A plug-in type grid ceiling structure
Patent Information
- Application Number
- CN202311805768.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-26
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2043-12-26
AI Technical Summary
该方案虽然能够实现格栅的吊顶,但是该方案比较费时费力
[0003]为解决上述技术问题,本发明提出了一种插接式格栅吊顶结构,吊顶组件下端的延伸部穿插至插接槽中,吊顶组件下端的延伸部对插接槽的收口部提供向上的支撑力,从而使方管和装饰板能够被吊装。为了防止延伸部的变形导致的延伸部和插接槽之间脱离,本方案中的插接板能够起到对延伸部的支撑,有效避免了延伸部的变形角度过大,从而有效的提高了方管和装饰板吊装的稳定性,具有施工效率高的优点。
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Figure CN117646520B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of architectural decoration, and specifically to a plug-in grid ceiling structure. Background Technology
[0002] Currently, grid ceilings suffer from drawbacks such as numerous components and complex construction. Installing grids in a ceiling is time-consuming and labor-intensive. How to quickly fix the grids and install them in a ceiling has been a pressing problem in this field. Existing patents have proposed some technical solutions for grid ceilings, such as application number 201720078866.3, entitled "A Grid Ceiling," which includes a main keel with hanging rods fixed to it. Several main grid plates are fixed below the main keel, and several secondary grid plates are installed on the main grid plates. The main grid plates have through holes through which a rotatable long shaft is inserted. The long shaft is connected and fixed to the secondary grid plates, and a drive mechanism is provided on the long shaft to drive its rotation. While this solution can achieve a grid ceiling, it is relatively time-consuming and labor-intensive. Summary of the Invention
[0003] To address the aforementioned technical problems, this invention proposes a plug-in grid ceiling structure. The lower extension of the ceiling component inserts into a plug-in groove, providing upward support to the closing portion of the groove, thus enabling the square tube and decorative panel to be hoisted. To prevent deformation of the extension from causing it to detach from the plug-in groove, the plug-in plate in this design provides support, effectively preventing excessive deformation angles and thus significantly improving the stability of the square tube and decorative panel hoisting. This design also offers the advantage of high construction efficiency.
[0004] Specifically, this invention proposes a plug-in grid ceiling structure, comprising:
[0005] Decorative panel, wherein the decorative panel is provided with an installation opening;
[0006] A square tube is inserted into the mounting opening of the decorative panel, and the square tube is provided with a insertion groove, the top opening of the insertion groove being provided with a tapered end;
[0007] A ceiling assembly, wherein the lower end of the ceiling assembly is provided with an extension portion, the extension portion is located in the insertion slot, and the extension portion is used to press against the closing portion upward;
[0008] A plug-in plate, which passes through the plug-in slot and is located below the extension.
[0009] Preferably, the ceiling assembly includes:
[0010] The profile has a U-shaped mounting portion at its top and two downward-extending vertical arms at its lower end, with an extension portion at the lower end of each vertical arm.
[0011] A ceiling rod, the lower end of which is fastened to the mounting part, and the top of which is mounted on the ceiling via a connector.
[0012] Preferably, the end of the extension away from the vertical arm is provided with a folded edge, which is used to abut against the side wall of the plug plate.
[0013] Preferably, the square tube has through openings on both ends along its length, and a clamping component is installed in the through opening to push the plug plate upward.
[0014] Preferably, the clamping component includes:
[0015] The insertion tube is disposed in the opening of the square tube, the insertion tube has an installation chamber, and the upper end face of the insertion tube has a guide opening that communicates with the installation chamber.
[0016] A first inclined block is located in the mounting chamber;
[0017] A distance adjustment component is mounted on the insertion tube and is used to adjust the linear motion of the first inclined block;
[0018] The second inclined block is slidably disposed in the guide opening in the vertical direction, and the inclined surfaces of the first inclined block and the second inclined block are in contact with each other. The second inclined block is used to press the plug plate upward.
