Gasification slag sintered perforated brick
By designing gasified slag sintered porous bricks, and adopting a specific structure and multiple protective layers, the problems of heat insulation and weight of porous bricks have been solved, achieving high-efficiency heat insulation, earthquake resistance and stability improvement, which is suitable for high-rise buildings.
Patent Information
- Application Number
- CN202520417680.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-11
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2035-03-11
AI Technical Summary
Existing porous bricks are difficult to meet the requirements of high-standard buildings in terms of thermal insulation and sound insulation, and they also have a weight burden, making them unsuitable, especially for high-rise buildings.
A porous brick sintered from gasified slag is designed, employing a structure of conical grooves, arc grooves, and arc positioning blocks, combined with an internal hollow layer and multiple protective layers, including rock wool insulation material, a mineral-reinforced polymer strengthening layer, a polystyrene foam insulation layer, and a polyurethane waterproof layer, to enhance the stability and insulation performance of the brick.
It improves the air permeability, thermal insulation and fire resistance of bricks, enhances seismic performance and structural stability, extends service life, and adapts to a wider range of application scenarios.
Smart Images

Figure CN223867517U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of perforated brick, specifically to a gasification slag sintering perforated brick. BACKGROUND
[0002] Perforated brick is a kind of building material with multiple holes in brick body, which is widely used in wall, partition, outer wall and other construction fields. By opening holes in the brick body, the mass of the brick body can be reduced, the heat insulation, sound insulation and shock resistance of the brick can be improved, and the cost can be reduced.
[0003] The existing perforated brick is limited by its raw materials and hole design in terms of heat preservation and sound insulation, and may not meet higher standards of building requirements. At the same time, although the perforated brick is lighter than the traditional solid brick, it still has a certain weight burden in some scenarios, especially for high-rise buildings and buildings that need to reduce structural burden.
[0004] Therefore, it is necessary to design a gasification slag sintering perforated brick to solve the above problems. UTILITY MODEL CONTENTS
[0005] The utility model aims at providing a gasification slag sintering perforated brick to solve the technical problems proposed in the above background.
[0006] In order to achieve the above purpose, the utility model provides the following technical scheme: a gasification slag sintering perforated brick, comprising a brick body, a plurality of tapered grooves are formed on one side of the brick body, a plurality of tapered heads are arranged on the other side of the brick body, two arc-shaped grooves and two protruding arc-shaped positioning blocks are respectively formed on the other two sides of the brick body, a plurality of equidistantly distributed square holes are formed on the outer surface of the brick body, a plurality of wave grooves are formed on the top and bottom of the brick body, two symmetrical hollow layers are formed in the interior of the brick body, the interiors of the two hollow layers are filled with thermal insulation materials, a reinforcing layer is arranged on the outer surface of the brick body, a reinforcing layer is adhered to the outer surface of the reinforcing layer, a thermal insulation layer is adhered to the outer surface of the reinforcing layer by mortar, and a waterproof layer is coated on the outer surface of the thermal insulation layer.
[0007] Preferably, the thermal insulation material is rock wool, and the two hollow layers are respectively formed between a plurality of adjacent square holes in the interior of the brick body.
[0008] Preferably, the two arc-shaped positioning blocks are matched with the two arc-shaped grooves, the plurality of tapered heads are matched with the plurality of tapered grooves, and the two arc-shaped positioning blocks and the two arc-shaped grooves are respectively located at the center positions of the two sides of the brick body.
[0009] Preferably, a plurality of glass fiber reinforced plastics are fixedly connected to the top of the plurality of wave grooves, the reinforcing layer is made of mineral reinforced polymer, and the thickness of the reinforcing layer is 1-5mm.
[0010] Preferably, the material of the heat preservation layer is polystyrene foam, and the thickness of the heat preservation layer is 10-50mm.
[0011] Preferably, the waterproof layer is a polyurethane coating, and the thickness of the waterproof layer is 1-3mm.
