Green low-carbon renewable concrete block structure
By arranging an insulation filling layer and reinforcing bars inside the concrete block and using a biodegradable waterproof layer on the outside, the problems of high energy consumption and resource scarcity of traditional concrete blocks are solved, thus meeting the application requirements and improving the durability of high-rise buildings.
Patent Information
- Application Number
- CN202520868791.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-06
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2035-05-06
AI Technical Summary
Traditional concrete block production is energy-intensive and emits large amounts of greenhouse gases. Natural aggregate resources are scarce, and existing green concrete blocks are insufficient in terms of strength and durability, failing to meet the needs of high-rise buildings.
The design incorporates an internal insulation layer and reinforcing ribs, an external biodegradable waterproof layer, and breathable pores and connecting structures to enhance the mechanical strength and waterproof performance of the concrete blocks, reducing damage caused by temperature changes and moisture erosion.
It improves the mechanical strength and durability of concrete blocks, broadens the application range, reduces maintenance costs, and reduces resource consumption and environmental impact.
Smart Images

Figure CN223824328U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to concrete block technical field especially relates to a kind of green low-carbon renewable concrete block structure. BACKGROUND
[0002] Under the current vigorous development situation of construction industry, as the application is extremely widespread basic building material, its production and use to environment and resource influence cannot be underestimated. The production of traditional concrete block is heavily dependent on sandstone and other natural aggregates, and the energy consumption of cement firing process is huge, and a large amount of greenhouse gas is discharged. According to relevant data, the carbon dioxide emission generated by cement production accounts for 5%-8% of the total global emissions, which has caused heavy burden to the ecological environment. At the same time, natural aggregate resources are increasingly scarce with large-scale exploitation, further exacerbating the resource crisis.
[0003] In recent years, although green concrete block as a kind of sustainable development solution gradually rises, but the existing product still has many shortcomings in structure design and function realization. Although some green concrete blocks use some alternative materials, but the strength is difficult to compare with traditional concrete blocks, and cannot meet the high-rise building and other engineering projects with high strength requirements, in terms of durability, some products are prone to cracks, peeling and other problems in long-term use due to material selection or structural design defects, which shortens the service life and increases the maintenance cost. For this reason, we propose a kind of green low-carbon renewable concrete block structure. SUMMARY
[0004] The utility model aims at solving the shortcomings in the prior art, and proposes a kind of green low-carbon renewable concrete block structure.
[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme:
[0006] A kind of green low-carbon renewable concrete block structure, including concrete block mechanism, the concrete block mechanism includes concrete block body, the concrete block body is filled with heat preservation filling layer and reinforcing rib, the outside of the concrete block body is equipped with waterproof layer, the waterproof layer is fixed with fixed plate, the surface of the fixed plate is distributed with air hole, the number of the air hole is several groups, the side of the concrete block mechanism is fixed with connecting frame, the side of the connecting frame is provided with connecting slot and fixed block, the connecting slot and fixed block are used to connect and fix with adjacent concrete block mechanism.
[0007] Preferably, the heat preservation filling layer is uniformly distributed in the concrete block body, and the heat preservation filling layer improves the heat preservation performance of the concrete block.
[0008] Preferably, the reinforcing ribs are symmetrically distributed inside the concrete block, and the reinforcing ribs are used to enhance the mechanical strength of the concrete block.
[0009] Preferably, the waterproof layer is a degradable waterproof material coating, and the waterproof layer tightly covers the outer surface of the concrete block to effectively prevent water from eroding the concrete block.
[0010] Preferably, the connecting groove is adapted in shape and size to the fixing block, and the connecting groove and the fixing block are used to ensure that the adjacent concrete block structure is tightly and stably connected.
[0011] Compared with the prior art, the beneficial effects of the present application are:
[0012] The present application effectively enhances the mechanical strength of the concrete block through the internal reinforcing ribs, so that it can better meet the requirements of high-rise buildings and other engineering projects with strict material strength requirements, broaden the application range, and improve the safety and stability of the building structure. At the same time, the outer degradable waterproof material coating waterproof layer can effectively block water erosion, avoid internal structure damage, steel corrosion and other problems caused by water penetration, and the thermal insulation filling layer helps to reduce the thermal expansion and cold contraction stress of the concrete block caused by temperature changes. The synergistic effect of the two significantly prolongs the service life of the concrete block, reduces the maintenance cost and frequency, and reduces the resource consumption and cost of the building life cycle. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 A structure diagram of a green low-carbon renewable concrete block structure is proposed for the present application;
[0014] Figure 2 For Figure 1 The installation diagram of the connecting frame;
[0015] Figure 3 For Figure 1 The sectional view of the concrete block mechanism.
[0016] In the figure: 1 concrete block mechanism, 11 concrete block, 12 thermal insulation filling layer, 13 waterproof layer, 2 connecting frame, 3 connecting groove, 4 fixing block, 5 reinforcing rib, 6 fixing plate, 7 air hole. DETAILED DESCRIPTION
[0017] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, not all the embodiments.