[0019] Preferably, the distance adjustment element includes:
[0020] A connecting rod is fixed to the first inclined block, one end of the connecting rod is fixed with a first slider, and the other end of the connecting rod is fixed with a second slider;
[0021] An adjusting screw is installed in a threaded hole at one end of the insertion tube, and the adjusting screw is used to push the first slider;
[0022] An elastic element is provided, and the second slider is mounted on the other end of the insertion tube via the elastic element.
[0023] Preferably, the two vertical arms are connected by an expansion member.
[0024] Preferably, the expansion member includes:
[0025] A nut, which is fixed to one of the vertical arms of the profile, and the vertical arm is provided with a clearance hole that communicates with the threaded hole of the nut;
[0026] A tightening screw is screwed onto the nut, and the end of the tightening screw is used to compress another vertical arm in the profile.
[0027] Preferably, a push block is fixed to the end of the tightening screw, the push block being used to push against the other vertical arm. Attached Figure Description
[0028] To more clearly illustrate the technical solutions in the embodiments of the present invention, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.
[0029] Figure 1 This is a three-dimensional structural diagram of the plug-in grid ceiling structure proposed in this embodiment;
[0030] Figure 2 yes Figure 1 A magnified schematic diagram of the partial structure at point A in the middle;
[0031] Figure 3 This is a top view of the plug-in grid ceiling structure in this embodiment;
[0032] Figure 4 yes Figure 3 Schematic diagram of the cross-sectional structure in the middle BB direction;
[0033] Figure 5 yes Figure 4 A magnified schematic diagram of the structure at point C in the middle;
[0034] Figure 6 yes Figure 4 A magnified schematic diagram of the structure at point D.
[0035] The reference numerals used in the attached figures are as follows:
[0036] 11-Decorative panel; 12-Square tube; 13-Interlocking groove; 14-End section; 15-Extension section; 16-Interlocking plate; 17-Profile; 18-Mounting section; 19-Vertical arm; 20-Ceiling rod; 21-Interlocking pipe; 22-Securing component; 23-First inclined block; 24-Second inclined block; 25-Connecting rod; 26-First slider; 27-Second slider; 28-Adjusting screw; 29-Elastic element; 30-Nut; 31-Tightening screw; 32-Push block; 33-Mounting chamber; 34-Folded edge. Detailed Implementation
[0037] The technical solutions of this application will be further described below with reference to specific embodiments, but this application is not limited to these embodiments.
[0038] like Figures 1 to 6 As shown, this embodiment proposes a plug-in grid ceiling structure, including:
[0039] Decorative panel 11, the decorative panel 11 is provided with an installation port;
[0040] A square tube 12 is inserted into the mounting opening of the decorative panel 11, and the square tube 12 is provided with a plug groove 13, and the top opening of the plug groove 13 is provided with a tapered part 14.
[0041] The ceiling assembly has an extension 15 at its lower end, which is located in the insertion groove 13 and is used to press against the closing part 14 upward.
[0042] The plug plate 16 passes through the plug slot 13 and is located below the extension 15.
[0043] The technical advantage of this solution is that it enables the rapid installation of decorative panels 11, resulting in high construction efficiency.
[0044] In this design, the lower extension 15 of the ceiling assembly is inserted into the insertion slot 13. The lower extension 15 provides upward support to the closing portion 14 of the insertion slot 13, thereby enabling the square tube 12 and the decorative panel 11 to be hoisted. To prevent the extension 15 from detaching from the insertion slot 13 due to deformation, the insertion plate 16 in this design supports the extension 15, effectively preventing excessive deformation angle of the extension 15, thus effectively improving the stability of the hoisting of the square tube 12 and the decorative panel 11.
[0045] Furthermore, there are multiple decorative panels 11, which are evenly distributed in an array along the length of the square tube 12; wherein, there are multiple square tubes 12, which are used to more stably install the decorative panels 11.
