Silica gel-canceled waterproof seamless thermal insulation structure and decoration integrated system
By abolishing the integrated silicone waterproof and seamless insulation structure decoration system, the resource waste, mismatch of service life and construction quality problems of traditional exterior wall insulation decoration systems are solved, and the safety, beauty and insulation effect of high-rise buildings are achieved, reducing solid waste and construction costs.
Patent Information
- Application Number
- CN202421719751.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-19
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2034-07-19
AI Technical Summary
Traditional exterior wall insulation and decoration systems have waste of resources, mismatched service life, difficulty in ensuring construction quality and safety risks, especially in high-rise buildings.
The integrated system of decorating the decorative system of the silicone waterproof and seamless insulation structure is adopted. Through the snap-on installation of fixed components and fiber decorative panels, combined with seamless insulation material filling, a seamless docking and insulation wall structure is formed to avoid hot and cold bridges and silicone waterproof joints, and simplify the construction process.
It has achieved the safety, beauty and thermal insulation effect of the exterior walls of high-rise buildings, reduced the generation of solid waste, shortened the construction period, and improved the controllability of building life and construction quality.
Smart Images

Figure CN223214874U_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of building curtain walls, in particular to a silicone-free waterproof seamless thermal insulation structural decoration integrated system. Background Art
[0002] Given that the Chinese real estate market has experienced more than 20 years of development, the exterior insulation and decoration systems of commercial and residential buildings have gradually begun to fall off, resulting in a large amount of waste insulation garbage and injuries. With the promulgation and implementation of the "Law on the Prevention and Control of Environmental Pollution by Solid Waste", it is clear that the prevention and control of environmental pollution by solid waste must insist on reduction. Traditional waste insulation materials are classified as high-risk solid waste, and the recycling cost is extremely high.
[0003] On October 29, 2020, when formulating its 14th Five-Year Plan and the long-term goals for 2035, the Central Committee of the Communist Party of China explicitly recommended developing green buildings, supporting qualified regions to take the lead in reaching carbon emissions peak, and formulating an action plan for peaking carbon emissions before 2030. The 20th National Congress of the Communist Party of China further proposed requirements such as "accelerating the research and development and promotion and application of advanced energy-saving and carbon-reduction technologies" and "actively and steadily promoting carbon peak and carbon neutrality."
[0004] The main existing problems of domestic building exterior wall insulation decoration system
[0005] 1. There is serious waste of resources
[0006] The production process of finished insulation boards of traditional exterior wall insulation decoration systems requires a lot of unnecessary expenditures such as manpower and material resources, warehousing, logistics, etc. In particular, the finished insulation boards need to be cut during the construction process, which will generate a large amount of high-risk solid waste and cause serious waste of resources.
[0007] 2. Cannot reach the same lifespan as the building
[0008] The service life of existing exterior insulation panels is far shorter than that of the main building structure, requiring regular removal and reinstallation. Despite the introduction of a series of mandatory national regulations and standards, the maximum service life of exterior insulation systems is only 25 years, while the service life of the main building structure ranges from 50 to 100 years. This significant difference in service life means that buildings using traditional exterior insulation systems need to undergo regular removal and reinstallation.
[0009] 3. There are potential safety hazards and the quality of the project cannot be guaranteed
[0010] The traditional finished insulation board decorative system, which uses a combination of adhesive and anchoring, is only suitable for the exterior walls of low-rise or multi-story buildings and is not suitable for high-rise buildings. Currently, China's existing building stock exceeds 50 billion square meters, with over 90% of these buildings being high-rise. Due to large variations in wall surface flatness, the uneven performance of on-site workers, and the inability to monitor the quality of hidden works in real time, this poses a serious safety hazard. Consequently, the traditional finished insulation board decorative system used on the exterior walls of high-rise buildings cannot guarantee project quality. Summary of the Invention
[0011] The purpose of the present invention is to overcome the deficiencies in the prior art and propose to eliminate the silicone waterproof seamless thermal insulation structure decoration integrated system.
