Aluminum alloy non-heat-insulation fireproof partition
Through the combined design of steel lining plate and aluminum alloy isolation frame, the problem of fire-proof glass partitions being difficult to replace quickly after accidental damage is solved, and simple and fast maintenance and flexible assembly are achieved, reducing economic losses.
Patent Information
- Application Number
- CN202422021887.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-20
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-08-20
AI Technical Summary
Existing fire-resistant glass partitions are prone to scratches or fragmentation after accidental collisions, which leads to difficulty in replacement and waste of overall replacement, lacking simple and fast maintenance and assembly flexibility.
The design of steel lining plate and aluminum alloy isolation frame is adopted, and the fire-proof glass plate is separately fixed through L-shaped grooves and positioning screws. Combined with the rapid removal mechanism of the L-shaped panel and the sealing ring cover, it allows the broken glass plate to be replaced separately.
It realizes rapid replacement of fire-resistant glass plates, avoids waste of overall partitions, reduces economic losses, and improves maintenance efficiency and assembly flexibility.
Smart Images

Figure CN223074978U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of fireproof partitions, in particular to an aluminum alloy non-insulated fireproof partition. Background Technique
[0002] Building fire protection has always been an important topic in building safety. Glass fireproof partitions can balance the building decoration effect and building fire protection in terms of building fire compartments and fireproof partitions, and are widely used in corridors of office buildings, fire corridors, fire corridors in hospitals, fireproof compartments of public buildings and residential buildings, etc.; with the continuous improvement of people's fire protection awareness, the requirements for building fire protection performance are becoming increasingly urgent. Fireproof partitions for corridors are mostly not designed with windows and mostly use multi-layer fireproof glass design, which can improve the sound insulation effect. The fireproof glass is mostly embedded and fixed inside the aluminum alloy frame and installed in an integrated structure. Since the flow of people on both sides of the corridor is large, during the long-term installation process, it is easily accidentally collided, resulting in scratches or partial fragmentation of the outer fireproof glass. The integrated structure makes it more troublesome to replace the fireproof glass, and it cannot be perfectly embedded. Mostly, expansion glue is filled for fixation, which affects the aesthetics, or the entire partition is directly replaced, resulting in greater waste. There is a lack of a partition device that is simple and fast, has high repair efficiency, flexible assembly, and can replace components corresponding to the loss. Content of the Utility Model
[0003] The purpose of the utility model is to provide an aluminum alloy non-insulated fireproof partition, which can correspondingly remove the aluminum alloy isolation frame on its side and replace the damaged fireproof glass plate when the fireproof glass plate is accidentally damaged, without replacing the entire fireproof partition window, and the replacement method is simple and fast, with high repair efficiency, flexible assembly, and can replace components corresponding to the loss, avoiding waste and reducing economic losses.
[0004] To achieve the above object, an aluminum alloy non-insulating fire partition is provided, including a steel lining plate. Fireproof glass plates are symmetrically fitted at the centers of the front and rear sides of the steel lining plate. Aluminum alloy isolation frames are symmetrically fitted on the opposite sides of the fireproof glass plates. The opposite sides of the aluminum alloy isolation frames are all fitted and sealed with the steel lining plate. L-shaped grooves are symmetrically provided in a cross shape on the opposite sides of the aluminum alloy isolation frames. L-shaped plates are fitted and embedded in the opposite sides of the L-shaped grooves. A plurality of annular grooves are vertically penetrated through the L-shaped plates. The annular grooves are combined in pairs and are opened near the outer sides of the L-shaped plates. Positioning screws are threadedly connected in the annular grooves. Sealing ring covers are fixedly connected to the opposite ends of the positioning screws. The opposite sides of the sealing ring covers are embedded in the inner walls of the L-shaped plates and are slidably engaged with them. A plurality of screw holes are symmetrically provided in a cross shape on the opposite sides of the steel lining plate. The screw holes are arranged on the same central axis as the positioning screws. The opposite ends of the positioning screws correspondingly pass through the L-shaped grooves and extend into the screw holes to be threadedly connected and fixed with the steel lining plate. By separately clamping and fixing the double-layer fireproof glass plates with aluminum alloy isolation frames on the front and rear sides of the steel lining plate, and then setting L-shaped plates to quickly thread-fix the aluminum alloy isolation frames and the steel lining plate from the four corners, when the fireproof glass plate is accidentally damaged, the aluminum alloy isolation frame on its side can be correspondingly removed and the damaged fireproof glass plate can be replaced, without replacing the entire fire partition window. Moreover, the replacement method is simple and fast, the maintenance is efficient, the assembly is flexible, and the components can be replaced according to the loss, avoiding waste and reducing economic losses.