[0046] As one embodiment of this invention, the ceiling assembly includes:
[0047] Profile 17 has a square mounting portion 18 at its top and two downwardly extending vertical arms 19 at the lower end of the mounting portion 18, with an extension portion 15 at the lower end of each vertical arm 19.
[0048] The ceiling rod 20 has its lower end fastened to the mounting part 18, and its top end is mounted on the ceiling via a connector.
[0049] The technical advantage of this solution is that it makes it easier to install the extension 15 into the insertion slot 13. By squeezing the two extension arms and bringing them closer together, it is easier for the extension 15 to be inserted into the insertion slot 13. After the external force is removed, the two extension arms move away from each other and are tensioned in the insertion slot 13.
[0050] As one embodiment of this example, the end of the extension 15 away from the vertical arm 19 is provided with a folded edge 34, which is used to abut against the side wall of the plug-in plate 16.
[0051] The technical advantage of this solution is that the folded edge 34 can cover and press the side wall of the plug-in plate 16. Through the interaction between the folded edge 34 and the side wall of the plug-in plate 16, the extensions 15 can be effectively prevented from getting close to each other, thereby improving the overall stability of the ceiling.
[0052] As one embodiment of this invention, the square tube 12 has through openings on both ends along its length, and a clamping component 22 is installed in the through openings to push the plug plate 16 upward.
[0053] Furthermore, the clamping component 22 includes:
[0054] Insertion tube 21 is provided in the opening of square tube 12. Insertion tube 21 has an installation chamber 33 and the upper end face of insertion tube 21 has a guide opening that communicates with the installation chamber 33.
[0055] The first inclined block 23 is located in the mounting chamber 33;
[0056] The distance adjustment component is installed on the insertion tube 21 and is used to adjust the linear movement of the first inclined block 23.
[0057] The second inclined block 24 is slidably disposed in the guide opening in the vertical direction, and the inclined surfaces of the first inclined block 23 and the second inclined block 24 are in contact. The second inclined block 24 is used to press the plug plate 16 upward.
[0058] The technical effect of this solution is that the distance adjustment component drives the first inclined block 23 to move linearly, the first inclined block 23 and the second inclined block 24 work together, and under the action of the guide port, the second inclined block 24 moves in the vertical direction, so that the second inclined block 24 can push the plug plate 16 upward, so that the plug plate 16 can effectively push the extension 15 upward, thereby improving the firmness of the installation between the ceiling component and the square tube 12.
[0059] As one embodiment of this invention, the distance adjustment component includes:
[0060] Connecting rod 25, the connecting rod 25 is fixed on the first inclined block 23, one end of the connecting rod 25 is fixed with a first slider 26, and the other end of the connecting rod 25 is fixed with a second slider 27;
[0061] Adjusting screw 28 is installed in a threaded hole at one end of insertion tube 21, and adjusting screw 28 is used to push the first slider 26;
[0062] The elastic element 29 and the second slider 27 are installed at the other end of the insertion tube 21 via the elastic element 29.
[0063] In this design, the elastic element 29 is used to move the first inclined block 23 toward the adjusting screw 28. At this time, the second inclined block 24 moves away from the plug plate 16. When the adjusting screw 28 is manually rotated, the first inclined block 23 moves toward the elastic element 29. At the same time, the first inclined block 23 pushes the second inclined block 24 upward and presses the second inclined block 24 against the plug plate 16 upward.
[0064] The number of first inclined blocks 23 on each link is multiple, and the number of second inclined blocks 24 and ceiling components is the same as the number of first inclined blocks 23.
[0065] Furthermore, the elastic element 29 is a spring.
[0066] In one embodiment of this invention, the two vertical arms 19 are connected by an expansion member.
[0067] As one embodiment of this invention, the expansion member includes:
[0068] Nut 30 is fixed on a vertical arm 19 in profile 17. The vertical arm 19 is provided with a clearance hole that communicates with the threaded hole of nut 30.
