Fabricated filler wall double-hole structure thermal insulation wall body
By adopting a connecting structure of double drain core holes and three-layer steel wire mesh in the prefabricated wall, the problems of inconvenience in construction and poor sound insulation caused by solid gypsum board are solved, and the lightweight and efficient sound insulation effect is achieved.
Patent Information
- Application Number
- CN202422438659.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-10
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2034-10-10
AI Technical Summary
In existing prefabricated walls, solid gypsum board leads to inconvenience in construction, poor sound insulation and noise reduction effects, and the two-layer structure is fixed and unstable.
The barrier layer and the insulation layer are used to form an integral structure through the pulling member. The barrier layer is equipped with double empty core holes, and connected by three-layer steel wire mesh and fixed pull rods. The fixed pull rod is obliquely inserted into the mesh hole of the three-layer mesh, and fixed with snap and snap through holes to form a stable overall structure.
It improves construction efficiency, reduces wall weight, enhances sound insulation, and is more reliable in fixing.
Smart Images

Figure CN223226877U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of assembled wall structures, in particular to an assembled filling wall with a double-hole structure and a heat-insulating wall. Background Art
[0002] Prefabricated insulation walls are a modern building component that is widely used in prefabricated building systems. They are characterized by prefabricating the structure and finishes of the exterior walls in the factory and then transporting them to the site for assembly. This method greatly improves the efficiency of construction, reduces the time and cost of on-site operations, and also improves the environmental performance and quality control level of the building. For built-in insulation panels in the wall, there are generally two structural forms, one is the shear wall, which is the insulation board structure used in the load-bearing wall part of the entire building; the other is the infill wall, which is the insulation board structure of the non-load-bearing wall part of the building. Different fixed assembly structural components are required for fixed installation for the two different wall forms. The following are some key features and applications of prefabricated insulation walls:
[0003] 1. Modular design: The prefabricated insulation wall adopts a modular design, and the size and style can be customized according to the specific needs of the building, including different insulation performance, finishing materials and colors to meet diverse architectural styles and functional requirements.
[0004] 2. High-performance materials: Exterior wall panels usually use high-performance building materials such as concrete, metal, composite materials, etc. These materials have good weather resistance, fire resistance and thermal insulation properties, which can significantly improve the energy efficiency and living comfort of the building.
[0005] 3. Quick installation: Since the exterior wall panels are prefabricated in the factory, only hoisting and splicing are required on site, which greatly reduces on-site construction time and labor requirements and improves construction efficiency.
[0006] 4. High precision and quality control: Produced in a controlled factory environment, we achieve stricter dimensional and quality control, ensuring the accuracy and consistency of each exterior wall panel, thereby improving the overall construction quality and appearance of the building.
[0007] 5. Environmental protection and sustainability: Prefabricated exterior wall panels reduce on-site wet work and reduce noise and dust pollution during construction. At the same time, due to the efficient use and recyclability of materials, they help achieve the green and sustainable development goals of the construction industry.
[0008] 6. Easy Maintenance: The modular structure of exterior wall panels facilitates future maintenance and replacement. If damaged or aged, individual sections can be replaced without disturbing the entire wall. Prefabricated exterior wall panels are widely used, from residential buildings to commercial complexes, from schools and hospitals to industrial plants. With the continuous advancement of construction technology, the design and materials of prefabricated exterior wall panels are also constantly innovating to meet more complex and diverse building needs.
[0009] Currently, the gypsum board used for the barrier layer is solid, heavy, and inconvenient to construct. It also has poor sound insulation and noise reduction effects. The two-layer structure currently used for barrier and insulation is prone to unstable connections and misalignment during assembly.
[0010] Therefore, there is an urgent need to design an assembled filling wall with a double-hole structure to solve the problems of the existing assembled wall using solid gypsum board, which causes construction inconvenience, poor sound insulation and noise reduction effect, and unstable fixation of the two-layer structure. Utility Model Content
[0011] In view of the problems existing in the prior art, the purpose of the present invention is to provide an assembled filling wall with a double-hole structure and an insulation wall.