[0012] In order to achieve the above object, the present invention adopts the following technical solutions:
[0013] Cancel the silicone waterproof seamless thermal insulation structure decoration integrated system, including:
[0014] A fixing assembly, the fixing assembly comprising:
[0015] Component 1, the component 1 is arranged on the plinth; the component 1 is provided with a slot 1 with a notch parallel to the wall facade and pointing upward;
[0016] Component 2, the component 2 is arranged on a plane wall, and the component 2 is provided with slots 2 and 3 parallel to the wall facade and pointing in opposite directions;
[0017] Component three, said component three being arranged on the upper corner of the window, said component three being provided with slots four and five, the notch of slot four being parallel to the upper corner facade of the window and pointing upward, and the notch of slot five being parallel to the upper corner plane of the window and pointing to the inner side of the upper corner of the window;
[0018] Component 4, said component 4 is arranged at the lower corner of the window, said component 4 is provided with a slot 6, the notch of the slot 6 is parallel to the vertical surface of the lower corner of the window downward;
[0019] A fiber decorative plate, wherein the fiber decorative plate is snap-fitted into a slot of the fixing assembly;
[0020] A seamless thermal insulation material is poured into the fixing components and into the fiber decorative panels and wall cavities.
[0021] Further technology of the present invention:
[0022] Preferably, the component one includes a base plate one which is parallel to and spaced apart from the vertical surface of the wall base, the slot one is arranged on the outer side of the base plate one with the base plate one as the inner slot wall, the connecting plate of the component one is connected to the inner side of the base plate one, and the connecting plate is connected and fixed to the angle block fixed on the wall.
[0023] Preferably, the component two includes a base plate two which is parallel to the wall facade and arranged at intervals. The slots two and three are arranged on the outside of the base plate two with the base plate two as the inner groove wall. An exhaust hole two is provided on the base plate two between the slots two and three, and an exhaust hole two is also provided on the bottom base plate two of the slot three. The connecting plate of the component two is connected to the inner side of the base plate two, and the connecting plate is connected and fixed to the angle block fixed on the wall.
[0024] Preferably, the component three includes a base plate three parallel to the facade of the positive corner of the window and a base plate four parallel to the plane of the positive corner of the window. The slot four is arranged on the outside of the base plate three with the inner slot wall of the base plate three, and the slot five is arranged on the outside of the base plate four with the inner slot wall of the base plate four. The connecting plates of the component three are respectively connected to the inner sides of the base plates three and four, and the connecting plates are connected and fixed to the angle blocks fixed on the wall.
[0025] Preferably, the component four includes a base plate five parallel to the facade of the lower positive corner of the window and a base plate six parallel to the plane of the lower positive corner of the window. The slot six is arranged on the outer side of the base plate five with the base plate five as the inner slot wall. The connecting plate of the component four is connected to the inner sides of the base plate five and the base plate six respectively, and the connecting plate is connected and fixed to the angle block fixed on the wall.
[0026] Preferably, the fixing assembly further comprises:
[0027] Component 5, the component 5 is arranged between two adjacent fiber decorative panels at the large inner corner of the wall and is fixedly connected to the fiber decorative panel on one side;
[0028] Component six, the component six is arranged between two adjacent fiber decorative panels at the large sun angle of the wall and is fixedly connected to the fiber decorative panel on one side;
[0029] Component seven is arranged between two adjacent fiber decorative panels on the wall facade and is fixedly connected to the fiber decorative panel on one side.
[0030] Preferably, the fifth, sixth and seventh components are each provided with a clamping plate, and the side wall of the fiber decorative plate is provided with a slot, and the clamping plate is inserted into the slot.
[0031] Preferably, the fifth, sixth and seventh components are all provided with thickened aluminum plates, threaded holes are provided on the thickened aluminum plates, and screws are connected to the fiber decorative plates through the threaded holes.
[0032] Compared with the prior art, the present invention has the following outstanding advantages and technical effects:
[0033] The silicone-free waterproof seamless thermal insulation structural decoration integrated system provided by the present invention can be applied to industrial and civil construction projects with concrete structures, solid brick and hollow brick masonry structures, and aerated concrete block masonry with a strength grade of A5.0 or above as the base wall, and has wide applicability.