[0069] A tightening screw 31 is screwed onto a nut 30, and the end of the tightening screw 31 is used to compress another vertical arm 19 in the profile 17. Furthermore, a push block 32 is fixed to the end of the tightening screw 31, which is used to push the other vertical arm 19.
[0070] The technical advantage of this solution is that it facilitates the insertion and installation of the plug-in plate 16 in the plug-in slot 13, and when adjusting the tightening screw 31, it keeps the two vertical arms 19 away from each other, thus providing sufficient space for the installation of the plug-in plate 16.
[0071] For those skilled in the art, various modifications and improvements can be made without departing from the inventive concept of this invention, and these all fall within the protection scope of this invention.
Claims
1. A plug-in type grid ceiling structure, characterized in that, include: Decorative panel (11), wherein the decorative panel (11) is provided with an installation port; A square tube (12) is inserted into the mounting opening of the decorative panel (11), and the square tube (12) is provided with a plug groove (13), and the top opening of the plug groove (13) is provided with a closing part (14). The ceiling assembly has an extension (15) at its lower end, the extension (15) being located in the insertion slot (13), and the extension (15) being used to press against the closing part (14) upwards. A plug plate (16) is inserted into the plug slot (13) and is located below the extension (15); The ceiling assembly includes: Profile (17), the top of the profile (17) has a square mounting part (18), the lower end of the mounting part (18) has two downwardly extending vertical arms (19), and the lower end of each vertical arm (19) is provided with the extension part (15). The ceiling rod (20) has its lower end fastened to the mounting part (18) and its top end installed on the ceiling via a connector. The extension (15) has a folded edge (34) at one end away from the vertical arm (19), the folded edge (34) being used to abut against the side wall of the plug plate (16).
2. The plug-in grid ceiling structure according to claim 1, characterized in that, The square tube (12) has through openings on both ends along its length direction, and a clamping component (22) is installed in the through opening. The clamping component (22) is used to push the plug plate (16) upward.
3. The plug-in grid ceiling structure according to claim 2, characterized in that, The clamping component (22) includes: Insertion tube (21), the insertion tube (21) is provided in the opening of the square tube (12), the insertion tube (21) is provided with an installation chamber (33), and the upper end face of the insertion tube (21) is provided with a guide opening that communicates with the installation chamber (33); The first inclined block (23) is located in the mounting chamber (33); A distance adjustment component is installed on the insertion tube (21) and is used to adjust the linear motion of the first inclined block (23); The second inclined block (24) is slidably disposed in the guide opening in the vertical direction, and the inclined surfaces of the first inclined block (23) and the second inclined block (24) are in contact, and the second inclined block (24) is used to press the plug plate (16) upward.
4. The plug-in grid ceiling structure according to claim 3, characterized in that, The distance adjustment component includes: A connecting rod (25) is fixed on the first inclined block (23). One end of the connecting rod (25) is fixed with a first slider (26), and the other end of the connecting rod (25) is fixed with a second slider (27). An adjusting screw (28) is installed in a threaded hole at one end of the insertion tube (21), and the adjusting screw (28) is used to push the first slider (26). The second slider (27) is mounted on the other end of the insertion tube (21) via the elastic element (29).
5. The plug-in grid ceiling structure according to claim 1, characterized in that, The two vertical arms (19) are connected by an expansion member.
6. The plug-in grid ceiling structure according to claim 5, characterized in that, The expansion member includes: Nut (30), the nut (30) is fixed on one of the vertical arms (19) of the profile (17), the vertical arm (19) is provided with a clearance hole that communicates with the threaded hole of the nut (30); A tightening screw (31) is screwed onto the nut (30), and the end of the tightening screw (31) is used to press against another vertical arm (19) in the profile (17).
7. The plug-in grid ceiling structure according to claim 6, characterized in that, The end of the tightening screw (31) is fixed with a push block (32), which is used to push the other vertical arm (19).
Citation Information
Patent Citations
Grid furred ceiling
CN206616761U
Grating suspended ceiling structure
CN111764570A
Adjustably connected body and suspended ceiling system
CN207314641U