Novel sandwich thermal insulation wallboard filling structure
Through the design of the sandwich insulation wall panel structure, the combination of longitudinal and transverse column beams, lifting convex blocks and steel mesh is used to solve the problems of heavy quality and insufficient insulation performance of concrete wall panels, stable connection and efficient construction are achieved, and thermal insulation performance and construction efficiency are improved.
Patent Information
- Application Number
- CN202422915824.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-28
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-11-28
AI Technical Summary
In existing prefabricated buildings, the concrete solid wall panels are heavy in quality, which increases production and transportation costs, and the insulation performance is insufficient, the connection method is inconvenient, which affects construction efficiency.
The sandwich insulation wall panel structure is adopted, and the combined design of longitudinal and transverse columns and beams, lifting convex blocks, steel mesh and grouting liquid can achieve stable connection and thermal insulation performance improvement, and simplify the construction process.
It enhances the stability and insulation performance of the structure, improves construction efficiency, reduces production and transportation costs, and has good durability and sound insulation effect.
Smart Images

Figure CN223119338U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of thermal insulation wall panels, in particular to a filling structure of a new type of sandwich thermal insulation wall panel. Background Technique
[0002] With the rapid progress of modern industrial technology, prefabricated buildings are gradually replacing traditional building systems and becoming the new favorite in the construction field due to their significant advantages such as rapid construction speed, little influence by weather, and labor savings. In prefabricated buildings, all wall panels are produced in factories, with a clever interlocking design, and a three-dimensional and stable building space is constructed through the firm connection of steel columns.
[0003] However, currently commonly used wall panels are mostly concrete solid structures. Although this design is firm, it is heavy in quality, which not only increases the production cost but also raises the transportation difficulty and cost. At the same time, the thermal insulation performance of concrete panels still needs to be further improved to meet the growing energy-saving requirements. In addition, the connection between the wall panel and the floor mainly relies on steel columns, and this construction method may seem not convenient enough in some cases, affecting the overall construction efficiency. For the above problems, there may already be technical solutions to solve them in the prior art, but this case wants to provide an alternative or replacement technical solution. Content of the Utility Model
[0004] To achieve the above purposes, the utility model is realized through the following technical solutions: a filling structure of a new type of sandwich thermal insulation wall panel, including: an outer wall, an outer floor, a plurality of thermal insulation outer wall panels, a plurality of fixing bolts, and a filling structure. The plurality of outer sides of the thermal insulation walls are installed on the outer wall and the outer floor through the plurality of fixing bolts. The filling structure is installed on the thermal insulation outer wall panels. The filling structure includes: a plurality of longitudinal column beams, a plurality of transverse column beams, a plurality of lifting convex blocks, a plurality of steel bar meshes, a plurality of lifting insertion blocks, and grouting liquid;
[0005] Concave grooves are formed on the thermal insulation outer wall panels. A plurality of concave lifting grooves and a plurality of insertion grooves are respectively formed on the inner sides of the plurality of concave grooves and the plurality of longitudinal column beams. The plurality of insertion grooves are respectively connected to the plurality of concave lifting grooves. The plurality of lifting convex blocks are respectively installed on the plurality of transverse column beams, and the plurality of lifting convex blocks are respectively inserted into the inner sides of the plurality of concave lifting grooves along the sliding ways of the plurality of insertion grooves. A plurality of lifting sliding grooves are respectively formed on the plurality of longitudinal column beams. The plurality of lifting insertion blocks are respectively movably inserted into the inner sides of the plurality of lifting sliding grooves. The plurality of steel bar meshes are respectively installed on the plurality of lifting insertion blocks. The grouting liquid is filled inside the thermal insulation outer wall panels;
[0006] It should be noted that in the above, a pair of lifting convex block boxes on several longitudinal column beams are movably inserted into the inner sides of a pair of insertion grooves. A pair of lifting convex blocks are stably lifted along the inner sides of a pair of insertion grooves and a pair of concave lifting grooves. The longitudinal column beams are stably supported by a pair of lifting convex blocks on the inner sides of a pair of concave lifting grooves. Similarly, several lifting insertion blocks on the transverse column beams are movably inserted into the longitudinal column beams, so as to limit several longitudinal column beams on the outer edge of the heat preservation wall. Similarly, several transverse column beams are limited on several longitudinal column beams. Several longitudinal column beams and transverse column beams are limited and connected by several steel meshes. The steel meshes are used for filtering, and the grouting liquid is drained into the inner sides of several longitudinal column beams and several transverse column beams.