[0034] The system's wall facade utilizes a vented aluminum alloy structure, creating a track structure for mounting exterior wall decorative panels. The panels and the wall cavity are then infused with an insulation core material, creating a seamless, integrated insulated wall structure. This eliminates cold and hot bridges within the finished insulation panel system, eliminates silicone waterproof joints, eliminates the need for anti-cracking mortar mesh, and eliminates the putty leveling process. This innovative infused insulation core material addresses the technical challenges of controlling the tensile strength of the building's exterior insulation core.
[0035] This system eliminates the risks of uneven skilled labor, damp interior walls, and moldy wallpaper. The pour-in, seamless insulation technology helps extend the lifespan of the building structure, ensuring a seamless fit even with large deviations in the base wall or cracks and holes. New wall surfaces eliminate the need for plastering and leveling, and renovations of existing buildings eliminate the need to remove hollow, cracked insulation, tile finishes, or paint finishes, eliminating the generation of solid insulation board waste.
[0036] The system uses snap-on installation of decorative panels and pouring-filled seamless insulation technology, which perfectly solves the problems of safety, aesthetics, exhaust, cavity, cold and hot bridges in the external insulation and decoration systems of new and old high-rise buildings.
[0037] At the same time, the system has the characteristics of standardized production and on-site assembly, which not only saves a lot of production costs such as manpower, warehousing, and logistics, but also enables simultaneous design, simultaneous construction, and simultaneous acceptance, greatly shortening the project construction period. In particular, it solves the problem of difficulty in removing the original exterior wall insulation layer and finishing layer when renovating old buildings after several years. BRIEF DESCRIPTION OF THE DRAWINGS
[0038] Figure 1 This is a schematic diagram of the connection of components on the plinth in the integrated system of the present invention;
[0039] Figure 2 A schematic diagram of a component in the integrated system of the present invention;
[0040] Figure 3 This is a schematic diagram of the connection of components on the wall facade in the integrated system of the present invention;
[0041] Figure 4 This is a schematic diagram of component 2 in the integrated system of the present invention;
[0042] Figure 5 This is a schematic diagram of the connection of the external corner components on the window in the integrated system of the present invention;
[0043] Figure 6 Schematic diagram of the third component in the integrated system of the present invention;
[0044] Figure 7 This is a schematic diagram of the connection of the lower corner components of the window in the integrated system of the present invention;
[0045] Figure 8 Schematic diagram of component 4 in the integrated system of the present invention;
[0046] Figure 9 A schematic diagram of an angle block in the integrated system of the present invention;
[0047] Figure 10 This is a schematic diagram of the connection of the outer wall components of the parapet in the integrated system of the present invention;
[0048] Figure 11 This is a schematic diagram of the connection of the inner wall components of the parapet in the integrated system of the present invention;
[0049] Figure 12 This is a schematic diagram of the connection of the beam components in the integrated system of the present invention;
[0050] Figure 13 This is a schematic diagram of the connection between two adjacent fiber decorative panels at a large inner corner of a wall in the integrated system of the present invention;
[0051] Figure 14 This is a schematic diagram of the connection between two adjacent fiber decorative panels at a large sun angle of a wall in the integrated system of the present invention;
[0052] Figure 15 This is a top view schematic diagram of the connection between two adjacent fiber decorative panels on the wall facade in the integrated system of the present invention;
[0053] Explanation of the numbers in the figure: 1-fiber decorative board, 2-notch, 3-seamless insulation material, 4-decorative board fixing block, 5-fixing board latch, 6-connecting plate, 7-strip hole, 8-angle block, 81-first connecting plate, 82-second connecting plate, 9-concave groove, A-wall facade, B-upper positive corner facade of window, C-upper positive corner plane of window, D-lower positive corner facade of window, E-lower positive corner facade of window, G-large negative corner plane of wall, H-large negative corner facade of wall, I-large positive corner plane of wall, J-large positive corner facade of wall, K-upper part of beam, L-lower part of beam, M-outer wall of parapet, N-inner wall of parapet, 10-component one, 11-component two, 12-component three, 13-component four, 14- Component five, 15-component six, 16-component seven, 101-card slot one, 102-base plate one, 103-exhaust hole one, 111-card slot two, 112-base plate two, 113-card slot three, 114-exhaust hole two, 121-card slot four, 122-card slot five, 123-base plate three, 124-base plate four, 131-card slot six, 132-base plate five, 133-base plate six, 141-card slot seven, 142-card slot eight, 143-base plate seven, 144-base plate eight, 145-base plate nine, 151-card slot nine, 152 card slot ten, 153-base plate ten, 154-base plate eleven, 161-base plate twelve, 162-base plate thirteen, 17-card plate, 18-thickened aluminum plate, 19-screws. DETAILED DESCRIPTION
[0054] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further explained below with reference to specific illustrations.
