Anti-aging marble pillar art brick with long service life
By designing structural bricks and decorative surfaces to be spliced together in Roman column art bricks, a hollow structure and air circulation channels are formed. Expansion joints and reinforcing bars are set up to solve the aging problem of bricks under temperature changes and improve their anti-aging and heat resistance performance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- NANAN KUODA BUILDING MATERIALS CO LTD
- Filing Date
- 2025-07-07
- Publication Date
- 2026-05-19
AI Technical Summary
Existing Roman column art bricks lack the ability to adapt to temperature changes, are prone to aging, and cause cracking and peeling of the bricks due to thermal expansion and contraction stress, thus reducing their service life.
The wall structure is formed by splicing structural bricks and decorative surfaces. Ventilation openings are set inside the decorative surfaces to form a hollow structure. Multiple air circulation channels are constructed by combining ventilation openings, hollow gaps, and structural holes. Expansion joints are set to absorb displacement space due to thermal expansion or contraction. Connecting blocks and reinforcing bars provide support.
It effectively disperses heat, prevents the accumulation of thermal stress, improves anti-aging properties, extends service life, and prevents brick deformation or damage.
Smart Images

Figure CN224259703U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of Roman column art bricks, specifically a Roman column art brick with anti-aging properties and a long lifespan. Background Technology
[0002] Roman column art bricks are based on the classic column styles in ancient Roman architecture. Through relief carving, details such as the grooves of the column shaft, the volutes of the capital, or the acanthus leaf pattern are reproduced on the brick surface.
[0003] Chinese patent (publication number: CN203238891U) discloses a novel ceramic tile for balconies, comprising a dustproof layer, a glaze layer, a basalt heat insulation layer, a sound insulation layer, a ceramic tile layer, and a body layer. The glaze layer is disposed beneath the dustproof layer, the basalt heat insulation layer beneath the glaze layer, the sound insulation layer beneath the basalt heat insulation layer, the ceramic tile layer beneath the sound insulation layer, and the body layer beneath the ceramic tile layer. This invention effectively prevents dust accumulation, provides good heat insulation and sound insulation, and allows residents to exercise on the balcony without disturbing downstairs neighbors, bringing convenience and comfort to daily life.
[0004] While existing technologies can overcome the shortcomings mentioned above, other problems still exist in their use: Art bricks are usually directly exposed to the outdoor environment, subject to repeated temperature changes and wind and rain erosion. Most art bricks on the market currently adopt an integrated structural design, which lacks sufficient deformation adaptability, making them prone to aging in temperature environments. For example, at high temperatures, they are prone to thermal expansion and contraction stress, which can cause quality problems such as brick cracking and peeling, reducing the service life of the bricks. Utility Model Content
[0005] The purpose of this invention is to provide an anti-aging and long-life Roman column art brick to solve the problem mentioned in the background art, which is that the brick lacks sufficient deformation adaptability, making it prone to aging under temperature conditions. For example, it is easy to generate thermal expansion and contraction stress at high temperatures, which leads to quality problems such as brick cracking and peeling, and reduces the service life of the brick.
[0006] To achieve the above objectives, this utility model provides the following technical solution: an anti-aging and long-life Roman column art brick, comprising an art brick body, wherein the art brick bodies are spliced together to form an overall wall structure, and the art brick body is formed by splicing together structural bricks and decorative surfaces;
[0007] The decorative surfaces are evenly distributed on one side of the structural brick. The decorative surfaces have ventilation openings inside and form a hollow structure through the ventilation openings inside. Connecting blocks are fixedly connected to the four corners of the decorative surfaces on the side closest to the structural brick, and decorative patterns are provided on the side of the decorative surfaces away from the structural brick.
[0008] Preferably, the structural brick is provided with reinforcing ribs inside, and the connecting block and the side of the structural brick are connected to each other, and the reinforcing ribs inside the structural brick extend into the connecting block.
[0009] Preferably, adjacent decorative surfaces do not contact each other, and a first expansion joint is provided between every two adjacent decorative surfaces. The connecting block is supported between the decorative surface and the structural brick, and a space gap is formed between the structural brick and the decorative surface.
