Mounting structure of assembly type integrated radiator cover

Through the prefabricated integrated radiator cover structure and the prefabricated connection method of metal reinforced keel and cover panel, the existing radiator cover system is solved in the complex installation and maintenance difficulties, and convenient and precise installation is achieved, reducing construction and operation and maintenance costs.

CN223294914UActive Publication Date: 2025-09-02DECORATION CO LTD OF CHINA CONSTR 3RD ENG BUREAU
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Patent Information

Application Number
CN202422753794.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-12
Publication Date
2025-09-02
Estimated Expiration
2034-11-12

AI Technical Summary

Technical Problem

The installation process of the existing radiator cover system is complicated, the installation accuracy cannot be guaranteed, the later maintenance is difficult, and the construction and operation and maintenance costs are high.

Method used

It adopts an assembled integrated radiator cover structure, including a metal reinforced keel and cover panel, which is connected to the building structural surface by assembling keels, assembling rubber pads and assembling bolts, and combines modular design and U-shaped clamp to achieve convenient installation and disassembly.

Benefits of technology

It realizes convenient and precise installation, reduces construction costs, improves installation accuracy and construction efficiency, facilitates post-maintenance, and avoids uneven surface layers and abnormal noise problems.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a mounting structure of an assembly type integrated radiator cover, which comprises an integrated radiator cover structure and a mounting system, the integrated radiator cover structure is connected with a building structural surface through the mounting system, the integrated radiator cover structure comprises a reinforced keel frame and a cover panel, the cover panel is provided with a heat dissipation port, and the heat dissipation port is connected with the integrated radiator cover structure through the mounting system. The installation system comprises an assembly keel, an assembly rubber pad and an assembly bolt, the assembly keel comprises a connecting part and a bearing part, the assembly bolt penetrates through the connecting part and is anchored into the building structural plane, the assembly rubber pad is arranged on the bearing part, and the assembly rubber pad is arranged on the bearing part. And the end edge is clamped on the assembly rubber. The assembly type installation structure is adopted, standardized, integrated and batch production of the radiator cover is achieved, construction efficiency and construction quality are improved, on-site integrated assembly type installation is achieved, later maintenance and local replacement are facilitated, construction procedures are simplified, and construction cost is reduced.
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Description

Technical Field

[0001] The utility model belongs to the technical field of assembled decoration, in particular to an installation structure of an assembled integrated radiator cover. Background Art

[0002] Radiator cover systems are currently widely used in the interior decoration of northern buildings. The existing radiator cover system is generally installed in a split manner using three parts: keel, panel, and heat dissipation port. The specific problems in actual application are as follows:

[0003] 1. Complex installation process: The existing installation method is mechanical fixed connection, which involves cumbersome cross-construction between different professions, and the construction process is complicated. It is impossible to achieve one-time success, and the construction cost is relatively high.

[0004] 2. Installation accuracy cannot be guaranteed: The radiator cover base layer conventionally adopts the process of skeleton welding or keel weaving. The welding process easily leads to excessive cumulative errors and cannot meet the installation accuracy requirements and adaptive adjustments during the installation process.

[0005] 3. Difficulty in late maintenance: Conventional processes require large-scale removal of the radiator cover during late maintenance, which can easily damage the flatness and finishing layer of the radiator cover. The maintenance cost is high and is not conducive to operation and maintenance needs. Utility Model Content

[0006] The purpose of the utility model is to provide an installation structure of an assembled integrated radiator cover, so as to solve the technical problems of the existing radiator cover system in actual application, such as complicated installation process, unguaranteed installation accuracy and difficult later maintenance.

[0007] In order to achieve the above purpose, the present invention adopts the following technical solutions:

[0008] An assembled integrated radiator cover installation structure includes an integrated radiator cover structure and a mounting system. The integrated radiator cover structure is connected to a building structure surface through the mounting system.

