FS composite heat preservation outer formwork connecting and assembling structure
By designing the FS composite insulation exterior formwork connection assembly structure, the construction problem of FS insulation exterior wall panels when installing cable pipes is solved, the stability of cable channels and flexible installation of panels are achieved, and the construction efficiency and quality are improved.
Patent Information
- Application Number
- CN202510383200.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2025-08-08
AI Technical Summary
The existing FS insulation exterior wall panels lack reserved components when installing cable pipes, resulting in the need to be grooved in the wall, affecting construction efficiency and quality.
A FS composite insulation outer formwork connection assembly structure is designed, including limit grooves, columns, reinforcement plates and bridge trays, forming a stable cable channel and panel installation position to avoid grooves in the wall.
It realizes the safe and stable channels of cables and flexible installation of panels, improving the efficiency and quality of construction.
Smart Images

Figure CN120443748A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of thermal insulation exterior wall panels, in particular to a FS composite thermal insulation exterior formwork connection and assembly structure. Background Art
[0002] FS Insulated Wall Panels are a new type of building exterior wall insulation material. Their primary purpose is to provide efficient thermal insulation for buildings, reducing both indoor heat loss and outdoor heat transfer, thereby lowering energy consumption and conserving energy. Widely used in various residential areas, including high-rise and multi-story residences, they provide residents with a comfortable living environment and reduce heating and cooling costs.
[0003] However, the existing device does not have a component for reserving cable ducts in the wall, and a panel base cannot be set in the cable duct, so it is impossible to reserve space for the installation of cables and panels. Slots must be opened in the wall, which is not conducive to improving the overall efficiency and quality of construction.
[0004] Therefore, developing a forming device that can grind and cut FS external insulation boards with precise depth is one of the problems that need to be solved at present. Summary of the Invention
[0005] In view of the above problems existing in the prior art, the object of the present invention is to provide an integrated device capable of performing precise depth grinding, cutting and shaping on FS external insulation boards.
[0006] To solve the above problems, the present invention adopts the following technical solution: a FS composite insulation external formwork connection assembly structure, comprising a wall assembly, the wall assembly comprising a main wall, and first limiting grooves are provided on the left and right sides of the main wall;
[0007] It includes a pipe assembly arranged on the wall assembly, the pipe assembly includes a reinforcing plate, and second limiting grooves are provided on the left and right sides of the reinforcing plate;
[0008] The connecting assembly includes a column, and limit blocks are fixedly installed on the left and right sides of the column. The limit blocks and the second limit grooves are provided between the two wall assemblies, and are used to horizontally splice the wall assemblies into pieces;
[0009] The top of the column is provided with a column positioning groove, and the bottom is provided with a positioning block, and the positioning block is inserted into the column positioning groove for vertically connecting the wall assembly;
[0010] The first limiting groove and the second limiting groove are connected vertically, and the limiting block is fixedly connected to the main wall and the reinforcing plate by being embedded in the first limiting groove and the second limiting groove;
[0011] It comprises a base assembly, which is arranged below the wall assembly and is used to support the wall assembly.
[0012] A transverse bridge is fixedly mounted on the front end of the reinforcing plate, and the transverse bridge is clamped and mounted on the first cover plate. The transverse bridge cooperates with the first cover plate to form a pipe for accommodating pipelines.
[0013] The transverse bridge is clamped and mounted on a first panel mounting seat, a first baffle is provided on an outer surface of the first panel mounting seat, and the first panel mounting seat and the first baffle are fixedly connected by a first cross screw.
[0014] The first slide grooves are fixedly installed on the left and right sides of the transverse bridge, and the upper and lower positions of the first slide grooves correspond to each other. The first partition is provided with protrusions corresponding to the shape of the first slide grooves at both ends. The protrusions are inserted along the first slide grooves to isolate the unused ends of the transverse bridge from the pipeline assemblies in other areas.
[0015] A slide rail is fixedly installed on the front side of the main wall, and a buffer pad is fitted on the slide rail.