[0010] Preferably, the structural brick has an upper protrusion at the top and a lower groove at the bottom that matches the upper protrusion, and the upper and lower sides of the structural brick are joined together by the upper protrusion and the lower groove at the top.
[0011] Preferably, one end of the structural brick is provided with an end protrusion, and the end of the structural brick away from the end protrusion is provided with an end groove that matches the end protrusion. The left and right ends of the structural brick are spliced together by the end protrusion and the end groove.
[0012] Preferably, the structural brick and the decorative surface are provided with equidistant second expansion joints, and the position of the second expansion joint corresponds to the first expansion joint between the two decorative surfaces.
[0013] Preferably, the structural brick has structural holes that are perpendicular to the decorative surface, and the structural holes form a hollow structure within the overall structure formed after the structural bricks are spliced together.
[0014] Compared with the prior art, the beneficial effects of this utility model are:
[0015] This type of anti-aging, long-life Roman column art brick constructs multiple air circulation channels through ventilation openings, hollow gaps, and structural holes. The ventilation openings inside the decorative surface allow external air to flow naturally into its hollow structure, forming preliminary convection and heat dissipation. The hollow gaps formed by the connecting blocks create a continuous heat-insulating air layer between the decorative surface and the structural bricks. Utilizing the low thermal conductivity of air, it can effectively cope with high-temperature environments, preventing heat accumulation that could lead to damage, deformation, or fading of the bricks or surface.
[0016] The first expansion joint is located between adjacent decorative surfaces, providing each individual decorative surface unit with the lateral displacement space required for thermal expansion or thermal contraction. The second expansion joint is used to absorb relative displacement at the interface between the structural bricks and the decorative surface that may occur due to material or temperature differences, preventing cracking or failure of the connection points due to shear stress.
[0017] Furthermore, through structural improvements, the aging effects caused by high temperatures can be greatly reduced, the overall anti-aging effect can be improved, and the overall service life can be effectively extended. Attached Figure Description
[0018] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0019] Figure 2 This is a schematic diagram of the hole structure of this utility model;
[0020] Figure 3 This is a schematic diagram of the upper protrusion structure of this utility model;
[0021] Figure 4 This is a schematic diagram of the end protrusion structure of this utility model;
[0022] Figure 5 This is a schematic diagram of the end groove structure of this utility model;
[0023] Figure 6 This is a schematic diagram of the connecting block structure of this utility model.
[0024] In the diagram: 1. Art brick body; 2. Structural brick; 3. Decorative surface; 4. Ventilation opening; 5. Connecting block; 6. First expansion joint; 7. Middle space gap; 8. Upper protrusion; 9. Lower groove; 10. End protrusion; 11. End groove; 12. Second expansion joint; 13. Structural hole. Detailed Implementation
[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0026] Example 1: Please refer to Figure 1 - Figure 6This utility model provides the following technical solution: an anti-aging, long-life Roman column art brick, comprising an art brick body 1, which is spliced together to form an integral wall structure. The art brick body 1 is formed by splicing structural bricks 2 and decorative surfaces 3. The decorative surfaces 3 are evenly distributed on one side of the structural bricks 2, and the decorative surfaces 3 are provided with ventilation openings 4 inside, forming a hollow structure through the ventilation openings 4. Connecting blocks 5 are fixedly connected to the four corners of the decorative surfaces 3 near the structural bricks 2, and decorative patterns are provided on the side of the decorative surfaces 3 away from the structural bricks 2. The structural bricks 2 are provided with reinforcing ribs inside, and the connecting blocks 5 are connected to the sides of the structural bricks 2, with the reinforcing ribs inside the structural bricks 2 extending into the connecting blocks 5. Adjacent decorative surfaces 3 do not contact each other, and a first expansion joint 6 is provided between every two adjacent decorative surfaces 3. The connecting blocks 5 are supported by the decorative surfaces 3 and the structural bricks 2. A central gap 7 is formed between the bricks 2 and between the structural bricks 2 and the decorative surface 3; the top of the structural brick 2 is provided with an upper protrusion 8, and the bottom of the structural brick 2 is provided with a lower groove 9 that matches the upper protrusion 8, and the upper and lower sides of the structural brick 2 are spliced together by the upper protrusion 8 and the lower groove 9 on its top; one end of the structural brick 2 is provided with an end protrusion 10, and the end of the structural brick 2 away from the end protrusion 10 is provided with an end groove 11 that matches the end protrusion 10, and the left and right ends of the structural brick 2 are spliced together by the end protrusion 10 and the end groove 11; a second expansion joint 12 is provided at equal intervals at the connection between the structural brick 2 and the decorative surface 3, and the position of the second expansion joint 12 corresponds to the first expansion joint 6 between the two decorative surfaces 3; the interior of the structural brick 2 is provided with structural holes 13 that are perpendicular to the decorative surface 3, and the structural holes 13 form a hollow structure in the overall structure formed after the structural bricks 2 are spliced together.
