An adjustable angle aluminum alloy grid ceiling installation structure
Through the combined structure of the keel and suspension mechanism, the processing and installation complexity of the aluminum alloy grille ceiling in angle adjustment is solved, and the adjustable angle installation of the aluminum alloy grille ceiling is realized, which improves the decorative effect and construction efficiency, and avoids loose bolts.
Patent Information
- Application Number
- CN202310195401.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-03-03
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2043-03-03
AI Technical Summary
The existing aluminum alloy grille ceiling requires processing of a variety of steel connectors when adjusting the angle, resulting in high processing costs, complex installation and poor results, which cannot meet the decorative effect requirements, and the angle cannot be adjusted on site, which makes the construction efficiency low.
The combined structure of molded keel, lifting assembly, suspension mechanism and installation reinforcement is adopted to achieve adjustable angle installation of the aluminum alloy grille through adjustment grooves and bolt connections. Components such as rubber clamp strips and top support clamps are used to prevent the bolts from loosening and ensure stable connection.
The angle of the aluminum alloy grille ceiling is adjustable, which reduces the difficulty of processing and installation, improves the decorative effect and construction efficiency, avoids loose bolts, and meets the decorative effect requirements.
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Figure CN116201283B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of hanging parts, in particular to an angle-adjustable aluminum alloy grid ceiling installation structure. Background Art
[0002] Aluminum alloy grille ceilings are widely used in interior decoration. In order to pursue special decorative effects, designers design the overall appearance of aluminum alloy grille ceilings into curved surfaces. In order to ensure that the curved surface of the bottom of the aluminum alloy grille ceiling is smooth and beautiful, not only the aluminum alloy grille is required to be adjusted in height, but also the angle of each aluminum alloy grille with the horizontal direction is required to be adjustable to achieve a smooth transition of the curved surface.
[0003] In the existing technology, the method adopted is to adjust the angle direction of the aluminum alloy by processing steel connectors of different shapes. It is necessary to design steel connectors for each aluminum alloy grille according to different positions and different angles. The steel connectors are then connected to the side of the aluminum alloy grille with stainless steel screws to ultimately achieve the curved surface effect required by the design.
[0004] However, the existing method of adjusting the angle and direction of the aluminum alloy grille by processing steel connectors of different shapes requires that each aluminum alloy grille be designed with steel connectors according to different positions and angles. The steel connectors are then connected to the sides of the aluminum alloy grille using stainless steel screws. This requires that the steel connectors be processed into different shapes and varieties, and the processing accuracy of the steel connectors is high, resulting in high processing costs for the steel connectors. In addition, the on-site installation position of the steel connectors needs to be precisely positioned, which requires high installation skills from workers and makes it difficult to ensure the installation quality. Since the steel connectors are connected to the sides of the aluminum alloy grille, if observed from the bottom of the ceiling, the steel connectors and the heads of the connecting screws are exposed, resulting in poor decorative effects and unable to meet the required decorative effect requirements. In addition, each steel connector can only achieve the installation requirements of a certain angle and direction of the aluminum alloy grille, and the angle cannot be adjusted on site, resulting in low construction efficiency. Summary of the Invention
[0005] The object of the present invention is to provide an angle-adjustable aluminum alloy grid ceiling installation structure to solve the problems raised in the above background technology.
[0006] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: an angle-adjustable aluminum alloy grille ceiling installation structure, comprising a shaped keel, a hanging assembly being provided on the top of the shaped keel, an adjustment groove being provided on the surface of the shaped keel, a hanging mechanism being provided under the shaped keel, an installation reinforcement being provided between the hanging mechanism and the shaped keel, and an aluminum alloy grille being installed on the bottom end of the hanging mechanism through a connecting piece.
[0007] Preferably, the hoisting assembly includes a steel connecting piece, a keel hanging piece, a light steel main keel, a light steel main keel hanging piece and a hot-dip galvanized suspender. The bottom end of the steel connecting piece is fixed to the top end of the shaped keel by bolts. Multiple groups of steel connecting pieces are provided at the top end of the shaped keel. The steel connecting pieces are connected to the keel hanging pieces by bolts. The keel hanging pieces are sleeved on the light steel main keel. The steel connecting piece is in a "Z"-shaped plate structure. The light steel main keel hanging piece is fixed to the top end of the steel connecting piece by bolts. The hot-dip galvanized suspender is installed at the top end of the light steel main keel hanging piece.
