Energy-saving building based heat preservation ceiling structure

CN224692943UActive Publication Date: 2026-08-28SHENZHEN HEHAIFENG CONSTR TECH CO LTD
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Patent Information

Application Number
CN202521644099.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-04
Publication Date
2026-08-28
Estimated Expiration
2035-08-04

AI Technical Summary

Technical Problem

[0004]以上专利的方案中需要旋转螺柱、六角螺母对插板二与连接板进行固定,由于需要使用的螺柱、六角螺母过多,从而需要人工一个一个使用工具进行安装,该过程较为繁琐,会消耗大量的时间,降低其安装效率

Benefits of technology

1、该基于节能建筑的保温吊顶结构,通过组装板上第二插槽和第二插板与顶板上第一插板和第一插槽的设置,能够将多个组装板进行拼装,使得该装置的安装为装配式,减少了安装吊杆、主龙骨和副龙骨的情况,提高了安装的便捷性,通过设置在组装板内的隔热板,可有效减缓热量传递,进而强化组装板的保温隔热作用。

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Abstract

The utility model provides a kind of based on energy-saving building's heat preservation ceiling structure, relate to building structure technical field, including two installation plates, the side of two installation plates mutually close is all fixed with mounting bracket, two ceiling and multiple assembly plates are installed on mounting bracket, and mounting assembly is equipped on mounting bracket.The based on energy-saving building's heat preservation ceiling structure, heat insulation plate being set in assembly plate can effectively slow down heat transfer, and then strengthen the heat preservation and heat insulation effect of assembly plate, by inserting the mounting block on ceiling and assembly plate into the mounting groove on mounting bracket, then by rotating handle drives screw rod rotation, the rotation of screw rod can drive threaded plate to move, the movement of threaded plate can drive multiple limit blocks respectively inserted into the limiting slot in mounting block, to limit and fix the position of mounting block, complete the installation of mounting bracket and assembly plate and ceiling, improve its installation efficiency.
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Description

Technical Field

[0001] This utility model relates to a ceiling structure, specifically an insulated ceiling structure based on energy-saving buildings, belonging to the field of building structure technology. Background Technology

[0002] As an important component of interior decoration, the ceiling is one of the items most frequently seen by people. From its initial use as a means of concealing unsightly surfaces to its current status as a crucial architectural decorative component integrating aesthetics, sound insulation, and many other functions, the ceiling has become an indispensable part of interior design. Prefabricated ceiling structures are increasingly used in various fields due to their ease of assembly and disassembly, as well as their portability and transportability.

[0003] A prefabricated ceiling structure for green buildings, disclosed in Chinese Patent Application Publication CN222862664U, divides the ceiling structure into several parts by setting up several central ceiling panels and two secondary ceiling panels, which facilitates splicing and installation. Insert plate 1 is inserted into slot 1 on the ceiling panel and slot 1 on the adjacent central ceiling panel. Positioning blocks and positioning grooves are used to position the insert plate 1, avoiding misalignment and displacement. This allows for precise assembly of the ceiling structure, making the installation of the ceiling prefabricated. It reduces the need for installing hangers, main keels, and secondary keels, improving the convenience of ceiling installation and making it easy to operate. The two mounting plates are fixed on two opposite walls at the same height. The fixed position of the mounting plates is easy to determine and less prone to error, which facilitates the subsequent laying of the panels. Then, the insert plates on the ceiling panel and the middle ceiling panel are inserted into the slots on the connecting plate in sequence to assemble the ceiling. The studs and hexagonal nuts are rotated to fix the insert plates to the connecting plate. Then, the sealing pistons are inserted into the first and last insert plates to seal them. The insert plates are not easy to detach from the connecting plate, making the installation of the ceiling panel and the middle ceiling panel more secure and simple.

[0004] The above patented solutions require rotating studs and hexagonal nuts to fix the insert plate and the connecting plate. Since there are too many studs and hexagonal nuts required, they need to be installed manually one by one using tools. This process is tedious, consumes a lot of time, and reduces installation efficiency.