[0027] The main body 1 of the art brick serves as the basic unit, and the overall wall structure is formed by the precise splicing of structural bricks 2 and decorative surface 3. Structural bricks 2 bear the main load-bearing and support functions, while decorative surface 3 provides a beautiful wood grain finish and integrates ventilation and heat insulation properties. In high-temperature environments, direct sunlight can cause the surface temperature to rise sharply. This design effectively disperses heat through the internal hollow structure, expansion joint system and air circulation channels, preventing deformation or cracking caused by the accumulation of thermal stress.
[0028] The decorative surface 3 is evenly distributed on one side of the structural brick 2 to ensure uniform wall coverage. At the same time, it forms a hollow structure through the internal ventilation openings 4. The ventilation openings 4 serve as the inlet and outlet for air circulation, allowing external airflow to naturally enter the interior of the decorative surface 3 and form a convection circulation. When the temperature rises, hot air rises and is discharged through the ventilation openings 4, while cooler air is replenished from the bottom, continuously reducing the surface temperature of the decorative surface 3, improving its heat resistance, and preventing the wood grain veneer from fading or being damaged due to overheating.
[0029] The connection between the decorative surface 3 and the structural brick 2 is achieved through the connecting block 5. The connecting block 5 is fixed at the four corners of the decorative surface 3 near the structural brick 2, forming a rigid support point. The reinforcing ribs inside the structural brick 2 extend into the connecting block 5, thereby enhancing the overall tensile strength. The reinforcing ribs penetrate the structural brick 2 and are embedded in the connecting block 5, providing additional support under thermal expansion or external loads to prevent the decorative surface 3 from falling off or shifting.
[0030] The decorative surface 3 has decorative patterns on the side away from the structural brick 2, simulating the visual effect of natural wood. Adjacent decorative surfaces 3 do not contact each other, and a first expansion joint 6 is provided between every two adjacent decorative surfaces 3. The first expansion joint 6 serves as a reserved gap, allowing the decorative surface 3 to expand or contract freely when the temperature changes. For example, in the high temperature of summer, the material of the decorative surface 3 expands, and the width of the first expansion joint 6 decreases to absorb displacement; while in the low temperature of winter, the gap increases to avoid cracks caused by stress concentration, and the overall structure of the wall maintains its integrity during thermal cycling.
[0031] The connecting block 5 is supported between the decorative surface 3 and the structural brick 2, forming a stable gap, making the central space 7 a continuous air layer. This air layer acts as a thermal insulation barrier, significantly reducing heat conduction efficiency. When heat is introduced from the decorative surface 3, the low thermal conductivity of air prevents heat from being directly transferred to the structural brick 2, thereby protecting the internal structure from high temperatures.
[0032] The central gap 7 works in conjunction with the vent 4. After airflow enters the hollow area of the decorative surface 3 through the vent 4, some air flows into the central gap 7, forming secondary convection for further heat dissipation. Equidistant second expansion joints 12 are provided at the connection between the structural brick 2 and the decorative surface 3, corresponding to the first expansion joint 6 between the two decorative surfaces 3. The second expansion joint 12 specifically handles the thermal displacement of the interface between the structural brick 2 and the decorative surface 3. Under temperature fluctuations, the structural brick 2 and the decorative surface 3 may expand at different rates. The second expansion joint 12 provides a buffer space to prevent shear stress at the connection point. The first expansion joint 6 and the second expansion joint 12 cover the entire wall surface, ensuring uniform absorption of thermal expansion and avoiding localized damage.