[0009] The integrated radiator cover structure includes a metal reinforced keel frame and a metal cover panel covering the outside of the reinforced keel frame. The cover panel is L-shaped and includes horizontal and vertical plates. The cover panel is provided with heat dissipation vents, which are arranged away from the position of the reinforced keel frame. The connection ends of the horizontal and vertical plates with the building structure surface are all provided with bent end edges.

[0010] The mounting system includes a metal assembly keel, an assembly rubber pad and an assembly bolt. The assembly keel includes a connecting portion that is tightly attached to the building structure surface. The assembly bolt passes vertically through the connecting portion and is anchored into the building structure surface. The assembly keel also includes a supporting portion that is perpendicular to the connecting portion and bent toward the end edge. The assembly rubber pad is placed on the supporting portion, and the end edge is clamped on the assembly rubber.

[0011] The reinforced keel frame includes vertical reinforced keel columns, horizontal reinforced keel main beams and horizontal reinforced keel secondary beams. The vertical reinforced keel columns are arranged at intervals along the length of the cover panel, including side columns and middle columns.

[0012] The horizontal reinforcement keel main beam is set longitudinally and fixedly connected to the top of each vertical reinforcement keel column, close to the inner side of the position where the horizontal plate and the vertical plate form a positive angle. The horizontal reinforcement keel secondary beam is set horizontally, and one end of the horizontal reinforcement keel secondary beam corresponds to the position of the vertical reinforcement keel column and is fixedly connected to the horizontal reinforcement keel main beam, including the side beam and the middle beam.

[0013] The side columns and side beams are close to the edges of the cover panels.

[0014] The building structure surface includes a wall surface, and the installation system includes a wall installation system. The horizontal plate is perpendicular to the wall and is connected to the wall surface through the wall installation system.

[0015] The wall mounting system includes wall mounting keels, wall mounting rubber pads and wall mounting bolts.

[0016] The wall mounting keel includes a vertical wall connection part, which is anchored to the wall through wall mounting bolts.

[0017] The top of the wall connection part is bent vertically twice toward the horizontal plate to form a wall support part. A slot with an upward opening is formed between the wall support part and the wall. The wall assembly rubber pad is U-shaped and inserted into the slot.

[0018] The horizontal plate end edge is formed by vertically bending the plate end of the horizontal plate downward along the transverse end surface of the horizontal reinforcing keel secondary beam, and the horizontal plate end edge is inserted into the slot.

[0019] The top of the wall supporting part is arc-shaped to form a support arc point. The wall-assembled rubber pad includes a wall limb and a gasket limb. The wall limb is close to the wall, and the gasket limb is horizontally bent at the support arc point. The lateral end of the horizontal reinforcement keel secondary beam is pressed on the gasket limb here.

[0020] The building structure surface includes the ground, and the installation system includes a ground installation system. The vertical plate is perpendicular to the ground and connected to the ground through the ground installation system.

[0021] The ground installation system includes ground mounting keels, ground mounting rubber pads and ground mounting bolts.

[0022] The ground assembly keel includes a horizontal ground connection part, which is anchored to the ground through ground assembly bolts.

[0023] The outer end of the ground connection part is bent vertically toward the vertical plate to form a ground support part, and the wall-mounted rubber pad is clamped on the ground support part in an inverted U shape.

[0024] The end edges of the vertical plate are formed by bending the bottom of the vertical plate four times along the bottom end surface of the vertical reinforcing keel column toward the inside, namely the first bent edge, the second bent edge, the third bent edge and the fourth bent edge. The first bent edge is formed by the bottom end of the vertical plate being bent horizontally inward along the bottom end surface of the vertical reinforcing keel column, the second bent edge is formed by the inner end of the first bent edge being bent vertically upward along the inner surface of the vertical reinforcing keel column, the third bent edge is formed by the top end of the second bent edge being bent horizontally inward, and the fourth bent edge is formed by the inner end of the third bent edge being bent vertically downward. The second bent edge, the third bent edge and the fourth bent edge form a buckle groove opening downward on the inner side of the vertical reinforcing keel column.

