Damp-proof thermal insulation wall structure based on green building and assembling method
The moisture-proof and heat-insulating wall structure with detachable sealed connections and cross-bracing solves the problems of inconvenient panel fixing and rusting in portable buildings, achieving stable disassembly, waterproofing, and increased rigidity.
Patent Information
- Application Number
- CN202310369636.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-04-07
- Publication Date
- 2026-04-17
AI Technical Summary
In existing portable constructions, the fixed panels are not easy to disassemble, and the one-piece molded structure causes internal rusting, affecting the service life.
The moisture-proof and heat-insulating wall structure adopts a detachable and sealed connection, including a detachable and sealed wall structure and a cross support frame, combined with a sealing base gasket, a top sealing component and a support frame, to enhance rigidity and prevent moisture penetration.
It achieves stable disassembly and connection of panels, prevents moisture penetration, improves the service life and rigidity of buildings, and has strong adaptability and high processing efficiency.
Smart Images

Figure CN121875394A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the technical field of green building walls, and in particular to a moisture-proof and heat-insulating wall structure and assembly method based on green building. Background Technology
[0002] A wall panel structure is a load-bearing building structure consisting of walls and floor slabs. Load-bearing walls in a wall panel structure can be made of brick, blocks, precast or cast-in-place concrete. Based on the materials used and construction methods, they can be divided into three categories: hybrid structures, prefabricated large-panel structures, and cast-in-place wall panel structures. Prefabricated large-panel structures, which are building structures assembled from precast concrete wall panels and floor slabs, are a highly industrialized building structure system that developed after World War II.
[0003] However, while existing portable structures can be assembled, they still have many drawbacks: 1. In existing moisture-proof structures, the fixed panels on both sides are mainly secured with bent steel bars, preventing users from disassembling the side panels as needed at a certain height, and also making it impossible to adjust them using the cross-shaped support frame. 2. During use, the existing waterproof building walls, being integrally molded, are exposed to sunlight differently, making the interior of the structural cavity prone to rusting, thus affecting its service life.
[0004] Based on the aforementioned technical deficiencies, this application urgently needs a moisture-proof and heat-insulating wall structure and assembly method based on green building. Summary of the Invention
[0005] The purpose of this invention is to overcome the shortcomings of the prior art and provide a moisture-proof and heat-insulating wall structure and assembly method based on green buildings that is compact, improves the moisture-proof and heat-insulating properties of green buildings, and enhances the rigidity of green buildings.
[0006] The objective of this invention is achieved through the following technical solution: a moisture-proof and heat-insulating wall structure based on green building, comprising a wall base one, a wall base two, and a moisture-proof and heat-insulating wall body disposed between the wall base one and the wall base two, wherein the moisture-proof and heat-insulating wall body comprises a wall structure one and a wall structure two, and the wall structure one and the wall structure two are detachably sealed together. The bottom of wall structure one and wall structure two are respectively provided with sealing pad one and sealing pad two, and top sealing component one and top sealing component two are provided on wall structure one and wall structure two. A cross support frame is provided between top sealing component one and top sealing component two and sealing pad one and sealing pad two. The cross support frame is provided with a first cross support frame, a second cross support frame, a third cross support frame and a fourth cross support frame. The side walls of top sealing component one, top sealing component two, sealing pad one and sealing pad two are provided with pre-embedded threaded grooves that are movably connected to wall structure one and wall structure two.
[0007] In the moisture-proof and heat-insulating wall structure based on green building of the present invention, a disassembly strip 1 and a disassembly strip 2 are provided below the sealing base pad 1 and the sealing base pad 2. The disassembly strip 1 and the disassembly strip 2 are detachably connected. The interior of the disassembly strip 1 and the disassembly strip 2 are both hollow structures. The end of the disassembly strip 1 is provided with a positioning screw hole 1. The end of the disassembly strip 2 is provided with a positioning groove 1. The positioning groove 1 is provided with a docking plate. The docking plate is provided with bolts that cooperate with the positioning screw hole 1. Moisture-proof fixing components are provided inside the disassembly strip 1 and the disassembly strip 2. Support panels are provided on both sides of the first cross support frame, the second cross support frame, the third cross support frame and the fourth cross support frame.
