Embedded foundation pier support for installing heat collector

The pre-embedded base pier bracket combines the heat collector with the building, solving the water seepage and aesthetics problems caused by the installation of the heat collector, and realizing an energy-saving and environmentally friendly heat collector installation solution.

CN223090844UActive Publication Date: 2025-07-11GANSU LUQIAO HONGSHENG HOUSING CONSTR & INSTALLATION ENG CO LTD
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Patent Information

Application Number
CN202422342235.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-25
Publication Date
2025-07-11
Estimated Expiration
2034-09-25

AI Technical Summary

Technical Problem

The existing heat collector installation method causes water seepage on the building roof, affecting the overall strength and aesthetics of the building, and cannot be adjusted.

Method used

The embedded base pier bracket is adopted, including the embedded part and the support part. The base pier is equipped with a plaster layer, a waterproof layer, an insulation layer and a protective layer. The support part is composed of a retractable column and a connecting rod. The heat collector is connected by a silicone tube, and the peripheral insulation layer and a weatherproof layer are equipped with a maintenance channel design.

Benefits of technology

The integrated installation of heat collectors and buildings has been achieved, which improves the aesthetics and functional adaptability of the building, saves infrastructure costs, reduces energy dependence, and has significant environmental protection effect.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223090844U_ABST
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Abstract

The embedded type foundation pier support comprises an embedded part and a supporting part, the embedded part comprises a plurality of foundation piers arranged on a flat roof of a building body, first steel plates are embedded in the tops of inner cavities of the foundation piers, and the sides, away from the building body, of the first steel plates are perpendicularly connected with reinforcing steel bars; the supporting part comprises a support, the support comprises a first stand column and a second stand column which are oppositely arranged, and the first stand column and the second stand column are connected through a connecting rod. The tops of the first stand column and the second stand column are connected with inclined mounting plates, the tops of the mounting plates are connected with heat collectors, the bottoms of the first stand column and the second stand column are connected with second steel plates, and the free ends of the steel bars penetrate through the second steel plates and then are locked. According to the pre-embedded mounting bracket, the building is optimized, so that the building becomes a part of the building, the solar water heating system and the structure of the building are combined into a whole, the problems generated in equipment mounting and running are reduced, and the capital construction cost and the mounting and running cost are saved.
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Description

Technical Field

[0001] This application relates to the field of construction equipment, and particularly to a pre-embedded pier support for installing a collector. Background Art

[0002] A collector, also known as a heat collection plate, is the name for the outdoor heat collection component of a solar water heater in the solar energy industry. The organic combination of a solar water heating system and a building heating system aims to maximize the utilization of renewable energy while ensuring the thermal comfort of the building and reducing energy consumption.

[0003] When installing a collector, it is necessary to fully consider the load-bearing capacity, waterproof performance, installation convenience, and aesthetics of the building roof. The existing collector installation method is to directly drill holes for installation. After drilling, it will not only cause water seepage on the building roof, corrode the internal structure of the building, and thus affect the overall strength and stability of the building, but also be non-adjustable after drilling and fixing, with poor use effects, seriously affecting the overall aesthetics of the building. Therefore, it is necessary to optimize the building itself, combine the solar water heating system with the building's own structure, and make it an integral part of the building to reduce the problems generated during equipment installation and operation. Summary of the Utility Model

[0004] The utility model provides a pre-embedded pier support for installing a collector, aiming to solve the problems that when installing a collector by drilling holes on the building surface, it will cause water seepage on the building roof, affect the overall strength of the building, and be non-adjustable after drilling, affecting the overall aesthetics of the building.

