Parapet wall integrated heat preservation and decoration structure

By integrating insulation and decoration functions into an integrated insulation and decoration structure, the problems of cumbersome construction and safety hazards of traditional parapet walls are solved, and efficient construction and high-quality insulation and decoration effects are achieved.

CN223410423UActive Publication Date: 2025-10-03CHINA CONSTR FIRST DIV GROUP CONSTR & DEV
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Patent Information

Application Number
CN202422791794.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-15
Publication Date
2025-10-03
Estimated Expiration
2034-11-15

AI Technical Summary

Technical Problem

In traditional parapet construction, the insulation layer and the decorative layer are treated separately, which leads to complicated construction and long construction period, and there are risks of cold bridges, leakage and safety hazards.

Method used

An integrated thermal insulation and decorative structure is adopted, which is fixed to the concrete parapet through prefabricated cladding aluminum panels and corner brackets, integrating thermal insulation and decorative functions to form a closed water retaining system.

Benefits of technology

Improve construction efficiency, reduce quality risks, ensure thermal insulation effect and decorative aesthetics, and reduce safety risks.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223410423U_ABST
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Abstract

The utility model discloses a parapet wall integrated heat preservation and decoration structure which comprises a concrete parapet wall. The lower corner connectors are fixed to the inner side of the concrete parapet wall and arranged below the bottom face of the coping, and the multiple lower corner connectors are evenly arranged at intervals in the horizontal direction; the upper corner connector is fixed on the outer side of the concrete parapet wall, and the height of the upper corner connector is consistent with that of the coping top surface; the integrated heat preservation and decoration structure comprises a cladding aluminum plate, one end of the cladding aluminum plate is fixedly connected with the upper corner connector, the other end of the cladding aluminum plate is fixedly connected with the lower corner connector, and the cladding aluminum plate is filled with a rock wool heat preservation layer. And the inter-plate connecting corner connector is fixed on the bottom surface of the concrete parapet wall coping and is used for connecting two adjacent coated aluminum plates. A prefabricated assembly type structure is adopted, heat preservation and decoration functions are integrated, construction efficiency is remarkably improved, potential quality hazards are reduced, the heat preservation effect and decoration attractiveness are ensured, and meanwhile safety risks are reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of roof parapet construction, in particular to an integrated thermal insulation decorative structure of a parapet. Background Art

[0002] During the construction of building roofs, parapets, as extensions of the exterior walls, serve a protective and beautifying purpose. However, traditional parapet construction methods typically separate the insulation layer from the decorative layer, which is a complex process and requires a long construction period. Existing solutions often involve on-site installation of the insulation layer and the decorative layer, which not only increases construction difficulty and time costs but also poses the risk of quality issues such as cold bridges and leakage. Furthermore, the need for hot welding operations can pose safety risks during actual construction. Utility Model Content

[0003] The purpose of the utility model is to provide an integrated thermal insulation and decorative structure of a parapet to solve the problems raised in the above-mentioned background technology.

[0004] To achieve the above-mentioned purpose, the utility model provides an integrated thermal insulation and decorative structure of a parapet, comprising: a concrete parapet; a lower angle code, which is fixed to the inner side of the concrete parapet and arranged below the bottom surface of the top, and a plurality of lower angle codes are evenly spaced in the horizontal direction; an upper angle code, which is fixed to the outer side of the concrete parapet and is at the same height as the top surface of the top; an integrated thermal insulation and decorative structure, which comprises a cladding aluminum plate, one end of the cladding aluminum plate is fixedly connected to the upper angle code, and the other end is fixedly connected to the lower angle code, and the interior of the cladding aluminum plate is filled with a rock wool insulation layer; an inter-plate connecting angle code, which is fixed to the bottom surface of the concrete parapet and is used to connect two adjacent cladding aluminum plates.

[0005] In a preferred embodiment, multiple groups of inter-board connection angle codes are provided, the spacing between two adjacent groups of inter-board connection angle codes is consistent with the length of the cladding aluminum plate, each group of inter-board connection angle codes are evenly spaced along the direction perpendicular to the parapet wall, and the inter-board connection angle codes are fixedly connected to the concrete parapet by cement nails.