[0008] In the moisture-proof and heat-insulating wall structure based on green building of the present invention, the first cross support frame, the second cross support frame, the third cross support frame and the fourth cross support frame all include horizontal support frames and vertical support frames, and the horizontal support frames and vertical support frames are integrally connected. The bottom and top of the horizontal support frame are provided with anti-seepage nets. The moisture-proof fixing component includes a first layer, a second layer and a third layer, and the second layer is located between the first layer and the third layer. The first layer and the third layer have strip-shaped protrusions on their board surfaces.
[0009] In the moisture-proof and heat-insulating wall structure based on green building of the present invention, a supporting hinge seat is provided on the bottom of the first layer, and a fixed hinge support one and a fixed hinge support two are respectively provided on both ends of the first layer. The fixed hinge support one and the fixed hinge support two are respectively set at both ends of the supporting hinge seat. The height of the fixed hinge support one and the fixed hinge support two is less than the height of the supporting hinge support. The middle of the first layer is fixed on the supporting hinge support. The sealing bottom pad one, the sealing bottom pad two, the top sealing component one and the top sealing component two are all rectangular ring frames, and are respectively rectangular ring frame one, rectangular ring frame two, rectangular frame three and rectangular frame four.
[0010] In the moisture-proof and heat-insulating wall structure based on green building of the present invention, the side walls of the rectangular annular frame 1, rectangular frame 2, rectangular frame 3, and rectangular frame 4 are provided with T-shaped hanging groove 1 and T-shaped hanging groove 2, and T-shaped hanging groove 1 and T-shaped hanging groove 2 are a group. The bottom of the rectangular annular frame 1 and the rectangular annular frame 2 are provided with blind hole threads 2. The bottom of the sealing pad 1 and the sealing pad 2 are provided with retractable hinge plates, and one end of the hinge plates is pre-embedded in the ground. A partition 1 is provided between the first cross support frame and the second cross support frame, and a partition 2 is provided between the third cross support frame and the fourth cross support frame. Both sides of the partition 1 and the partition 2 are provided with snap-fit grooves, and the snap-fit grooves are detachably connected to one end of the first cross support frame, the second cross support frame, the third cross support frame, and the fourth cross support frame.
[0011] In the moisture-proof and heat-insulating wall structure based on green building of the present invention, an I-shaped support member is provided between the rectangular frame one, rectangular frame two, rectangular frame three, and rectangular frame four. At least two I-shaped support components are provided inside the rectangular frame one, rectangular frame two, sealing base pad one, and sealing base pad two. Each I-shaped support component includes an adjustable support rod and top plates one and two disposed at both ends of the adjustable support rod. The outer sides of top plates one and two... The wall is provided with vertical groove 1 and vertical groove 2, and vertical groove 1 and vertical groove 2 cooperate with top plate 1 or top plate 2. The bottom of vertical protrusion 1 and vertical protrusion 2 is provided with T-shaped mounting plate 1, T-shaped mounting plate 2, T-shaped mounting plate 3 and T-shaped mounting plate 4. Each of the T-shaped mounting plate 1, T-shaped mounting plate 2, T-shaped mounting plate 3 and T-shaped mounting plate 4 includes a detachable rod and an arc plate provided at the end of the detachable rod. The arc plate is provided with several through holes.
[0012] In the moisture-proof and heat-insulating wall structure based on green building of the present invention, an interlocking net is provided between adjacent T-shaped interlocking panels one, two, three and four, and an adsorption dust ball is provided on the interlocking net. Insulation nets are provided on the side walls of rectangular frame one and rectangular frame two, and the insulation nets are fixed at the side walls of rectangular frame one, rectangular frame two, sealing base pad one and sealing base pad two.