[0005] To achieve its purpose, the utility model adopts the following technical solutions:

[0006] A pre-embedded pier support for installing a collector includes a pre-embedded part, and a support part is connected above the pre-embedded part;

[0007] The pre-embedded part includes several piers arranged on the flat roof of the building main body. The outer wall of the pier is successively laid with a plastering layer, a waterproof layer, an additional waterproof layer, a heat insulation layer, and a protective layer from the inside to the outside. A first steel plate is pre-embedded at the top of the inner cavity of the pier, and a steel bar is vertically connected to the side of the first steel plate away from the building main body;

[0008] The support part includes a bracket. The bracket includes a first column and a second column arranged oppositely, and the first column and the second column are connected by a connecting rod; an inclined mounting plate is connected to the tops of the first column and the second column, a collector is connected to the top of the mounting plate, and second steel plates are connected to the bottoms of the first column and the second column, and the free end of the steel bar penetrates through the second steel plate and is locked.

[0009] Further, both the first column and the second column are telescopic.

[0010] Furthermore, support columns are provided inside the bracket. One end of each support column is connected to the bracket, and the other end is connected to the collector.

[0011] Furthermore, a galvanized anti-corrosion layer is laid outside the bracket.

[0012] Furthermore, the pier is of reinforced concrete structure, and the concrete is C20 fine aggregate concrete.

[0013] Furthermore, the collectors are connected by silicone hoses.

[0014] Furthermore, a heat insulation layer and a weather protection layer are successively laid on the outer wall of the connecting pipe of the collector from inside to outside.

[0015] Furthermore, a maintenance passage with a width greater than 600 mm is provided around the collector.

[0016] Furthermore, the first steel plate and the second steel plate have the same specifications.

[0017] Furthermore, a waterproof sealant layer is provided at the connection between the steel bars and the second steel plate.

[0018] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0019] 1. The embedded pier bracket provided by the present utility model optimizes the building itself to make it a part of the building, and then combines the solar water heating system with the building structure to form an integrated unit, reducing the problems generated during equipment installation and operation, better adapting to the appearance and functional requirements of the building, effectively utilizing the existing space of the building, saving infrastructure costs and installation and operation costs, and enabling the building to maximize energy and economic benefits throughout its service life.

[0020] 2. By using the embedded pier bracket provided by the present utility model to integrate the solar water heating system with the building structure and produce hot water using solar energy, it can not only reduce the dependence on traditional energy sources, lower energy costs, but also play a positive role in environmental protection. The design is ingenious and beautiful, conforming to modern architectural aesthetics and enhancing the overall image of the building. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 is a schematic structural diagram of the embedded pier bracket of the present utility model;

[0022] Figure 2 is a schematic structural diagram of the collector of the present utility model;

[0023] In the figure: 1 - building main body; 2 - pier; 3 - plaster layer; 4 - waterproof layer; 5 - additional waterproof layer; 6 - insulation layer; 7 - protective layer; 8 - first steel plate; 9 - steel bars; 10 - collector; 11 - bracket; 12 - support column; 13 - first upright column; 14 - second upright column; 15 - connecting rod; 16 - second steel plate; 17 - mounting plate. Detailed implementation manners

[0024] The present utility model will be further described below with reference to the accompanying drawings:

[0025] As Figure 1-2 shown, the present utility model is a pre-embedded pier bracket for installing a collector, including a pre-embedded part, and a support part is connected above the pre-embedded part;

[0026] The pre-embedded part includes a plurality of piers 2 arranged on the flat roof of the building main body 1. The piers 2 are of reinforced concrete structure, and the concrete is C20 fine aggregate concrete. The outer wall of the pier 2 is successively laid with a plaster layer 3, a waterproof layer 4, an additional waterproof layer 5, an insulation layer 6 and a protective layer 7 from inside to outside. A first steel plate 8 is pre-embedded at the top of the inner cavity of the pier 2, and a steel bar 9 is vertically connected to the side of the first steel plate 8 away from the building main body 1;