[0007] Preferably, a pair of U-shaped extrusion plastic plates are arranged on the outer heat preservation wall panel.
[0008] Preferably, several pouring holes are formed in several longitudinal column beams and several transverse column beams.
[0009] Preferably, a heat insulation filling layer is arranged between several longitudinal column beams and several transverse column beams.
[0010] Preferably, knocking shaft tubes are respectively arranged on several transverse column beams.
[0011] Preferably, an auxiliary knocking shaft is arranged inside the knocking shaft tube.
[0012] The utility model provides a novel sandwich thermal insulation wall panel filling structure, which has the following beneficial effects. Compared with the prior art, for this novel sandwich thermal insulation wall panel filling structure: through the close cooperation of the lifting convex block box, the insertion slot and the concave lifting slot, the stable installation of the longitudinal column beams and the transverse column beams on the edge of the thermal insulation wall is realized; this insertion and lifting mechanism not only enhances the structural stability, but also ensures the stability of the column beams when stressed; the use of the steel mesh further enhances the firmness of the overall structure. By limiting and connecting the longitudinal column beams and the transverse column beams, a more solid support system is formed; the design of the lifting convex block allows the column beams to be adjusted in height within a certain range, which makes the installation process more flexible and can adapt to the installation requirements of thermal insulation walls with different heights and angles; by adjusting the position of the lifting convex block, the precise alignment between the column beams can also be achieved, ensuring the flatness and aesthetics of the overall structure; this plug-in design greatly simplifies the construction process, reduces complex processes such as on-site welding or bolt connection, thereby improving the construction efficiency; the standardized design of the lifting convex block and the insertion slot also makes the prefabrication and on-site assembly of components easier and faster; the frame structure formed by the longitudinal column beams and the transverse column beams provides stable support for the thermal insulation material, helps to maintain the integrity and continuity of the thermal insulation layer, thereby improving the thermal insulation performance; the use of the steel mesh can also enhance the sound insulation effect of the structure to a certain extent and reduce the transmission of noise; this structural design uses strong materials and reliable connection methods, has a long service life and good durability; because the structure is relatively simple and easy to inspect, it is also more convenient to maintain; by draining the grouting liquid to the inner sides of the longitudinal column beams and the transverse column beams, the solidification effect of the grouting liquid can be fully utilized to further enhance the stability and firmness of the overall structure; the grouting liquid can also fill the gaps between the column beams, improving the sealing and waterproof performance of the structure. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 FIG. is a front sectional view of the novel sandwich thermal insulation wall panel filling structure described in the present utility model.
[0014] Figure 2 FIG. is a top sectional view of the novel sandwich thermal insulation wall panel filling structure described in the present utility model.
[0015] Figure 3 is Figure 2 a partial enlarged view of "A" in
[0016] In the figure: 1, outer wall; 2, outer floor; 3, outer thermal insulation wall panel; 4, fixing bolt; 5, longitudinal column beam; 6, transverse column beam; 7, lifting convex block; 8, steel mesh; 9, lifting insertion block. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0017] Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0018] Through those skilled in the art, all electrical components in this case are connected to their adapted power supplies through wires, and appropriate controllers and encoders should be selected according to the actual situation to meet the control requirements. For the specific connection and control sequence, reference should be made to the sequence of the electrical components working successively in the following working principle to complete the electrical connection. The detailed connection means are well-known techniques in the art. The following mainly introduces the working principle and process, and no further description of electrical control will be made. Embodiment
[0019] The following specifically describes the present novelty in conjunction with the attached drawings. As Figures 1-3 shown, the outer sides of several of the heat-insulating walls are installed on the outer wall body 1 and the outer floor surface 2 through several fixing bolts 4. The filling structure is installed on the outer heat-insulating wall panel 3. The filling structure includes: several longitudinal column beams 5, several transverse column beams 6, several lifting convex blocks 7, several steel wire meshes 8, several lifting insertion blocks 9, and grouting liquid; concave grooves are formed on the outer heat-insulating wall panel 3. Several concave lifting grooves and several insertion grooves are respectively formed on the inner sides of several of the concave grooves and several of the longitudinal column beams 5. Several of the insertion grooves are respectively connected to several of the concave lifting grooves. Several of the lifting convex blocks 7 are respectively installed on several of the transverse column beams 6, and several of the lifting convex blocks 7 are respectively inserted into the inner sides of several of the concave lifting grooves along the sliding ways of several of the insertion grooves. Several lifting sliding way grooves are respectively formed on several of the longitudinal column beams 5. Several of the lifting insertion blocks 9 are respectively movably inserted into the inner sides of several of the lifting sliding way grooves. Several of the steel wire meshes 8 are respectively installed on several of the lifting insertion blocks 9. The grouting liquid is filled inside the outer heat-insulating wall panel 3; a pair of U-shaped extrusion plastic plates are arranged on the outer heat-insulating wall panel 3; several pouring holes are formed on several of the longitudinal column beams 5 and several of the transverse column beams 6; a heat-insulating filling layer is arranged between several of the longitudinal column beams 5 and several of the transverse column beams 6; several knocking shaft tubes are respectively arranged on several of the transverse column beams 6; an auxiliary knocking shaft is arranged inside the knocking shaft tube.