[0055] like Figures 1 to 9 As shown, the present invention provides an integrated system for eliminating silicone waterproof seamless thermal insulation structure and decoration, comprising:
[0056] A fixing assembly connected to the wall to be decorated and insulated;
[0057] Fiber decorative panels 1, which are arranged at locations where light conditions are insufficient on the shady and sunny sides of the wall;
[0058] The seamless thermal insulation material 3 is poured into the fixing assembly and the fiber decorative board 1 and the wall cavity.
[0059] In the present invention, the fiber decorative panel 1 is fixedly installed by a fixing component arranged on the wall to be decorated and insulated, and then the seamless thermal insulation material 3 is poured between the fiber decorative panel 1 and the wall to be decorated and insulated, thereby avoiding the problem of loose fit between the traditional decorative thermal insulation integrated panel and the wall, and eliminating the existence of cold and hot bridges. The seamless thermal insulation material 3 is densely filled between the fiber decorative panel 1 and the wall to be decorated and insulated, ensuring the thermal insulation effect.
[0060] The present invention provides an integrated decorative system that eliminates the need for silicone waterproof seamless thermal insulation structure, thereby solving the problems of waste residue and garbage in the industrial development of traditional finished thermal insulation panels. It eliminates the need for cutting the decorative thermal insulation integrated panels at the construction site, and also solves the cost issues associated with the production, storage, and logistics of the fiber decorative panels 1 in the factory. Furthermore, the wall painting and leveling process is omitted, and the base layer embedded parts and welding keel leveling process are eliminated, thereby greatly shortening the overall project duration.
[0061] Furthermore, in order to construct a cavity to be poured with insulation material, the fiber decorative panel 1 is arranged adjacent to the outer side of the wall to be decorated and insulated through a fixing component. According to the present invention, the fixing component includes edge grooves for the upper and lower edges of the fiber decorative panel 1.
[0062] Due to different wall structures, the vertical fixing components are different. Specifically, the fixing components include:
[0063] Component 10, said component 10 being arranged at the base of the wall; said component 10 being provided with a slot 101 having a notch parallel to the wall facade A and pointing upward;
[0064] The second component 11 is arranged on a plane wall and is provided with a second slot 111 and a third slot 113 parallel to the wall facade A and pointing in opposite directions;
[0065] Component three 12, said component three 12 is arranged on the upper corner of the window, and is provided with a fourth card slot 121 and a fifth card slot 122. The notch of the fourth card slot 121 is parallel to the upper corner facade B of the window and faces upward, and the notch of the fifth card slot 122 is parallel to the upper corner plane C of the window and faces the inner side of the upper corner of the window;
[0066] Component 4 13, said component 4 13 is arranged at the lower corner of the window, said component 3 12 is provided with a slot 6 131, the slot 4 131 is parallel to the facade D of the lower corner of the window and faces downward;
[0067] Furthermore, connecting plates 6 extend from component 1 10, component 2 11, component 3 12, and component 4 13 toward the wall. These connecting plates 6 are provided with strip holes 7 arranged along their length and are bolted to angled blocks 8 fixed to the wall. The provision of these strip holes 7 along their length allows for adjustment of the spacing between the vertical fixing components and the wall, thereby adjusting the thickness of the poured seamless thermal insulation material 3.