[0025] The ground assembly rubber pad is inserted into the buckle groove in an inverted U shape.

[0026] The ground supporting portion is inserted into the ground assembly rubber pad.

[0027] The heat dissipation vent is set in the middle of the horizontal plate, and the heat dissipation vent is set at the bottom of the vertical plate.

[0028] The cross-sections of the side columns and side beams are both U-shaped, with the U-shaped opening of the side columns facing the wall and the U-shaped opening of the side beams facing downward.

[0029] A module connection system is provided between adjacent integrated radiator cover structures. The module connection system includes module connection edges, side columns, side beams and U-shaped clamps.

[0030] The module connection edges include vertical module connection edges and horizontal module connection edges. The vertical module connection edges are formed by bending the transverse ends of the vertical plates inward along the surface of the side columns. The end faces of the vertical module connection edges are flush with the end faces of the side columns. The horizontal module connection edges are formed by bending the transverse ends of the horizontal plates downward along the surface of the side beams. The end faces of the horizontal module connection edges are flush with the end faces of the side beams. The vertical module connection edges and horizontal module connection edges between adjacent integrated radiator cover structures are respectively in close contact with each other.

[0031] The opening direction of the U-shaped clamp is opposite to the opening directions of the side column and the side beam, and the two limbs of the U-shaped clamp are inserted into and clamped in the U-shaped grooves of the adjacent side column and the side beam.

[0032] The U-shaped clamp includes a fixed connecting limb and a movable clamping limb. The end of the movable clamping limb is provided with an elastic pressing convex. The fixed connecting limb is welded to the U-shaped groove of the side column and side beam on one side, and the elastic pressing convex is tightly pressed against the U-shaped groove of the side column and side beam on the other side.

[0033] The cross-sections of the center column and center beam are U-shaped or rectangular.

[0034] Compared with the prior art, the present invention has the following features and beneficial effects:

[0035] The utility model provides an installation structure of an assembled integrated radiator cover, which adopts an assembled clip-on installation system for different walls and floors, realizes convenient and precise installation of various parts, and realizes the maintenance function of convenient disassembly and assembly.

[0036] The utility model punches the heat dissipation outlet on the radiator cover, combines the cover surface and the heat dissipation outlet into one, and forms an integrated and integrated radiator cover structure by welding and fixing the reinforced keel frame to the cover panel in the factory, which solves the problem of separate welding or shaping of the base keel of the radiator cover on site, solves the deformation caused by base welding, reduces on-site construction procedures, reduces construction costs, avoids the uneven surface layer caused by keel deformation, ensures installation accuracy and firmness, realizes a productized processing mode, improves the decorative effect and construction quality of the overall surface layer, and meets the requirements of installation flatness and accuracy.

[0037] The utility model also uses a matching special assembly keel and assembly bolts to directly fix it to the main structure or decorative surface. The integrated radiator cover structure is directly snapped into the assembly keel for fixation. The integrated assembly installation method solves the problem of cross-construction of the radiator cover system and improves construction efficiency. At the same time, through the snap-on process, it solves the problem of difficulty in later operation and maintenance, and realizes and guarantees the maintenance needs of convenient disassembly and assembly of the panel. An assembly rubber pad is set between the cover panel and the special assembly keel to ensure a soft connection between the metals and avoid abnormal noise caused by friction and collision with the main structure.

[0038] The utility model adopts a modular design, and adjacent integrated radiator cover structures can be clamped and fixed by U-shaped clamps, which is convenient for installation. BRIEF DESCRIPTION OF THE DRAWINGS

[0039] The present invention will be further described in detail below with reference to the accompanying drawings.

[0040] Figure 1 It is a schematic diagram of the three-dimensional structure of the utility model in use state.

[0041] Figure 2 yes Figure 1 Schematic diagram of the internal structure.

[0042] Figure 3 yes Figure 1 Schematic diagram of the side plan structure.

[0043] Figure 4 yes Figure 1 Schematic diagram of local connection of the middle wall.

[0044] Figure 5 yes Figure 3 Schematic diagram of local connection of the middle wall.