[0020] According to the attached Figures 1-3It is obtained that a pair of lifting convex blocks 7 on several longitudinal column beams 5 are movably inserted into the inner sides of a pair of insertion slots, the pair of lifting convex blocks 7 are stably lifted along the inner sides of the pair of insertion slots and a pair of concave lifting slots, the longitudinal column beams 5 are stably supported by the pair of lifting convex blocks 7 on the inner sides of the pair of concave lifting slots. Similarly, several lifting insertion blocks 9 on the transverse column beam 6 are movably inserted into the longitudinal column beams 5, so as to limit several longitudinal column beams 5 on the outer edge of the heat-insulating wall. Similarly, several transverse column beams 6 are limited on several longitudinal column beams 5. Several longitudinal column beams 5 and transverse column beams 6 are limited and connected by several steel wire meshes 8, filtered by several steel wire meshes 8, and the grouting liquid is drained to the inner sides of several longitudinal column beams 5 and several transverse column beams 6.
[0021] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A new type of sandwich insulation wall panel filling structure, comprising: An exterior wall, an exterior floor, a plurality of heat-insulating exterior wall panels, a plurality of fixing bolts, and a filling structure. The plurality of heat-insulating exterior wall panels are installed on the exterior wall and the exterior floor through the plurality of fixing bolts. The filling structure is installed on the heat-insulating exterior wall panels, and is characterized in that the filling structure includes: a plurality of longitudinal column beams, a plurality of transverse column beams, a plurality of lifting convex blocks, a plurality of steel meshes, a plurality of lifting insertion blocks, and grouting liquid; Concave grooves are formed on the heat-insulating exterior wall panels. A plurality of concave lifting grooves and a plurality of insertion grooves are respectively formed on the inner sides of the plurality of concave grooves and the plurality of longitudinal column beams. The plurality of insertion grooves are respectively connected to the plurality of concave lifting grooves. The plurality of lifting convex blocks are respectively installed on the plurality of transverse column beams, and the plurality of lifting convex blocks are respectively inserted into the inner sides of the plurality of concave lifting grooves along the sliding paths of the plurality of insertion grooves. A plurality of lifting sliding grooves are respectively formed on the plurality of longitudinal column beams. The plurality of lifting insertion blocks are respectively movably inserted into the inner sides of the plurality of lifting sliding grooves. The plurality of steel meshes are respectively installed on the plurality of lifting insertion blocks. The grouting liquid is filled inside the heat-insulating exterior wall panels.
2. The filling structure of a novel sandwich thermal insulation wall panel according to claim 1, characterized in that, A pair of U-shaped extrusion plastic plates are arranged on the heat-insulating exterior wall panels.
3. The filling structure of a novel sandwich thermal insulation wallboard according to claim 2, characterized in that A plurality of pouring holes are formed on the plurality of longitudinal column beams and the plurality of transverse column beams.
4. A novel sandwich thermal insulation wallboard filling structure according to claim 3, characterized in that, A heat-insulating filling layer is arranged between the plurality of longitudinal column beams and the plurality of transverse column beams.
5. A novel sandwich thermal insulation wallboard filling structure according to claim 4, characterized in that, Knocking shaft tubes are respectively arranged on the plurality of transverse column beams.
6. A novel sandwich thermal insulation wall panel filling structure according to claim 5, characterized in that, An auxiliary knocking shaft is arranged inside the knocking shaft tube.