A hooking short-side splicing structure and installation method
Through the hook-up short-side splicing structure without slotting, the combination of splicing parts, plug-ins and connectors is used to solve the problems of inconvenient connection and strength damage in ceiling installation, and the panel is stable, beautiful and efficiently installed.
Patent Information
- Application Number
- CN202311259252.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-27
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2043-09-27
AI Technical Summary
The prior art has problems in the installation of large-area ceilings and interference between short and long sides in the ceiling. The grooved connection of the panel can easily damage the structural strength, resulting in low panel scrapping and replacement efficiency.
The hook-and-fit short-edge splicing structure is adopted without slotting. Through the combination of splicing parts, plug-ins and connectors, the seamless connection of the panel is achieved, and the panel is fixed by screws and stable connection is achieved through the fitting of the plug-in edges and plug-in hooks.
The seamless connection of panels is achieved, which improves connection strength and aesthetics, reduces the possibility of panel damage and replacement, and simplifies the installation process.
Smart Images

Figure CN117286981B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of ceiling installation, and particularly relates to a snap-in short-edge splicing structure and an installation method thereof. Background Art
[0002] A ceiling refers to a structure installed at the top of a room in interior decoration. It is usually composed of ceiling boards, ceiling frames and ceiling auxiliary materials. The main function of the ceiling is to conceal pipelines, wires, air-conditioning equipment, etc. at the top, and at the same time, it can also play the roles of sound insulation, heat insulation and beautifying the indoor environment. There are many types of ceilings, and common ones include gypsum board ceilings, aluminum alloy ceilings, PVC ceilings, etc. Gypsum board ceilings are mostly used in interior decorations such as residences and offices, and they have functions such as fire prevention, sound insulation and heat insulation.
[0003] At present, there are problems in the installation of prefabricated panel ceilings, such as inconvenient installation of large-area ceilings and interference between short edges and long edges, and there is no connecting piece to solve the short-edge splicing problem.
[0004] To solve the above problems, Chinese Patent with Application No. 202010929649.7 discloses a short-edge splicing connector for ceiling panels and an installation method. The disclosed splicing connector includes adjacent spliced panels. Slots are formed in the panels. The slots are located at one end of the panels, and the slots on adjacent spliced panels are connected. A T-shaped connector and a U-shaped connector are provided between adjacent spliced panels. The T-shaped connector is located in the slot, and the bottom of the T-shaped connector extends below the panel. The U-shaped connector is sleeved on the bottom of the T-shaped connector, and the top of the U-shaped connector abuts against the bottom of the panel. Compared with the prior art: the horizontal support rod supports the height of the panel, the vertical support rod positions the horizontal position of the panel, the adjacent panels are positioned under the action of the T-shaped connector, the top of the U-shaped connector abuts against the bottom of the adjacent spliced panels at the same time, the U-shaped connector plays a supporting role for the panel, and the panel, the T-shaped connector and the U-shaped connector are inserted and connected, and no additional fasteners are required as a whole, and the installation is convenient. Chinese Patent with Application No. 202210175672.0 discloses an assembled aluminum honeycomb ceiling panel short-edge connection structure and a connection method. The disclosed plug-in assembly includes a spliced part and a plug-in part that are connected. The plug-in part is arranged in a snap-fit manner on opposite sides of the spliced part. The spliced part wraps the oppositely arranged plug-in parts at the same time. A partition is formed in the middle of the spliced part. The partition is located between the oppositely arranged plug-in parts. A support seat is formed at the bottom of the partition. The support seat abuts against the end of the plug-in part. Bent edges are formed at both ends of the spliced part. The end of the plug-in part is embedded in the edge. The support seat and the edge are respectively arranged at opposite ends of the plug-in part. Compared with the prior art, under the action of the vertical plug-in strip and the horizontal plug-in strip, double-sided simultaneous snap-fit is realized, and the two extended edges jointly bear the forces in the vertical and parallel directions, and the edge treatment structure is more stable and safe. With the setting of barbs, under the condition of natural force, the plug-in part is more firmly snapped into the groove of the short edge of the aluminum honeycomb panel, reducing the possibility of edge embedding falling off.