[0045] Figure 6 yes Figure 1 Schematic diagram of local connection on the ground.

[0046] Figure 7 yes Figure 3 Schematic diagram of local connection of the middle wall.

[0047] Figure 8 It is a schematic diagram of the exploded three-dimensional structure of the utility model.

[0048] Figure 9 It is a schematic diagram of the three-dimensional structure of the cover panel of the present utility model.

[0049] Figure 10 It is a schematic diagram of the three-dimensional structure of the keel junction.

[0050] Figure 11 It is an external three-dimensional schematic diagram of the connection between modules of the utility model.

[0051] Figure 12 It is a three-dimensional side view schematic diagram of the connection position between modules of the utility model.

[0052] Figure 13 It is an internal three-dimensional schematic diagram of the connection positions between modules of the utility model.

[0053] Figure 14 yes Figure 13 A partial enlarged schematic diagram.

[0054] Figure 15 This is a schematic diagram of the connection of the U-shaped clamps between modules of the utility model located at the side column position.

[0055] Figure 16 This is a schematic diagram of the connection of the U-shaped clamp between modules of the utility model at the side beam position.

[0056] Reference numerals:

[0057] 1 - cover panel, 11 - horizontal plate, 111 - horizontal plate end edge, 112 - horizontal module connection edge, 12 - vertical plate, 121 - first bending edge, 122 - second bending edge, 123 - third bending edge, 124 - fourth bending edge, 125 - vertical module connection edge, 13 - heat dissipation vent;

[0058] 2 - reinforced keel frame, 21 - vertical reinforced keel column, 211 - side column, 212 - center column, 22 - horizontal reinforced keel main beam, 23 - horizontal reinforced keel secondary beam, 231 - side beam, 232 - center beam;

[0059] 3-Wall;

[0060] 4 - wall mounting system, 41 - wall mounting keel, 411 - wall connection part, 412 - wall support part, 413 - support arc point, 42 - wall mounting rubber pad, 421 - wall limb, 422 - gasket limb, 43 - wall mounting bolt, 44 - slot;

[0061] 5 - ground;

[0062] 6 - Ground mounting system, 61 - Ground mounting keel, 611 - Ground connection part, 612 - Ground support part, 62 - Ground mounting rubber pad, 63 - Ground mounting bolt, 64 - Buckle slot;

[0063] 7-U-shaped clamp, 71-fixed connecting limb, 72-movable clamping limb, 73-elastic pressing convex. DETAILED DESCRIPTION

[0064] For example, see Figure 1-3 As shown, an assembled integrated radiator cover installation structure includes an integrated radiator cover structure and a mounting system. The integrated radiator cover structure is connected to the building structure surface through the mounting system.

[0065] The integrated radiator cover structure includes a metal reinforced keel frame 2 and a metal cover panel 1 covering the outside of the reinforced keel frame 2. The cover panel is L-shaped and includes a horizontal plate 11 and a vertical plate 12. A heat dissipation port 13 is provided on the cover panel 1. The heat dissipation port 13 is set to avoid the position of the reinforced keel frame 2. In this embodiment, the heat dissipation port 13 is set in the middle of the horizontal plate 11, and the heat dissipation port 13 is set at the bottom of the vertical plate 12.

[0066] See also Figure 9 As shown, the connecting ends of the horizontal plate 11 and the vertical plate 12 with the building structure surface are both provided with bent end edges.

[0067] The mounting system includes a metal assembly keel, an assembly rubber pad and an assembly bolt. The assembly keel includes a connecting portion that is tightly attached to the building structure surface. The assembly bolt passes vertically through the connecting portion and is anchored into the building structure surface. The assembly keel also includes a supporting portion that is perpendicular to the connecting portion and bent toward the end edge. The assembly rubber pad is placed on the supporting portion, and the end edge is clamped on the assembly rubber.

