A suspended ceiling stepped bending plate installation structure and installation method

The high-level, low-level and bent plates of the ceiling are connected by plug-in, which solves the problems of unstable and poor aesthetics of the downgrade ceiling connection, and achieves a fast, stable and beautiful installation effect.

CN115075455BActive Publication Date: 2025-07-11ZHEJIANG YASHA DECORATION
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Patent Information

Application Number
CN202210840430.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-07-18
Publication Date
2025-07-11
Estimated Expiration
2042-07-18

AI Technical Summary

Technical Problem

现有技术中,跌级吊顶的高位板、低位板和折弯板之间的连接复杂且不稳定,美观性差,且螺纹连接导致安装过程繁琐且不便于拆卸。

Method used

采用插接方式连接吊顶高位板、低位板和折弯板,通过在各板的槽口和插板的配合实现稳定连接,避免螺钉连接。

Benefits of technology

It realizes fast and stable connection between high-position plates, low-position plates and bending plates, reduces installation time and cost, improves aesthetics, and avoids screw traces and misalignment.

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Abstract

A ceiling stepped bending plate installation structure and installation method, including a high-level plate, a low-level plate, a bending plate and a connecting piece. The high-level plate, the bending plate and the low-level plate are connected by the connecting piece; high-level plate slots are arranged at both ends of the high-level plate, bending plate slots are arranged at both ends of the bending plate, and inserting plates are arranged at both ends of the connecting piece. One end of the inserting plate is inserted into the bending plate slot on the side of the bending plate close to the high-level plate, and the other end of the inserting plate is inserted into the high-level plate slot on the high-level plate close to the bending plate; low-level plate slots are arranged at both ends of the low-level plate, and one end of the inserting plate is inserted into the bending plate slot on the side of the bending plate close to the low-level plate, and the other end of the inserting plate is inserted into the low-level plate slot on the low-level plate close to the bending plate. In the present invention, by inserting the connecting piece between the high-level plate, the bending plate, the low-level plate and the bending plate, stable connection among the ceiling high-level plate, the low-level plate and the bending plate is realized, and the tediousness and complexity of screw connection are avoided.
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Description

Technical Field

[0001] The present invention relates to the technical field of interior decoration, and in particular to an installation structure and installation method for a dropped ceiling bending plate. Background Art

[0002] With the development of society, prefabricated buildings are developing vigorously. Correspondingly, prefabricated decoration is also becoming increasingly popular. The dropped ceiling can increase the layering of the ceiling, and its overall appearance is more artistic and beautiful than that of a partial ceiling. Moreover, it can be combined with various lighting fixtures and is suitable for the living room of a large space. Therefore, during the decoration of prefabricated ceilings, the installation and construction of dropped ceilings are often encountered.

[0003] For example, in the patent application No. 201920551282.2, titled "An Installation Structure for a Dropped Ceiling with a Vertical Frame and a Light Groove", it includes a dropped ceiling vertical frame assembly. The dropped ceiling vertical frame assembly includes a wall panel, a lower flat plate, a vertical frame plate, and an upper flat plate fixedly arranged on the wall panel, which are fitted and installed and fixed on the wall surface. The upper and lower ends of the vertical frame plate are respectively fixedly connected to the upper flat plate and the lower flat plate, and the lower flat plate is installed and fixed below the upper flat plate to form a dropped structure; an L-shaped right-angle structure bending plate is fixedly arranged on the upper surface of the lower flat plate, and a straight light groove with an upper opening is formed by enclosing between the bending plate, the lower flat plate, and the vertical frame plate, and the lamp is decorated in the straight light groove. In this patent, the upper flat plate and the lower flat plate of the ceiling, that is, the high-position plate and the low-position plate of the ceiling, are threadedly connected through the vertical frame plate. The threaded connection method makes the entire connection process complex, inconvenient for subsequent disassembly, and the stability among the three is also poor. It is impossible to accurately position between the upper flat plate and the lower flat plate to achieve precise installation; furthermore, the aesthetics of the dropped ceiling formed by the upper flat plate, the lower flat plate, and the vertical frame plate is also unsatisfactory.

[0004] Therefore, how to quickly, efficiently, and stably connect the high-position plate, the low-position plate, and the bending plate of the dropped ceiling, and at the same time improve the aesthetics of the dropped ceiling has become an urgent problem to be solved. Summary of the Invention

[0005] The present invention is to overcome the above-mentioned defects in the prior art and provides an installation structure and installation method for a dropped ceiling bending plate. Compared with the traditional dropped ceiling, the plug-in method is adopted to connect the high-position plate, the low-position plate, and the bending plate of the ceiling. The dropped ceiling is overall beautiful and stable, and at the same time, the entire connection process is fast, saving installation time.