[0016] A thermal insulation exterior wall panel is fixedly installed on the back side of the main wall.
[0017] A vertical bridge is fixedly installed on the front end of the column; a second cover plate is clamped and installed on the vertical bridge, a second panel mounting seat is fixedly installed on the upper part of the vertical bridge, a second baffle is installed on the second panel mounting seat, and the second panel mounting seat and the second baffle are fixedly connected by a second cross screw.
[0018] The vertical bridge frame is provided with a second slide groove at both ends, and the horizontal positions of the second slide grooves correspond. The second partition is provided with protrusions corresponding to the shape of the second slide grooves at both ends. The protrusions are inserted along the second slide grooves to isolate the unused end of the vertical bridge from the connection assembly of other areas.
[0019] The base assembly includes a base body inside, and a cable duct is opened inside the base body.
[0020] The upper surface of the base body is provided with a plurality of cable interfaces, and the upper surface of the base body is provided with a plurality of base positioning grooves.
[0021] Compared with the prior art, the beneficial technical effects of the present invention are:
[0022] 1. In the present invention, by providing a connection assembly, limit blocks are fixedly installed on the left and right sides of the columns of the connection assembly. The limit blocks are adapted to the shapes of the first limit groove and the second limit groove. The connection assembly is fixed between the two wall assemblies through the limit blocks, and is used to horizontally splice the wall assemblies into pieces; and because the column positioning grooves are provided at the top of the column and the positioning blocks are provided at the bottom, the positioning blocks are inserted into the column positioning grooves to vertically connect the wall assemblies; based on the connection, horizontal and vertical connection of the wall assemblies can be achieved, and the operation is simple and convenient;
[0023] 2. In the present invention, the pipe assembly is mainly used to provide a location for laying cables in a building, so that the cables have a safe and stable channel; the reinforcement plate is used to reinforce the rear side of the pipe assembly, thereby strengthening the protection of the outer part of the pipe assembly facing the wall assembly; the second limiting groove provides installation conditions for the pipe assembly to be connected to the outer surface of the connection assembly; the interior of the transverse bridge provides a channel for the arrangement of cables, so that the cables can pass through the interior of the wall assembly, thereby achieving the purpose of reserving a cable installation position inside the wall, without the need to open an additional groove in the wall assembly.
[0024] 3. In the present invention, a combination of a first cover plate and a first panel mounting seat is used. The first cover plate can be made of materials of different lengths and specifications, and its shortest length is consistent with the length of the first panel mounting seat. The first cover plate has a specification of being extended two to three times itself. The first cover plate is clamped to the outer surface of the transverse bridge by means of a clip and a slot. The first cover plate is opened to adjust the layout of the cables inside the transverse bridge, thereby facilitating the maintenance work of the cables inside the duct assembly by the staff. The first panel mounting seat is also clamped to the outer surface of the transverse bridge by means of a clip and a slot. The first panel mounting seat is provided with a threaded hole inside to provide a position for the subsequent installation of the socket panel and the lighting panel on the outer surface of the duct assembly, which can facilitate the subsequent panel installation work of the staff. The first cover plate and the first panel mounting seat can flexibly adjust their clamping position on the outer surface of the transverse bridge as needed, which is conducive to the flexible installation of the external panel. The first baffle fills the blank area of the first panel mounting seat when no external panel is installed on the first panel mounting seat, thereby preventing the external environment from interfering with the interior of the transverse bridge when no external panel is installed on the outer surface of the first panel mounting seat, thereby affecting the normal operation of the cables.