[0068] According to the present invention, the angle block 8 is used to connect the connecting plate 6 with the decorative insulation wall to be treated. The angle block 8 includes a first connecting plate 81 and a second connecting plate 82 that are perpendicular to each other and connected at the ends. The first connecting plate 81 is bent toward the inner side of the angle block 8 to form a concave groove 9. The bottom of the concave groove 9 is provided with a through hole for bolts or screws to pass through and fix. Furthermore, the outer sides of the first connecting plate 81 and the second connecting plate 82 are also set to be serrated. In this way, the contact area can be reduced to increase the pressure and improve the firmness of the connection and fixation.
[0069] Furthermore, the component 10 includes a base plate 102 that is parallel to and spaced from the wall facade A, and the slot 101 is arranged on the outer side of the base plate 102 with the base plate 102 as the inner groove wall. The connecting plate 6 of the component 10 is connected to the inner side of the base plate 102, and an exhaust hole 103 is provided on the bottom base plate 102 of the slot 101. The connecting plate 6 is connected and fixed to the angle block 8 fixed on the wall.
[0070] Component 10 can be used as a fixing component of the wall base, and can also be used as a fixing component of the parapet base.
[0071] The component 2 11 includes a base plate 2 112 that is parallel to and spaced apart from the wall facade A. The card slot 2 111 and the card slot 3 113 are arranged on the outer side of the base plate 2 112 with the base plate 2 112 as the inner groove wall. An exhaust hole 2 114 is provided on the base plate 2 112 between the card slot 2 111 and the card slot 3 113. An exhaust hole 2 114 is also provided on the base plate 2 112 at the bottom of the card slot 3 113. The connecting plate 6 of the component 2 11 is connected to the inner side of the base plate 2 112, and the connecting plate 6 is connected and fixed to the angle block 8 fixed on the wall.
[0072] It should be noted that the above-mentioned drain holes 1 and 2 can not only discharge air, but also discharge water in the card slot.
[0073] The component three 12 includes a base plate three 123 parallel to the upper corner facade B of the window and a base plate four 124 parallel to the upper corner plane C of the window. The card groove four 121 is arranged on the outer side of the base plate three 123 with the base plate three 123 as the inner groove wall, and the card groove five 122 is arranged on the outer side of the base plate four 124 with the base plate four 124 as the inner groove wall. The connecting plate 6 of the component three 12 is respectively connected to the inner side of the base plate three 123 and the base plate four 124, and the connecting plate 6 is connected and fixed to the angle block 8 fixed on the wall.
[0074] The component four 13 includes a base plate five 132 parallel to the lower outer corner facade D of the window and a base plate six 133 parallel to the lower outer corner plane E of the window. The slot six 131 is arranged on the outer side of the base plate five with the base plate five as the inner groove wall. The connecting plate of the component four is connected to the inner side of the base plate five and the base plate six respectively, and the connecting plate is connected and fixed to the angle block fixed on the wall.
[0075] Furthermore, the walls of the slots in component one 10, component two 11, component three 12, and component four 13 are all configured to be serrated, so that the contact area can be reduced to increase the pressure and improve the firmness of the connection.
[0076] In the above structure, components three and four can also be used for parapets and beams. Specifically,
[0077] like Figure 10 and Figure 11 , used in parapet: component three is used as the fiber decorative board connection structure of the outer wall M of the parapet, and component four is used as the fiber decorative board connection structure of the inner wall N of the parapet.
[0078] like Figure 12 , used in the beam: component three is used as the fiber decorative board connection structure of the lower part L of the beam, and component four is used as the fiber decorative board connection structure of the upper part K of the beam.