[0005] According to the aluminum alloy non-insulating fire partition described above, hexagonal grooves are provided at the centers of the opposite sides of the sealing ring covers. Convex hexagonal wrenches are rotatably fitted in the hexagonal grooves. It is convenient for operators to quickly disassemble the positioning screws with the corresponding wrenches.
[0006] According to the aluminum alloy non-insulating fire partition described above, anti-slip rubber pads are fixedly connected to the opposite sides of the L-shaped plates. The anti-slip rubber pads are arranged along the inner sides of the L-shaped plates. The opposite sides of the anti-slip rubber pads pass through the L-shaped grooves and are in extrusion fit with the fireproof glass plates. To perform a certain adhesion positioning on the fireproof glass plates.
[0007] According to the aluminum alloy non-insulating fire partition described above, extrusion pad rings are attached to the opposite sides of the fireproof glass plates. The opposite sides of the extrusion pad rings are fixedly connected to the steel lining plate. To give the fireproof glass plates an elastic pressure to prevent them from shaking slightly.
[0008] According to the described non-insulated fireproof aluminum alloy partition, fixed rods are provided on one side of the upper and lower and left and right adjacent sides of the L-shaped panel, and both ends of the fixed rods are correspondingly inserted into the inner wall of the L-shaped panel and are slidably matched with it. Ensure that the opposite sides of the aluminum alloy isolation frame can be fully attached to the fireproof glass panel.
[0009] According to the described non-insulated fireproof aluminum alloy partition, a rectangular shell sleeve is wrapped around the outer sides of the steel lining plate and the aluminum alloy isolation frame. The rectangular shell sleeve is fixedly connected to the steel lining plate, and the rectangular shell sleeve is in sliding fit with the aluminum alloy isolation frame in a front-back fitting manner. Facilitate the accurate fitting of the aluminum alloy isolation frame and the steel lining plate.
[0010] According to the described non-insulated fireproof aluminum alloy partition, a sealing cotton sleeve is fixedly connected to the middle of the outer side of the rectangular shell sleeve, and the outer side of the sealing cotton sleeve is in extrusion fit and sealed with the assembly surface. During the erection of the partition, it can be elastically compressed and sealed with adjacent partitions or walls, ensuring fireproof sealing performance.
[0011] Compared with the prior art, the beneficial effects of the present utility model are:
[0012] In the present utility model, by separately clamping and fixing the double-layer fireproof glass panels with aluminum alloy isolation frames on the front and back sides of the steel lining plate, and then setting L-shaped panels to quickly fix the aluminum alloy isolation frame and the steel lining plate with screws from the four corners. When the fireproof glass panel is accidentally damaged, the aluminum alloy isolation frame on its side can be correspondingly removed and the damaged fireproof glass panel can be replaced. There is no need to replace the entire fireproof partition window, and the replacement method is simple and fast, the maintenance is efficient, the assembly is flexible, and the components can be replaced according to the loss, avoiding waste and reducing economic losses.
[0013] The additional aspects and advantages of the present utility model will be partially given in the following description, partially will become obvious from the following description, or will be understood through the practice of the present utility model. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] The following further illustrates the present utility model in conjunction with the drawings and embodiments;
[0015] Figure 1 Is an exploded view of a non-insulated fireproof aluminum alloy partition of the present utility model;
[0016] Figure 2 Is a schematic diagram of the connection structure of the steel lining plate and the aluminum alloy isolation frame in a non-insulated fireproof aluminum alloy partition of the present utility model;
[0017] Figure 3 Is a schematic diagram of the connection structure of the L-shaped panel in a non-insulated fireproof aluminum alloy partition of the present utility model;
[0018] Figure 4 This is the overall schematic diagram of a non-insulated fireproof partition made of aluminum alloy according to the present utility model.
