Fabricated hollow steel mesh sandwich thermal insulation wall
The design of prefabricated hollow steel mesh sandwich insulated walls solves the problems of heavy self-weight and insufficient thermal insulation performance of traditional walls, achieving rapid construction and high energy efficiency, and is suitable for the field of prefabricated walls.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-16
- Publication Date
- 2026-04-07
AI Technical Summary
Traditional walls are heavy, have high construction energy consumption, and insufficient thermal insulation performance, making it difficult to meet building energy conservation regulations and resulting in excessive energy consumption.
The prefabricated hollow steel mesh sandwich insulation wall design includes a hollow inner mold, corrugated steel mesh and insulation blocks. It is quickly assembled to form a sandwich structure, which enhances rigidity and stability. It can be quickly assembled on the construction site, and reinforcing ribs and reinforcement plates are set to improve load-bearing capacity and connection strength.
It shortens the construction cycle, improves the thermal insulation performance of the walls and the overall energy-saving effect, reduces energy consumption, conforms to the concept of sustainable development, and facilitates pipeline pre-laying and equipment installation.
Smart Images

Figure CN224092766U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of fabricated wall, more specifically to a fabricated hollow steel mesh sandwich heat preservation wall. BACKGROUND
[0002] With the continuous enhancement of global energy consumption and environmental protection, the building industry as a major energy consumer, urgently needs to develop new energy-saving wall materials and technologies. Traditional walls have limitations in thermal insulation performance, resulting in high energy consumption of buildings during use. In order to meet the building energy-saving standards, reduce building operating costs and reduce greenhouse gas emissions, insulation materials such as insulation boards are set on the surface of the wall to improve thermal insulation. For example, the prior art with the publication number CN218028259U discloses a building thermal insulation wall.
[0003] Traditional solid brick walls, concrete walls and other self-weight are large, not only increase the load of building foundation, but also have high energy consumption in transportation and construction process, at the same time, its thermal insulation performance is difficult to meet the increasingly strict building energy-saving regulations, in the long-term use process, due to heat loss or absorption, resulting in large indoor temperature fluctuation, increasing the use frequency and energy consumption of air conditioning equipment. Based on this, the utility model provides a kind of fabricated hollow steel mesh sandwich heat preservation wall. UTILITY MODEL CONTENT
[0004] In order to overcome the above-mentioned defects of the prior art, the utility model provides a kind of fabricated hollow steel mesh sandwich heat preservation wall, which is designed by assembling, can be quickly assembled on the construction site, easy to operate, greatly shorten the construction period, can also enhance the overall rigidity and stability of the wall, the heat transfer coefficient of the wall can be effectively reduced by the insulation block, the thermal insulation performance of the wall is more uniform and stable, the overall energy-saving effect of the building is improved, which helps to reduce the energy consumption in the building operation process, in line with the sustainable development of building concept, to solve the problems in the above background technology.
[0005] In order to achieve the above-mentioned purpose, the utility model provides the following technical scheme: a kind of fabricated hollow steel mesh sandwich heat preservation wall, including hollow inner mold, the hollow inner mold includes bottom plate, the bottom plate top two sides are equipped with support plate, two support plates top are connected with top plate, two wave-shaped steel nets are equipped between the top plate and bottom plate, two wave-shaped steel nets are equipped with two insulation blocks between, multiple reinforcing bars are equipped between two insulation blocks, multiple rectangular grooves are processed on the outer wall of two wave-shaped steel nets, reinforcing plate is equipped between each rectangular groove, the reinforcing plate is inserted with bottom plate and top plate, wall material layer is adhered and covered on the outer wall of two wave-shaped steel nets.
[0006] In a preferred embodiment, multiple mounting grooves are machined on the side of the two insulation blocks that are close to each other. The multiple mounting grooves on the two insulation blocks correspond one to one. The reinforcing ribs are arranged between the corresponding two mounting grooves. The arrangement of multiple reinforcing ribs can further improve the overall load-bearing capacity of the wall.
[0007] In a preferred embodiment, multiple positioning grooves are machined on the top of the base plate and the bottom of the top plate. The corrugated steel mesh, insulation block, reinforcing rib and reinforcing plate are inserted into the positioning grooves to improve the stability between the corrugated steel mesh, insulation block, reinforcing rib and reinforcing plate and the base plate and top plate.
[0008] In a preferred embodiment, wedge blocks are fixedly provided at the top and bottom of both support plates. Wedge grooves adapted to the wedge blocks are machined on both sides of the top of the bottom plate and both sides of the top of the top plate. The wedge grooves are located outside the positioning grooves. The wedge blocks are inserted into the wedge grooves. The bottom plate and the top plate are detachably fixed to the wedge blocks by fastening bolts.