[0005] Therefore, an insulated ceiling structure based on energy-saving buildings is proposed here. Utility Model Content

[0006] This utility model proposes an insulated ceiling structure based on energy-saving buildings, which can quickly and conveniently fix the assembly panels and top panels to the mounting frame, thereby improving its installation efficiency.

[0007] This utility model is achieved through the following technical solution: an insulated ceiling structure based on energy-saving buildings, including two mounting plates, each of the two mounting plates having a mounting frame fixed on one side close to each other, and two top plates and multiple assembly plates mounted on the mounting frame, with the two top plates located on opposite sides of the assembly plates, and the mounting frame having mounting components.

[0008] The mounting assembly includes a threaded rod rotatably connected to the bottom surface of the mounting frame. A threaded plate is threadedly connected to the outer surface of the threaded rod. A throttle is fixed to the bottom end of the threaded rod. Multiple limit blocks are fixed to the upper surface of the threaded plate, and one end of each limit block penetrates the mounting frame. Holes that match the limit blocks are provided on the mounting frame.

[0009] Furthermore, mounting blocks are fixed on the side of the top plate and the assembly plate near the mounting frame. The mounting frame has mounting slots, and the mounting blocks are inserted into the mounting slots.

[0010] Furthermore, a limiting groove is provided on the mounting block, and the limiting block is inserted into the limiting groove.

[0011] Furthermore, a sliding rod is fixed to the bottom surface of the mounting bracket, and the outer surface of the sliding rod is slidably connected to the inner wall of the hole on the threaded plate.

[0012] Furthermore, two fixing plates are fixed to the sides of the two mounting plates that are close to each other, and the two fixing plates are fixed to the upper and lower sides of the mounting frame respectively.

[0013] Furthermore, a second insert plate is fixed to the front side of the assembly plate, a second slot is provided on the rear side of the assembly plate, and the second insert plate is inserted into the second slot. A first slot is provided on the side of the front top plate near the assembly plate, and the first slot is inserted into the second insert plate. A first insert plate is fixed on the side of the rear top plate near the assembly plate, and the first insert plate is inserted into the second slot.

[0014] Furthermore, the assembly plate is internally provided with a heat insulation plate and two sound insulation plates, with the two sound insulation plates located on the upper and lower sides of the heat insulation plate, respectively.

[0015] This utility model provides an insulated ceiling structure based on energy-saving buildings, which has the following beneficial effects: 1. This energy-saving building-based thermal insulation ceiling structure, through the setting of the second slot and second insert plate on the assembly plate and the first insert plate and first slot on the top plate, can assemble multiple assembly plates, making the installation of the device prefabricated. This reduces the need for installing hangers, main keels and secondary keels, and improves the convenience of installation. The heat insulation board set in the assembly plate can effectively slow down heat transfer, thereby enhancing the thermal insulation effect of the assembly plate.

[0016] 2. This energy-saving building-based thermal insulation ceiling structure inserts mounting blocks from the top plate and assembly plate into mounting slots on the mounting frame. Then, by rotating the handle, the threaded rod rotates, which in turn moves the threaded plate. The movement of the threaded plate causes multiple limiting blocks to be inserted into the limiting slots on the mounting blocks, thereby limiting and fixing the position of the mounting blocks. This completes the installation of the mounting frame, assembly plate, and top plate, improving installation efficiency. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the three-dimensional structure of the present invention. Figure 1 ; Figure 2 This is a schematic diagram of the three-dimensional structure of the present invention. Figure 2 ; Figure 3 This is a structural schematic diagram of the top plate, assembly plate, and mounting block in this utility model; Figure 4 For the present utility model Figure 2 Enlarged schematic diagram of the structure at point A in the middle; Figure 5 This is a cross-sectional view of the mounting bracket in this utility model; Figure 6 This is a cross-sectional view of the top plate in this utility model.

