Green building wall capable of keeping dry
By combining a modular, split structure with high-density absorbent materials, the problems of traditional walls being irreplaceable and damp are solved, resulting in a convenient and dry green building wall that also improves sound insulation.
Patent Information
- Application Number
- CN202423007314.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-06
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-12-06
AI Technical Summary
Traditional building walls cannot be installed or replaced as needed, and solid walls have poor thermal and sound insulation, are prone to dampness, and affect the use of the building.
It adopts a split modular structure, using main support beams, main wall panels and high-density water-absorbing materials, combined with a filter drying layer and a porous hollow layer, and is fixed by bolts to form a dry green building wall.
It enables convenient installation on walls and maintains dryness, improves thermal and sound insulation performance, and prevents walls from becoming damp.
Smart Images

Figure CN223593620U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to building wall technology field, concretely is a kind of green building wall of keeping dry. BACKGROUND
[0002] Wall mainly includes load-bearing wall and non-load-bearing wall, mainly plays the role of enclosure, separates space.Wall load-bearing structure building wall, load-bearing and enclosure are one, the role of skeleton structure system building wall is enclosure and separates space.Wall has enough strength and stability, has the ability of heat preservation, heat insulation, sound insulation, fireproofing, waterproofing.Wall is more, there is single material wall, there is composite wall.Considering enclosure, load-bearing, energy saving, aesthetic factors, design reasonable wall scheme, it is the important task of building structure.
[0003] For the building wall of present use, the traditional operation is through integrated masonry, so that it cannot be installed and replaced according to the needs, and the effect of temperature insulation and sound insulation of solid wall is not good, which can form the wet condition of wall surface, and is not conducive to the use of present building. UTILITY MODEL CONTENT
[0004] The utility model discloses a kind of green building wall of keeping dry, to solve the problem that the building wall of present use is proposed in above background technology, traditional operation is through integrated masonry, so that it cannot be installed and replaced according to the needs, and the effect of temperature insulation and sound insulation of solid wall is not good, which can form the wet condition of wall surface, and is not conducive to the use of present building.
[0005] To achieve the above object, the utility model provides the following technical scheme:
[0006] A kind of green building wall of keeping dry, including main support crossbeam, the two ends of the main support crossbeam are horizontally provided with end cooperation slot, the side of the main support crossbeam is butt joint with installation angle block, the side of the installation angle block is symmetrically provided with installation through-hole, the side of the main support crossbeam is symmetrically provided with connecting through-hole, main wall panel is vertically inserted between the position of the main support crossbeam, the side of the main wall panel is evenly provided with cooperation through-hole, the side of the main wall panel is symmetrically provided with splicing groove, splicing side plate is inserted into the inner side of the splicing groove, the side of the splicing side plate is symmetrically provided with extension through-hole, filter drying layer is fixedly arranged on the inner side of the main wall panel, porous hollow layer is fixedly arranged on the inner side of the filter drying layer, end insertion plate is horizontally inserted into the inner side of the end cooperation slot, the side of the end insertion plate is symmetrically provided with auxiliary end hole.
[0007] As a preferred embodiment of the utility model: the number of main support cross beams is multiple, and the specifications of the multiple main support cross beams are kept consistent, the main support cross beams are made of steel structure material, the multiple main support cross beams are connected end to end to form an elongated rod structure, and the two groups of main support cross beams are arranged in parallel.
[0008] As a preferred embodiment of the utility model: the end fitting groove is horizontally arranged at the center of the two ends of the main support cross beam, the number of the mounting corner blocks is multiple, and the multiple mounting corner blocks are arranged in L shape, one side of the mounting corner block is arranged in abutment with the side of the main support cross beam near the two ends, the mounting through hole is arranged in penetration, and the opening end of the mounting through hole is arranged in abutment with one end of the connecting through hole.