[0008] Preferably, the suspension mechanism includes a buckle plate, a connecting positioning rod, a limiting strip, an embedding groove, a rubber clamping strip and a pull ring. The buckle plate is in a "匚"-shaped plate structure. The buckle plate is buckled under the shaped keel from the bottom. Pull rings are fixed on both side plates of the buckle plate that are distributed in parallel.
[0009] Preferably, limiting strips are fixed on both side plates of the buckle plate that are distributed in parallel. The limiting strip is in an arc-shaped strip. The embedding groove is opened on the surface of the limiting strip. The rubber clamping strip is fixed in the embedding groove, and the height of the rubber clamping strip is greater than the depth of the embedding groove. Two reserved screw holes are opened on both side plates of the buckle plate that are distributed in parallel. After the bolts penetrate through the two groups of reserved screw holes and the adjustment groove, the buckle plate is suspended on the shaped keel, and the limiting strip is inserted into the adjustment groove for pre-limiting when the buckle plate is suspended.
[0010] Preferably, the installation reinforcement includes an installation groove, a through hole, a top support clamping block, a rubber pad, a pressing piece, a rubber clamping block and a blocking piece. The installation groove is opened on the side plate of the buckle plate. The installation groove is between the two groups of reserved screw holes. Through holes are opened on both the top surface and the bottom surface of the installation groove. The through holes are communicated with the reserved screw holes. The top support clamping block is movably inserted into the through hole. A rubber pad is fixed at one end of the top support clamping block facing the reserved screw hole. The other end of the top support clamping block has an inclined surface.
[0011] Preferably, the pressing piece is fixed on the surface of the top support clamping block. The rubber clamping block is fixed between the pressing piece and the side groove. The side groove is opened on the surface of the buckle plate, and the side groove is communicated with the through hole. The depth of the side groove is less than the depth of the through hole. A top pushing component is movably inserted into the installation groove.
[0012] Preferably, the top pushing component includes a plug block, a rubber clamping piece, a picking groove and a pull rod. The plug block is movably inserted into the installation groove. The rubber clamping piece is in a triangular prism structure. There are two groups of rubber clamping pieces. The two groups of rubber clamping pieces are symmetrically distributed with respect to the plug block, and both groups of rubber clamping pieces are fixed on the surface of the plug block. After the plug block is inserted into the installation groove, the rubber clamping pieces are clamped between the plug block and the installation groove.
[0013] Preferably, the picking groove is opened at one end of the plug block. The pull rod is fixed on two opposite side walls of the picking groove. A blocking piece is fixed between two opposite side walls of the installation groove. The blocking piece blocks and limits the plug block.
[0014] Preferably, when the plug is pushed into the installation groove, the two groups of supporting blocks are squeezed along the inclined surface. The supporting blocks clamp the bolt rod inside the reserved screw hole, and the supporting blocks drive the pressing sheet to clamp the rubber block.
[0015] Preferably, the connecting part includes a connecting handle, an assembly groove and a notch. The connecting handle is a "convex"-shaped column structure. The connecting handle is slidably connected in the assembly groove. The assembly groove is opened on the top surface of the aluminum alloy grille. The notch is opened at the bottom end of the connecting positioning rod. The bottom surface of the notch is screwed with a screw, and the screw passes through the connecting handle and the top plate of the aluminum alloy grille.
[0016] Compared with the prior art, the present invention has the following beneficial effects:
[0017] The angle-adjustable aluminum alloy grid ceiling installation structure proposed in the present invention suspends and installs the shaped keel through a hanging assembly, and the top of the aluminum alloy grid is installed below the hanging mechanism through a connecting piece. The hanging mechanism is slid and adjusted along the adjustment groove and then fastened by bolts, and reinforcement pieces are additionally installed to prevent the bolts from loosening. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a schematic diagram of the structure of the present invention;
[0019] Figure 2 This is a schematic diagram of the connection structure between the positioning rod and the aluminum alloy grille of the present invention;
[0020] Figure 3 for Figure 2 A schematic diagram of the structure at center A;
[0021] Figure 4 for Figure 2 A magnified schematic diagram of the structure at point B in the middle;
[0022] Figure 5 A half-section schematic diagram of the structure of the present invention;
[0023] Figure 6 for Figure 5 A magnified schematic diagram of the structure at point C in the middle;
[0024] Figure 7 This is a schematic diagram of the plug structure of the present invention;
[0025] Figure 8 Schematic diagram of the limit bar structure of the present invention;
[0026] Figure 9 This is a schematic diagram of the structure of the top support clamping block of the present invention;
[0027] Figure 10 This is a schematic diagram of the gusset plate structure of the present invention.
