Adjustable hyperbolic wall top structure
Through the design of angle adjustment parts, the problem of angle adjustment of modeling modules in hyperbolic wall and top structures is solved, the convenient installation of modeling blocks is achieved, and the splicing efficiency is improved.
Patent Information
- Application Number
- CN202310304264.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-03-27
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2043-03-27
AI Technical Summary
It is difficult to effectively adjust the angle of the modeling modules in the hyperbolic wall and top structure with the existing technology, resulting in difficulties in splicing.
An angle adjustment component is used, including a mounting seat, a connecting rod, a ball head and an adjusting screw. The installation of the modeling block is achieved by adjusting the connecting rod angle and tightening the ball head using the adjusting screw.
The angle of the modeling block is adjustable, which simplifies the installation process of modeling blocks of different shapes and improves the splicing efficiency.
Smart Images

Figure CN116677125B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the field of building decoration, and in particular to an adjustable hyperbolic wall top structure. Background Art
[0002] Dynamic curved and shaped surfaces offer a unique visual experience, allowing one to fully experience the dynamics of space and feel the interplay and flow of spatial elements. Curved and shaped surfaces break free from the traditional boxy box, creating a rich and varied array of interesting forms. The dynamic spatial layers highlight a different spatial pattern, bringing with them the beauty of streamlined lines, while the undulating waves reveal the designer's ingenuity and ideal world. As hyperbolic and shaped decorative surfaces become increasingly common in modern decorative projects, they present numerous technical challenges. Primarily, these complex hyperbolic surfaces present various technical challenges in both post-production and on-site assembly.
[0003] Hyperbolic shapes are usually made up of multiple different shape modules. However, during the splicing process, the angle of the shape needs to be adjusted to meet the splicing requirements between different shapes. However, it is difficult to adjust the angle of the module with existing technology. Summary of the Invention
[0004] To address the aforementioned technical issues, the present invention proposes an adjustable hyperbolic wall-top structure. The angle of the connecting rod is adjusted according to the shape of the molding block and installation requirements. Once the connecting rod angle is adjusted, the ball head is tightened by rotating the adjustment screw, enabling efficient installation of the molding block. This solution offers the advantage of angle adjustment, making it easier to install molding blocks of varying shapes.
[0005] Specifically, the present invention proposes an adjustable hyperbolic wall-top structure, comprising a shaping block, an angle adjustment member, and a ceiling assembly, wherein the top of the ceiling assembly is fixed to the ceiling, and the bottom of the ceiling assembly is connected to the shaping block via the angle adjustment member;
[0006] Wherein, the angle adjustment member includes:
[0007] a mounting seat, the mounting seat being fixed to the lower end of the ceiling assembly and having a spherical groove formed therein;
[0008] A connecting rod, wherein the upper end of the connecting rod is provided with a ball head capable of rotating in the spherical groove, the ball head is provided with a tapered hole, and the connecting rod is provided with a threaded hole penetrating the tapered hole;
[0009] an adjusting screw, the adjusting screw being screwed into the threaded hole and causing the ball head to expand by squeezing the inner wall of the tapered hole;
[0010] A connecting seat, the upper end of which is fixed on the connecting rod, and the lower end of which is fixed on the shaping block.
[0011] Preferably, the lower end of the connecting seat is connected to the shaping block via an expansion bolt.
[0012] Preferably, a notch that penetrates the tapered hole is provided on the surface of the ball head.
[0013] Preferably, the mounting seat includes:
[0014] A support block, wherein the upper end of the support block is provided with a guide groove, the lower end surface of the support block is provided with a guide hole that penetrates the guide groove, and the connecting rod is slidably provided in the guide hole;
[0015] Sliding blocks, the two sliding blocks are slidably arranged in the guide grooves respectively, the opposite surfaces of the two sliding blocks are respectively provided with mounting grooves for installing ball heads, and the supporting block is provided with a tightening screw for locking the sliding blocks.
[0016] Preferably, a limiting plate is inserted into the insertion slot of the support block, the two sliding blocks are located between the two limiting plates, and the two limiting plates are used to squeeze the sliding blocks.
[0017] Preferably, the ceiling assembly includes a first connecting assembly, a crossbeam and a second connecting assembly, the crossbeam is fixed to the ceiling via the first connecting assembly, and the support block is fixed to the crossbeam via the second connecting assembly.
[0018] Preferably, a T-shaped slot is provided on the crossbeam, and the T-shaped plug-in portion at the lower end of the first connecting component is installed in the T-shaped slot.
[0019] Preferably, the second connecting assembly includes a suspension rod and a connecting plate, the connecting plate is fixed on the support block, and the connecting plate is installed on the beam through the suspension rod.