[0006] In order to achieve the above purpose, the technical solution adopted by the present invention is: a ceiling step-down bending plate installation structure, comprising a high-position plate, a low-position plate, a bending plate and a connecting piece, the high-position plate is connected to the bending plate by a connecting piece, and the low-position plate is connected to the bending plate by a connecting piece; high-position plate slots are arranged at both ends of the high-position plate, bending plate slots are arranged at both ends of the bending plate, plug plates are arranged at both ends of the connecting piece, one end of the plug plate is inserted into the bending plate slot on the side of the high-position plate, and the other end of the plug plate is inserted into the high-position plate slot on the high-position plate close to the bending plate; low-position plate slots are arranged at both ends of the low-position plate, one end of the plug plate is inserted into the bending plate slot on the side of the low-position plate close to the low-position plate, and the other end of the plug plate is inserted into the low-position plate slot on the low-position plate close to the bending plate.

[0007] As a preferred solution of the present invention, the high-position plate notch includes a gap and an insertion port, the bottom surface of the gap receives the bottom surface of the connector, and the insertion port is inserted with the plug board of the connector.

[0008] As a preferred solution of the present invention, the plug interface is centrally arranged in the notch, and the width of the notch is greater than the width of the plug interface.

[0009] As a preferred solution of the present invention, the height dimension of the notch is greater than the height dimension of the plug interface, and the height of the notch is 1.2-1.5 times the height of the plug interface.

[0010] As a preferred solution of the present invention, the notches on the high-position plate notch form a group of two and are arranged symmetrically on the left and right.

[0011] As a preferred solution of the present invention, the connector includes bilaterally symmetrical plug plates and raised blocks between the plug plates, the length of the plug plates is greater than the length of the raised blocks, the raised blocks are located in the notch, and the plug plates are located in the plug interface.

[0012] As a preferred solution of the present invention, the bending plate includes an upper connecting plate and a lower connecting plate, the upper connecting plate and the lower connecting plate are connected by a vertical plate, and the connecting plate and the vertical plate are arranged vertically.

[0013] As a preferred solution of the present invention, the upper and lower connecting plates are evenly provided with connecting plate notches and connecting plate plug ports, and the connecting plate notches and connecting plate plug ports are a group of two and are symmetrically arranged on the upper and lower connecting plates.

[0014] As a preferred solution of the present invention, the bottom surface of the notch of the connecting plate receives the bottom surface of the connecting piece, and the connecting plate of the connecting piece is plugged into the connecting plate plug port.

[0015] A method for installing a ceiling step-down bending plate installation structure,

[0016] Step 1: Align the plug plate of the connector with the plug interface on the side of the high-position plate facing the bending plate, insert the plug plate into the plug interface, and the connector and the high-position plate are plugged in and matched;

[0017] Step 2: Align the connection plate plug interface on the side of the bending plate facing the high-position plate with the other side of the plug board, insert the plug board into the connection plate plug interface, and the connector and the bending plate are plugged in and matched. Accordingly, the high-position plate and the bending plate are stably connected through the connector;

[0018] Step 3: Insert the plug-in board on one side of the connector into the plug-in interface of the connecting board on the side of the bent plate facing the low-position plate, and the plug-in board on the other side of the connector is plugged into the low-position plate slot of the low-position plate, so that the low-position plate and the bent plate are stably connected through the connector;

[0019] Step 4: Adjust the connection position between the connector and the high plate, low plate and bent plate by holding the raised block. After the adjustment, the high plate, low plate, bent plate and connector are connected.

[0020] The beneficial effects of the present invention are:

[0021] 1. Compared with the traditional stepped ceiling, the present invention realizes the connection among the high plate, the low plate and the bent plate of the ceiling by plugging connectors between the high plate, the bent plate, the low plate and the bent plate, thus avoiding the tediousness and complexity of screw connection and being more stable than screw connection.

[0022] 2. The present invention completes the installation of the stepped ceiling through the high-position plate, the low-position plate, the bent plate and the connecting piece, which greatly reduces the investment in other components, saves costs and improves the efficiency of installation.

[0023] 3. The present invention has no screws, and also avoids the traces of screw installation. The whole stepped ceiling has no obvious gaps, which is simple and clear and makes the whole stepped ceiling more beautiful.

[0024] 4. The notches and plug-in ports formed on the bending plate of the present invention are consistent in shape with the notches and plug-in ports on the high-position plate and the low-position plate, and correspond one-to-one with the notches and plug-in ports on the high-position plate and the low-position plate, which facilitates the positioning and installation between the high-position plate, the low-position plate and the bending plate and avoids the occurrence of misalignment.