[0005] In the above-mentioned disclosed prior art, by opening corresponding slots in the panel, inserting connectors into the slots, and the connectors are located between two connected panels. Although the two panels can be connected by the above method, since corresponding slots need to be opened in the panel, the opened slots are not only easy to damage the panel, reducing the structural strength of the panel, but also when there is an error in slotting on the panel, the entire panel is scrapped, resulting in a large cost. At the same time, when there is a deviation between adjacent panels, the panel needs to be slotted again, which is time-consuming and laborious, thus affecting the replacement efficiency of the panel. Summary of the Invention
[0006] The present invention aims to overcome the above-mentioned defects in the prior art and provides a hook-type short-edge splicing structure and an installation method that do not require slotting, can achieve seamless connection of panels and meet the flatness requirements.
[0007] To achieve the above-mentioned invention objectives, the present invention adopts the following technical solutions: A snap-type short-edge splicing structure includes corresponding first and second panels. A connection component for connecting the first and second panels is provided between the first and second panels. The connection component includes a splicing piece, a plug-in piece, and a connecting piece. The splicing piece is installed on the first panel, the connecting piece is installed on the second panel, and the plug-in piece is inserted into both the splicing piece and the connecting piece.
[0008] As a preferred solution of the present invention, the splicing piece includes a connected fixed section and a bent section. The fixed section abuts against the first panel, and screws for connecting with the first panel are provided on the fixed section.
[0009] As a preferred solution of the present invention, the bent section is a bent structure formed at the end of the fixed section.
[0010] As a preferred solution of the present invention, the connecting piece includes a mounting plate that abuts against the second panel, and screws for connecting with the second panel are provided on the mounting plate.
[0011] As a preferred solution of the present invention, a plug-in hook is formed on the mounting plate.
[0012] As a preferred solution of the present invention, the plug-in piece includes a connecting section that abuts against the surfaces of both the splicing piece and the connecting piece. An insertion section for inserting into the splicing piece and an insertion edge for inserting into the connecting piece are formed on the connecting section.
[0013] As a preferred solution of the present invention, the insertion edge is vertically provided on the connecting section, and the insertion edge cooperates with the plug-in hook.
[0014] As a preferred solution of the present invention, a connection groove for inserting the bent section is formed in the insertion section.
[0015] As a preferred solution of the present invention, the connection groove is arranged parallel to the connecting section, and the opening of the connection groove is located at the connection of the insertion section and the connecting section.
[0016] An installation method for a snap-type short-edge splicing structure includes the following steps:
[0017] S1. Install the splicing piece on the first panel with screws;
[0018] Abut the fixed section on the splicing piece against the edge of the first panel, and fix the fixed section on the first panel with screws.
[0019] S2. Install the connecting piece on the second panel with screws;
[0020] Abut the mounting plate on the connecting piece against the edge of the second panel, and fix the mounting plate on the second panel with screws.
[0021] S3. Insert the plug into the splicing part and the connecting part;
[0022] Abut the short sides of the first panel and the second panel together, then align the insertion edge on the plug with the insertion hook on the connecting part, and align the connecting groove on the insertion section with the bent section of the splicing part, and push the plug into the connecting part and the splicing part.
[0023] S4. Lift the first panel and the second panel, and the installation is completed.