[0013] In the moisture-proof and heat-insulating wall structure based on green building of the present invention, a tiered support plate is provided on the bottom of the sealing base pad one and the sealing base pad two. The tiered support plate includes an inverted V-shaped plate and vertical support rod one and vertical support rod two disposed below the inverted V-shaped plate. The vertical support plate one and vertical support rod two are disposed next to the through holes at the bottom of the sealing base pad one and the sealing base pad two. The length of the inverted V-shaped plate is greater than the length of the through holes at the bottom of the sealing base pad one and the sealing base pad two. A detachable adsorption component is provided on the bottom of the inverted V-shaped plate. The vertical support rod one and the vertical support rod two are detachably fixed.
[0014] In the moisture-proof and heat-insulating wall structure based on green building of the present invention, the second layer is located between the first layer and the third layer, and the thickness of the second layer is greater than the thickness of the first layer and the third layer. The second layer has an arc surface one below it and an arc surface two above it. The two ends of the arc surface one are provided with an elastic inclined plate one and an elastic inclined plate two. The third layer has a triangular pyramidal structure above it. The first layer includes a top layer one, a cavity layer one and a bottom layer one, and at least nine anti-seepage grooves are provided. Each anti-seepage groove has an enlarged groove at equal intervals, and the interior of the enlarged groove is provided with a rotatable conical anti-seepage block. The rotatable anti-seepage block is provided with a stepped barrier plate. The adjacent stepped barrier plates are provided with intermittently arranged inclined sliding grooves. Adsorption nets are provided on adjacent inclined sliding grooves. The adsorption nets are detachably embedded.
[0015] The assembly method of a moisture-proof and heat-insulating wall structure based on green building according to the present invention includes the following steps: S11. First, the retractable hinge plate located below the sealing base pad one and sealing base pad two is embedded in the splicing sequence from bottom to top. At the same time, electric welding is used to weld the retractable hinge door of a certain height to the embedded parts reserved in the walls on both sides. S12. After welding, seal bottom pad one and seal bottom pad two are installed on the top of the telescopic folding plate. After the bottom of seal bottom pad one and seal bottom pad two are installed with the telescopic folding door, the first cross support frame, the second cross support frame, the third cross support frame and the fourth cross support frame above are installed at the same time. S13. After installation, top sealing component one and top sealing component two are installed on the top of the first cross support frame, the second cross support frame, the third cross support frame and the fourth cross support frame. Then the side panels are installed. At the same time, glass plates or metal plates can be installed on the side walls of the first cross support frame, the second cross support frame, the third cross support frame and the fourth cross support frame according to actual needs. While ensuring bottom waterproofing, it can improve the sturdiness of the moisture-proof and heat-insulating wall.
[0016] The present invention has the following advantages: 1. The present invention includes a wall base 1, a wall base 2, and a moisture-proof and heat-insulating wall body disposed between the wall base 1 and the wall base 2. The moisture-proof and heat-insulating wall body includes a wall structure 1 and a wall structure 2, which are detachably and sealed together, enabling a stable detachable connection. The bottom of the wall structure 1 and the wall structure 2 are respectively provided with a sealing pad 1 and a sealing pad 2, and the wall structure 1 and the wall structure 2 are provided with a top sealing component 1 and a top sealing component 2. The top sealing component 1 and the top sealing component 2 are connected to the sealing pad 1 and the sealing pad 2. The structure is equipped with a cross-shaped support frame, which includes a first cross-shaped support frame, a second cross-shaped support frame, a third cross-shaped support frame, and a fourth cross-shaped support frame. The side walls of the top sealing component one, the top sealing component two, the sealing base gasket one, and the sealing base gasket two are provided with pre-embedded threaded grooves that can be movably connected to the wall structure one and the wall structure two, enabling stable installation. The different structures in the middle and at both ends make it highly adaptable compared to existing building structure walls. At the same time, glass curtain walls can be selected in the middle according to actual needs, ensuring sturdiness while improving the service life of the building wall.