[0027] The support part includes a bracket 11, and a galvanized anti-corrosion layer is laid outside the bracket 11. The bracket 11 includes a first upright column 13 and a second upright column 14 which are arranged oppositely. Both the first upright column 13 and the second upright column 14 are telescopic, and the first upright column 13 and the second upright column 14 are connected by a connecting rod 15; the tops of the first upright column 13 and the second upright column 14 are connected with an inclined mounting plate 17, and a collector 10 installed facing south is connected to the top of the mounting plate 17. The bottoms of the first upright column 13 and the second upright column 14 are both connected with a second steel plate 16 having the same specification as the first steel plate 8. The free end of the steel bar 9 penetrates through the second steel plate 16 and is locked, and a waterproof sealant layer is provided at the connection between the steel bar 9 and the second steel plate 16; a support column 12 is arranged inside the bracket 11, one end of the support column 12 is connected with the bracket 11, and the other end is connected with the bottom of the collector 10. The collectors 10 are connected by silicone hoses for flexible compensation. The outer wall of the connecting pipe of the collector 10 is successively laid with a thermal insulation layer and a weather protection layer for protection to extend its service life. A maintenance passage with a width of 650 mm is provided outside the collector 10 for easy installation, disassembly and maintenance.

[0028] When installing the collector 10, connect and lock the second steel plate 16 at the bottom of the bracket 11 with the steel bar 9 extending out of the pier 2, and lay a waterproof sealant layer at the connection for sealing to prevent water seepage. Then adjust the extended lengths of the first upright column 13 and the second upright column 14 so that the angle of the mounting plate 17 meets the installation requirements of the collector 10. Finally, install the collector 10 on the mounting plate 17, confirm that the orientation of the collector 10 meets the use requirements, and finally carry out commissioning and operation.

Claims

1. An embedded pier bracket for installing a collector, characterized in that: It includes an embedded part, and a support part is connected above the embedded part; The embedded part includes several foundation piers (2) arranged on the flat roof of the building main body (1). The outer wall of the foundation pier (2) is successively laid with a plastering layer (3), a waterproof layer (4), an additional waterproof layer (5), a thermal insulation layer (6) and a protective layer (7) from the inside to the outside. A first steel plate (8) is embedded at the top of the inner cavity of the foundation pier (2), and a steel bar (9) is vertically connected to the side of the first steel plate (8) away from the building main body (1); The support part includes a bracket (11). The bracket (11) includes a first upright column (13) and a second upright column (14) arranged oppositely, and the first upright column (13) and the second upright column (14) are connected by a connecting rod (15); an inclined mounting plate (17) is connected to the tops of the first upright column (13) and the second upright column (14), a collector (10) is connected to the top of the mounting plate (17), and second steel plates (16) are connected to the bottoms of the first upright column (13) and the second upright column (14). The free end of the steel bar (9) penetrates through the second steel plate (16) and is locked.

2. The embedded pier bracket for installing a collector according to claim 1, wherein: Both the first upright column (13) and the second upright column (14) are telescopic.

3. The embedded pier bracket for installing a collector as described in claim 2, characterized in that: A support column (12) is arranged inside the bracket (11). One end of the support column (12) is connected to the bracket (11), and the other end is connected to the collector (10).

4. The embedded pier bracket for installing a collector, as described in claim 3, is characterized in that: A galvanized anti-corrosion layer is laid outside the bracket (11).

5. The embedded pier bracket for installing a collector, as described in claim 4, is characterized in that: The foundation pier (2) is of a reinforced concrete structure, and the concrete is C20 fine aggregate concrete.

6. The embedded pier bracket for installing a collector as claimed in claim 5, wherein: The collectors (10) are connected by silicone hoses.

7. The embedded pier bracket for installing a collector according to claim 6, wherein: The outer wall of the connecting pipe of the collector (10) is successively laid with a thermal insulation layer and a weather-resistant protective layer from the inside to the outside.

8. The embedded pier bracket for installing a collector according to claim 7, characterized in that: A maintenance passage with a width greater than 600 mm is arranged outside the periphery of the collector (10).

9. An embedded pier bracket for installing a collector, as described in any one of claims 1-8, characterized in that: The first steel plate (8) and the second steel plate (16) have the same specifications.

10. The embedded pier bracket for installing a collector, as described in claim 9, is characterized in that: A waterproof sealant layer is arranged at the connection between the steel bar (9) and the second steel plate (16).