[0079] Furthermore, each of the above-mentioned slots is provided with a decorative panel fixing block 4 and a fixing panel latch 5. Specifically, the decorative panel fixing block 4 is first inserted into the slot. The thickness of the decorative panel fixing block 4 is less than the width of the slot. The decorative panel fixing block 4 is stepped, and a notch is provided on the thin part of the decorative panel fixing block 4. The notch provides space for a bolt. The decorative panel fixing block 4 is connected to the base plate on the slot 101 side by bolts. The height difference of the step is determined by the thickness of the fiber decorative panel 1. The end of the fiber decorative panel 1 is inserted into the slot. Finally, the fixing panel latch 5 is inserted into the remaining space in the slot. The end of the fiber decorative panel 1 is wrapped by the fixing panel latch 5 and the decorative panel fixing block 4 to form a snap connection.
[0080] like Figure 13-15 , the fixing assembly further includes:
[0081] Component five 14, the component five 14 is arranged between two adjacent fiber decorative panels 1 at the large inner corner of the wall and is fixedly connected to the fiber decorative panel 1 on one side;
[0082] Component six 15, said component six 15 is arranged between two adjacent fiber decorative panels 1 at the large sun angle of the wall and is fixedly connected to the fiber decorative panel 1 on one side;
[0083] Component seven 16, the component seven 16 is arranged between two adjacent fiber decorative panels 1 on the wall facade A, and is fixedly connected to the fiber decorative panel 1 on one side.
[0084] The fifth, sixth and seventh components are each provided with a clamping plate 17 , and a notch 2 is provided on the side wall of the fiber decorative board 1 , into which the clamping plate 17 is clamped.
[0085] Components five, six and seven are each provided with a thickened aluminum plate 18 , threaded holes are provided on the thickened aluminum plate 18 , and screws 19 connect the thickened aluminum plate 18 to the fiber decorative plate 1 through the threaded holes.
[0086] Specifically, component 5 14 includes a base plate 7 143 parallel to the large internal angle elevation H of the wall, and a base plate 8 144 parallel to the large internal angle plane G of the wall. Base plate 9 145 is provided on base plate 7 143 and parallel to base plate 8 144. Slot 7 141 is provided on the outside of base plate 8 144, with base plates 8 144 and 9 145 forming the inner groove walls. Slot 8 142 is provided on the outside of base plate 7 143, with base plate 7 143 forming the inner wall. A thickened aluminum plate 18 is provided on the inside of base plate 7 143.
[0087] Specifically, component six (15) includes a base plate (15) parallel to the wall's large exterior angle elevation (J) and a base plate (11) parallel to the wall's large exterior angle plane (I). The inner wall of the slot (15) is located on the outside of the base plate (15), and the slot (9) is located on the outside of the base plate (15). The inner wall of the slot (15) is located on the outside of the base plate (15). A thickened aluminum plate (18) is located on the inside of the base plate (15).
[0088] Specifically, the component seven 16 includes a base plate twelve 161 parallel to the wall facade A, and a base plate thirteen 162 extending outward is provided on the base plate twelve 161. The clamping plate 17 is fixedly connected to the base plate thirteen 162, and the clamping plate 17 and the base plate thirteen 162 form a cross structure. After the fixing component is installed on the wall facade A, the fiber decorative panel 1 is installed. The upper and lower ends of the fiber decorative panel 1 are fixed by the fixing component. In the vertical direction, there is a gap between the two fiber decorative panels 1. The base plate thirteen 162 of the component seven 16 is clamped between the two fiber decorative panels 1, and the end is flush with the fiber decorative panel 1, ensuring the flatness of the appearance.
[0089] The installation process of the component seven 16 is to first install the component seven 16 on one of the fiber decorative panels 1, and then clip the other adjacent fiber decorative panel 1 into place.