[0028] In the figure: shaped keel 1, steel connector 2, keel hanger 3, light steel main keel 4, light steel main keel hanger 5, hot-dip galvanized hanger 6, adjustment slot 7, gusset plate 8, connecting positioning rod 9, connecting handle 10, assembly slot 11, aluminum alloy grille 12, reserved screw hole 13, installation slot 14, through-hole 15, top support clamping block 16, rubber pad 17, pressing piece 18, rubber clamping block 19, baffle 20, plug 21, rubber clamping piece 22, pick-up slot 23, pull rod 24, limit strip 25, embedded slot 26, rubber clamping strip 27, notch 28, pull ring 29, side groove 30. Implementation Method
[0029] In order to clearly and completely describe the objectives and technical solutions of the present invention and make the advantages more clearly understood, the embodiments of the present invention are further described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are part of the embodiments of the present invention, not all of them, and are only used to explain the embodiments of the present invention, not to limit the embodiments of the present invention. All other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention. Example
[0030] See also Figure 1 The present invention provides a technical solution: an angle-adjustable aluminum alloy grid ceiling installation structure, comprising a molding keel 1, a hoisting assembly is provided on the top of the molding keel 1, the hoisting assembly comprises a steel connector 2, a keel hanger 3, a light steel main keel 4, a light steel main keel hanger 5 and a hot-dip galvanized hanger 6, the bottom end of the steel connector 2 is fixed to the top of the molding keel 1 by bolts, the top of the molding keel 1 is provided with multiple groups of steel connectors 2, the steel connector 2 is connected to the keel hanger 3 by bolts, the keel hanger 3 is sleeved on the light steel main keel 4, the steel connector 2 is a "Z"-shaped plate structure, the light steel main The keel hanger 5 is fixed to the top of the steel connecting member 2 by bolts, and a hot-dip galvanized hanger 6 is installed on the top of the light steel main keel hanger 5. An adjustment groove 7 is provided on the surface of the shaped keel 1, and a hanging mechanism is provided under the shaped keel 1. A mounting reinforcement is provided between the hanging mechanism and the shaped keel 1, and an aluminum alloy grille 12 is installed on the bottom end of the hanging mechanism through a connector; after the shaped keel 1 is hung and installed through the hanging assembly, the top of the aluminum alloy grille 12 is installed under the hanging mechanism through a connector, and the hanging mechanism is slid and adjusted along the adjustment groove 7 and then tightened by bolts, and a mounting reinforcement is installed to prevent the bolts from loosening. Example
[0031] Refer to the attached Figure 2 、 Figure 5 、 Figure 8 as well as Figure 10, on the basis of Embodiment 1, in order to achieve pre-positioning after the buckle plate 8 is buckled under the shaped keel 1, the suspension mechanism includes a buckle plate 8, a connecting positioning rod 9, a limiting strip 25, an embedding groove 26, a rubber clamping strip 27 and a pull ring 29. The buckle plate 8 is in a "U"-shaped plate structure. The buckle plate 8 is buckled under the shaped keel 1 from the bottom. Pull rings 29 are fixed on both side plates of the buckle plate 8 that are parallelly distributed. Limiting strips 25 are fixed on both side plates of the buckle plate 8 that are parallelly distributed. The limiting strip 25 is in an arc-shaped strip. An embedding groove 26 is opened on the surface of the limiting strip 25. The rubber clamping strip 27 is fixed in the embedding groove 26, and the height of the rubber clamping strip 27 is greater than the depth of the embedding groove 26. Two sets of reserved screw holes 13 are opened on both side plates of the buckle plate 8 that are parallelly distributed. After bolts penetrate through the two sets of reserved screw holes 13 and the adjustment groove 7, the buckle plate 8 is suspended on the shaped keel 1, and the limiting strip 25 is inserted into the adjustment groove 7 for pre-positioning when the buckle plate 8 is suspended. Embodiment