[0017] 2. The sealing base pad 1 and sealing base pad 2 of the present invention are provided with disassembly strip 1 and disassembly strip 2 below them. Disassembly strip 1 and disassembly strip 2 are detachably connected. The interior of disassembly strip 1 and disassembly strip 2 are both hollow structures. The end of disassembly strip 1 is provided with positioning screw hole 1, and the end of disassembly strip 2 is provided with positioning groove 1. The positioning groove 1 is provided with a mating plate, which enables stable fixing. The mating plate is provided with bolts that cooperate with positioning screw hole 1. The interior of disassembly strip 1 and disassembly strip 2 is provided with moisture-proof fixing components, which can prevent moisture from the bottom from seeping upward and allow moisture from the top of the wall to seep downward, ensuring the use of the building wall. At the same time, the segmented setting can improve the overall processing efficiency. The first cross support frame, the second cross support frame, the third cross support frame and the fourth cross support frame are provided with support panels on both sides. The first cross support frame, the second cross support frame, the third cross support frame and the fourth cross support frame are provided with several disassembly holes, which can be quickly installed, ensuring the needs of the building wall. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the structure of the present invention; Figure 2 This is a schematic diagram of the side wall structure of the top sealing component one in this invention; Figure 3 This is a schematic diagram of the structure of the hierarchical support plate in this invention; Figure 4 This is a partial structural schematic diagram of the top sealing component one in this invention; Figure 5This is a schematic diagram of the rotatable conical seepage-proof block in this invention; Figure 6 for Figure 1 A magnified view of a portion of point A in the middle; Figure 7 for Figure 6 Schematic diagram of the cross section at point BB; Figure 8 This is a schematic diagram of the bottom structure of the first layer in this invention; Figure 9 for Figure 8 A magnified view of a portion of point C in the middle; Figure 10 for Figure 9 Schematic diagram of the cross section at point DD; Figure 11 for Figure 7 A magnified view of a portion of point E in the middle; Figure 12 for Figure 1 A magnified view of a portion of point F in the middle.
[0019] In the diagram, 1. Wall base 1; 2. Wall base 2; 3. Moisture-proof and heat-insulating wall body; 4. Wall structure 1; 5. Wall structure 2; 6. Sealing base 1; 7. Sealing base 2; 8. Top sealing component 1; 9. Top sealing component 2; 10. First cross support frame; 11. Second cross support frame; 12. Third cross support frame; 13. Fourth cross support frame; 14. Removal strip 1; 15. Removal strip 2; 16. Moisture-proof fixing component; 17. Horizontal support frame; 18. Vertical support frame; 19. First layer; 20. Second layer; 21. Third layer; 22. Support hinge seat; 23. Fixed hinge support 1; 24. Fixed hinge support 2; 25. T-shaped hanging groove 1; 26. T-shaped hanging groove 2; 27. Partition 1 27. Partition 1; 28. Partition 2; 29. I-shaped support component 1; 30. Adjustable support rod; 31. Top plate 1; 32. Top plate 2; 33. T-shaped support plate 1; 34. T-shaped support plate 2; 35. T-shaped support plate 3; 36. Detachable rod; 37. Insulation net; 38. Tiered support plate; 39. Inverted V-shaped plate; 40. Vertical support plate 1; 41. Vertical support rod 2; 42. Arc surface 1; 43. Arc surface 2; 44. Elastic inclined plate 1; 45. Elastic inclined plate 2; 46. Top layer 1; 48. Cavity layer 1; 49. Bottom layer 1; 50. Anti-seepage groove; 52. Enlarged groove; 53. Rotatable conical anti-seepage block; 54. Stepped barrier plate; 55. Inclined chute; 56. Implementation
[0020] The present invention will be further described below with reference to the accompanying drawings. The scope of protection of the present invention is not limited to the following description: like Figures 1-12As shown, a moisture-proof and heat-insulating wall structure based on green building includes a wall base 1, a wall base 2, and a moisture-proof and heat-insulating wall body 3 disposed between the wall base 1 and the wall base 2. The moisture-proof and heat-insulating wall body 3 includes a wall structure 4 and a wall structure 5. The wall structure 4 and the wall structure 5 are detachably sealed, which ensures the convenience of green building wall processing. The bottom of wall structure 1 (4) and wall structure 2 (5) are respectively provided with sealing pad 1 (6) and sealing pad 2 (7), and the top sealing component 1 (8) and top sealing component 2 (9) are provided on wall structure 1 (4) and wall structure 2 (5) to seal and prevent seepage to the top plate. A cross support frame is provided between the top sealing component 1 (8), the top sealing component 2 (9) and the sealing pad 1 (6) and the sealing pad 2 (7). The cross support frame is provided with a first cross support frame 10, a second cross support frame 11, a third cross support frame 12 and a fourth cross support frame 13. The side walls of the top sealing component 1 (8), the top sealing component 2 (9), the sealing pad 1 (6) and the sealing pad 2 (7) are provided with pre-embedded threaded grooves that are movably connected to wall structure 1 (4) and wall structure 2 (5) to enable stable fixation.