[0018] Referring to Figures 1-3The utility model provides a kind of green low-carbon renewable concrete block structure, including concrete block mechanism 1, concrete block mechanism 1 includes concrete block 11, concrete block 11 is filled with heat preservation filling layer 12 and reinforcing rib 5 inside, heat preservation filling layer 12 is evenly distributed in concrete block 11 inside, heat preservation filling layer 12 improves the heat preservation performance of concrete block, reinforcing rib 5 is symmetrically distributed in concrete block 11 inside, reinforcing rib 5 is used to enhance the mechanical strength of concrete block 11, the outside of concrete block 11 is equipped with waterproof layer 13, waterproof layer 13 is the coating of degradable waterproof material, waterproof layer 13 is tightly covered in the outer surface of concrete block 11, effectively prevent moisture from eroding concrete block 11, fixed plate 6 is fixed on waterproof layer 13, the surface of fixed plate 6 is distributed with air hole 7, the number of air hole 7 is several groups, the side of concrete block mechanism 1 is fixed with connecting frame 2, connecting groove 3 and fixed block 4 are provided on the side of connecting frame 2, connecting groove 3 and fixed block 4 are used to be connected and fixed with adjacent concrete block mechanism 1, the shape and size of connecting groove 3 are adapted to fixed block 4, connecting groove 3 and fixed block 4 are used to ensure that adjacent concrete block structure is connected closely and stably, the mechanical strength of concrete block is effectively enhanced by internal reasonable layout reinforcing rib, so that it can better meet the engineering project of high-rise building and other strict material strength requirements, broaden application range, improve the safety and stability of building structure;The coating of degradable waterproof material waterproof layer outside can effectively block moisture erosion, avoid internal structure damage, steel corrosion and other problems caused by water penetration, and heat preservation filling layer helps to reduce thermal expansion and cold shrinkage stress generated by temperature change of concrete block, and the service life of concrete block is significantly prolonged by the synergistic effect of the two, reduce maintenance cost and frequency, reduce resource consumption and expense of building life cycle.
[0019] During the production stage, the thermal insulation filling layer 12 made of renewable and environmentally friendly materials is evenly laid inside the mold of the concrete block 11. Reinforcing ribs 5 made of recyclable materials are placed according to the design layout, followed by pouring. After the concrete block 11 solidifies, a biodegradable waterproof coating is applied to its outer surface to form a waterproof layer 13. During use, when multiple concrete blocks are assembled, the fixing block 4 on the connecting frame 2 of one concrete block accurately embeds into the connecting groove 3 of the connecting frame 2 of the adjacent concrete block, achieving tight connection and positioning, ensuring the integrity and stability of the overall structure. The thermal insulation filling layer inside the concrete block 11... The filling layer 12 utilizes its low thermal conductivity material properties to hinder heat transfer and maintain a stable internal temperature. The vents 7 allow for a slow exchange of air and moisture between the inside of the concrete block and the external environment. When the internal humidity is higher than the external humidity, moisture is discharged through the vents 7, and vice versa, dry air from the outside enters to regulate the humidity. In long-term use, the waterproof layer 13 effectively prevents rainwater, groundwater and other moisture from invading the concrete block, preventing moisture from damaging the internal structure. The reinforcing ribs 5 continuously bear and disperse external load stress, ensuring that the concrete block maintains good mechanical properties under various working conditions and ensuring the safety and reliability of the building structure.
[0020] In summary, compared with existing technologies, this utility model effectively enhances the mechanical strength of concrete blocks through the rationally arranged internal reinforcing ribs, enabling them to better meet the stringent material strength requirements of high-rise buildings and other engineering projects, thus broadening the application scope and improving the safety and stability of building structures. Simultaneously, the external biodegradable waterproof coating effectively blocks moisture erosion, preventing internal structural damage and steel corrosion caused by water penetration. Furthermore, the thermal insulation layer helps reduce the thermal expansion and contraction stress caused by temperature changes in the concrete blocks. The synergistic effect of these two elements significantly extends the service life of the concrete blocks, reduces subsequent maintenance costs and frequency, and decreases resource consumption and expenses throughout the building's lifecycle.
[0021] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A green, low-carbon, renewable concrete block structure, comprising a concrete block mechanism (1), characterized in that, The concrete block mechanism (1) includes a concrete block (11), the concrete block (11) is filled with a thermal insulation layer (12) and reinforcing ribs (5), the concrete block (11) is provided with a waterproof layer (13) on the outside, a fixing plate (6) is fixed on the waterproof layer (13), the surface of the fixing plate (6) is distributed with ventilation holes (7), the number of ventilation holes (7) is several groups, a connecting frame (2) is fixed on the side of the concrete block mechanism (1), the side of the connecting frame (2) is provided with a connecting groove (3) and a fixing block (4), the connecting groove (3) and the fixing block (4) are used to connect and fix with adjacent concrete block mechanisms (1).
2. The green, low-carbon, and renewable concrete block structure according to claim 1, characterized in that, The thermal insulation filling layer (12) is evenly distributed inside the concrete block (11), and the thermal insulation filling layer (12) improves the thermal insulation performance of the concrete block.
3. The green, low-carbon, and renewable concrete block structure according to claim 1, characterized in that, The reinforcing ribs (5) are symmetrically distributed inside the concrete block (11), and the reinforcing ribs (5) are used to enhance the mechanical strength of the concrete block (11).
4. The green, low-carbon, and renewable concrete block structure according to claim 1, characterized in that, The waterproof layer (13) is a biodegradable waterproof material coating. The waterproof layer (13) tightly covers the outer surface of the concrete block (11) and effectively prevents moisture from eroding the concrete block (11).
5. The green, low-carbon, and renewable concrete block structure according to claim 1, characterized in that, The shape and size of the connecting groove (3) are adapted to the fixing block (4), and the connecting groove (3) and the fixing block (4) are used to ensure that the adjacent concrete block structures are tightly and stably connected.