[0025] 5. When the protruding block of the present invention is installed in the notch, its upper plane is higher than the upper planes of the high-position plate and the low-position plate, which makes it convenient for operators to hold the protruding block and quickly install and remove the connector. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 It is a schematic diagram of the structure of the present invention;

[0027] Figure 2 It is a front view of the present invention;

[0028] Figure 3 is the top view of the present invention;

[0029] Figure 4 is the structural schematic diagram of the high-position plate of the present invention;

[0030] Figure 5 is the left view of the high-position plate of the present invention;

[0031] Figure 6 is the top view of the high-position plate of the present invention;

[0032] Figure 7 is the structural schematic diagram of the connecting member of the present invention;

[0033] Figure 8 is the structural schematic diagram of the bending plate of the present invention;

[0034] Figure 9 is the right view of the bending plate of the present invention;

[0035] Figure 10 is the top view of the bending plate of the present invention;

[0036] Reference numerals in the figure: high-position plate 1, low-position plate 2, bending plate 3, connecting member 4, high-position plate notch 11, low-position plate notch 21, connecting plate 31, vertical plate 32, bending plate notch 33, insertion plate 41, raised block 42, notch 111, insertion interface 112, connecting plate notch 331, connecting plate insertion interface 332. Detailed implementation manners

[0037] The embodiments of the present invention will be described in detail below with reference to the accompanying drawings.

[0038] As Figure 1-10 shown, a ceiling drop bending plate installation structure includes a high-position plate 1, a low-position plate 2, a bending plate 3 and a connecting member 4. The high-position plate 1 is connected to the bending plate 3 through the connecting member 4, and the low-position plate 2 is connected to the bending plate 3 through the connecting member 4. Both ends of the high-position plate 1 are provided with high-position plate notches 11. Both ends of the bending plate 3 are provided with bending plate notches 33. Both ends of the connecting member 4 are provided with insertion plates 41. One end of the bending plate notch 33 on the side of the bending plate 3 close to the high-position plate 1 is inserted into one end of the insertion plate 41, and the other end of the insertion plate 41 is inserted into the high-position plate notch 11 on the side of the high-position plate 1 close to the bending plate 3. Both ends of the low-position plate 2 are provided with low-position plate notches 21. One end of the insertion plate 41 is inserted into the bending plate notch 33 on the side of the bending plate 3 close to the low-position plate 2, and the other end of the insertion plate 41 is inserted into the low-position plate notch 21 on the side of the low-position plate 2 close to the bending plate 3.

[0039] Specifically, a connecting member 4 is inserted between the high-level board 1 and the bending board 3 to realize the connection between the high-level board 1 and the bending board 3. A connecting member 4 is inserted between the low-level board 2 and the bending board 3 to realize the connection between the low-level board 2 and the bending board 3. The upper and lower ends of the bending board 3 respectively bear the high-level board 1 and the low-level board 2. Therefore, the bending board 3 realizes the connection between the high-level board 1 and the low-level board 2 through the connecting member 4.

[0040] Furthermore, since high-level board slots 11 and low-level board slots 21 are evenly arranged at both ends of the high-level board 1 and the low-level board 2, various types of assembled stepped ceilings can be formed through different combinations among the high-level board 1, the low-level board 2, the bending board 3 and the connecting member 4. By adjusting the height and length dimensions of the bending board 3, the connection of different distances between the high-level board 1 and the low-level board 2 can be adapted.

[0041] Compared with the traditional stepped ceiling, the present invention realizes the connection among the high-level board, the low-level board and the bending board of the ceiling through the inserted connecting member 4. This connection completes the positioning and connection between components only through the insertion of the slot and the inserted plate, avoiding the tediousness and complexity of screw connection and being more stable than screw connection. On the other hand, the investment in other components is reduced, and the trace of screw installation is also avoided. The whole stepped ceiling saves costs, is simple and clear, and more beautiful.

[0042] The high-level board slot 11 includes a notch 111 and an insertion interface 112. The bottom surface of the notch 111 bears the bottom surface of the connecting member 4, and the insertion plate 41 of the connecting member 4 is inserted into the insertion interface 112.

[0043] The insertion interface 112 is centrally arranged in the notch 111. The width dimension of the notch 111 is greater than the width dimension of the insertion interface 112 to avoid interference between the insertion plate 41 and the notch 111 during insertion. The height dimension of the notch 111 is greater than the height dimension of the insertion interface 112 to facilitate the three-sided coating of the insertion plate 41 by the insertion interface 112. The height of the notch 111 is 1.2 - 1.5 times the height of the insertion interface 112.