[0025] 4. In the present invention, the first cross screw installs the first baffle thread on the outer surface of the first panel mounting seat to prevent the first baffle from falling off the outer surface of the first panel mounting seat. The first cross screw can also be installed on the outer surface of the first panel mounting seat when installing the external panel. A combination of a first slide groove and a first partition is adopted. The first slide groove is used to provide a docking position for the first partition to be installed inside the transverse bridge. The first partition is used to be inserted into the inside of the first slide groove after the wall installation is completed and the wiring is confirmed, so as to isolate the unused end of the transverse bridge from the pipeline assembly in other areas, so as to prevent the environment in the unused end from affecting the cables inside the transverse bridge. By installing a component for reserving a cable duct in the wall in the existing device, a panel base can be set in the cable duct to reserve a position for the installation of cables and panels, without opening a slot in the wall, which is beneficial to improving the overall efficiency and quality of construction. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 It is a schematic diagram of the overall three-dimensional structure of the present invention;
[0027] Figure 2 This is a schematic diagram of the pipeline assembly structure in the present invention;
[0028] Figure 3 This is a schematic diagram of the connection assembly structure of the present invention;
[0029] Figure 4 This is a schematic diagram of the overall structure of the wall in the present invention;
[0030] Figure 5 This is a schematic diagram of the base assembly structure in the present invention.
[0031] Markings in the figure: 1. Wall assembly, 2. Pipe assembly, 3. Connection assembly, 4. Base assembly, 11. Main wall, 12. First limiting groove, 13. Slide rail, 14. Buffer pad, 15. Insulation exterior wall panel, 21. Reinforcement plate (21), 22. Second limiting groove, 23. Horizontal bridge, 24. First cover plate, 25. First panel mounting seat, 26. First baffle, 27. First cross screw, 28. First slide, 29. First partition, 31. Column, 32. Limit block, 33. Vertical bridge, 34. Second cover plate, 35. Second panel mounting seat, 36. Second baffle, 37. Second cross screw, 38. Second slide, 39. Second partition, 310. Column positioning groove, 311. Positioning block, 41. Base body, 42. Cable duct, 43. Cable interface, 44. Base positioning groove. DETAILED DESCRIPTION
[0032] The technical solution of the present invention will be further described in detail below with reference to the embodiments and drawings.
[0033] Example
[0034] Reference Figure 1-Figure 3 , a FS composite insulation external formwork connection assembly structure, including a wall assembly 1 for constructing the exterior wall system of a building, a pipe assembly 2 mainly used to provide a location for laying cables in the building, so that the cables have a safe and stable channel, and a connection assembly 3 for providing conditions for connecting the wall assemblies 1. Multiple walls are connected by the connection assembly 3 as a splicing piece. The base assembly 4 is the bottom of the wall, which plays a role in supporting and fixing the wall assembly 1. The reinforcement plate 21 is used to reinforce the rear side of the pipe assembly 2, thereby strengthening the protection of the outer part of the pipe assembly 2 facing the wall assembly 1; the wall assembly 1 includes a main wall 11. The main wall 11 is the main component of the wall, which is used to support the entire wall surface and transfer weight downward. The first limit groove 12 is provided to provide conditions for the wall assembly 1 itself to be connected to the connection assembly 3. The left and right sides of the main wall 11 are provided with first limit grooves 12; the main wall 11 includes a pipe assembly 2 provided on the wall assembly 1, the pipe assembly 2 includes a reinforcing plate 21, and the left and right sides of the reinforcing plate 21 are provided with second limit grooves 22; the main wall 11 includes a pipe assembly 2 ... reinforcing plate 21 includes a connecting assembly 3, the connecting assembly 3 includes a column 31, and the left and right sides of the column 31 are fixedly installed with limit blocks 32, the limit blocks 32 cooperate with the second limit blocks 22, so that the connecting assembly 3 is provided between the two wall assemblies 1, and is used to horizontally splice the wall assemblies 1 into pieces; the column 31 is provided with a column positioning groove 310 on the top and a positioning block 311 at the bottom, and the positioning block 311 is inserted into the column positioning groove 310 to vertically connect the wall assemblies 1;
[0035] The first limiting groove 12 and the second limiting groove 22 are connected vertically, and the limiting block 32 is fixedly connected to the main wall 11 and the reinforcing plate 21 by being embedded in the first limiting groove 12 and the second limiting groove 22 .