[0021] Below the sealing base pad 1 6 and sealing base pad 2 7 are disassembly strips 1 14 and 2 15, which are detachably connected. The interiors of disassembly strips 1 14 and 2 15 are hollow structures. The end of disassembly strip 1 14 is provided with a positioning screw hole 1, and the end of disassembly strip 2 15 is provided with a positioning groove 1. The positioning groove 1 is provided with a mating plate, and the mating plate is provided with bolts that cooperate with the positioning screw hole 1 to ensure the connection. The interiors of disassembly strips 1 14 and 2 15 are provided with moisture-proof fixing components 16. The first cross support frame 10, the second cross support frame 11, the third cross support frame 12, and the fourth cross support frame 13 are all provided with support panels on both sides, which enhances the integrity of the building wall. Compared with the existing integrated building wall, it has the characteristics of stable support structure and strong adaptability.
[0022] The first cross support frame 10, the second cross support frame 11, the third cross support frame 12 and the fourth cross support frame 13 each include a horizontal support frame 17 and a vertical support frame 18, and the horizontal support frame 17 and the vertical support frame 18 are integrally connected. The bottom and top of the horizontal support frame 17 are provided with a seepage-proof net. The moisture-proof fixing component 16 includes a first layer 19, a second layer 20 and a third layer 21, and the second layer 20 is located between the first layer 19 and the third layer 21. The first layer 19 and the third layer 21 have strip-shaped protrusions on their surfaces.
[0023] The bottom of the first layer 19 is provided with a supporting hinge seat 22, and the two ends of the first layer 19 are respectively provided with a fixed hinge support 1 23 and a fixed hinge support 24. The fixed hinge support 1 23 and the fixed hinge support 24 are respectively located at the two ends of the supporting hinge seat 22. The height of the fixed hinge support 1 23 and the fixed hinge support 24 is less than the height of the supporting hinge support 22. The middle of the first layer 19 is fixed on the supporting hinge support 22. The sealing bottom gasket 1 6, the sealing bottom gasket 2 7, the top sealing component 1 8 and the top sealing component 2 9 are all rectangular ring frames, and are respectively rectangular ring frame 1, rectangular ring frame 2, rectangular frame 3 and rectangular frame 4.
[0024] The side walls of rectangular ring frames 1, 2, 3, and 4 are provided with T-shaped hanging slots 1 and 26, respectively, and T-shaped hanging slots 1 and 26 form a group. The bottom of rectangular ring frames 1 and 2 are provided with blind hole threads 2. The bottom of sealing pads 1 and 2 are provided with retractable hinge plates (not shown in the figure), which can be used to fit with the ground and ensure the adaptability of the building wall. One end of the hinge plate is embedded in the ground. There is a partition 27 between the first cross support frame 10 and the second cross support frame 11, and a partition 28 between the third cross support frame 12 and the fourth cross support frame 13. Both sides of partitions 1 and 28 are provided with snap-fit grooves, and the snap-fit grooves are detachably connected to one end of the first cross support frame 10, the second cross support frame 11, the third cross support frame 12, and the fourth cross support frame 13.