[0012] The technical solution adopted by the utility model to solve its technical problems is: an assembled filling wall double-hole structure insulation wall, including a barrier layer, an insulation layer and a pull-connector, the barrier layer and the insulation layer form an insulation wall through the pull-connector, the pull-connector includes a fixed pull rod and a pull-fixing structure, the barrier layer is located on the inner side of the insulation layer, mesh one and mesh two are arranged on the inner and outer sides of the barrier layer, a third mesh is arranged on the outer side of the insulation layer, the third mesh and the outer mesh one of the barrier layer are connected to the pull-fixing structure, fixed pull rods are installed between the pull-fixing structures, and double rows of hollow core holes are provided inside the barrier layer.
[0013] Specifically, the double-row hollow core holes include a first row of hollow core holes and a second row of hollow core holes, and the first row of hollow core holes and the second row of hollow core holes are alternately arranged and run through the entire barrier layer.
[0014] Specifically, the mesh sheet 1, the mesh sheet 2 and the third mesh sheet are all made of steel wire mesh sheets, the mesh sheet 2 is arranged between the barrier layer and the thermal insulation layer, and the mesh sheet 1 is arranged on the outside of the barrier layer.
[0015] Specifically, there are two groups of pulling and fixing structures. The fixed pull rod adopts a "U"-shaped structure. One end of the "U"-shaped structure of the fixed pull rod is installed on the third mesh through a group of pulling and fixing structures, and one end of the two pull rods of the fixed pull rod is installed on mesh one through another group of pulling and fixing structures.
[0016] Specifically, the pulling and fixing structure includes a limiting side plate, a fixing plate, a buckle and a waterproof plate. The fixed pull rod passes through the fixing plate, the third mesh, the limiting side plate, the insulation layer, the mesh 2, the barrier layer, the limiting side plate, the mesh 1 and the fixing plate. The barrier layer and the insulation layer are clamped between the two limiting side plates. A buckle is provided on the limiting side plate, a slot is provided on the buckle, and a buckle through hole adapted to the buckle is provided on the fixing plate. The fixing plate and the limiting side plate are fixedly connected through the buckle and the buckle through hole.
[0017] Specifically, at least two groups of buckles and buckle through holes are provided, and the buckles and buckle through holes are evenly arranged in a square shape along the circumference of the limiting side plate.
[0018] Specifically, a waterproof plate is further provided on one side of the fixing plate, and the waterproof plate is fixedly connected to the fixing plate via waterproof plate buckles and buckle through holes.
[0019] Specifically, the barrier layer is made of gypsum board and the thermal insulation layer is made of an integrated board.
[0020] The utility model has the following beneficial effects:
[0021] The assembled filling wall double-hole structure insulation wall designed by the utility model adopts moisture-proof and fire-proof gypsum board and insulation integrated board to form an integral structure through three layers of mesh and tensioning parts. The fixed pull rod is obliquely inserted into the mesh holes of the three layers of mesh. The three-layer fixed structure is more stable and reliable, and can be assembled as a whole on site, which is convenient for construction and improves construction efficiency.
[0022] The gypsum board of the double-hole structure insulation wall of the assembled filling wall designed by the utility model adopts double rows of through holes, which reduces the weight of the overall assembled wall and makes construction more convenient. The through hole design achieves the effect of sound absorption and noise reduction, and the sound insulation effect is better. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 It is a schematic diagram of the installation structure of the prefabricated infill wall with a double-hole structure insulation wall.
[0024] Figure 2 yes Figure 1 Enlarged view of point A in the middle.
[0025] Figure 3 This is a top view of a gypsum board with double rows of hollow core holes.
[0026] Figure 4 It is a cross-sectional view of the two rods of the fixed pull rod passing through the grid holes on the mesh.
[0027] Figure 5 It is a structural diagram of the pull-connector.
[0028] In the figure: 1 - barrier layer, 1.1 - first row of hollow core holes, 1.2 - second row of hollow core holes;
[0029] 2-insulation layer; 3-pull connection piece, 3.1-fixed pull rod, 3.2-limiting side plate, 3.3-fixed plate, 3.4-clip, 3.5-clip through hole, 3.6-waterproof board;
[0030] 4-mesh panel 1; 5-mesh panel 2; 6-the third mesh panel. DETAILED DESCRIPTION
[0031] The following will be combined with the accompanying drawings in the embodiments of the present invention to clearly and completely further describe the technical solutions in the embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.