[0009] In a preferred embodiment, each reinforcing plate is machined with through holes, and the number of through holes is multiple. The multiple through holes are distributed in a linear array on the reinforcing plate, allowing mortar to flow into the through holes, thereby improving the connection strength between the reinforcing plate and the corrugated steel mesh.
[0010] In a preferred embodiment, the wall material layer includes a mortar layer that is uniformly adhered to the surface of the corrugated steel mesh and the reinforcing plate.
[0011] The technical effects and advantages of this utility model are as follows:
[0012] 1. This utility model uses a hollow inner mold, corrugated steel mesh and insulation blocks to form a wall, which can be quickly assembled on the construction site, is easy to operate, greatly shortens the construction cycle, and can also enhance the overall rigidity and stability of the wall. The insulation blocks can effectively reduce the heat transfer coefficient of the wall, making the thermal insulation performance of the wall more uniform and stable, improving the overall energy-saving effect of the building, helping to reduce energy consumption during building operation, and conforming to the building concept of sustainable development.
[0013] 2. By setting multiple reinforcing ribs between the two insulation blocks, with the top and bottom of the reinforcing ribs abutting against the top plate and bottom plate respectively, the load-bearing capacity of the hollow inner mold can be further improved, thereby increasing the load-bearing capacity of the wall. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0015] Figure 2 This is a schematic diagram of the corrugated steel mesh and reinforcing plate of this utility model;
[0016] Figure 3 This is a schematic diagram showing the disassembled bottom plate, top plate, and support plate of this utility model;
[0017] Figure 4 This is a schematic diagram of the corrugated steel mesh of this utility model;
[0018] Figure 5 This is a schematic diagram showing the two insulation blocks and reinforcing ribs of this utility model disassembled.
[0019] The attached diagram is labeled as follows: 1. Hollow inner mold; 101. Base plate; 102. Support plate; 103. Top plate; 104. Corrugated steel mesh; 105. Insulation block;
[0020] 2. Reinforcing ribs; 3. Rectangular grooves; 4. Reinforcing plates; 5. Wall material layer; 501. Mortar layer; 6. Installation groove; 7. Positioning groove; 8. Wedge blocks; 9. Wedge grooves; 10. Fastening bolts; 11. Through holes. Detailed Implementation
[0021] 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.
[0022] Refer to the instruction manual appendix Figures 1-5 This utility model provides a prefabricated hollow steel mesh sandwich insulation wall, including a hollow inner mold 1. The hollow inner mold 1 includes a base plate 101. Support plates 102 are provided on both sides of the top of the base plate 101. A top plate 103 is connected to the top of the two support plates 102. Wedge blocks 8 are fixedly provided on the top and bottom of the two support plates 102. Wedge grooves 9 adapted to wedge blocks 8 are machined on both sides of the top of the base plate 101 and both sides of the top of the top plate 103. The wedge grooves 9 are located outside the positioning grooves 7. The wedge blocks 8 are inserted into the wedge grooves 9. The base plate 101 and the top plate 103 are detachably fixed together with the wedge blocks 8 by fastening bolts 10.
[0023] Next, two corrugated steel meshes 104 are provided between the top plate 103 and the bottom plate 101, two insulation blocks 105 are provided between the two corrugated steel meshes 104, and multiple reinforcing ribs 2 are provided between the two insulation blocks 105. Specifically, multiple mounting grooves 6 are machined on the side of the two insulation blocks 105 that are close to each other. The multiple mounting grooves 6 on the two insulation blocks 105 correspond one to one, and the reinforcing ribs 2 are located between the corresponding two mounting grooves 6.
[0024] The top of the base plate 101 and the bottom of the top plate 103 are both machined with multiple positioning grooves 7, and the corrugated steel mesh 104, the insulation block 105, the reinforcing rib 2 and the reinforcing plate 4 are inserted into the positioning grooves 7.
[0025] The outer walls of the two corrugated steel meshes 104 are each machined with multiple rectangular grooves 3, and a reinforcing plate 4 is provided between each rectangular groove 3. The reinforcing plate 4 is inserted into the bottom plate 101 and the top plate 103. The outer walls of the two corrugated steel meshes 104 are covered with a wall material layer 5, which includes a mortar layer 501. The mortar layer 501 is uniformly adhered to the surface of the corrugated steel meshes 104 and the reinforcing plate 4.