[0025] A 29-shaped support member is provided between rectangular frames 1, 2, 3, and 4. At least two 29-shaped support members are provided inside rectangular frames 1, 2, sealing base 6, and sealing base 7. Each 29-shaped support member includes an adjustable support rod 30 and top plates 31 and 32 at both ends of the adjustable support rod. Vertical grooves 1 and 2 are provided on the outer walls of top plates 31 and 32, respectively, and these grooves engage with either top plate 31 or top plate 32 to allow for... The present application offers convenient embedding and, compared to the existing complex winding method, is easier to replace while enhancing rigidity. The central frame can also be fitted with glass or other curtain walls as needed. The bottom of the vertical protrusion one and the vertical protrusion two are provided with T-shaped mounting plates 33, 34, 35, and 4, respectively. Each of the T-shaped mounting plates 33, 34, 35, and 4 includes a detachable rod 37 and an arc-shaped plate at the end of the detachable rod. The arc-shaped plate has several through holes.
[0026] A mesh is provided between adjacent T-shaped mounting panels 33, 34, 3, and 4. The mesh is equipped with dust-absorbing balls to enable efficient adsorption. Insulation mesh 38 is provided on the side walls of rectangular frame 35 and rectangular frame 36. The insulation mesh 38 is fixed at the side walls of rectangular frame 1, rectangular frame 2, sealing pad 1, and sealing pad 2.
[0027] The bottom of sealing pad 1 6 and sealing pad 2 7 is provided with a layered support plate 39. The layered support plate 39 includes an inverted V-shaped plate 40 and vertical support rod 1 41 and vertical support rod 2 42 located below the inverted V-shaped plate 40. The vertical support plate 1 41 and vertical support rod 2 42 are located next to the through hole at the bottom of sealing pad 1 6 and sealing pad 2 7. The length of the inverted V-shaped plate 40 is greater than the length of the through hole at the bottom of sealing pad 1 6 and sealing pad 2 7. The bottom of the inverted V-shaped plate 40 is provided with a detachable adsorption component (not shown in the figure). The vertical support rod 1 41 and vertical support rod 2 42 are detachably fixed.
[0028] The second layer 20 is located between the first layer 19 and the third layer 21, and the thickness of the second layer 20 is greater than the thickness of the first layer 19 and the third layer 21. The multi-layer structure ensures the waterproofing requirements of the building wall. The second layer 20 has an arc surface 43 below it and an arc surface 44 above it. The two ends of the arc surface 22 have elastic inclined plates 45 and 46. The third layer 21 has a triangular pyramidal structure above it to prevent residual water from accumulating. The first layer includes a top layer 48, a cavity layer 49, and a bottom layer 50. The first layer 19 has a seepage-proof groove 52 below it, and there are at least nine seepage-proof grooves 52. Each seepage-proof groove 52 has an enlarged groove 53 at equal intervals. The enlarged groove 53 has a rotatable conical seepage-proof block 54 inside, which ensures that it can block the seepage in sequence and improves the seepage resistance. The rotatable seepage-proof block 54 has a stepped barrier plate 55. Two adjacent stepped barrier plates 55 have intermittently set inclined sliding grooves 56. Adsorption nets are set on adjacent inclined sliding grooves 56. The adsorption nets are detachable and can be embedded.
[0029] A method for assembling a moisture-proof and thermally insulated wall structure based on green building includes the following steps: S11. First, the retractable hinge plate located below the sealing base pad 1 6 and sealing base pad 2 7 is embedded in the splicing sequence from bottom to top. At the same time, electric welding is used to weld the retractable hinge door of a certain height to the pre-embedded parts reserved in the walls on both sides. S12. After welding, seal bottom pad 1 6 and seal bottom pad 2 7 are installed on the top of the retractable folding plate. After the bottom of seal bottom pad 1 6 and seal bottom pad 2 7 are installed with the retractable folding door, the first cross support frame 10, the second cross support frame 11, the third cross support frame 12 and the fourth cross support frame 13 are installed on the top. S13. After installation, top sealing component 8 and top sealing component 9 are installed on the top of the first cross support frame 10, the second cross support frame 11, the third cross support frame 12 and the fourth cross support frame 13. Then the side panels are installed. At the same time, glass plates or metal plates can be installed on the side walls of the first cross support frame 10, the second cross support frame 11, the third cross support frame 12 and the fourth cross support frame 13 according to actual needs. While ensuring bottom waterproofing, it can improve the sturdiness of the moisture-proof and heat-insulating wall.