[0068] See also Figure 8 、 10 As shown, the reinforced keel frame 2 includes vertical reinforced keel columns 21, horizontal reinforced keel main beams 22 and horizontal reinforced keel secondary beams 23. The vertical reinforced keel columns 21 are arranged at intervals along the length direction of the cover panel 1, and include side columns 211 and middle columns 212.

[0069] See also Figure 8As shown, the horizontal reinforcing keel main beam 22 is set longitudinally and has a square cross-section. The horizontal reinforcing keel main beam 22 is fixedly connected to the top of each vertical reinforcing keel column 21, close to the inner side of the position where the horizontal plate 11 and the vertical plate 12 form a positive angle. The horizontal reinforcing keel secondary beam 23 is set horizontally, and one end of the horizontal reinforcing keel secondary beam 23 corresponds to the position of the vertical reinforcing keel column 21 and is fixedly connected to the horizontal reinforcing keel main beam 22, including side beams 231 and middle beams 232.

[0070] The side columns 211 and the side beams 231 are both close to the edges of the cover panel 1 .

[0071] See also Figure 1-8 As shown, in this embodiment, the building structure surface includes a wall 3 , the mounting system includes a wall mounting system 4 , and the horizontal plate 11 is perpendicular to the wall 3 and connected to the wall 3 through the wall mounting system 4 .

[0072] See also Figure 1-5 As shown, the wall mounting system 4 includes a wall mounting keel 41 , a wall mounting rubber pad 42 and a wall mounting bolt 43 .

[0073] The wall mounting keel 41 includes a vertical wall connection portion 411 , which is anchored to the wall 3 via wall mounting bolts 43 .

[0074] The top of the wall connection part 411 is bent vertically twice toward the horizontal plate 11 to form a wall supporting part 412. A slot 44 with an upward opening is formed between the wall supporting part 412 and the wall 3. The wall mounting rubber pad 42 is U-shaped and inserted into the slot 44.

[0075] The horizontal plate end edge 111 is formed by bending the plate end of the horizontal plate 11 vertically downward along the transverse end surface of the horizontal reinforcing keel secondary beam 23 , and the horizontal plate end edge 111 is inserted into the slot 44 .

[0076] The top of the wall supporting portion 412 is arc-shaped to form a support arc point 413. The wall-mounted rubber pad 42 includes a wall limb 421 and a gasket limb 422. The wall limb 421 is close to the wall 3, and the gasket limb 422 is horizontally bent at the support arc point 413. The lateral end of the horizontal reinforcing keel secondary beam 23 is pressed on the gasket limb 422 here.

[0077] See also Figure 1-8 As shown, in this embodiment, the building structure surface also includes the ground 5 , the mounting system includes a ground mounting system 6 , and the vertical plate 12 is perpendicular to the ground and connected to the ground 5 through the ground mounting system 6 .

[0078] See also Figure 1-4 As shown in 6-8 , the ground mounting system 6 includes a ground mounting keel 61 , a ground mounting rubber pad 62 and a ground mounting bolt 63 .

[0079] The ground mounting keel 61 includes a horizontal ground connection portion 611 , which is anchored to the ground 5 via ground mounting bolts 63 .

[0080] The outer end of the ground connection portion 611 is vertically bent toward the vertical plate 12 to form a ground supporting portion 612 , and the wall mounting rubber pad 42 is clamped on the ground supporting portion 612 in an inverted U shape.

[0081] The end edges of the vertical plate are formed by four bendings of the bottom of the vertical plate 12 along the bottom end surface of the vertical reinforcing keel column 21 toward the inside, namely the first bending edge 121, the second bending edge 122, the third bending edge 123 and the fourth bending edge 124. The first bending edge 121 is formed by the bottom end of the vertical plate 12 being horizontally bent inward along the bottom end surface of the vertical reinforcing keel column 21, the second bending edge 122 is formed by the inner end of the first bending edge 121 being vertically bent upward along the inner surface of the vertical reinforcing keel column 21, the third bending edge 123 is formed by the top end of the second bending edge 122 being horizontally bent inward, and the fourth bending edge 124 is formed by the inner end of the third bending edge 123 being vertically bent downward. The second bending edge 122, the third bending edge 123 and the fourth bending edge 124 form a buckle groove 64 opening downward on the inner side of the vertical reinforcing keel column 21.