[0036] The second limiting groove 22 provides installation conditions for the pipe assembly 2 to be connected to the outer surface of the connection assembly 3, and the interior of the horizontal bridge 23 provides a channel for the arrangement of cables, so that the cables can pass through the interior of the wall assembly 1, thereby achieving the purpose of reserving a cable installation position inside the wall, without the need to open an additional groove in the wall assembly 1.
[0037] The front end of the reinforcing plate 21 is fixedly installed with a transverse bridge 23, and the transverse bridge 23 is clamped and installed with a first cover plate 24. The transverse bridge 23 and the first cover plate 24 cooperate to form a pipe for accommodating pipelines; a combination of the first cover plate 24 and the first panel mounting seat 25 is adopted, and the first cover plate 24 can adopt materials of different length specifications, and its shortest length is consistent with the length of the first panel mounting seat 25, and the first cover plate 24 has a specification of extending two to three times itself. The first cover plate 24 is clamped on the outer surface of the transverse bridge 23 by buckles and slots. The first cover plate 24 is opened to adjust the layout of the cables inside the transverse bridge 23, thereby facilitating the maintenance work of the cables inside the pipeline assembly 2 by the staff.
[0038] The transverse bridge 23 is clamped and mounted on the first panel mounting seat 25 . A first baffle 26 is provided on the outer surface of the first panel mounting seat 25 . The first panel mounting seat 25 and the first baffle 26 are fixedly connected by a first cross screw 27 . The first panel mounting seat 25 is also clamped to the outer surface of the transverse bridge 23 by means of a clip and a slot. A threaded hole is provided inside the first panel mounting seat 25 to provide a position for the subsequent installation of the socket panel and the light panel on the outer surface of the pipe assembly 2, which can facilitate the subsequent panel installation work of the staff, and the first cover plate 24 and the first panel mounting seat 25 can flexibly adjust their own clamping positions on the outer surface of the transverse bridge 23 as needed, which is conducive to the flexible installation of the external panel. The first baffle 26 fills the blank area of the first panel mounting seat 25 when no external panel is installed on the first panel mounting seat 25, avoiding the external environment from interfering with the interior of the transverse bridge 23 when no external panel is installed on the outer surface of the first panel mounting seat 25, affecting the normal operation of the cable. The first cross screw 27 threadedly installs the first baffle 26 on the outer surface of the first panel mounting seat 25 to prevent the first baffle 26 from falling off from the outer surface of the first panel mounting seat 25. The first cross screw 27 can also be installed on the outer surface of the first panel mounting seat 25 when installing the external panel.
[0039] The left and right sides of the transverse bridge 23 are fixedly mounted with first chutes 28, which correspond to each other in vertical position. A first partition 29 is provided with protrusions corresponding to the shape of the first chutes 28 at both ends. The protrusions are inserted along the first chutes 28 to isolate the unused end of the transverse bridge 23 from the pipe assemblies 2 in other areas. The combination of the first chutes 28 and the first partition 29 is used. The first chutes 28 are used to provide a docking position for the first partition 29 to be installed inside the transverse bridge 23. The first partition 29 is used to be inserted into the first chutes 28 after the wall installation is completed and the wiring is confirmed, isolating the unused end of the transverse bridge 23 from the pipe assemblies 2 in other areas and preventing the environment at the unused end from affecting the cables inside the transverse bridge 23. By installing a component for reserving a cable duct in the wall in the existing device, a panel base can be set in the cable duct to reserve a position for the installation of cables and panels, eliminating the need to open a slot in the wall, which is beneficial to improving the overall efficiency and quality of construction.
[0040] Reference Figure 1 and Figure 4 A slide rail 13 is fixedly installed on the front outer surface of the main wall 11, and a buffer pad 14 is fitted on the outer surface of the slide rail 13. An insulating outer wall panel 15 is fixedly installed on the rear outer surface of the main wall 11. The slide rail 13 provides a guiding function, which is convenient for installing other components on the inside of the main wall 11. The buffer pad 14 is made of sponge material and is laid on the front surface of the main wall 1 to prevent people from directly hitting the wall and causing pain. The insulating outer wall panel 15 has the function of thermal insulation, which effectively prevents indoor heat from radiating outward, and also prevents external heat from entering the room, reducing the energy consumption of the building and improving the thermal stability of the room.