[0032] Refer to the appendix Figure 3 , Figure 6 and Figure 9 , on the basis of Embodiment 2, in order to prevent the bolt rod of the buckle plate 8 from loosening, the installation reinforcement includes an installation groove 14, a through hole 15, a top support clamping block 16, a rubber pad 17, a pressing piece 18, a rubber clamping block 19 and a retaining piece 20. The installation groove 14 is opened on the side plate of the buckle plate 8. The installation groove 14 is between the two sets of reserved screw holes 13. Through holes 15 are opened on the top surface and the bottom surface of the installation groove 14. The through holes 15 are communicated with the reserved screw holes 13. The top support clamping block 16 is movably inserted into the through hole 15. A rubber pad 17 is fixed at one end of the top support clamping block 16 facing the reserved screw hole 13. The other end of the top support clamping block 16 has an inclined surface. The pressing piece 18 is fixed on the surface of the top support clamping block 16. The rubber clamping block 19 is fixed between the pressing piece 18 and the side groove 30. The side groove 30 is opened on the surface of the buckle plate 8, and the side groove 30 is communicated with the through hole 15. The depth of the side groove 30 is less than the depth of the through hole 15. A top pushing component is movably inserted into the installation groove 14. The top pushing component includes a plug block 21, rubber clamping pieces 22, a picking groove 23 and a pull rod 24. The plug block 21 is movably inserted into the installation groove 14. The rubber clamping pieces 22 are in a triangular prism structure. There are two sets of rubber clamping pieces 22. The two sets of rubber clamping pieces 22 are symmetrically distributed about the plug block 21, and both sets of rubber clamping pieces 22 are fixed on the surface of the plug block 21. After the plug block 21 is inserted into the installation groove 14, the rubber clamping pieces 22 are clamped between the plug block 21 and the installation groove 14. The picking groove 23 is opened at one end of the plug block 21. The pull rod 24 is fixed on two opposite side walls of the picking groove 23. A retaining piece 20 is fixed between two opposite side walls of the installation groove 14. The retaining piece 20 blocks and limits the plug block 21. When the plug block 21 is pushed into the installation groove 14, the two sets of top support clamping blocks 16 are extruded along the inclined surface. The top support clamping blocks 16 clamp the bolt rod inside the reserved screw hole 13, and the top support clamping blocks 16 drive the pressing piece 18 to clamp the rubber clamping block 19. Example
[0033] Refer to the attached Figure 4 On the basis of Example 3, in order to realize the suspension of the aluminum alloy grille 12, the connecting part includes a connecting handle 10, an assembly groove 11 and a notch 28. The connecting handle 10 is a "convex"-shaped column structure. The connecting handle 10 is slidably connected in the assembly groove 11. The assembly groove 11 is opened on the top surface of the aluminum alloy grille 12. The notch 28 is opened at the bottom end of the connecting positioning rod 9. The bottom surface of the notch 28 is screwed with a screw, and the screw passes through the connecting handle 10 and the top plate of the aluminum alloy grille 12.
[0034] In actual use, after buckling the gusset plate 8 from the bottom end of the molding keel 1 to the molding keel 1, the limit strip 25 is inserted into the adjustment groove 7. At this time, the limit strip 25 supports the gusset plate 8 and the structure under the gusset plate 8 to prevent the gusset plate 8 from falling off, and the rubber clamping strip 27 is squeezed between the adjustment groove 7 and the limit strip 25 to play an anti-slip role. After the gusset plate 8 is moved to drive the limit strip 25 to slide along the adjustment groove 7 to the desired position, the bolt is passed through the reserved screw hole 13 and then locked. In order to prevent the bolt from loosening, the plug 21 is pushed into the installation groove 14, and the plug 2 1 The two groups of supporting clamps 16 are squeezed along the inclined surface. The supporting clamps 16 clamp the bolt rod inside the reserved screw hole 13, and the supporting clamps 16 drive the pressure piece 18 to clamp the rubber clamp 19. In this way, the bolt is tightly clamped and will not fall off. When the bolt needs to be removed, the plug 21 is pulled out of the installation groove 14 by hooking the pull rod 24. At this time, the supporting clamps 16 are no longer squeezed, and the rubber clamp 19 rebounds and pushes the pressure piece 18 to reset. The pressure piece 18 drives the supporting clamps 16 to move synchronously. At this time, the supporting clamps 16 no longer clamp the bolt.