[0082] The ground mounting rubber pad 62 is inserted into the buckle groove 64 in an inverted U shape.

[0083] The ground supporting portion 612 is inserted into the ground mounting rubber pad 62 .

[0084] See also Figure 12-16 As shown, in this embodiment, the cross-sections of the side columns 211 and side beams 231 are both U-shaped, with the U-shaped openings of the side columns 211 facing the wall and the U-shaped openings of the side beams 231 facing downward. The cross-sections of the center columns 212 and center beams 232 are U-shaped or rectangular. In this embodiment, they are U-shaped.

[0085] See also Figure 11-16 As shown, in this embodiment, the integrated radiator cover structure is a modular integrated structure, and a module connection system is provided between adjacent integrated radiator cover structures. The module connection system includes a module connection edge, a side column 211, a side beam 231 and a U-shaped clamp 7.

[0086] See also Figure 8-9As shown, the module connecting edge includes a vertical module connecting edge 125 and a horizontal module connecting edge 112. The vertical module connecting edge 125 is formed by the lateral end of the vertical plate 12 being bent inward along the surface of the side column 211, and the end face of the vertical module connecting edge 125 is flush with the end face of the side column 211. The horizontal module connecting edge 112 is formed by the lateral end of the horizontal plate 11 being bent downward along the surface of the side beam 231, and the end face of the horizontal module connecting edge 112 is flush with the end face of the side beam 231. The vertical module connecting edge 125 and the horizontal module connecting edge 112 between adjacent integrated radiator cover structures are respectively in close contact with each other.

[0087] See also Figure 12-16 As shown, the opening direction of the U-shaped clamp 7 is opposite to the opening directions of the side column 211 and the side beam 231 , and the two limbs of the U-shaped clamp 7 are inserted into and clamped in the U-shaped grooves of the adjacent side column 211 and the side beam 231 .

[0088] The U-shaped clamp 7 includes a fixed connecting limb 71 and a movable clamping limb 72. The end of the movable clamping limb 72 is provided with an elastic pressing protrusion 73. The fixed connecting limb 71 is welded to the U-shaped groove of the side column 211 and the side beam 231 on one side, and the elastic pressing protrusion 73 is pressed tightly against the U-shaped groove of the side column 211 and the side beam 231 on the other side.

[0089] The assembly installation steps of this utility model are as follows:

[0090] Step 1: Preparation: Prepare the required integrated radiator cover structure, wall mounting system, ground mounting system, U-shaped clamp and other parts.

[0091] Step 2: Laying out the lines: After confirming the finished surface line of the wall, extend it outward 250-300mm as the finished surface of the cover panel, and determine the radiator layout according to the division and alignment of the wall decoration material panels.

[0092] Step 3: Install the assembly keel: First, fix the assembly keel to the wall and the ground with assembly bolts. The assembly keel is set to a full length, and the spacing between each expansion bolt is 600mm.

[0093] Step 4: Install rubber pads: Install rubber pads in the special keel slots on the wall and ground to isolate metals.

[0094] Step 5. Install the integrated radiator cover structure: Insert the integrated radiator cover structure into the assembly keel from top to bottom. The cover panel, heat dissipation port and reinforced keel frame of the integrated radiator cover structure should be integrated and processed in the factory. The form of the heat dissipation port can be set according to the effect. It is necessary to ensure that the reinforced keel avoids the position of the heat dissipation port. The reinforced keel frame is set horizontally along the entire length of the outer corner, and the spacing between the vertical reinforced keel columns is 400mm.

[0095] Step 7: Between adjacent integrated radiator cover structures, weld a U-shaped clamp to one side of the cover panel. Use the clamp to join the two modules together and perform leveling and alignment. The clamp's inner diameter equals the thickness of two cover panels + the wall thickness of two reinforced keels + the thickness of one rubber pad.