[0009] As a preferred embodiment of the utility model: the connecting through holes are arranged in penetration, and the multiple connecting through holes are arranged in horizontal one-dimensional arrangement at equal intervals on the side of the main support cross beam, the number of the main wall panels is multiple, and the specifications of the multiple main wall panels are kept consistent, the main wall panels are made of high-density water-absorbing material, the main wall panels are arranged in horizontal abutment on the sides between the two groups of main support cross beams, and the matching through holes are arranged in penetration on the side of the main wall panel near the edge.
[0010] As a preferred embodiment of the utility model: the splicing groove is symmetrically arranged at the center of the four sides of the main wall panel, the number of the splicing side plates is multiple, and the two sides of the splicing side plates are arranged in insertion in the inner sides of the two adjacent splicing grooves, the extension through holes are symmetrically arranged in penetration on the side of the splicing side plate near the two edges, and the openings of the extension through holes and the corresponding matching through holes are arranged in abutment.
[0011] As a preferred embodiment of the utility model: the number of the end insertion plates is multiple, and the specifications of the multiple end insertion plates are kept consistent, the two ends of the end insertion plates are arranged in horizontal insertion in the inner sides of the two adjacent end fitting grooves, and the auxiliary end holes and the connecting through holes are arranged in abutment.
[0012] Compared with the prior art, the utility model has the beneficial effects that:
[0013] The utility model discloses a plurality of main support cross beams are mutually butt-jointed, and the both ends of end insertion plate are horizontally inserted and connected in the inside of two adjacent end fitting grooves, and the fixed mounting operation of the plurality of main support cross beams is formed through the bolt through connection through hole and auxiliary end hole, the main support cross beam splicing forms the elongated rod structure, and the two groups of main support cross beams are symmetrically arranged in the inside specified position of building, then the side butt joint of mounting angle block 3 is arranged on the building body and is fixed through the bolt, the fixed mounting operation of the main support cross beam is formed, the plurality of main wall panels are vertically inserted and connected between the two groups of main support cross beams, the butt joint gap position of the upper and lower main wall panels is horizontally clamped between the main support cross beams, the bolt through connection through hole and fitting through hole form the fixed sealing splicing installation treatment between the two adjacent main wall panels, the spliced main wall panel is vertically arranged between the main support cross beams to complete the whole installation operation, the outside of the main wall panel is made of high-density water absorption material, the external water vapor can be absorbed into the inside through the water absorption material, the air in the filter drying layer and the inside of the plurality of hollow layers is dried to keep the side of the main wall panel dry, and the split modular structure makes the installation more convenient, and the plurality of layers of isolation drying materials keep the wall dry during use. BRIEF DESCRIPTION OF DRAWINGS
[0014] Other features, objects, and advantages of the utility model will become more apparent from the following detailed description of non-limiting embodiments, read with reference to the accompanying drawings:
[0015] Figure 1 It is a kind of green building wall of dry three-dimensional structure schematic diagram of keeping;
[0016] Figure 2 It is the structure schematic diagram of main wall panel front view section connection details of a kind of green building wall of dry keeping;
[0017] Figure 3 It is the structure schematic diagram of main wall panel side view section connection details of a kind of green building wall of dry keeping;
[0018] Figure 4 It is the structure schematic diagram of main support cross beam plan view section connection details of a kind of green building wall of dry keeping.
