer shell of the composite fireproof aluminum single plate (100). When a fireproof layer is filled in the double-layer shell, the barb structure (102) is embedded in the fireproof layer.
3. A composite fireproof aluminum veneer support structure as claimed in claim 1 or 2, characterized in that: A mounting plate (400) is connected between adjacent angle brackets (200), and a connecting ear plate (500) extending outward is provided on the mounting plate (400).
4. A composite fireproof aluminum veneer support structure as claimed in claim 3, characterized in that: The lower end of the connecting ear plate (500) is slidably sleeved on the mounting plate (400) and is locked with the mounting plate (400) through a locking mechanism.
5. A composite fireproof aluminum veneer support structure as claimed in claim 4, characterized in that: The locking mechanism comprises a plurality of arc-shaped slots (401) arranged at the top end of the mounting plate (400), and a limiting column (411) slidably arranged at the lower end of the connecting ear plate (500); the limiting column (411) is located on the upper side of the mounting plate (400) and is used to align with the arc-shaped slots (401); a locking screw (412) is passed between the outer end of the limiting column (411) and a base slidably connected to the bottom end of the mounting plate (400); by tightening the locking screw (412), the limiting column (411) is inserted into the arc-shaped slot (401), thereby limiting the connecting ear plate (500).
6. The composite fireproof aluminum veneer support structure according to claim 1, characterized in that: The corner code (200) is in a triangular shape, and the interior of the corner code (200) is a hollow structure.