[0032] like Figure 1-Figure 5 As shown, an assembled filling wall with a double-hole structure heat-insulating wall comprises a barrier layer 1, an insulation layer 2, a connecting piece 3, a mesh 1 4, a mesh 2 5 and a third mesh 6. The barrier layer 1 and the insulation layer 2 form a heat-insulating wall through the connecting piece 3. The barrier layer 1 adopts gypsum board and the insulation layer 2 adopts an integrated board.
[0033] The barrier layer 1 is located on the inner side of the insulation layer 2, and mesh 1 4 and mesh 2 5 are set on the inner and outer sides of the barrier layer 1. Mesh 1 4 and mesh 2 5 are both made of steel wire mesh. Mesh 2 5 is set between the barrier layer 1 and the insulation layer 2, and mesh 1 4 is set on the outside of the barrier layer 1.
[0034] The connector 3 includes a fixed rod 3.1 and a connecting and fixing structure. The connector 3 employs a similar structure to that used in the improved prefabricated infill wall insulation panel support and fixing connector disclosed in Patent Application No. 202121841209.2. A third mesh 6, made of a steel wire mesh, is positioned outside the insulation layer 2. The connecting and fixing structure is connected to both the third mesh 6 and the outer mesh 4 of the barrier layer 1. The fixing rod 3.1 is installed between the connecting and fixing structures.
[0035] A double row of hollow core holes is provided inside the barrier layer 1, and the double row of hollow core holes includes a first row of hollow core holes 1.1 and a second row of hollow core holes 1.2. The first row of hollow core holes 1.1 and the second row of hollow core holes 1.2 are staggered and run through the entire gypsum board. The gypsum board adopts double rows of through holes, which reduces the weight of the overall prefabricated wall and makes construction more convenient. The through hole design achieves the effect of sound absorption and noise reduction, and the sound insulation effect is better.
[0036] There are two groups of pulling and fixing structures. The fixed pull rod 3.1 adopts a "U"-shaped structure. One end of the "U"-shaped structure of the fixed pull rod 3.1 is installed on the third mesh 6 through a group of pulling and fixing structures, and one end of the two pull rods of the fixed pull rod 3.1 is installed on the mesh 4 through another group of pulling and fixing structures.
[0037] The pulling and fixing structure includes a limiting side plate 3.2, a fixing plate 3.3, a buckle 3.4 and a waterproof plate 3.6. The fixed pull rod 3.1 passes through the fixing plate 3.3, the third mesh 6, the limiting side plate 3.2, the insulation layer 2, the mesh second 4, the barrier layer 1, the limiting side plate 3.2, the mesh first 4 and the fixing plate 3.3. The barrier layer 1 and the insulation layer 2 are clamped between the two limiting side plates 3.2. A buckle 3.4 is provided on the limiting side plate 3.2, a slot is provided on the buckle 3.4, and a buckle through hole 3.5 compatible with the buckle 3.4 is provided on the fixing plate 3.3. The fixing plate 3.3 and the limiting side plate 3.2 are fixedly connected through the buckle 3.4 and the buckle through hole 3.5.
[0038] At least two groups of buckles 3.4 and buckle through holes 3.5 are provided. The buckles 3.4 and buckle through holes 3.5 are evenly arranged in a square shape along the circumference of the limiting outer plate 3.2 and are used to be clamped at the cross intersection of the connection part of the third mesh 6.
[0039] A waterproof plate 3.6 is further provided on one side of the fixing plate 3.3. The waterproof plate 3.6 is fixedly connected to the fixing plate 3.3 via a waterproof buckle and a buckle through-hole 3.5, and is used to cover and hide one end of the fixing rod 3.1.
[0040] Waterproof panels 3.6 are installed at both ends of the fixed tie rod 3.1. This serves to waterproof the entire wall after construction is complete, preventing water from seeping around the ends of the fixed tie rod 3.1. It also serves to block heat transfer. Fixed tie rod 3.1 is typically made of metal, particularly threaded steel bars. If its ends are directly exposed or close to the sides of the wall, heat transfer is inevitable, compromising the wall's insulation. Therefore, waterproof panels 3.6, typically made of plastic, effectively block heat transfer.