[0006] In a preferred embodiment, the integrated thermal insulation and decorative structure also includes a dripping hawk with an inner concave depth of 50 mm and a width of 100 mm. The dripping hawk is arranged below the top pressure and is an integrated structure with the cladding aluminum plate. The cladding aluminum plate is a fluorocarbon sprayed cladding aluminum plate with a thickness of 2 mm.

[0007] In a preferred embodiment, the flanges at the connection points of the cladding aluminum plates and the connecting angles between the plates are connected by rivets, and the connecting angles between the plates are filled with sealing strips and silicone weatherproof sealant.

[0008] In a preferred embodiment, the bent portion at one end of the cladding aluminum plate is fixedly connected to the upper angle bracket by an upper fixing screw, and the horizontal portion at the other end of the cladding aluminum plate is fixedly connected to the lower angle bracket by a lower fixing screw. The upper angle bracket and the lower angle bracket are respectively connected to the concrete parapet by cement nails, and the sides are sealed by silicone weather-resistant sealant.

[0009] In a preferred embodiment, the lower corner code and the upper corner code are both L-shaped, the horizontal length of the lower corner code is greater than the horizontal length of the upper corner code, and the vertical portion of the lower corner code and the lower end of the vertical portion of the upper corner code are respectively inclinedly provided with a first folded edge and a second folded edge.

[0010] In a preferred embodiment, the facade of the concrete parapet is provided with a thermal insulation plaster wall surface, and the thermal insulation plaster wall surface covers the lower corner code.

[0011] Compared with the prior art, the beneficial effects of the present invention are:

[0012] The utility model can be quickly fixed to the concrete parapet through the prefabricated integrated insulation and decorative structure in conjunction with the lower corner brackets and the upper corner brackets. The prefabricated assembled structure integrates insulation and decorative functions, significantly improving construction efficiency, reducing quality risks, ensuring insulation effects and decorative aesthetics, and reducing safety risks. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 This is a cross-sectional diagram of the integrated thermal insulation and decorative structure of the parapet of the present invention;

[0014] Figure 2 This is a side view of the connection details of the cladding aluminum plate of the present invention.

[0015] Description of reference numerals:

[0016] 1. Concrete parapet; 11. Capping; 2. Lower corner bracket; 21. First fold edge; 3. Upper corner bracket; 31. Second fold edge; 4. Integrated insulation and decorative structure; 41. Aluminum cladding; 42. Rock wool insulation layer; 43. Drip hook; 5. Upper fixing screws; 6. Lower fixing screws; 7. Inter-board connection angle bracket; 8. Sealing strips and silicone weatherproof sealant; 9. Rivets; 10. Concrete nails; 12. Insulated plaster wall. DETAILED DESCRIPTION

[0017] The technical solutions in the embodiments of the present invention are described clearly and completely below. The embodiments of the present invention and all other embodiments obtained by persons of ordinary skill in the art without creative work are within the scope of protection of the present invention.

[0018] Example 1:

[0019] like Figures 1 to 2 As shown, the integrated thermal insulation and decorative structure of the parapet of the present invention comprises: a concrete parapet 1, a lower corner bracket 2, an upper corner bracket 3, an integrated thermal insulation and decorative structure 4, and an inter-board connection corner bracket 7. The lower corner bracket 2 is fixed to the inner side of the concrete parapet 1 and is arranged below the bottom surface of the top 11, and multiple lower corner brackets 2 are evenly spaced in the horizontal direction. The upper corner bracket 3 is fixed to the outer side of the concrete parapet 1 and is at the same height as the top surface of the top 11. The integrated thermal insulation and decorative structure 4 comprises a cladding aluminum plate 41, one end of the cladding aluminum plate 41 is fixedly connected to the upper corner bracket 3, and the other end is fixedly connected to the lower corner bracket 2, and the interior of the cladding aluminum plate 41 is filled with a rock wool insulation layer 42. The inter-board connection corner bracket 7 is fixed to the bottom surface of the top 11 of the concrete parapet 1 and is used to connect two adjacent cladding aluminum plates 41.