[0018] Explanation of reference numerals in the attached figures 1. Mounting plate; 101. Mounting bracket; 1011. Mounting slot; 102. Fixing plate; 2. Installation components; 201. Threaded rod; 202. Threaded plate; 203. Throttle; 204. Limit block; 205. Slide rod; 3. Top plate; 301. First insert plate; 302. First slot; 4. Assembly plate; 401. Second slot; 402. Second insert plate; 403. Sound insulation board; 404. Heat insulation board; 5. Mounting block; 501. Limiting groove; 6. Walls. Detailed Implementation

[0019] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of this application.

[0020] Please see Figures 1-6The present invention proposes the following implementation scheme: a thermal insulation ceiling structure based on energy-saving building, including two mounting plates 1, which are respectively mounted on the wall 6. The two mounting plates 1 are fixed with mounting frames 101 on the side of the two mounting plates 1 that are close to each other. Two top plates 3 and multiple assembly plates 4 are mounted on the mounting frames 101, and the two top plates 3 are respectively located on both sides of the assembly plates 4. The mounting frames 101 are provided with mounting components 2.

[0021] Mounting blocks 5 are fixed on the side of the top plate 3 and the assembly plate 4 near the mounting frame 101. The mounting frame 101 has a mounting groove 1011, and the mounting blocks 5 are inserted into the mounting groove 1011.

[0022] Two fixing plates 102 are fixed on the side of the two mounting plates 1 that are close to each other, and the two fixing plates 102 are fixed on the upper and lower sides of the mounting bracket 101 respectively.

[0023] Please refer to this carefully. Figure 3 A second insert plate 402 is fixed on the front side of the assembly plate 4, and a second slot 401 is provided on the rear side of the assembly plate 4. The second insert plate 402 is inserted into the second slot 401. A first slot 302 is provided on the side of the front top plate 3 near the assembly plate 4. The first slot 302 is inserted into the second insert plate 402. A first insert plate 301 is fixed on the side of the rear top plate 3 near the assembly plate 4. The first insert plate 301 is inserted into the second slot 401.

[0024] By setting the second slot 401 and the second insert plate 402 on the assembly plate 4 with the first insert plate 301 and the first slot 302 on the top plate 3, multiple assembly plates 4 can be assembled, making the installation of the device prefabricated, reducing the need to install hangers, main keels and secondary keels, and improving the convenience of installation.

[0025] Please refer to this carefully. Figure 4 and Figure 5 The mounting assembly 2 includes a threaded rod 201 rotatably connected to the bottom surface of the mounting bracket 101. A threaded plate 202 is threadedly connected to the outer surface of the threaded rod 201. A handle 203 is fixed to the bottom end of the threaded rod 201. A plurality of limiting blocks 204 are fixed to the upper surface of the threaded plate 202, and one end of the limiting block 204 passes through the mounting bracket 101. The mounting bracket 101 has holes that are adapted to the limiting blocks 204.

[0026] The mounting block 5 has a limiting groove 501, and the limiting block 204 is inserted into the limiting groove 501.

[0027] A slide rod 205 is fixed to the bottom surface of the mounting bracket 101, and the outer surface of the slide rod 205 is slidably connected to the inner wall of the hole on the threaded plate 202.

[0028] By inserting the mounting blocks 5 on the top plate 3 and the assembly plate 4 into the mounting slots 1011 on the mounting frame 101, and then rotating the handle 203 to drive the threaded rod 201 to rotate, the rotation of the threaded rod 201 can drive the threaded plate 202 to move. The movement of the threaded plate 202 can drive multiple limiting blocks 204 to be inserted into the limiting slots 501 on the mounting block 5 respectively, thereby limiting and fixing the position of the mounting block 5, completing the installation of the mounting frame 101 with the assembly plate 4 and the top plate 3, and improving its installation efficiency.

[0029] Please refer to this carefully. Figure 6 The assembly panel 4 is equipped with a heat insulation panel 404 and two sound insulation panels 403 inside. The two sound insulation panels 403 are located on the upper and lower sides of the heat insulation panel 404, respectively. The heat insulation panel 404 can effectively slow down heat transfer, thereby enhancing the heat insulation effect of the assembly panel 4. The sound insulation panel 403 can improve the sound insulation effect of the assembly panel 4 and reduce noise transmission between floors.