[0020] Beneficial effects:
[0021] This invention proposes an adjustable hyperbolic wall top structure. The angle of the connecting rod is adjusted according to the shape of the molding block and installation requirements. Once the connecting rod angle is adjusted, the ball head is tightened by rotating the adjustment screw, thereby achieving effective installation of the molding block. This solution has the advantage of adjustable angle, making it easy to install molding blocks of different shapes. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art.
[0023] Figure 1This is a schematic structural diagram of an adjustable hyperbolic wall top structure in the main viewing direction proposed in this embodiment;
[0024] Figure 2 3D is a schematic diagram of the three-dimensional structure of the angle adjustment member in this embodiment;
[0025] Figure 3 is a schematic structural diagram of the angle adjustment member in this embodiment when viewed from the side;
[0026] Figure 4 yes Figure 3 Schematic diagram of the cross-sectional structure in the AA direction;
[0027] Figure 5 It is a schematic diagram of the three-dimensional structure of the ball head in this embodiment.
[0028] The reference numerals in the accompanying drawings are as follows:
[0029] 11-molding block; 12-angle adjustment piece; 13-ceiling assembly; 14-mounting seat; 15-connecting rod; 16-ball head; 17-tapered hole; 18-threaded hole; 19-adjusting screw; 20-connecting seat; 21-notch; 22-support block; 23-guide groove; 24-guide hole; 25-sliding block; 26-tightening screw; 27-plug-in groove; 28-limiting plate; 29-first connecting assembly; 30-crossbeam; 31-second connecting assembly; 32-T-slot; 33-T-plug-in part; 34-suspender rod; 35-connecting plate. DETAILED DESCRIPTION
[0030] The present invention will be further described in detail below with reference to the accompanying drawings.
[0031] like Figures 1 to 5 As shown, this embodiment proposes an adjustable hyperbolic wall top structure, including a shaping block 11, an angle adjustment member 12 and a ceiling assembly 13. The top of the ceiling assembly 13 is fixed to the ceiling, and the bottom of the ceiling assembly 13 is connected to the shaping block 11 through the angle adjustment member 12.
[0032] The angle adjustment member 12 includes:
[0033] A mounting base 14 is fixed to the lower end of the ceiling assembly 13 and is provided with a spherical groove;
[0034] Connecting rod 15, the upper end of connecting rod 15 is provided with a ball head 16 that can rotate in the spherical groove, the ball head 16 is provided with a tapered hole 17, and the connecting rod 15 is provided with a threaded hole 18 that penetrates the tapered hole 17;
[0035] An adjusting screw 19 is screwed into the threaded hole 18 and expands the ball head 16 by squeezing the inner wall of the tapered hole 17;
[0036] The connecting seat 20 has its upper end fixed on the connecting rod 15 , and its lower end fixed on the shaping block 11 .
[0037] The technical effect of this solution is that the angle of the connecting rod 15 is adjusted according to the shape of the molding block 11 and the installation requirements. After the angle of the connecting rod 15 is adjusted, the ball head 16 is tightened by rotating the adjustment screw 19, thereby achieving effective installation of the molding. This solution has the advantage of adjustable angle, which facilitates the installation of molding blocks 11 of different shapes.
[0038] Furthermore, the lower end of the connecting seat 20 is connected to the molding block 11 via an expansion bolt.
[0039] As an implementation of this embodiment, a notch 21 is provided on the surface of the ball head 16, which is in communication with the tapered hole 17. The technical effect of this solution is that the provision of the notch 21 can make the ball head 16 more easily deformable, thereby facilitating the expansion of the ball head 16 and further facilitating the expansion and tightening between the ball head 16 and the mounting seat 14.
[0040] As an implementation of this embodiment, the mounting base 14 includes:
[0041] A support block 22, wherein a guide groove 23 is provided at the upper end of the support block 22, and a guide hole 24 is provided on the lower end surface of the support block 22 and is connected to the guide groove 23, and the connecting rod 15 is slidably provided in the guide hole 24;
[0042] The two sliding blocks 25 are slidably disposed in the guide groove 23. The opposing surfaces of the two sliding blocks 25 are provided with mounting grooves for mounting the ball head 16. The two mounting grooves are spliced together to form a spherical groove. The support block 22 is provided with a tightening screw 26 for locking the sliding blocks 25.
[0043] In order to solve the technical problem of the difficulty in installing the ball head 16, this solution sets up two sliding blocks 25 that can be separated from each other. Now the connecting rod 15 is installed on the support block 22, and then the two sliding blocks 25 are installed in the guide groove 23. When the two sliding blocks 25 are pushed, the installation grooves in the sliding blocks 25 are fitted with the ball head 16, and then the tightening screw 26 is adjusted to lock the position of the sliding blocks 25.