[0020] Furthermore, multiple groups of inter-plate connection angle codes 7 are provided, and the spacing between two adjacent groups of inter-plate connection angle codes 7 is consistent with the length of the cladding aluminum plate 41. Each group of inter-plate connection angle codes 7 is evenly spaced along the direction perpendicular to the parapet wall. The inter-plate connection angle codes 7 are U-shaped structures, and the inter-plate connection angle codes 7 include a connection portion parallel to the parapet and two connection portions perpendicular to the parapet. The connection portion parallel to the parapet is fixedly connected to the concrete parapet 1 by cement nails 10. The flanges at the connection of two adjacent cladding aluminum plates 41 are respectively connected to the two connection portions perpendicular to the parapet with rivets 9, and the interior of the inter-plate connection angle codes 7 is filled with sealing strips and silicone weather-resistant sealant 8 to form a closed water-retaining system to prevent leakage.

[0021] Furthermore, the integrated thermal insulation decorative structure 4 includes a concave dripping hawk 43, which is positioned below the cap 11 and is integrated with the aluminum cladding plate 41. The bent portion of the aluminum cladding plate 41 is fixedly connected to the upper angle bracket 3 via upper fixing screws 5, and the horizontal portion of the other end of the aluminum cladding plate 41 is fixedly connected to the lower angle bracket 2 via lower fixing screws 6. The upper and lower angle brackets 3 and 2 are each connected to the concrete parapet 1 via cement nails, and the sides are sealed with silicone weatherproof sealant.

[0022] Furthermore, the lower corner code 2 and the upper corner code 3 are both L-shaped, the horizontal length of the lower corner code 2 is greater than the horizontal length of the upper corner code 3, and the lower ends of the vertical parts of the lower corner code 2 and the upper corner code 3 are respectively inclined with a first folded edge 21 and a second folded edge 31.

[0023] Furthermore, the facade of the concrete parapet 1 is provided with an insulating plaster wall 12, forming a closed insulation system and concealing the lower corner code 2, further improving the insulation performance of the overall structure.

[0024] Example 2:

[0025] In this embodiment, the lower angle brackets 2 are spaced 400mm apart horizontally, and the horizontal length of the lower angle brackets 2 is 300mm. They are located 150mm below the bottom surface of the top and are connected to the concrete parapet 1 using cement nails. The upper angle brackets 3 are spaced 400mm apart horizontally, and the horizontal length of the upper angle brackets 3 is 100mm. They are at the same height as the top surface of the top and are connected to the concrete parapet 1 using cement nails. Multiple groups of inter-board connection angle brackets 7 are spaced 2000mm apart horizontally along the direction of the parapet extension, and each group of inter-board connection angle brackets 7 is evenly spaced 200mm apart in the direction perpendicular to the parapet wall. The length of a single cladding aluminum plate 41 is 2000mm, and the cladding aluminum plate 41 is a fluorocarbon spray-coated cladding aluminum plate with a thickness of 2mm. The rock wool insulation layer 42 is 150mm thick, and the concave depth of the dripping eagle 43 is 50mm and the width is 100mm.

[0026] Example 3:

[0027] The construction process of the integrated thermal insulation decorative structure of the parapet wall of the utility model is as follows:

[0028] Step 1: Clean the base wall of concrete parapet 1 and ensure the surface flatness: the deviation between the 2m straightedge and the feeler gauge should not exceed 8mm;

[0029] Step 2: Fix the lower corner bracket 2 on the inside of the concrete parapet with a horizontal spacing of 400mm. The horizontal length of the lower corner bracket is 300mm, and it is located 150mm below the bottom surface of the capping 11. Use cement nails to connect it to the concrete parapet 1, and seal the side with silicone weatherproof sealant.

[0030] Step 3: Fix the upper corner bracket 3 to the outside of the concrete parapet with a horizontal spacing of 400mm. The horizontal length of the upper corner bracket is 100mm, which is consistent with the height of the top surface of the capping 11. Use cement nails to connect it to the concrete parapet 1 and seal the side with silicone weatherproof sealant.

[0031] Step 4: Fix the inter-board connection angle brackets 7 to the bottom surface of the concrete parapet top. Multiple sets of inter-board connection angle brackets 7 are spaced 2000mm apart in the direction of the parapet extension. Each set of inter-board connection angle brackets 7 is evenly spaced 200mm apart in the direction perpendicular to the parapet wall. Use cement nails 10 to connect to the concrete parapet 1.