[0030] In use, the following steps are taken: Two mounting plates 1 are installed on two opposite walls 6 at the same height. First, the mounting block 5 on the top plate 3 with the first insert plate 301 is inserted into the mounting groove 1011 on the mounting bracket 101. Then, mounting blocks 5 on multiple assembly plates 4 are inserted into the mounting grooves 1011. At this point, the first insert plate 301 is inserted into the second slot 401, and the second insert plates 402 on two adjacent assembly plates 4 are inserted into the second slots 401. Finally, the first slot 302 on another top plate 3 is inserted into the second slot 401. The plates 402 are interlocked, making the installation of the device modular and reducing the need for installing hangers, main keels, and secondary keels, thus improving the ease of installation. Finally, by rotating the handle 203, the threaded rod 201 is rotated. The rotation of the threaded rod 201 can drive the threaded plate 202 to move. The movement of the threaded plate 202 can drive multiple limit blocks 204 to be inserted into the limit grooves 501 on the mounting block 5, thereby limiting and fixing the position of the mounting block 5, completing the installation of the mounting frame 101 with the assembly plate 4 and the top plate 3, and improving its installation efficiency.

[0031] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A thermally insulated ceiling structure based on energy-saving buildings, comprising two mounting plates (1), characterized in that: Mounting brackets (101) are fixed on the side of the two mounting plates (1) that are close to each other. Two top plates (3) and multiple assembly plates (4) are mounted on the mounting brackets (101), and the two top plates (3) are located on both sides of the assembly plates (4). Mounting components (2) are provided on the mounting brackets (101). The mounting assembly (2) includes a threaded rod (201) rotatably connected to the bottom surface of the mounting frame (101). The outer surface of the threaded rod (201) is threaded with a threaded plate (202). A throttle (203) is fixed at the bottom end of the threaded rod (201). A plurality of limit blocks (204) are fixed on the upper surface of the threaded plate (202), and one end of the limit block (204) passes through the mounting frame (101).

2. The thermal insulation ceiling structure based on energy-saving buildings according to claim 1, characterized in that: The top plate (3) and the assembly plate (4) are both fixed with mounting blocks (5) on the side near the mounting frame (101). The mounting frame (101) has a mounting groove (1011), and the mounting blocks (5) are inserted into the mounting groove (1011).

3. The thermal insulation ceiling structure based on energy-saving buildings according to claim 2, characterized in that: The mounting block (5) has a limiting groove (501) and the limiting block (204) is inserted into the limiting groove (501).

4. The thermal insulation ceiling structure based on energy-saving buildings according to claim 1, characterized in that: The bottom surface of the mounting bracket (101) is fixed with a slide rod (205), and the outer surface of the slide rod (205) is slidably connected to the inner wall of the hole on the threaded plate (202).

5. The thermal insulation ceiling structure based on energy-saving buildings according to claim 1, characterized in that: Two fixing plates (102) are fixed on the side of each of the two mounting plates (1) that are close to each other, and the two fixing plates (102) are fixed on the upper and lower sides of the mounting frame (101) respectively.

6. The thermal insulation ceiling structure based on energy-saving buildings according to claim 1, characterized in that: The front side of the assembly plate (4) is fixed with a second insert plate (402), the rear side of the assembly plate (4) is provided with a second slot (401), and the second insert plate (402) is inserted into the second slot (401). The front top plate (3) is provided with a first slot (302) on the side near the assembly plate (4), and the first slot (302) is inserted into the second insert plate (402). The rear top plate (3) is fixed with a first insert plate (301) on the side near the assembly plate (4), and the first insert plate (301) is inserted into the second slot (401).

7. The thermal insulation ceiling structure based on energy-saving buildings according to claim 1, characterized in that: The assembly plate (4) is provided with a heat insulation plate (404) and two sound insulation plates (403) inside, and the two sound insulation plates (403) are located on the upper and lower sides of the heat insulation plate (404) respectively.

Citation Information

Patent Citations

  • Fabricated suspended ceiling structure of green building

    CN222862664U