[0030] Finally, it should be noted that the above descriptions are merely preferred embodiments of the present invention and are not intended to limit the present invention. 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. A green building based moisture resistant thermal insulation wall structure, characterized in that: It includes a wall base one, a wall base two, and a moisture-proof and heat-insulating wall body disposed between the wall base one and the wall base two. The moisture-proof and heat-insulating wall body includes a wall structure one and a wall structure two, and the wall structure one and the wall structure two are detachably sealed together. The bottom of wall structure one and wall structure two are respectively provided with sealing pad one and sealing pad two, and top sealing component one and top sealing component two are provided on wall structure one and wall structure two. A cross support frame is provided between top sealing component one and top sealing component two and sealing pad one and sealing pad two. The cross support frame is provided with a first cross support frame, a second cross support frame, a third cross support frame and a fourth cross support frame. The side walls of top sealing component one, top sealing component two, sealing pad one and sealing pad two are provided with pre-embedded threaded grooves that are movably connected to wall structure one and wall structure two.
2. A green building based damp-proof thermal insulation wall structure according to claim 1, characterized in that: Below the sealing base pad one and sealing base pad two are disassembly strip one and disassembly strip two, which are detachably connected. The interior of disassembly strip one and disassembly strip two are both hollow structures. The end of disassembly strip one is provided with positioning screw hole one, and the end of disassembly strip two is provided with positioning groove one. The positioning groove one is provided with a mating plate. The mating plate is provided with bolts that cooperate with positioning screw hole one. Moisture-proof fixing components are provided inside disassembly strip one and disassembly strip two. Support panels are provided on both sides of the first cross support frame, the second cross support frame, the third cross support frame and the fourth cross support frame.
3. A green building based damp-proof thermal insulation wall structure according to claim 2, characterized in that: The first, second, third, and fourth cross support frames each include a horizontal support frame and a vertical support frame, and the horizontal and vertical support frames are integrally connected. The bottom and top of the horizontal support frame are provided with a seepage-proof net. The moisture-proof fixing component includes a first layer, a second layer, and a third layer, with the second layer located between the first and third layers. The first and third layers have strip-shaped protrusions on their surfaces.
4. The moisture-proof and heat-insulation wall structure based on green building according to claim 3, characterized in that: The bottom of the first layer is provided with a supporting hinge seat, and the two ends of the first layer are respectively provided with a fixed hinge support one and a fixed hinge support two. The fixed hinge support one and the fixed hinge support two are respectively located at the two ends of the supporting hinge seat. The height of the fixed hinge support one and the fixed hinge support two is less than the height of the supporting hinge support. The middle of the first layer is fixed on the supporting hinge support. The sealing bottom pad one, the sealing bottom pad two, the top sealing component one and the top sealing component two are all rectangular ring frames, and are respectively rectangular ring frame one, rectangular ring frame two, rectangular frame three and rectangular frame four.
5. A green building based damp-proof thermal insulation wall structure according to claim 4, characterized in that: The rectangular ring frame 1, rectangular frame 2, rectangular frame 3, and rectangular frame 4 are provided with T-shaped hanging groove 1 and T-shaped hanging groove 2 on their side walls, and T-shaped hanging groove 1 and T-shaped hanging groove 2 are a group. The bottom of rectangular ring frame 1 and rectangular ring frame 2 are provided with blind hole thread 2. The bottom of sealing pad 1 and sealing pad 2 are provided with retractable folding plates, and one end of the folding plates is pre-embedded in the ground. A partition 1 is provided between the first cross support frame and the second cross support frame, and a partition 2 is provided between the third cross support frame and the fourth cross support frame. Both sides of partition 1 and partition 2 are provided with snap-fit grooves, and the snap-fit grooves are detachably connected to one end of the first cross support frame, the second cross support frame, the third cross support frame, and the fourth cross support frame.