[0044] Two notches 111 on the high-level board slot 11 form a group and are symmetrically arranged left and right. A certain number of notches 111 ensure the stable connection between components.

[0045] The connecting member 4 includes insertion plates 41 that are symmetrically arranged left and right and a raised block 42 between the insertion plates 41. The length dimension of the insertion plate 41 is greater than the length dimension of the raised block 42. The longer insertion plate 41 increases the stability of insertion. The raised block 42 is located in the notch 111, and the raised block 42 realizes the positioning and limiting of the high-level board 1 and the connecting member 4. The insertion plate 41 is located in the insertion interface 112, and the insertion plate 41 realizes the connection between the high-level board 1 and the connecting member 4.

[0046] When the protruding block 42 is installed in the notch 111 , its upper plane is higher than the upper planes of the high-position plate 1 and the low-position plate 2 , which makes it convenient for operators to hold the protruding block 42 and quickly install and remove the connector 4 .

[0047] The bending plate 3 includes upper and lower connecting plates 31, which are connected by vertical plates 32. The connecting plates 31 and vertical plates 32 are arranged vertically. The height of the vertical plates 32 can be processed according to actual needs to facilitate adaptation to high-position plates 1 and low-position plates 2 at different distances.

[0048] The upper and lower connecting plates 31 are evenly provided with connecting plate notches 331 and connecting plate plug ports 332 . The connecting plate notches 331 and connecting plate plug ports 332 form a group of two and are symmetrically arranged on the upper and lower connecting plates 31 .

[0049] The bottom surface of the connection plate notch 331 receives the bottom surface of the connector 4 , and the connector plate 41 of the connector 4 is plugged into the connection plate plug port 332 .

[0050] Specifically, the high-level plate 1 and the low-level plate 2 are both ceiling plates, and the notches and plug interfaces formed on the notches 21 of the low-level plate are consistent with the notches and plug interfaces on the high-level plate in shape, layout position and number.

[0051] The notches and plug interfaces formed on the bending plate 3 are consistent in shape with the notches and plug interfaces on the high-position plate and the low-position plate, and correspond one-to-one with the notches and plug interfaces on the high-position plate and the low-position plate, which facilitates the positioning and installation between the high-position plate 1, the low-position plate 2 and the bending plate 3 and avoids the occurrence of misalignment.

[0052] A method for installing a ceiling step-down bending plate installation structure, comprising:

[0053] Step 1: Align the plug plate 41 of the connector 4 with the plug port 112 on the side of the high-position plate 1 facing the bending plate 3, insert the plug plate 41 into the plug port 112, and the connector 4 is plugged into the high-position plate 1;

[0054] Step 2: Align the connection plate plug-in port 332 on the side of the bending plate 3 facing the high-position plate 1 with the other side of the plug-in plate 41, insert the plug-in plate 41 into the connection plate plug-in port 332, and the connector 4 and the bending plate 3 are plugged in and matched. Accordingly, the high-position plate 1 and the bending plate 3 are stably connected through the connector 4;

[0055] Step 3: The plug-in plate 41 on one side of the connector 4 is plugged into the connection plate plug-in port 332 on the side of the bending plate 3 facing the low-position plate 2, and the plug-in plate 41 on the other side of the connector 4 is plugged into and matched with the low-position plate notch 21 of the low-position plate 2, so that the low-position plate 2 and the bending plate 3 are stably connected through the connector 4;

[0056] Step 4: Adjust the connection positions of the connecting member 4 with the high-position plate 1, the low-position plate 2, and the bending plate 3 by holding the protruding block 42. After the adjustment is completed, the high-position plate 1, the low-position plate 2, the bending plate 3, and the connecting member 4 are connected.

[0057] The above description of the disclosed embodiments enables those skilled in the art to implement or use the present invention. Various modifications to these embodiments will be obvious to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention will not be limited to the embodiments shown herein, but rather to the widest scope consistent with the principles and novel features disclosed herein.

[0058] Although the terms such as the high-position plate 1, the low-position plate 2, the bending plate 3, the connecting member 4, the high-position plate notch 11, the low-position plate notch 21, the connecting plate 31, the vertical plate 32, the bending plate notch 33, the insertion plate 41, the protruding block 42, the notch 111, the insertion interface 112, the connecting plate notch 331, the connecting plate insertion interface 332, etc. are used more frequently in the figures herein, the possibility of using other terms is not excluded; these terms are only used to more conveniently describe and explain the essence of the present invention; interpreting them as any additional limitation is contrary to the spirit of the present invention.