[0019] In the figure: 1, main support beam; 2, end fitting groove; 3, mounting corner block; 4, mounting through hole; 5, connecting through hole; 6, main wall panel; 7, fitting through hole; 8, splicing groove; 9, splicing side plate; 10, extension through hole; 11, filter drying layer; 12, porous hollow layer; 13, end plug-in plate; 14, auxiliary end hole. DETAILED DESCRIPTION
[0020] Please refer to Figure 1 In the embodiment of the utility model, a kind of green building wall of keeping dry, including main support beam 1, end fitting groove 2 is horizontally provided in the both ends of main support beam 1, the number of main support beam 1 is multiple, and the specification size of the multiple main support beam 1 is uniformly set, main support beam 1 is made of steel structure material and is set, multiple main support beam 1 is spliced into elongated rod structure setting between end to end, two groups of main support beam 1 are arranged in parallel between each other, and the side of main support beam 1 is butt joint with mounting corner block 3, and the side of mounting corner block 3 is symmetrically provided with mounting through hole 4, end fitting groove 2 is horizontally provided in the both ends center position of main support beam 1, the number of mounting corner block 3 is multiple, and multiple mounting corner block 3 is set as L shape, and the side of mounting corner block 3 is butt joint and set in the side of main support beam 1 close to both ends position, and mounting through hole 4 is through-hole, and the opening end of mounting through hole 4 is butt joint and set in one end of connecting through hole 5 and keeps through, and connecting through hole 5 is symmetrically provided in the side of main support beam 1, and main wall panel 6 is vertically inserted between the position of main support beam 1, and the side of main wall panel 6 is uniformly provided with fitting through hole 7, and connecting through hole 5 is through-hole, and multiple connecting through holes 5 are horizontally arranged in the side of main support beam 1 at equal intervals between each other and are in a straight line, and the number of main wall panel 6 is multiple, and the specification size of multiple main wall panel 6 is uniformly set, and main wall panel 6 is made of high-density water-absorbing material and is set, and main wall panel 6 is horizontally set between the position of two groups of main support beam 1 between each other side butt joint, and fitting through hole 7 is through-hole in the side of main wall panel 6 close to edge position, and the side of main wall panel 6 is symmetrically provided with splicing groove 8;
[0021] Please refer to Figures 2-4In this embodiment of the utility model, a green building wall that keeps the building dry includes splicing side panels 9 inserted into the inner side of the splicing channel 8. The side of each splicing side panel 9 has symmetrically opened extension through holes 10. The splicing channels 8 are symmetrically located at the center of the four sides of the main wall panel 6. Multiple splicing side panels 9 are used, and their two sides are inserted into the inner side of two adjacent splicing channels 8. The extension through holes 10 are symmetrically opened through the side of each splicing side panel 9 near the two side edges, and the openings of the extension through holes 10 are mutually compatible with the corresponding mating through holes 7. The main wall panel 6 has a filter drying layer 11 fixedly installed on its inner side, and a porous hollow layer 12 fixedly installed on its inner side. An end plug plate 13 is horizontally inserted into the inner side of the end fitting groove 2. The side of the end plug plate 13 is symmetrically provided with auxiliary end holes 14. There are multiple end plug plates 13, and the specifications and dimensions of the multiple end plug plates 13 are all consistent. The two ends of the end plug plate 13 are horizontally inserted into the inner sides of two adjacent end fitting grooves 2. The auxiliary end holes 14 and the connecting through holes 5 are connected to each other.
[0022] The working principle of this utility model is as follows:
[0023] Multiple main support beams 1 are joined end-to-end. Simultaneously, the two ends of the end-connecting plates 13 are horizontally inserted into the adjacent end-fitting grooves 2. Bolts are then passed through the connecting through-holes 5 and auxiliary end holes 14 to secure the main support beams 1. This allows the main support beams 1 to be spliced together to form an extended rod structure. Two sets of main support beams 1 are then arranged parallel and symmetrically at designated positions within the building. Installation corner blocks 3 are then fixed to both ends of the main support beams 1 with bolts. The sides of the installation corner blocks 3 are then joined to the building structure and secured with bolts, completing the fixed installation of the main support beams 1. Multiple main wall panels 6 are then vertically inserted between the two sets of main support beams 1, allowing the upper and lower main wall panels 6 to connect... The gaps are horizontally interlocked between the main support beams 1, allowing bolts to pass through the connecting through-holes 5 and mating through-holes 7 to fix the main wall panel 6 between the main support beams 1. The main wall panels 6 on the sides can be connected by splicing side plates 9 inserted into the splicing grooves 8. Bolts are used to form a fixed and sealed splicing installation between two adjacent main wall panels 6. The spliced main wall panels 6 are vertically set between the main support beams 1 to complete the overall installation. Since the exterior of the main wall panel 6 is made of high-density water-absorbing material, external moisture can be absorbed into the interior through the water-absorbing material. The moisture is then dried through the filter drying layer 11 and the internal air of the multiple hollow layers 12, ensuring that the sides of the main wall panel 6 always remain dry.