6. A green building based damp-proof thermal insulation wall structure according to claim 5, characterized in that: An I-shaped support member is provided between the rectangular frames 1, 2, 3, and 4. At least two I-shaped support components are provided inside the rectangular frames 1, 2, 1, and 2. Each I-shaped support component includes an adjustable support rod and a top plate 1 and a top plate 2 located at both ends of the adjustable support rod. Vertical grooves 1 and 2 are provided on the outer walls of the top plates 1 and 2, and these grooves cooperate with either the top plate 1 or the top plate 2. T-shaped mounting plates 1, 2, 3, and 4 are provided at the bottom of the vertical protrusions 1 and 2. Each of the T-shaped mounting plates 1, 2, 3, and 4 includes a detachable rod and an arc-shaped plate located at the end of the detachable rod. The arc-shaped plate has several through holes.
7. A green building based damp-proof thermal insulation wall structure according to claim 6, characterized in that: A net is provided between adjacent T-shaped mounting plates 1, 2, 3 and 4. The net is equipped with dust-absorbing balls. Insulation nets are provided on the side walls of rectangular frame 1 and rectangular frame 2. The insulation nets are fixed at the side walls of rectangular frame 1, rectangular frame 2, sealing pad 1 and sealing pad 2.
8. A moisture-proof and heat-insulating wall structure based on green building according to claim 7, characterized in that: The bottom of the first and second sealing pads are provided with a tiered support plate. The tiered support plate includes an inverted V-shaped plate and two vertical support rods, one and two, located below the inverted V-shaped plate. The first and two vertical support rods are located next to the through holes at the bottom of the first and second sealing pads. The length of the inverted V-shaped plate is greater than the length of the through holes at the bottom of the first and second sealing pads. The bottom of the inverted V-shaped plate is provided with a detachable adsorption component. The first and two vertical support rods are detachably fixed.
9. A moisture-proof and heat-insulating wall structure based on green building according to claim 8, characterized in that: The second layer is located between the first and third layers, and the thickness of the second layer is greater than the thickness of the first and third layers. The second layer has an arc surface one below it and an arc surface two above it. The two ends of the arc surface one are provided with an elastic inclined plate one and an elastic inclined plate two. The upper part of the third layer is a triangular pyramidal structure. The first layer includes a top layer one, a cavity layer one, and a bottom layer one. There are at least nine seepage-proof grooves. Each seepage-proof groove has an enlarged groove at equal intervals. The inside of the enlarged groove is provided with a rotatable conical seepage-proof block. The rotatable seepage-proof block is provided with a stepped barrier plate. There are intermittently arranged inclined sliding grooves on two adjacent stepped barrier plates. Adsorption nets are provided on adjacent inclined sliding grooves. The adsorption nets are detachable and can be embedded.
10. The method for assembling a moisture-proof and heat-insulating wall structure based on green building according to claim 9, characterized in that: Includes the following steps: S11. First, the retractable hinge plate located below the sealing base pad one and sealing base pad two is embedded in the splicing sequence from bottom to top. At the same time, electric welding is used to weld the retractable hinge door of a certain height to the embedded parts reserved in the walls on both sides. S12. After welding, seal bottom pad one and seal bottom pad two are installed on the top of the telescopic folding plate. After the bottom of seal bottom pad one and seal bottom pad two are installed with the telescopic folding door, the first cross support frame, the second cross support frame, the third cross support frame and the fourth cross support frame above are installed at the same time. S13. After installation, top sealing component one and top sealing component two are installed on the top of the first cross support frame, the second cross support frame, the third cross support frame and the fourth cross support frame. Then the side panels are installed. At the same time, glass plates or metal plates can be installed on the side walls of the first cross support frame, the second cross support frame, the third cross support frame and the fourth cross support frame according to actual needs. While ensuring bottom waterproofing, it can improve the sturdiness of the moisture-proof and heat-insulating wall.