[0041] Reference Figure 1 and Figure 3 The interior of the connection assembly 3 includes a column 31, and a limit block 32 is fixedly installed on the outer surface of the left and right sides of the column 31. A vertical bridge 33 is fixedly installed on the front side of the column 31. The column 31 is the main component of the connection assembly 3 and is used to provide vertical support for the wall. The outer surface of the limit block 32 can fit with the outer surface of the first limit groove 12 and the second limit groove 22 to fix both sides of the two, so that the connection assembly 3 can connect the wall and the ground. The vertical bridge 33 provides guidance for the vertical routing of the cables, thereby setting conditions for the vertical movement of the cables, and space is opened at the upper ends of the left and right sides of the vertical bridge 33 to provide a position for the cables in the pipeline assembly 2 to enter the connection assembly 3.
[0042] Reference Figure 3The outer surface of the vertical bridge 33 is snap-fitted with a second cover plate 34, and a second panel mounting seat 35 is fixedly mounted in the middle of the upper end of the vertical bridge 33. The outer surface of the second panel mounting seat 35 is fitted with a second baffle 36, and the length of the second cover plate 34 is fixed. The vertical bridge 33 and the second cover plate 34 are snap-fitted with the card slot. The second cover plate 34 can be opened to inspect and maintain the cables inside the vertical bridge 33, which provides convenience for the inspection and maintenance of the cables in the connection assembly 3. The second panel mounting seat 35 is arranged at the intersection of the pipe assembly 2 and the connection assembly 3. A threaded hole is opened inside the first panel mounting seat 25. In addition to being opened to expand into the installation position of the socket or panel, it is convenient for the staff to inspect and maintain the intersection of the cables of the pipe assembly 2 and the connection assembly 3.
[0043] Reference Figure 3 The second panel mounting bracket 35 and the second baffle 36 are internally threaded with a second cross screw 37, and the vertical bridge 33 is provided with a second slide groove 38 at both ends, and the horizontal position of the second slide groove 38 corresponds to that of the second partition 39. The second partition 39 is provided with a protrusion corresponding to the shape of the second slide groove 38 at both ends, and the protrusion is inserted along the second slide groove 38 to isolate the unused end of the vertical bridge 33 from the connection assembly 3 in other areas. The second cross screw 37 is also used to thread the second baffle 36 onto the outer surface of the second panel mounting seat 35 to prevent the second baffle 36 from falling off from the outer surface of the second panel mounting seat 35. The second cross screw 37 can also be installed on the outer surface of the second panel mounting seat 35 when installing the external panel. The second slide groove 38 can provide a docking position for the second partition 39 to be installed inside the vertical bridge 33. The second slide groove 38 is set at multiple locations in the vertical bridge 33 to provide conditions for the second partition 39 to isolate different areas. The second partition 39 isolates the unused end of the vertical bridge 33 from the connection assembly 3 in other areas to prevent the environment in the unused end from affecting the cables inside the vertical bridge 33.
[0044] Reference Figure 3 A column positioning groove 310 is provided on the upper surface of the column 31, and a positioning block 311 is fixedly installed on the lower surface of the column 31. The column positioning groove 310 and the positioning block 311 are combined. The column positioning groove 310 is used to set the position for stacking more connection assemblies 3 in the wall, and the positioning block 311 can be inserted into the column positioning groove 310 or the base assembly 4 in the lower surface, thereby completing the vertical connection of the entire wall.
[0045] Reference Figure 1 and Figure 5The interior of the base assembly 4 includes a base body 41, and a cable duct 42 is opened inside the base body 41. The base body 41 provides stable support for the entire device, bears the weight of other assemblies, and evenly transfers this weight to the building's infrastructure. The cable duct 42 provides another channel for the cables to pass through the wall, so that the cables can be safely and neatly arranged in the wall.