[0026] During construction, the workers first firmly fix the base plate 101 to the ground. Then, they insert multiple reinforcing ribs 2, two insulation blocks 105, two corrugated steel meshes 104, and multiple reinforcing plates 4 into the positioning grooves 7 on the base plate 101. After that, they insert the wedge-shaped blocks 8 at the bottom of the two support plates 102 into the wedge-shaped grooves 9 on both sides of the top of the base plate 101 and fix them with fastening bolts 10. Then, they install the top plate 103 on top of the reinforcing ribs 2, insulation blocks 105, corrugated steel meshes 104, reinforcing plates 4, and support plates 102, and fix it to the wedge-shaped blocks 8 on the top of the support plates 102 with fastening bolts 10. Finally, the workers apply concrete to the surface of the corrugated steel meshes 104 and the reinforcing plates 4 to form a mortar layer 501. The wall is prefabricated and can be quickly assembled on the construction site. It is easy to operate and greatly shortens the construction cycle.
[0027] The top plate 103, support plate 102, and bottom plate 101 constitute the hollow inner mold 1. The hollow inner mold 1, together with the insulation block 105 and corrugated steel mesh 104, forms a sandwich structure, which can enhance the overall rigidity and stability of the wall and effectively resist deformation under external forces. The two insulation blocks 105 play an excellent role in heat insulation, effectively reducing the heat transfer coefficient of the wall and reducing heat transfer, which greatly improves the overall energy-saving effect of the wall and helps to reduce energy consumption during building operation. This is in line with the concept of sustainable building development. In addition, the hollow design of the wall allows for reasonable pre-embedding of pipelines and installation of equipment, avoiding the need to cut grooves for wiring on the wall surface or other parts. This not only protects the integrity of the wall structure but also saves interior space, making the interior space layout of the building neater and more beautiful.
[0028] In this embodiment, each reinforcing plate 4 is machined with through holes 11. There are multiple through holes 11, which are distributed in a linear array on the reinforcing plate 4. When the construction personnel apply mortar to the corrugated steel mesh 104, the mortar can flow into the through holes 11, thereby improving the connection strength between the reinforcing plate 4 and the corrugated steel mesh 104.
[0029] Finally: The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A prefabricated hollow steel mesh sandwich insulated wall, comprising a hollow inner mold (1), characterized in that: The hollow inner mold (1) includes a base plate (101), and a support plate (102) is provided on both sides of the top of the base plate (101). A top plate (103) is connected to the top of the two support plates (102). Two corrugated steel meshes (104) are provided between the top plate (103) and the base plate (101). Two insulation blocks (105) are provided between two corrugated steel meshes (104), and multiple reinforcing ribs (2) are provided between the two insulation blocks (105). Multiple rectangular grooves (3) are processed on the outer walls of the two corrugated steel meshes (104). A reinforcing plate (4) is provided between each rectangular groove (3). The reinforcing plate (4) is inserted into the bottom plate (101) and the top plate (103). The outer walls of the two corrugated steel meshes (104) are covered with a wall material layer (5).
2. The prefabricated hollow steel mesh sandwich insulated wall according to claim 1, characterized in that: Multiple mounting slots (6) are machined on the side of the two insulation blocks (105) that are close to each other. The multiple mounting slots (6) on the two insulation blocks (105) correspond one to one. The reinforcing rib (2) is located between the two corresponding mounting slots (6).
3. The prefabricated hollow steel mesh sandwich insulated wall according to claim 1, characterized in that: The bottom plate (101) and the top plate (103) are both machined with multiple positioning grooves (7), and the corrugated steel mesh (104), insulation block (105), reinforcing rib (2) and reinforcing plate (4) are inserted into the positioning grooves (7).
4. A prefabricated hollow steel mesh sandwich insulated wall according to claim 3, characterized in that: Both support plates (102) are fixed with wedge blocks (8) at the top and bottom. Both sides of the top of the bottom plate (101) and the top of the top plate (103) are machined with wedge grooves (9) that are adapted to the wedge blocks (8). The wedge grooves (9) are located outside the positioning groove (7). The wedge blocks (8) are inserted into the wedge grooves (9). The bottom plate (101) and the top plate (103) are detachably fixed together with the wedge blocks (8) by fastening bolts (10).
5. A prefabricated hollow steel mesh sandwich insulated wall according to claim 1, characterized in that: Each reinforcing plate (4) is machined with through holes (11), and there are multiple through holes (11) distributed in a linear array on the reinforcing plate (4).
6. A prefabricated hollow steel mesh sandwich insulated wall according to claim 1, characterized in that: The wall material layer (5) includes a mortar layer (501), which is uniformly adhered to the surface of the corrugated steel mesh (104) and the reinforcing plate (4).
Citation Information
Patent Citations
Building thermal insulation wall
CN218028259U