[0044] As an implementation of this embodiment, a limit plate 28 is inserted into the insertion slot 27 of the support block 22 , and the two sliding blocks 25 are located between the two limit plates 28 , and the two limit plates 28 are used to squeeze the sliding blocks 25 .
[0045] This solution can effectively avoid the problem of the sliding block 25 being loose due to the loosening of the tightening screw 26 by providing the limit plate 28, and can effectively prevent the connecting rod 15 from moving.
[0046] As an implementation method of this embodiment, the ceiling assembly 13 includes a first connecting assembly 29, a beam 30 and a second connecting assembly 31. The beam 30 is fixed to the ceiling through the first connecting assembly 29, and the support block 22 is fixed to the beam 30 through the second connecting assembly 31.
[0047] As an implementation of this embodiment, the second connecting assembly 31 includes a suspension rod 34 and a connecting plate 35 . The connecting plate 35 is fixed on the support block 22 , and the connecting plate 35 is installed on the beam 30 through the suspension rod 34 .
[0048] As one implementation of this embodiment, a T-shaped slot 32 is provided on the crossbeam 30, and the T-shaped plug portion 33 at the lower end of the first connecting assembly 29 is installed in the T-shaped slot 32. The technical effect of this solution is that the crossbeam 30 can be easily adjusted along the length of the T-shaped slot 32. Once the position of the crossbeam 30 is determined, the crossbeam 30 can be fixed using construction glue or bolts.
[0049] For those skilled in the art, several variations and improvements can be made without departing from the inventive concept of the present invention, and all of these fall within the scope of protection of the present invention.
Claims
1. An adjustable hyperbolic wall top structure, characterized in that: It comprises a shaping block (11), an angle adjustment member (12) and a ceiling assembly (13), wherein the top of the ceiling assembly (13) is fixed to the ceiling, and the bottom of the ceiling assembly (13) is connected to the shaping block (11) via the angle adjustment member (12); Wherein, the angle adjustment member (12) comprises: A mounting seat (14), the mounting seat (14) being fixed to the lower end of the ceiling assembly (13), and a spherical groove being provided in the mounting seat (14); A connecting rod (15), wherein the upper end of the connecting rod (15) is provided with a ball head (16) capable of rotating in the spherical groove, the ball head (16) is provided with a tapered hole (17), and the connecting rod (15) is provided with a threaded hole (18) that penetrates the tapered hole (17); an adjusting screw (19), the adjusting screw (19) being screwed into the threaded hole (18), and the adjusting screw (19) expanding the ball head (16) by squeezing the inner wall of the tapered hole (17); A connecting seat (20), wherein the upper end of the connecting seat (20) is fixed to the connecting rod (15), and the lower end of the connecting seat (20) is fixed to the shaping block (11); The surface of the ball head (16) is provided with a notch (21) that penetrates the tapered hole (17); The mounting seat (14) includes: A support block (22), wherein a guide groove (23) is provided at the upper end of the support block (22), a guide hole (24) is provided on the lower end surface of the support block (22) and is communicated with the guide groove (23), and the connecting rod (15) is slidably disposed in the guide hole (24); Sliding blocks (25), the two sliding blocks (25) are slidably arranged in the guide groove (23), and the opposite surfaces of the two sliding blocks (25) are respectively provided with mounting grooves for mounting the ball head (16), and the supporting block (22) is provided with a tightening screw (26) for locking the sliding blocks (25).
2. The adjustable hyperbolic wall top structure according to claim 1, characterized in that: The lower end of the connecting seat (20) is connected to the shaping block (11) via an expansion bolt.
3. The adjustable hyperbolic wall top structure according to claim 1, characterized in that: A limiting plate (28) is inserted into the insertion slot (27) of the support block (22), and the two sliding blocks (25) are located between the two limiting plates (28), and the two limiting plates (28) are used to squeeze the sliding blocks (25).
4. The adjustable hyperbolic wall top structure according to claim 1, characterized in that: The ceiling assembly (13) comprises a first connecting assembly (29), a crossbeam (30), and a second connecting assembly (31); the crossbeam (30) is fixed to the ceiling via the first connecting assembly (29); and the support block (22) is fixed to the crossbeam (30) via the second connecting assembly (31).
5. The adjustable hyperbolic wall top structure according to claim 4, characterized in that: A T-shaped slot (32) is provided on the crossbeam (30), and the T-shaped plug-in portion (33) at the lower end of the first connecting assembly (29) is installed in the T-shaped slot (32).
6. The adjustable hyperbolic wall top structure according to claim 4, characterized in that: The second connecting assembly (31) comprises a suspension rod (34) and a connecting plate (35), wherein the connecting plate (35) is fixed on the support block (22), and the connecting plate (35) is mounted on the crossbeam (30) via the suspension rod (34).
Citation Information
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