[0012] Compared with the prior art, the technical scheme provided by the utility model has the beneficial effects as follows:
[0013] The utility model discloses a reasonable design, and the brick body not only reduces the overall weight, but also improves the air permeability and heat preservation performance, can effectively insulate and enhance the fireproof performance. The rock wool filling material in the brick body improves the shock resistance, and has good heat insulation effect simultaneously, guarantees the energy saving performance and the comfort degree of building. Through the reasonable fast -assembling positioning and the plug -in structure of design, the brick body is more stable when splicing, and the carrying capacity and durability of the overall structure are enhanced. The design of multilayer protection layer improves the durability, ultraviolet resistance, corrosion resistance and other performances of the brick body, ensures its long -term use in the harsh environment. In addition, the enhancement of moisture -proof and waterproof function makes the brick body can adapt to more extensive use scene, and simultaneously, the practicability and service life of the brick body are improved. BRIEF DESCRIPTION OF DRAWINGS
[0014] Fig. 1 It is the structural schematic diagram of the utility model;
[0015] Fig. 2 It is the brick body structure exploded schematic view of the utility model;
[0016] Fig. 3 It is the layered structure schematic view of the utility model;
[0017] In the drawing: 1, brick body;2, square hole;3, conical groove;4, taper;5, arc slot;6, arc positioning block;7, wave groove;8, glass fiber reinforced plastic;9, hollow layer;10, heat preservation material;11, reinforcing layer;12, heat preservation layer;13, waterproof layer. DETAILED DESCRIPTION
[0018] The technical scheme in the utility model embodiment will be clearly and completely described in combination with the drawings in the utility model embodiment.
[0019] Obviously, a lot of specific details are set forth in the following description in order to provide a thorough understanding of the utility model, but the utility model can also be implemented in other ways different from the description, therefore, the utility model is not limited to the specific embodiments disclosed in the following description.
[0020] Please refer to Figs. 1-3The utility model provides a kind of gasification slag sintering porous brick, including brick body 1, multiple tapered grooves 3 are set in the side of brick body 1, and multiple tapered heads 4 are set in the other side of brick body 1, and two arc grooves 5 and the two arc positioning blocks 6 of protruding are respectively set in the other two sides of brick body 1, and multiple equidistant distribution square holes 2 are set in the outer surface of brick body 1, and multiple wave grooves 7 are set in the top and bottom of brick body 1, and two hollow layers 9 of symmetry are set in the inside of brick body 1, and the inside of two hollow layers 9 is filled with heat preservation material 10, the outer surface of brick body 1 is provided with reinforcing layer 11, and the outer surface of reinforcing layer 11 is adhered with reinforcing layer 11, and the outer surface of reinforcing layer 11 is adhered with heat preservation layer 12 by mortar, and the outer surface of heat preservation layer 12 is coated with waterproof layer 13, and the square structure of brick body 1 is set with multiple equidistant distribution square holes 2 in outer surface.These hole designs not only reduce the overall weight of brick body 1, but also increase the air permeability and heat preservation performance of brick body 1, the top and bottom of brick body 1 are respectively set with multiple wave grooves 7, for enhancing the overall structural stability of brick body, and increase friction at the connection with other brick body 1, increase the stability of connection, the outer surface of brick body 1 is designed with quick-mounting positioning, and the insertion between arc groove 5 and arc positioning block 6, multiple tapered heads 4 and tapered groove 3 is helpful to the installation and connection between multiple brick body 1 in practical application, ensure that it is stable, and form symmetrical structure, enhance the stability and carrying capacity of brick body, simultaneously, the setting of each layer of brick body also considers the heat preservation, waterproof, fireproof effect of brick body 1, so as to increase the practicability and service life of brick body 1.
[0021] In order to increase the anti-seismic performance and heat preservation effect of the brick body, the heat preservation material 10 is made of rock wool, and the two hollow layers 9 are respectively set between multiple adjacent square holes 2 in the interior of the brick body 1.