[0090] The basic principles, main features, and characteristics of the present invention are shown and described above. Those skilled in the art should understand that the present invention is not limited to the above-described embodiments. The above-described embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and modifications are intended to fall within the scope of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. Cancel the silicone waterproof seamless insulation structure decoration integrated system, which is characterized by: include: A fixing assembly, the fixing assembly comprising: Component 1, the component 1 is arranged on the plinth; the component 1 is provided with a slot 1 with a notch parallel to the wall facade and pointing upward; Component 2, the component 2 is arranged on a plane wall, and the component 2 is provided with slots 2 and 3 parallel to the wall facade and pointing in opposite directions; Component three, said component three being arranged on the upper corner of the window, said component three being provided with slots four and five, the notch of slot four being parallel to the upper corner facade of the window and pointing upward, and the notch of slot five being parallel to the upper corner plane of the window and pointing to the inner side of the upper corner of the window; Component 4, the component 4 is arranged at the lower corner of the window, and the component 4 is provided with a slot 6, the notch of the slot 6 is parallel to the vertical surface of the lower corner of the window downward; A fiber decorative plate, wherein the fiber decorative plate is snap-fitted into a slot of the fixing assembly; A seamless thermal insulation material is poured into the fixing components and into the fiber decorative panels and wall cavities.
2. The silicone-free waterproof seamless thermal insulation structural decoration integrated system according to claim 1, characterized in that: The component one includes a base plate one which is parallel to and spaced apart from the vertical surface of the wall base, a slot one is arranged on the outer side of the base plate one with the base plate one as the inner slot wall, an exhaust hole one is provided on the base plate one at the bottom of the slot one, a connecting plate of the component one is connected to the inner side of the base plate one, and the connecting plate is connected and fixed to the angle block fixed on the wall.
3. The silicone-free waterproof seamless thermal insulation structural decoration integrated system according to claim 1, characterized in that: The component 2 includes a base plate 2 which is parallel to the wall facade and arranged at intervals. The slots 2 and 3 are arranged on the outside of the base plate 2 with the base plate 2 as the inner groove wall. An exhaust hole 2 is provided on the base plate 2 between the slots 2 and 3, and an exhaust hole 2 is also provided on the base plate 2 at the bottom of the slot 3. The connecting plate of the component 2 is connected to the inner side of the base plate 2, and the connecting plate is connected and fixed to the angle block fixed on the wall.
4. The silicone-free waterproof seamless thermal insulation structural decoration integrated system according to claim 1, characterized in that: The component three includes a base plate three parallel to the upper positive corner facade of the window and a base plate four parallel to the upper positive corner plane of the window. The card groove four is arranged on the outer side of the base plate three with the inner groove wall of the base plate three, and the card groove five is arranged on the outer side of the base plate four with the inner groove wall of the base plate four. The connecting plate of the component three is respectively connected to the inner side of the base plate three and the base plate four, and the connecting plate is connected and fixed to the angle block fixed on the wall.
5. The silicone-free waterproof seamless thermal insulation structural decoration integrated system according to claim 1, characterized in that: The component four includes a base plate five parallel to the facade of the lower positive corner of the window and a base plate six parallel to the plane of the lower positive corner of the window. The slot six is arranged on the outer side of the base plate five with the base plate five as the inner slot wall. The connecting plate of the component four is connected to the inner sides of the base plate five and the base plate six respectively. The connecting plate is connected and fixed to the angle block fixed on the wall.
6. The silicone-free waterproof seamless thermal insulation structure decoration integrated system according to claim 1 is characterized in that: The fixing assembly further comprises: Component 5, the component 5 is arranged between two adjacent fiber decorative panels at the large inner corner of the wall and is fixedly connected to the fiber decorative panel on one side; Component six, the component six is arranged between two adjacent fiber decorative panels at the large sun angle of the wall and is fixedly connected to the fiber decorative panel on one side; Component seven is arranged between two adjacent fiber decorative panels on the facade of the wall and is fixedly connected to the fiber decorative panel on one side.
7. The silicone-free waterproof seamless thermal insulation structure decoration integrated system according to claim 6, characterized in that: The fifth, sixth and seventh components are all provided with clamping plates, and the side walls of the fiber decorative plate are provided with notches, and the clamping plates are clamped into the notches.
8. The silicone-free waterproof seamless thermal insulation structure decoration integrated system according to claim 7, characterized in that: Components five, six and seven are all provided with thickened aluminum plates, threaded holes are provided on the thickened aluminum plates, and screws are connected to the fiber decorative plates through the threaded holes.