[0024] The above merely describes a preferred embodiment of the present application, and the protection scope of the present application is not limited thereto, and any skilled person in the art, according to the technical scheme and the inventive concept of the present application, makes equivalent replacement or change within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.
Claims
1. A green building wall that maintains dryness, comprising a main supporting beam (1), characterized in that, The main support beam (1) has horizontally formed end fitting grooves (2) at both ends. The main support beam (1) has mounting corner blocks (3) connected to its sides. The mounting corner blocks (3) have symmetrically formed mounting through holes (4) on their sides. The main support beam (1) has symmetrically formed connecting through holes (5) on its sides. A main wall panel (6) is vertically inserted between the main support beams (1). The main wall panel (6) has evenly distributed fitting through holes (7) on its sides. The main wall panel (6) has symmetrically formed fitting through holes (7) on its sides. There is a splicing channel (8), and a splicing side plate (9) is inserted into the inner side of the splicing channel (8). The side of the splicing side plate (9) is symmetrically provided with an extension through hole (10). A filter drying layer (11) is fixedly provided on the inner side of the main wall panel (6). A porous hollow layer (12) is fixedly provided on the inner side of the filter drying layer (11). An end plug plate (13) is horizontally inserted into the inner side of the end fitting groove (2). An auxiliary end hole (14) is symmetrically provided on the side of the end plug plate (13).
2. The green building wall that maintains dryness according to claim 1, characterized in that, The main support beams (1) are multiple in number, and the specifications and dimensions of the multiple main support beams (1) are all consistent. The main support beams (1) are made of steel structure material. The multiple main support beams (1) are spliced end to end to form an extended rod structure. The two sets of main support beams (1) are arranged in parallel to each other.
3. The green building wall that maintains dryness according to claim 1, characterized in that, The end fitting groove (2) is horizontally opened at the center of both ends of the main support beam (1). There are multiple mounting corner blocks (3), and the multiple mounting corner blocks (3) are arranged in an L-shape. One side of the mounting corner block (3) is connected to the side of the main support beam (1) near both ends. The mounting through hole (4) is opened through, and the opening end of the mounting through hole (4) is connected to one end of the connecting through hole (5) to maintain communication.
4. A green building wall that maintains dryness according to claim 1, characterized in that, All the connecting through holes (5) are opened through, and multiple connecting through holes (5) are arranged horizontally in a straight line at equal intervals on the side of the main support beam (1). There are multiple main wall panels (6), and the specifications and dimensions of the multiple main wall panels (6) are consistent. The main wall panels (6) are made of high-density water-absorbing material. The main wall panels (6) are horizontally arranged side-to-side between the two sets of main support beams (1). The connecting through holes (7) are opened through on the side of the main wall panels (6) near the edge.
5. A green building wall that maintains dryness according to claim 1, characterized in that, The splicing channels (8) are symmetrically opened at the center of the four sides of the main wall panel (6). There are multiple splicing side panels (9), and the two sides of the splicing side panels (9) are inserted into the inner side of two adjacent splicing channels (8). The extension through holes (10) are symmetrically opened through the sides of the splicing side panels (9) near the two side edges, and the openings of the extension through holes (10) and the corresponding matching through holes (7) are connected to each other.
6. A green building wall that maintains dryness according to claim 1, characterized in that, The number of the end plug-in plates (13) is multiple, and the specifications and dimensions of the multiple end plug-in plates (13) are all set to be consistent. The two ends of the end plug-in plates (13) are horizontally inserted into the inner side of the two adjacent end mating grooves (2). The auxiliary end hole (14) and the connecting through hole (5) are connected to each other.