Claims

1. An assembled integrated radiator cover installation structure, characterized by: It includes an integrated radiator cover structure and a mounting system. The integrated radiator cover structure is connected to the building structure surface through the mounting system. The integrated radiator cover structure includes a metal reinforced keel frame (2) and a metal cover panel (1) covering the outside of the reinforced keel frame (2). The cover panel is L-shaped and includes a horizontal plate (11) and a vertical plate (12). A heat dissipation port (13) is provided on the cover panel (1). The heat dissipation port (13) is arranged to avoid the position of the reinforced keel frame (2). The connection ends of the horizontal plate (11) and the vertical plate (12) with the building structure surface are both provided with bent end edges. The mounting system includes a metal assembly keel, an assembly rubber pad and an assembly bolt. The assembly keel includes a connecting portion that is tightly attached to the building structure surface. The assembly bolt passes vertically through the connecting portion and is anchored into the building structure surface. The assembly keel also includes a supporting portion that is perpendicular to the connecting portion and bent toward the end edge. The assembly rubber pad is placed on the supporting portion, and the end edge is clamped on the assembly rubber.

2. The mounting structure of the assembled integrated radiator cover according to claim 1, characterized in that: The reinforced keel frame (2) includes vertical reinforced keel columns (21), horizontal reinforced keel main beams (22) and horizontal reinforced keel secondary beams (23). The vertical reinforced keel columns (21) are arranged at intervals along the length direction of the cover panel (1) and include side columns (211) and middle columns (212). The horizontal reinforcement keel main beam (22) is arranged longitudinally through the entire length. The horizontal reinforcement keel main beam (22) is fixedly connected to the top of each vertical reinforcement keel column (21) and is close to the inner side of the position where the horizontal plate (11) and the vertical plate (12) form a positive angle. The horizontal reinforcement keel secondary beam (23) is arranged transversely. One end of the horizontal reinforcement keel secondary beam (23) corresponds to the position of the vertical reinforcement keel column (21) and is fixedly connected to the horizontal reinforcement keel main beam (22). The horizontal reinforcement keel secondary beam (23) includes a side beam (231) and a middle beam (232). The side columns (211) and the side beams (231) are both close to the edges of the cover panel (1).

3. The mounting structure of the assembled integrated radiator cover according to claim 2, characterized in that: The building structure surface includes a wall surface (3), the mounting system includes a wall mounting system (4), the horizontal plate (11) is perpendicular to the wall surface (3) and is connected to the wall surface (3) through the wall mounting system (4), The wall mounting system (4) includes a wall mounting keel (41), a wall mounting rubber pad (42) and a wall mounting bolt (43). The wall assembly keel (41) includes a vertical wall connection portion (411), and the wall connection portion (411) is anchored to the wall (3) through a wall assembly bolt (43). The top of the wall connection portion (411) is bent vertically twice toward the horizontal plate (11) to form a wall support portion (412). A slot (44) with an upward opening is formed between the wall support portion (412) and the wall (3). A wall assembly rubber pad (42) is U-shaped and inserted into the slot (44). The horizontal plate end edge (111) is formed by vertically bending the plate end of the horizontal plate (11) downward along the transverse end surface of the horizontal reinforcing keel secondary beam (23), and the horizontal plate end edge (111) is inserted into the slot (44).

4. The mounting structure of the assembled integrated radiator cover according to claim 3, characterized in that: The top of the wall supporting portion (412) is arc-shaped to form a support arc point (413). The wall assembly rubber pad (42) includes a wall limb (421) and a gasket limb (422). The wall limb (421) is closely attached to the wall (3). The gasket limb (422) is horizontally bent at the support arc point (413). The transverse end of the horizontal reinforcing keel secondary beam (23) is pressed on the gasket limb (422) at this location.