Claims

1. A ceiling stepped bending plate installation structure, comprising a high-position plate (1), a low-position plate (2), a bending plate (3) and a connecting member (4). The high-position plate (1) is connected to the bending plate (3) through the connecting member (4), and the low-position plate (2) is connected to the bending plate (3) through the connecting member (4). It is characterized in that: Both ends of the high-level plate (1) are provided with high-level plate notches (11). Both ends of the bending plate (3) are provided with bending plate notches (33). Both ends of the connecting piece (4) are provided with inserting plates (41). One end of the inserting plate (41) is inserted into the bending plate notch (33) on the side of the bending plate (3) close to the high-level plate (1), and the other end of the inserting plate (41) is inserted into the high-level plate notch (11) on the side of the high-level plate (1) close to the bending plate (3). Both ends of the low-level plate (2) are provided with low-level plate notches (21). One end of the inserting plate (41) is inserted into the bending plate notch (33) on the side of the bending plate (3) close to the low-level plate (2), and the other end of the inserting plate (41) is inserted into the low-level plate notch (21) on the side of the low-level plate (2) close to the bending plate (3). The high-level plate notch (11) includes a notch (111) and an inserting interface (112). The bottom surface of the notch (111) bears the bottom surface of the connecting piece (4), and the inserting plate (41) of the connecting piece (4) is inserted into the inserting interface (112). The connecting piece (4) includes inserting plates (41) that are symmetric left and right and a raised block (42) between the inserting plates (41). The length dimension of the inserting plate (41) is greater than the length dimension of the raised block (42), and the raised block (42) is located in the notch (111). The bending plate (3) includes upper and lower connecting plates (31), and the upper and lower connecting plates (31) are connected by a vertical plate (32). The connecting plates (31) and the vertical plate (32) are vertically arranged. The upper and lower connecting plates (31) are both provided with connecting plate notches (331) and connecting plate inserting interfaces (332). The bottom surface of the connecting plate notch (331) bears the bottom surface of the connecting piece (4), and the inserting plate (41) of the connecting piece (4) is inserted into the connecting plate inserting interface (332).

2. The installation structure of a suspended ceiling stepped bending plate according to claim 1, characterized in that: The inserting interface (112) is centrally arranged in the notch (111), and the width dimension of the notch (111) is greater than the width dimension of the inserting interface (112).

3. The installation structure of a suspended ceiling stepped bending plate according to claim 2, characterized in that: The height dimension of the notch (111) is greater than the height dimension of the inserting interface (112), and the height of the notch (111) is 1.2 - 1.5 times the height of the inserting interface (112).

4. The installation structure of a suspended ceiling stepped bending plate according to claim 3, characterized in that: Two notches (111) on the high-level plate notch (11) form a group and are symmetrically arranged left and right.

5. The installation structure of a suspended ceiling stepped bending plate according to claim 4, characterized in that: The connecting plate notches (331) and the connecting plate inserting interfaces (332) are symmetrically arranged in pairs on the upper and lower connecting plates (31).

6. A mounting method for a mounting structure of a suspended ceiling stepped bending plate, characterized in that, Referring to the ceiling drop bending plate installation structure described in any one of claims 1 - 5, including Step 1: Align the inserting plate (41) of the connecting piece (4) with the inserting interface (112) on the side of the high-level plate (1) facing the bending plate (3), insert the inserting plate (41) into the inserting interface (112), and the connecting piece (4) and the high-level plate (1) achieve plug-in fit; Step 2: Align the connecting plate on the side of the bending plate (3) facing the high-position plate (1) with the other side of the insertion plate (41), insert the insertion plate (41) into the connecting plate insertion port (332), and the connector (4) is in plug-in fit with the bending plate (3). Correspondingly, the high-position plate (1) and the bending plate (3) are stably connected through the connector (4); Step 3: Insert the insertion plate (41) on one side of the connector (4) into the connecting plate insertion port (332) on the side of the bending plate (3) facing the low-position plate (2). The insertion plate (41) on the other side of the connector (4) is in plug-in fit with the low-position plate groove (21) of the low-position plate (2). The low-position plate (2) and the bending plate (3) are stably connected through the connector (4); Step 4: Adjust the connection positions of the connector (4) with the high-position plate (1), the low-position plate (2) and the bending plate (3) by holding the protruding block (42). After the adjustment is completed, the connection of the high-position plate (1), the low-position plate (2), the bending plate (3) and the connector (4) is completed.

Citation Information

Patent Citations

  • Suspended ceiling non-coplanar vertical frame installation structure with lamp groove

    CN210216864U

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    CN218405986U