[0046] Reference Figure 5 The upper surface of the base body 41 is provided with a plurality of cable interfaces 43, and the upper surface of the base body 41 is provided with a plurality of base positioning grooves 44. The cable interfaces 43 are used to provide an interface for the cables in the cable pipe 42 inside the base body 41 to enter the connection assembly 3, providing conditions for the cables to enter the interior of the pipe assembly 2 from the base assembly 4 through the connection assembly 3. The upper surface of the base positioning groove 44 can fit with the outer surface of the positioning block 311, thereby providing an accurate position for the connection assembly 3 when it is installed in the base assembly 4.
[0047] Working principle:
[0048] The duct assembly 2 is mainly used to provide a location for laying cables within a building, providing a safe and stable channel for the cables. The reinforcement plate 21 is used to reinforce the rear side of the duct assembly 2, thereby strengthening the protection of the outer portion of the duct assembly 2 facing the wall assembly 1. The second limiting groove 22 provides installation conditions for the duct assembly 2 to be connected to the outer surface of the connection assembly 3. The interior of the transverse bridge 23 provides a channel for the arrangement of cables, allowing the cables to pass through the interior of the wall assembly 1, thereby reserving a cable installation position inside the wall, without the need to open an additional groove in the wall assembly 1.
[0049] A combination of the first cover plate 24 and the first panel mounting seat 25 is adopted. The first cover plate 24 can be made of materials of different lengths. Its shortest length is consistent with the length of the first panel mounting seat 25, and the first cover plate 24 has a specification of extending two to three times itself. The first cover plate 24 is clamped to the outer surface of the transverse bridge 23 by means of buckles and slots. The first cover plate 24 is opened to adjust the layout of the cables inside the transverse bridge 23, thereby facilitating the maintenance work of the cables inside the pipeline assembly 2 by the staff. The first panel mounting seat 25 is also clamped to the outer surface of the transverse bridge 23 by means of buckles and slots. The internal opening of the first panel mounting seat 25 Threaded holes are provided for providing positions for subsequently installing socket panels and lighting panels on the outer surface of the duct assembly 2, which can facilitate the subsequent panel installation work of the staff, and the first cover plate 24 and the first panel mounting seat 25 can flexibly adjust their own clamping positions on the outer surface of the transverse bridge 23 as needed, which is conducive to the flexible installation of the external panel. The first baffle 26 fills the blank area of the first panel mounting seat 25 when no external panel is installed on the first panel mounting seat 25, thereby preventing the external environment from interfering with the interior of the transverse bridge 23 when no external panel is installed on the outer surface of the first panel mounting seat 25, thereby affecting the normal operation of the cable;
[0050] The first cross screw 27 threadedly installs the first baffle 26 on the outer surface of the first panel mounting seat 25 to prevent the first baffle 26 from falling off the outer surface of the first panel mounting seat 25. The first cross screw 27 can also be installed on the outer surface of the first panel mounting seat 25 when installing the external panel. A combination of a first slide groove 28 and a first partition 29 is used. The first slide groove 28 is used to provide a docking position for the first partition 29 to be installed inside the transverse bridge 23. The first partition 29 is used to be inserted into the inside of the first slide groove 28 after the wall installation is completed and the wiring is confirmed, so as to isolate the unused end of the transverse bridge 23 from the pipe assembly 2 in other areas, thereby preventing the environment in the unused end from affecting the cables inside the transverse bridge 23. By installing a component for reserving a cable duct in the wall in the existing device, a panel base can be set in the cable duct to reserve a position for the installation of cables and panels, without having to open a slot in the wall, which is conducive to improving the overall efficiency and quality of construction.
[0051] Finally, it is necessary to point out here that the above is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any changes or substitutions that can be easily thought of by any technician familiar with the present invention within the technical scope disclosed by the present invention should be covered within the scope of protection of the present invention.