[0032] Step 5: Install a single 2000mm long integrated thermal insulation decorative structure 4, which includes a 2mm thick fluorocarbon spray-coated aluminum plate 41, a 150mm thick rock wool insulation layer 42, and a 50mm deep, 100mm wide dripping hawk beak 43. The integrated thermal insulation decorative structure 4 is connected to the upper corner bracket 3 and the lower corner bracket 2 with bolts.

[0033] Step 6: Connect the flanges at the connection of the cladding aluminum plate 41 and the connecting angles 7 between the plates with rivets 9;

[0034] Step 7: Fill the interior of the connecting angle brackets 7 between the boards with sealing strips and silicone weatherproof sealant 8 to form a closed water retaining system to prevent leakage;

[0035] Step 8: Construct the parapet facade with an insulation plaster wall 10 to form a closed insulation system and conceal the lower corner code 2, further improving the insulation performance of the overall structure.

[0036] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A parapet wall integrated thermal insulation decorative structure, characterized by: include: Concrete parapet (1); A lower corner code (2), wherein the lower corner code (2) is fixed to the inner side of the concrete parapet (1) and is arranged below the bottom surface of the top (11), and a plurality of lower corner codes (2) are evenly spaced in the horizontal direction; An upper corner code (3), wherein the upper corner code (3) is fixed to the outside of the concrete parapet (1) and is aligned with the top surface of the capping (11); An integrated thermal insulation decorative structure (4) comprising a cladding aluminum plate (41), one end of the cladding aluminum plate (41) being fixedly connected to an upper corner bracket (3), and the other end being fixedly connected to a lower corner bracket (2), and the interior of the cladding aluminum plate (41) being filled with a rock wool thermal insulation layer (42); The inter-plate connecting angle code (7) is fixed to the bottom surface of the top (11) of the concrete parapet (1) and is used to connect two adjacent cladding aluminum plates (41).

2. The integrated thermal insulation and decorative parapet structure according to claim 1, characterized in that: The inter-plate connection angle codes (7) are provided in multiple groups, the spacing between two adjacent groups of the inter-plate connection angle codes (7) is consistent with the length of the cladding aluminum plate (41), each group of inter-plate connection angle codes (7) is evenly spaced along the direction perpendicular to the parapet wall, and the inter-plate connection angle codes (7) are fixedly connected to the concrete parapet (1) by cement nails (10).

3. The integrated thermal insulation decorative structure of the parapet according to claim 2, characterized in that: The integrated thermal insulation decorative structure (4) further includes a dripping hawk (43) with an inner concave depth of 50 mm and a width of 100 mm. The dripping hawk (43) is arranged below the pressure top (11) and is an integrated structure with the cladding aluminum plate (41). The cladding aluminum plate (41) is a fluorocarbon sprayed cladding aluminum plate with a thickness of 2 mm.

4. The integrated thermal insulation decorative structure of the parapet according to claim 3 is characterized by: The flanges at the connection of the cladding aluminum plates (41) are connected to the inter-plate connecting angle codes (7) by rivets (9), and the interior of the inter-plate connecting angle codes (7) is filled with sealing strips and silicone weatherproof sealant (8).

5. The integrated thermal insulation decorative structure of the parapet according to claim 1 is characterized in that: The bent portion at one end of the cladding aluminum plate (41) is fixedly connected to the upper corner bracket (3) via an upper fixing screw (5), and the horizontal portion at the other end of the cladding aluminum plate (41) is fixedly connected to the lower corner bracket (2) via a lower fixing screw (6). The upper corner bracket (3) and the lower corner bracket (2) are respectively connected to the concrete parapet (1) via cement nails, and the sides are sealed via silicone weatherproof sealant.

6. The integrated thermal insulation and decorative parapet structure according to claim 1, characterized in that: The lower corner code (2) and the upper corner code (3) are both L-shaped, the horizontal length of the lower corner code (2) is greater than the horizontal length of the upper corner code (3), and the vertical portion of the lower corner code (2) and the lower end of the vertical portion of the upper corner code (3) are respectively inclinedly provided with a first folded edge (21) and a second folded edge (31).

7. The integrated thermal insulation and decorative parapet structure according to claim 1, characterized in that: The facade of the concrete parapet (1) is provided with a thermal insulation plastered wall surface (12), and the thermal insulation plastered wall surface (12) covers the lower corner bracket (2).