[0024] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0025] 1. By installing the splicing part on the first panel, installing the connecting part on the second panel, and connecting the plug to both the splicing part and the connecting part at the same time, the connection between the first panel and the second panel is realized. The connection of the panels is achieved without damaging the panels. At the same time, when looseness or deviation occurs between adjacent first panels and second panels, the connection between adjacent first panels and second panels can be repaired by simply replacing the connecting part;
[0026] 2. Further, through the cooperation between the bent section provided on the splicing part and the insertion section provided on the plug, and through the cooperation between the insertion hook provided on the connecting part and the insertion edge provided on the plug, the connection between the plug and the splicing part and the connecting part is realized, thereby realizing the connection between the first panel and the second panel, and at the same time ensuring the connection strength of the two panels. Description of the Drawings
[0027] Figure 1 is the structural schematic diagram of the present invention;
[0028] Figure 2 is the exploded view of the present invention;
[0029] Figure 3 is the structural schematic diagram of the splicing part of the present invention;
[0030] Figure 4 is the structural schematic diagram of the plug of the present invention;
[0031] Figure 5 is the structural schematic diagram of the connecting part of the present invention
[0032] Reference Signs: First Panel 1, Splicing Part 2, Fixed Section 201, Bent Section 202, Plug 3, Connecting Section 301, Insertion Edge 302, Insertion Section 303, Connecting Groove 3031, Opening 3032, Connecting Part 4, Mounting Plate 401, Insertion Hook 402, Screw 5, Second Panel 6, Connection Assembly 7. Detailed Embodiments
[0033] The following describes in detail the embodiments of the present invention with reference to the drawings.
[0034] As shown Figures 1 - 5 in the figure, a hooking short-side splicing structure includes corresponding first panel 1 and second panel 6. A connecting component 7 for connecting the first panel 1 and the second panel 6 is provided between the first panel 1 and the second panel 6. The connecting component 7 includes a splicing piece 2, a plug-in piece 3 and a connecting piece 4. The splicing piece 2 is installed on the first panel 1, the connecting piece 4 is installed on the second panel 6, and the plug-in piece 3 is inserted into both the splicing piece 2 and the connecting piece 4 at the same time.
[0035] Specifically, the short sides of the first panel 1 and the second panel 6 are abutted together. The connecting component 7 is fixed to the first panel 1 and the second panel 6 respectively to achieve the connection of the first panel 1 and the second panel 6. Further, the splicing piece 2 is fixedly installed at the edge of the first panel 1, and the connecting piece 4 is fixedly installed at the edge of the second panel 6. The splicing piece 2 and the connecting piece 4 are connected together by the plug-in piece 3, and at the same time, it is ensured that the plug-in piece 3 is firmly fixed to the splicing piece 2 and the connecting piece 4, thereby realizing the tight connection of the first panel 1 and the second panel 6. In addition, since the splicing piece 2, the plug-in piece 3 and the connecting piece 4 are all arranged on the surfaces of the first panel 1 and the second panel 6, it is ensured that the first panel 1 and the second panel 6 can be tightly connected, so that there is no gap between the first panel 1 and the second panel 6, improving the aesthetics of the connection between the first panel 1 and the second panel 6, and at the same time making the flatness at the connection of the first panel 1 and the second panel 6 meet the requirements.
[0036] The splicing piece 2 includes a connected fixing section 201 and a bending section 202. The fixing section 201 abuts against the first panel 1. A screw 5 for connecting with the first panel 1 is provided on the fixing section 201. Further, the fixing section 201 is a horizontally arranged plate structure. The fixing section 201 abuts against the edge of the first panel 1, and the fixing section 201 is completely abutted against the first panel 1 to ensure that there is no gap between the fixing section 201 and the first panel 1.
[0037] The bending section 202 is a bending structure formed at the end of the fixing section 201. Further, the bending section 202 is arranged at the end of the fixing section 201. The bending section 202 is arranged along the length direction of the fixing section 201, and the bending section 202 is located at the edge of the first panel 1. The bending section 202 is parallel to the fixing section 201. A groove for connecting the plug-in piece 3 is formed between the bending section 202 and the fixing section 201. This groove is parallel to the first panel 1, and the opening direction of this groove is arranged towards the other end of the fixing section 201.
[0038] The connecting member 4 includes a mounting plate 401 which is abutted and arranged on the second panel 6, and a screw 5 for connecting with the second panel 6 is arranged on the mounting plate 401. Further, the mounting plate 401 is a horizontally arranged plate structure, the mounting plate 401 abuts against the edge of the second panel 6, and the mounting plate 401 is completely abutted against the second panel 6 to ensure that there is no gap between the mounting plate 401 and the second panel 6.