Claims
1. A FS composite insulation outer template connection assembly structure, characterized in that: The wall assembly (1) comprises a main wall (11), and first limiting grooves (12) are provided on the left and right sides of the main wall (11); It comprises a pipe assembly (2) arranged on a wall assembly (1), wherein the pipe assembly (2) comprises a reinforcing plate (21), and second limiting grooves (22) are provided on the left and right sides of the reinforcing plate (21); The connecting assembly (3) includes a column (31), and limit blocks (32) are fixedly installed on the left and right sides of the column (31). The limit blocks (32) and the second limit grooves (22) are arranged between the two wall assemblies (1) and are used to horizontally splice the wall assemblies (1) into pieces. The column (31) has a column positioning groove (310) on the top and a positioning block (311) on the bottom. The positioning block (311) is inserted into the column positioning groove (310) to vertically connect the wall assembly (1). The first limiting groove (12) and the second limiting groove (22) are connected vertically, and the limiting block (32) is fixedly connected to the main wall (11) and the reinforcing plate (21) by being embedded in the first limiting groove (12) and the second limiting groove (22); It comprises a base assembly (4), wherein the base assembly (4) is arranged below the wall assembly (1) and is used to support the wall assembly (4).
2. The FS composite insulation outer formwork connection assembly structure according to claim 1 is characterized in that: A transverse bridge (23) is fixedly mounted on the front end of the reinforcing plate (21), and the transverse bridge (23) is clamped and mounted on the first cover plate (24). The transverse bridge (23) cooperates with the first cover plate (24) to form a pipe for accommodating pipelines.
3. The FS composite insulation outer formwork connection assembly structure according to claim 1 is characterized in that: The transverse bridge (23) is clamped and mounted on a first panel mounting seat (25); a first baffle (26) is provided on the outer surface of the first panel mounting seat (25); and the first panel mounting seat (25) and the first baffle (26) are fixedly connected by a first cross screw (27).
4. The FS composite insulation outer formwork connection assembly structure according to claim 2, characterized in that: The left and right sides of the transverse bridge (23) are fixedly mounted with first slide grooves (28), the upper and lower positions of the first slide grooves (28) corresponding to each other, and the first partition (29) is provided with protrusions corresponding to the shape of the first slide grooves (28) at both ends, and the protrusions are inserted along the first slide grooves (28) to isolate the unused end of the transverse bridge (23) from the pipeline assembly (2) in other areas.
5. The FS composite insulation outer formwork connection assembly structure according to claim 1, characterized in that: A slide rail (13) is fixedly mounted on the front surface of the main wall (11), and a buffer pad (14) is fitted on the slide rail (13).
6. The FS composite insulation outer rice board connection assembly structure according to claim 1, characterized in that: A thermal insulation exterior wall panel (15) is fixedly mounted on the back of the main wall (11).
7. The FS composite insulation outer formwork connection assembly structure according to claim 1, characterized in that: A vertical bridge (33) is fixedly mounted on the front end of the column (31); a second cover plate (34) is clamped and mounted on the vertical bridge (33); a second panel mounting seat (35) is fixedly mounted on the upper portion of the vertical bridge (33); a second baffle (36) is mounted on the second panel mounting seat (35); and the second panel mounting seat (35) and the second baffle (36) are fixedly connected via a second cross screw (37).
8. The FS composite insulation outer formwork connection assembly structure according to claim 7, characterized in that: The vertical bridge (33) is provided with a second slide groove (38) at both ends, and the horizontal position of the second slide groove (38) corresponds to that of the second partition (39). The second partition (39) is provided with a protrusion corresponding to the shape of the second slide groove (38) at both ends, and the protrusion is inserted along the second slide groove (38) to isolate the unused end of the vertical bridge (33) from the connection assembly (3) in other areas.
9. The FS composite insulation outer formwork connection assembly structure according to claim 1, characterized in that: The base assembly (4) includes a base body (41) inside, and a cable duct (42) is provided inside the base body (41).
10. The FS composite thermal insulation outer formwork connection assembly structure according to claim 1, characterized in that: The upper surface of the base body (41) is provided with a plurality of cable interfaces (43), and the upper surface of the base body (41) is provided with a plurality of base positioning grooves (44).