5. The mounting structure of the assembled integrated radiator cover according to claim 2, characterized in that: The building structure surface includes a ground (5), the mounting system includes a ground mounting system (6), the vertical plate (12) is perpendicular to the ground and connected to the ground (5) through the ground mounting system (6), The ground mounting system (6) includes a ground mounting keel (61), a ground mounting rubber pad (62) and a ground mounting bolt (63). The ground assembly keel (61) includes a horizontal ground connection portion (611), and the ground connection portion (611) is anchored to the ground (5) through a ground assembly bolt (63). The outer end of the ground connection portion (611) is vertically bent toward the vertical plate (12) to form a ground support portion (612), and the wall-mounted rubber pad (42) is clamped on the ground support portion (612) in an inverted U shape. The end edges of the vertical plate are formed by bending the bottom of the vertical plate (12) along the bottom end surface of the vertical reinforcing keel column (21) toward the inside four times, namely the first bending edge (121), the second bending edge (122), the third bending edge (123) and the fourth bending edge (124). The first bending edge (121) is formed by bending the bottom end of the vertical plate (12) horizontally inward along the bottom end surface of the vertical reinforcing keel column (21). The second bending edge (122) is the first bending edge (121). The inner end portion of the vertical reinforcing keel column (21) is formed by being bent vertically upward along the inner surface of the vertical reinforcing keel column (21), the third bending edge (123) is formed by bending the top portion of the second bending edge (122) inwardly horizontally, and the fourth bending edge (124) is formed by bending the inner end portion of the third bending edge (123) downwardly vertically. The second bending edge (122), the third bending edge (123) and the fourth bending edge (124) form a buckle groove (64) opening downward on the inner side of the vertical reinforcing keel column (21). The ground assembly rubber pad (62) is inserted into the buckle groove (64) in an inverted U shape. The ground supporting portion (612) is inserted into the ground assembly rubber pad (62).

6. The mounting structure of the assembled integrated radiator cover according to claim 2, characterized in that: The heat dissipation opening (13) is provided at the middle portion of the horizontal plate (11), and the heat dissipation opening (13) is provided at the bottom of the vertical plate (12).

7. The mounting structure of the assembled integrated radiator cover according to any one of claims 2 to 6, characterized in that: The cross sections of the side column (211) and the side beam (231) are both U-shaped, the U-shaped opening of the side column (211) faces the wall, and the U-shaped opening of the side beam (231) faces downward. A module connection system is provided between adjacent integrated radiator cover structures, the module connection system comprising a module connection edge, a side column (211), a side beam (231) and a U-shaped clamp (7). The module connection edge includes a vertical module connection edge (125) and a horizontal module connection edge (112). The vertical module connection edge (125) is formed by bending the transverse end of the vertical plate (12) inward along the surface of the side column (211). The end surface of the vertical module connection edge (125) is flush with the end surface of the side column (211). The horizontal module connection edge (112) is formed by bending the transverse end of the horizontal plate (11) downward along the surface of the side beam (231). The end surface of the horizontal module connection edge (112) is flush with the end surface of the side beam (231). The vertical module connection edge (125) and the horizontal module connection edge (112) between adjacent integrated radiator cover structures are respectively in close contact with each other. The opening direction of the U-shaped clamp (7) is opposite to the opening direction of the side column (211) and the side beam (231), and the two limbs of the U-shaped clamp (7) are inserted into and clamped in the U-shaped grooves of the adjacent side column (211) and the side beam (231).

8. The mounting structure of the assembled integrated radiator cover according to claim 7, characterized in that: The U-shaped clamp (7) includes a fixed connecting limb (71) and a movable clamping limb (72). The end of the movable clamping limb (72) is provided with an elastic pressing protrusion (73). The fixed connecting limb (71) is welded to the U-shaped groove of the side column (211) and the side beam (231) on one side, and the elastic pressing protrusion (73) is pressed tightly against the U-shaped groove of the side column (211) and the side beam (231) on the other side.

9. The mounting structure of the assembled integrated radiator cover according to claim 7, characterized in that: The cross-sections of the center column (212) and the center beam (232) are U-shaped or rectangular.