[0039] A plug-in hook 402 is formed on the mounting plate 401. Further, the plug-in hook 402 is located on the surface of the mounting plate 401, the plug-in hook 402 is arranged along the length direction of the mounting plate 401, and the plug-in hook 402 is perpendicular to the mounting plate 401. A slot for connecting the plug-in member 3 is formed in the plug-in hook 402, the slot is perpendicular to the mounting plate 401, and the opening of the slot is located on the side opposite to the first panel 1.
[0040] The plug-in member 3 includes a connecting section 301 which abuts against the surfaces of both the splicing member 2 and the connecting member 4 at the same time. An inserting section 303 for inserting into the splicing member 2 and an inserting edge 302 for inserting into the connecting member 4 are formed on the connecting section 301. Further, the connecting section 301 is a horizontal plate structure, and the connecting section 301 abuts against the mounting plate 401 of the connecting member 4. In addition, the inserting section 303 and the inserting edge 302 are respectively arranged at opposite ends of the connecting section 301. Through the connection of the inserting section 303 with the splicing member 2 and the connection of the inserting edge 302 with the connecting member 4, the connection of the plug-in member 3 with the splicing member 2 and the connecting member 4 is realized, and further the connection of the first panel 1 and the second panel 6 is realized; through the connection of the plug-in member 3 with the splicing member 2 and the connecting member 4, there is no connection gap between the first panel 1 and the second panel 6, the connection beauty between the first panel 1 and the second panel 6 is improved, and at the same time the connection flatness between the first panel 1 and the second panel 6 also meets the installation requirements.
[0041] The inserting edge 302 is vertically arranged on the connecting section 301, and the inserting edge 302 is matched with the plug-in hook 402. Further, the inserting edge 302 is arranged at the end of the connecting section 301, the inserting edge 302 is arranged along the length direction of the connecting section 301, and the height of the inserting edge 302 is the same as the thickness of the inserting section 303. The two sides of the inserting edge 302 and the two side surfaces of the corresponding inserting section 303 are located in the same plane. At the same time, the inserting edge 302 is inserted into the slot of the plug-in hook 402. Through the connection of the inserting edge 302 and the plug-in hook 402, the connection of the plug-in member 3 and the connecting member 4 is realized.
[0042] A connection groove 3031 for inserting the bent section 202 is formed in the insertion section 303. The connection groove 3031 is arranged parallel to the connection section 301. The opening 3032 of the connection groove 3031 is located at the connection between the insertion section 303 and the connection section 301. Further, the insertion section 303 is arranged along the length direction of the connection section 301, and the connection groove 3031 is arranged parallel to the connection section 301, ensuring that the bent section 202 can be smoothly inserted into the connection groove 3031. At the same time, the opening of the connection groove 3031 faces downward of the connection section 301. The bent section 202 is inserted into the connection groove 3031, and the bent section 202 is tightly connected to the groove wall of the connection groove 3031, thereby ensuring the connection strength between the bent section 202 and the connection groove 3031, avoiding the bent section 202 from sliding out of the connection groove 3031, improving the structural strength between the plug-in 3 and the splicing member 2, and further ensuring the connection strength between the first panel 1 and the second panel 6.
[0043] An installation method for a hook-type short-side splicing structure includes the following steps:
[0044] S1. Install the splicing member 2 on the first panel 1 with screws 5;
[0045] Specifically, abut the fixing section 201 on the splicing member 2 against the edge of the first panel 1, and fix the fixing section 201 on the first panel 1 with screws 5. At the same time, the screws 5 are evenly distributed in the length direction of the fixing section 201, thereby ensuring the connection strength between the fixing section 201 and the first panel 1, ensuring that the splicing member 2 will not detach from the first panel 1, and improving the safety of the first panel 1 after installation.
[0046] S2. Install the connecting member 4 on the second panel 6 with screws 5;
[0047] Specifically, abut the mounting plate 401 on the connecting member 4 against the edge of the second panel 6, and fix the mounting plate 401 on the second panel 6 with screws 5. At the same time, the screws 5 are evenly distributed in the length direction of the mounting plate 401, thereby ensuring the connection strength between the mounting plate 401 and the second panel 6, ensuring that the connecting member 4 will not detach from the second panel 6, and improving the safety of the second panel 6 after installation.