[0022] In order to facilitate the connection and positioning between multiple brick bodies, the two arc positioning blocks 6 are matched with the two arc grooves 5, and the multiple tapered heads 4 are matched with the multiple tapered grooves 3, and the two arc positioning blocks 6 and the two arc grooves 5 are respectively located at the center positions of the two sides of the brick body 1.
[0023] Further, in order to enhance the stability of the multiple wave grooves 7 after the connection of the multiple brick bodies 1, multiple glass fiber reinforced plastics 8 are fixedly connected to the top of the multiple wave grooves 7, and in order to improve the durability and environmental erosion resistance of the brick body 1, the reinforcing layer 11 is made of mineral reinforced polymer, and the thickness of the reinforcing layer 11 is 1-5 mm.
[0024] Still further, in order to improve the heat preservation effect of the brick body 1, the heat preservation layer 12 is made of polystyrene foam, and the thickness of the heat preservation layer 12 is 10-50 mm.
[0025] In order to increase the brick 1, moisture-proof, corrosion resistance and other properties, waterproof layer 13 is polyurethane coating, and the thickness of waterproof layer 13 is 1-3mm.
[0026] The preferred embodiments of the present application are described in detail above with reference to the drawings, but the present application is not limited to the specific details in the above-described embodiments, and various simple modifications can be made to the technical solutions of the present application within the technical concept of the present application, and these simple modifications all belong to the protection scope of the present application.
[0027] In addition, it should be noted that the various specific technical features described in the above specific embodiments can be combined in any appropriate manner without contradiction, and in order to avoid unnecessary repetition, the present application will not further describe various possible combination manners.
[0028] Furthermore, various different embodiments of the present application can also be combined in any manner, as long as they do not deviate from the concept of the present application, and they should also be considered as disclosed by the present application.
Claims
1. A porous brick made from gasified slag sintering, comprising a brick body (1), characterized in that: The brick body (1) has multiple conical grooves (3) on one side and multiple conical heads (4) on the other side. The brick body (1) has two arc-shaped grooves (5) and two protruding arc-shaped positioning blocks (6) on the other two sides. The outer surface of the brick body (1) has multiple equally spaced square holes (2). The top and bottom of the brick body (1) have multiple wave grooves (7). The brick body (1) has two symmetrical hollow layers (9) inside. The hollow layers (9) are filled with insulation material (10). The outer surface of the brick body (1) has a reinforcing layer (11). The outer surface of the reinforcing layer (11) is bonded with a reinforcing layer (11). The outer surface of the reinforcing layer (11) is bonded with an insulation layer (12) by mortar. The outer surface of the insulation layer (12) is coated with a waterproof layer (13).
2. The porous brick made from gasified slag sintering according to claim 1, characterized in that: The insulation material (10) is made of rock wool, and the two hollow layers (9) are respectively opened between multiple adjacent square holes (2) inside the brick body (1).
3. The porous brick made from gasified slag sintering according to claim 1, characterized in that: The two arc-shaped positioning blocks (6) are matched with the two arc-shaped grooves (5), and the multiple cones (4) are matched with the multiple cone grooves (3), and the two arc-shaped positioning blocks (6) and the two arc-shaped grooves (5) are respectively located at the center positions on both sides of the brick body (1).
4. The porous brick made from gasified slag sintering according to claim 1, characterized in that: Multiple glass fiber reinforced plastics (8) are fixed to the top of each of the multiple wave grooves (7), and the reinforcing layer (11) is made of mineral reinforced polymer and has a thickness of 1-5 mm.
5. The porous brick made from gasified slag sintering according to claim 1, characterized in that: The insulation layer (12) is made of polystyrene foam, and the thickness of the insulation layer (12) is 10-50mm.
6. The porous brick made from gasified slag sintering according to claim 1, characterized in that: The waterproof layer (13) is a polyurethane coating, and the thickness of the waterproof layer (13) is 1-3 mm.