[0019] In the figure: 1, steel lining plate; 2, fireproof glass plate; 3, aluminum alloy isolation frame; 4, L-shaped groove; 5, L-shaped panel; 6, annular groove; 7, positioning screw; 8, sealing ring cover; 9, screw hole; 10, hexagonal groove; 11, anti-slip rubber pad; 12, extrusion gasket ring; 13, fixing rod; 14, rectangular shell sleeve; 15, sealing cotton sleeve. Specific embodiments
[0020] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present utility model.
[0021] Please refer to Figures 1-4 , the present utility model provides a technical solution: a non-insulated fireproof partition made of aluminum alloy, including a steel lining plate 1. Fireproof glass plates 2 are symmetrically embedded at the centers of the front and rear sides of the steel lining plate 1. Aluminum alloy isolation frames 3 are symmetrically embedded on the opposite sides of the fireproof glass plates 2. The opposite sides of the aluminum alloy isolation frames 3 are all attached and sealed to the steel lining plate 1. L-shaped grooves 4 are symmetrically arranged in a cross shape on the opposite sides of the aluminum alloy isolation frames 3. L-shaped panels 5 are respectively and fittingly embedded on the opposite front and rear sides of the L-shaped grooves 4. A plurality of annular grooves 6 are arranged through the front and rear of the L-shaped panels 5. The annular grooves 6 are combined in pairs and are opened near the outer sides of the L-shaped panels 5. Positioning screws 7 are threadedly connected in the annular grooves 6. Sealing ring covers 8 are fixedly connected to the opposite front and rear ends of the positioning screws 7. The opposite front and rear sides of the sealing ring covers 8 are respectively embedded in the inner walls of the L-shaped panels 5 and are slidably matched with them front and rear. Hexagonal grooves 10 are arranged at the centers of the opposite front and rear sides of the sealing ring covers 8. Convex hexagonal wrenches are rotationally matched in the hexagonal grooves 10. A plurality of screw holes 9 are symmetrically arranged in a cross shape on the opposite front and rear sides of the steel lining plate 1. The screw holes 9 and the positioning screws 7 are arranged on the same central axis. The opposite front and rear ends of the positioning screws 7 respectively pass through the L-shaped grooves 4 and extend into the screw holes 9 to be threadedly connected and fixed to the steel lining plate 1. The replacement method is simple and fast, the maintenance is efficient, the assembly is flexible, the components can be replaced correspondingly according to the loss, waste is avoided, and the economic loss is reduced.
[0022] Anti-slip rubber pads 11 are fixedly connected to both the front and rear opposite sides of the L-shaped panel 5. The anti-slip rubber pads 11 are arranged along the inner sides of the L-shaped panel 5 in a fitting manner. The front and rear opposite sides of the anti-slip rubber pads 11 pass through the L-shaped slots 4 and are in pressing fit with the fireproof glass panels 2. Pressing pad rings 12 are attached to the opposite sides of the fireproof glass panels 2. The opposite sides of the pressing pad rings 12 are fixedly connected to the steel inner lining plates 1, which performs front pressing adhesion and positioning on the fireproof glass panels to ensure their stability during installation.
[0023] A rectangular shell sleeve 14 is wrapped around the outer sides of the steel inner lining plate 1 and the aluminum alloy isolation frame 3. The rectangular shell sleeve 14 is fixedly connected to the steel inner lining plate 1. The rectangular shell sleeve 14 is in sliding fit with the aluminum alloy isolation frame 3 in a front and rear fitting manner. A sealing cotton sleeve 15 is fixedly connected to the middle of the outer side of the rectangular shell sleeve 14. The outer side of the sealing cotton sleeve 15 is in pressing fit and sealing with the assembly surface, which performs sealing docking during the overall outer side combination installation of the steel inner lining plate and the aluminum alloy isolation frame.
[0024] Solidifying rods 13 are arranged on the upper, lower, left, and right adjacent sides of the L-shaped panel 5. Both ends of the solidifying rods 13 are correspondingly inserted into the inner walls of the L-shaped panel 5 and are in sliding fit with it, and the solidifying rods are used to straighten and reinforce the four sides of the aluminum alloy isolation frame.