[0041] The operating principle of the present invention is as follows: first, the bracket fixing plate 3.3 and the limiting outer plate 3.2 are fixedly clamped at the cross intersection of the connection part of the third mesh 6, and then the fixing pull rod 3.1 is passed through the fixing plate 3.3, the third mesh 6, the limiting side plate 3.2, the integrated plate, the mesh 2 4, the gypsum board, the limiting side plate 3.2, the mesh 1 4 and the fixing plate 3.3 in sequence. The two rod bodies of the fixing pull rod 3.1 obliquely pass through the steel wire mesh holes of the three-layer mesh. The two sets of pulling and fixing structures clamp and fix the integrated plate and the gypsum board. Finally, the waterproof board 3.6 is installed. After the installation is completed, pouring or applying mortar and other operations can be carried out to form a wall.
[0042] The present invention is not limited to the above-mentioned embodiments. Anyone should be aware of the structural changes made under the inspiration of the present invention. Any technical solution that is the same or similar to the present invention falls within the scope of protection of the present invention.
[0043] The technology, shape and structure that are not described in detail in this utility model are all well-known technologies.
[0044] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.
[0045] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An assembled filling wall with double-hole structure thermal insulation wall, characterized in that: It includes a barrier layer, a thermal insulation layer and a connecting piece. The barrier layer and the thermal insulation layer form an insulation wall through the connecting piece. The connecting piece includes a fixed pull rod and a connecting and fixing structure. The barrier layer is located on the inner side of the thermal insulation layer. Mesh one and mesh two are arranged on the inner and outer sides of the barrier layer. A third mesh is arranged on the outer side of the thermal insulation layer. The third mesh and mesh one on the outer side of the barrier layer are connected to the connecting and fixing structure. Fixed pull rods are installed between the connecting and fixing structures. Double rows of hollow core holes are provided inside the barrier layer.
2. The assembled filling wall double-hole structure thermal insulation wall according to claim 1 is characterized in that: The double-row hollow core holes include a first row of hollow core holes and a second row of hollow core holes. The first row of hollow core holes and the second row of hollow core holes are alternately arranged and run through the entire barrier layer.
3. The assembled filling wall with double-hole structure thermal insulation wall according to claim 1, characterized in that: The mesh sheet 1, mesh sheet 2 and the third mesh sheet are all made of steel wire mesh sheets. The mesh sheet 2 is arranged between the barrier layer and the thermal insulation layer, and the mesh sheet 1 is arranged on the outside of the barrier layer.
4. The assembled filling wall with double-hole structure thermal insulation wall according to claim 1, characterized in that: The pulling and fixing structure is provided with two groups, and the fixed pull rod adopts a "U"-shaped structure. One end of the "U"-shaped structure of the fixed pull rod is installed on the third mesh through a group of pulling and fixing structures, and one end of the two pull rods of the fixed pull rod is installed on the first mesh through another group of pulling and fixing structures.
5. The assembled filling wall with double-hole structure thermal insulation wall according to claim 4 is characterized in that: The pulling and fixing structure includes a limiting side plate, a fixing plate, a buckle and a waterproof plate. The fixed pull rod passes through the fixing plate, the third mesh, the limiting side plate, the insulation layer, the second mesh, the barrier layer, the limiting side plate, the first mesh and the fixing plate. The barrier layer and the insulation layer are clamped between the two limiting side plates. A buckle is provided on the limiting side plate, a slot is provided on the buckle, and a buckle through hole adapted to the buckle is provided on the fixing plate. The fixing plate and the limiting side plate are fixedly connected through the buckle and the buckle through hole.
6. The assembled filling wall with double-hole structure thermal insulation wall according to claim 5, characterized in that: At least two groups of buckles and buckle through holes are provided, and the buckles and buckle through holes are evenly arranged in a square shape along the circumference of the limiting side plate.
7. The assembled filling wall with double-hole structure thermal insulation wall according to claim 5, characterized in that: A waterproof plate is further provided on one side of the fixing plate, and the waterproof plate is fixedly connected to the fixing plate via waterproof plate buckles and buckle through holes.
8. The assembled filling wall with double-hole structure thermal insulation wall according to claim 1, characterized in that: The barrier layer is made of gypsum board, and the thermal insulation layer is made of integrated board.
Citation Information
Patent Citations
Improved supporting and fixing pulling and connecting piece for heat preservation plate of assembly type infilled wall
CN215759635U