[0048] S3. Insert the plug-in 3 into the splicing member 2 and the connecting member 4;
[0049] Specifically: abut the short sides of the first panel 1 and the second panel 6 against each other, then align the insertion edge 302 on the plug-in member 3 with the insertion hook 402 of the connecting member 4, and align the connecting groove 3031 of the insertion section 303 with the bent section 202 of the splicing member 2. Push the plug-in member 3 into the connecting member 4 and the splicing member 2. When the plug-in member 3 connects the connecting member 4 and the splicing member 2 together, there will be no gap between the first panel 1 and the second panel 6, thereby improving the aesthetics of the connection between the first panel 1 and the second panel 6. At the same time, the flatness of the connection between the first panel 1 and the second panel 6 meets the requirements. In addition, the structural strength of the connection between the first panel 1 and the second panel 6 is also ensured, so as to ensure that the first panel 1 and the second panel 6 will not separate or break away, improving the safety after the installation of the first panel 1 and the second panel 6, and further increasing the service life of the first panel 1 and the second panel 6.
[0050] S4. Lift the first panel 1 and the second panel 6 upwards, thereby completing the installation work of the first panel 1 and the second panel 6.
[0051] 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 these embodiments shown herein, but rather will be accorded the widest scope consistent with the principles and novel features disclosed herein.
[0052] Although terms such as the first panel 1, splicing member 2, fixed section 201, bent section 202, plug-in member 3, connecting section 301, insertion edge 302, insertion section 303, connecting groove 3031, opening 3032, connecting member 4, mounting plate 401, insertion hook 402, screw 5, second panel 6, connection assembly 7, etc. are used more in the drawings herein, the possibility of using other terms is not excluded. These terms are used only 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 hook-type short-side splicing structure, comprising corresponding first panel (1) and second panel (6), characterized in that, A connecting component (7) for connecting the first panel (1) and the second panel (6) is provided between the first panel (1) and the second panel (6). The connecting component (7) includes a splicing piece (2), a plug-in piece (3) and a connecting piece (4). The splicing piece (2) is installed on the first panel (1), the connecting piece (4) is installed on the second panel (6), and the plug-in piece (3) is inserted into both the splicing piece (2) and the connecting piece (4). The splicing piece (2) includes a connected fixing section (201) and a bending section (202). The fixing section (201) abuts against the first panel (1), and a screw (5) for connecting with the first panel (1) is provided on the fixing section (201). The bending section (202) is a bending structure formed at the end of the fixing section (201). The connecting piece (4) includes a mounting plate (401) abutting against the second panel (6), and a screw (5) for connecting with the second panel (6) is provided on the mounting plate (401). An insertion hook (402) is formed on the mounting plate (401). The plug-in piece (3) includes a connecting section (301) abutting against the surfaces of both the splicing piece (2) and the connecting piece (4). An insertion section (303) for inserting into the splicing piece (2) and an insertion edge (302) for inserting into the connecting piece (4) are formed on the connecting section (301). The insertion edge (302) is vertically arranged on the connecting section (301), and the insertion edge (302) cooperates with the insertion hook (402). A connecting groove (3031) for inserting the bending section (202) is formed in the insertion section (303). The connecting groove (3031) is arranged parallel to the connecting section (301), and an opening (3032) of the connecting groove (3031) is located at the connection between the insertion section (303) and the connecting section (301).
2. A method for installing a hook-type short-side splicing structure, characterized in that The following steps are applicable to the snap-together short-edge splicing structure as described in Claim 1: S1. Install the splicing piece (2) on the first panel (1) with screws (5). S2. Install the connecting piece (4) on the second panel (6) with screws (5). S3. Insert the plug-in piece (3) into the splicing piece (2) and the connecting piece (4). S4. Lift the first panel (1) and the second panel (6) to complete the installation.
Citation Information
Patent Citations
A short side splicing connector for ceiling panels and installation method
CN111962756B
Assembly type aluminum honeycomb ceiling board short edge connecting structure and connecting method
CN114482297A
A hook-type short side splicing structure
CN220954151U