[0033] The structural brick 2 has an upper protrusion 8 on the top and a lower groove 9 at the bottom that matches the upper protrusion 8. When splicing in the vertical direction, the upper protrusion 8 is embedded in the lower groove 9 of the adjacent structural brick 2 to form an interlocking connection. One end of the structural brick 2 has an end protrusion 10 and the other end has an end groove 11 that matches the end protrusion 10. When splicing in the horizontal direction, the end protrusion 10 is inserted into the end groove 11 to ensure that the bricks are tightly aligned and to prevent misalignment.
[0034] The structural brick 2 also has structural holes 13 distributed perpendicularly to the decorative surface 3. These structural holes 13 serve as internal channels in a single structural brick 2, and when multiple structural bricks 2 are spliced together, the structural holes 13 form a continuous hollow network within the overall structure. This hollow structure reduces the weight of the main body 1 of the art brick, facilitates installation, and promotes air circulation.
[0035] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "connected" or "linked" should be interpreted broadly. For example, it can refer to a fixed connection, a detachable connection, or an integral connection; it can refer to a mechanical connection or an electrical connection; it can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0036] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. An anti-aging and long-life Roman column art brick, comprising an art brick body (1), wherein the art brick bodies (1) are spliced together to form an overall wall structure, and the art brick body (1) is formed by splicing together structural bricks (2) and decorative surfaces (3); Its features are: The decorative surfaces (3) are evenly distributed on one side of the structural brick (2). The decorative surfaces (3) are provided with ventilation openings (4) inside, and the decorative surfaces (3) form a hollow structure through the ventilation openings (4) inside. The four corners of the decorative surfaces (3) near the structural brick (2) are fixedly connected with connecting blocks (5), and the decorative surfaces (3) away from the structural brick (2) are provided with decorative patterns.
2. The anti-aging, long-life Roman column art brick according to claim 1, characterized in that: The structural brick (2) is provided with reinforcing ribs inside, and the connecting block (5) and the side of the structural brick (2) are connected to each other, and the reinforcing ribs inside the structural brick (2) extend into the connecting block (5).
3. The anti-aging, long-life Roman column art brick according to claim 2, characterized in that: The adjacent decorative surfaces (3) do not contact each other, and a first expansion joint (6) is provided between every two adjacent decorative surfaces (3). The connecting block (5) is supported between the decorative surface (3) and the structural brick (2), and a mid-space gap (7) is formed between the structural brick (2) and the decorative surface (3).
4. The anti-aging, long-life Roman column art brick according to claim 3, characterized in that: The top of the structural brick (2) is provided with an upper protrusion (8), and the bottom of the structural brick (2) is provided with a lower groove (9) that matches the upper protrusion (8). The upper and lower sides of the structural brick (2) are spliced together by the upper protrusion (8) and the lower groove (9) on its top.
5. The anti-aging, long-life Roman column art brick according to claim 4, characterized in that: One end of the structural brick (2) is provided with an end protrusion (10), and the end of the structural brick (2) away from the end protrusion (10) is provided with an end groove (11) that matches the end protrusion (10). The left and right ends of the structural brick (2) are spliced together by the end protrusion (10) and the end groove (11).
6. The anti-aging, long-life Roman column art brick according to claim 5, characterized in that: The structural brick (2) and the decorative surface (3) are provided with equidistant second expansion joints (12), and the position of the second expansion joints (12) corresponds to the first expansion joint (6) between the two decorative surfaces (3).
7. The anti-aging, long-life Roman column art brick according to claim 6, characterized in that: The structural brick (2) has structural holes (13) that are perpendicular to the decorative surface (3) inside, and the structural holes (13) form a hollow structure in the overall structure formed after the structural bricks (2) are spliced together.