[0025] Working principle: In this utility model, aluminum alloy isolation frames 3 are separately provided on the front and rear sides of the steel inner lining plate 1 to separately clamp and fix the double-layer fireproof glass panels 2. Then, L-shaped panels 5 are set to complete the quick threaded fixation of the aluminum alloy isolation frames 3 and the steel inner lining plate 1 from the four corners. When the fireproof glass panels 2 are accidentally damaged, the aluminum alloy isolation frames 3 on their sides can be correspondingly removed and the damaged fireproof glass panels 2 can be replaced. There is no need to replace the entire fireproof partition window, and the replacement method is simple and fast, the maintenance is efficient, the assembly is flexible, the components can be replaced according to the loss, waste can be avoided, and the economic loss can be reduced.
[0026] The above has described the embodiments of the present utility model in detail with reference to the accompanying drawings. However, the present utility model is not limited to the above embodiments. Within the scope of knowledge possessed by those of ordinary skill in the art to which it pertains, various changes can also be made without departing from the gist of the present utility model.
Claims
1. An aluminum alloy non-insulated fire partition, comprising a steel inner lining plate (1), characterized in that, On the front and back sides of the center of the steel inner lining plate (1), fireproof glass plates (2) are symmetrically fitted. On the opposite sides of the fireproof glass plates (2), aluminum alloy isolation frames (3) are symmetrically fitted. On the opposite sides of the aluminum alloy isolation frames (3), both are in close contact and sealed with the steel inner lining plate (1). On the opposite sides of the aluminum alloy isolation frames (3), L-shaped grooves (4) are provided in a cross symmetry. On the front and back opposite sides of the L-shaped grooves (4), L-shaped plates (5) are respectively fitted. Through the front and back of the L-shaped plates (5), a number of annular grooves (6) are provided. The annular grooves (6) are combined in pairs and are opened close to the outer side edges of the L-shaped plates (5). In the annular grooves (6), positioning screw rods (7) are threadedly connected. On the front and back opposite ends of the positioning screw rods (7), sealing ring covers (8) are fixedly connected. On the front and back opposite sides of the sealing ring covers (8), both are embedded in the inner walls of the L-shaped plates (5) and are in sliding fit with them. On the front and back opposite sides of the steel inner lining plate (1), a number of screw holes (9) are provided in a cross symmetry. The screw holes (9) and the positioning screw rods (7) are arranged on the same central axis. On the front and back opposite ends of the positioning screw rods (7), they respectively pass through the L-shaped grooves (4) and extend into the screw holes (9) to be threadedly connected and fixed with the steel inner lining plate (1).
2. The aluminum alloy non-insulated fire partition according to claim 1, characterized in that: On the center of the front and back opposite sides of the sealing ring covers (8), hexagonal grooves (10) are provided. In the hexagonal grooves (10), convex hexagonal wrenches are rotatably fitted.
3. The aluminum alloy non-insulating fire partition according to claim 1, characterized in that: On the front and back opposite sides of the L-shaped plates (5), anti-slip rubber pads (11) are fixedly connected. The anti-slip rubber pads (11) are arranged close to the inner side edges of the L-shaped plates (5). On the front and back opposite sides of the anti-slip rubber pads (11), they respectively pass through the L-shaped grooves (4) and are in extrusion contact with the fireproof glass plates (2).
4. The aluminum alloy non-insulated fire partition according to claim 1, wherein: On the opposite sides of the fireproof glass plates (2), extrusion pad rings (12) are in close contact. On the opposite sides of the extrusion pad rings (12), both are fixedly connected with the steel inner lining plate (1).
5. The aluminum alloy non-insulated fire partition according to claim 1, characterized in that: On the upper, lower, left and right adjacent sides of the L-shaped plates (5), fixing rods (13) are arranged. The two ends of the fixing rods (13) are respectively inserted into the inner walls of the L-shaped plates (5) and are in sliding fit with them.
6. The non-insulated fire partition made of aluminum alloy according to claim 1, characterized in that: On the outer sides of the steel inner lining plate (1) and the aluminum alloy isolation frames (3), a rectangular shell sleeve (14) is wrapped around. The rectangular shell sleeve (14) is fixedly connected with the steel inner lining plate (1). The rectangular shell sleeve (14) is in sliding fit with the aluminum alloy isolation frames (3) in a front and back close contact manner.
7. The aluminum alloy non-insulated fire partition according to claim 6, characterized in that: In the middle of the outer side of the rectangular shell sleeve (14), a sealing cotton sleeve (15) is fixedly connected. The outer side of the sealing cotton sleeve (15) is in extrusion contact and sealed with the assembly surface.