[0035] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. An angle-adjustable aluminum alloy grid ceiling installation structure, comprising a molding keel (1), characterized in that: A hoisting component is provided at the top of the shaped keel (1). An adjustment groove (7) is formed on the surface of the shaped keel (1). A suspension mechanism is provided below the shaped keel (1). An installation reinforcement is provided between the suspension mechanism and the shaped keel (1). The bottom end of the suspension mechanism is provided with an aluminum alloy grille (12) through a connecting member; the hoisting component includes a steel connecting member (2), a keel hanging member (3), a light steel main keel (4), a light steel main keel hanging member (5), and a hot-dip galvanized suspender (6). The bottom end of the steel connecting member (2) is fixed to the top end of the shaped keel (1) by bolts. Multiple groups of steel connecting members (2) are provided at the top end of the shaped keel (1). The steel connecting member (2) is connected to the keel hanging member (3) by bolts. The keel hanging member (3) is sleeved on the light steel main keel (4). The steel connecting member (2) is in a "Z"-shaped plate structure. The light steel main keel hanging member (5) is fixed to the top end of the steel connecting member (2) by bolts. The top end of the light steel main keel hanging member (5) is provided with a hot-dip galvanized suspender (6); the suspension mechanism includes a buckle plate (8), a connecting positioning rod (9), a limiting strip (25), an embedding groove (26), a rubber clamping strip (27), and a pull ring (29). The buckle plate (8) is in a "匚"-shaped plate structure. The buckle plate (8) is buckled below the shaped keel (1) from the bottom. Pull rings (29) are fixed on both side plates of the buckle plate (8) that are parallel to each other; limiting strips (25) are fixed on both side plates of the buckle plate (8) that are parallel to each other. The limiting strip (25) is in an arc-shaped strip. The embedding groove (26) is formed on the surface of the limiting strip (25). The rubber clamping strip (27) is fixed in the embedding groove (26). The height of the rubber clamping strip (27) is greater than the depth of the embedding groove (26). Two reserved screw holes (13) are formed on both side plates of the buckle plate (8) that are parallel to each other. After passing bolts through the two groups of reserved screw holes (13) and the adjustment groove (7), the buckle plate (8) is suspended on the shaped keel (1). The limiting strip (25) is inserted into the adjustment groove (7) for pre-positioning when the buckle plate (8) is suspended; the installation reinforcement includes an installation groove (14), a through hole (15), a top support clamping block (16), a rubber pad (17), a pressing piece (18), a rubber clamping block (19), and a retaining piece (20). The installation groove (14) is formed on the side plate of the buckle plate (8). The installation groove (14) is located between the two groups of reserved screw holes (13). Through holes (15) are formed on both the top surface and the bottom surface of the installation groove (14). The through hole (15) is communicated with the reserved screw hole (13). The top support clamping block (16) is movably inserted into the through hole (15). A rubber pad (17) is fixed to one end of the top support clamping block (16) facing the reserved screw hole (13). The other end of the top support clamping block (16) has an inclined surface.
2. The angle-adjustable aluminum alloy grid ceiling installation structure according to claim 1, characterized in that: The pressing sheet (18) is fixed on the surface of the supporting clamping block (16), the rubber clamping block (19) is fixed between the pressing sheet (18) and the side groove (30), the side groove (30) is opened on the surface of the gusset plate (8), and the side groove (30) and the through opening (15) are connected, the depth of the side groove (30) is less than the depth of the through opening (15), and the interior of the mounting groove (14) is movably connected with a pushing component.
3. The angle-adjustable aluminum alloy grid ceiling installation structure according to claim 2, characterized in that: The pushing assembly includes a plug (21), a rubber clip (22), a pick-up groove (23) and a pull rod (24). The plug (21) is movably inserted into the installation groove (14). The rubber clip (22) is a triangular prism structure. There are two groups of rubber clips (22). The two groups of rubber clips (22) are symmetrically distributed about the plug (21), and the two groups of rubber clips (22) are fixed on the surface of the plug (21). After the plug (21) is inserted into the installation groove (14), the rubber clip (22) is clamped between the plug (21) and the installation groove (14).
4. The angle-adjustable aluminum alloy grid ceiling installation structure according to claim 3, characterized in that: The picking groove (23) is opened at one end of the plug (21), the pull rod (24) is fixed on two oppositely distributed side walls of the picking groove (23), and a blocking piece (20) is fixed between the two oppositely distributed side walls of the installation groove (14), and the blocking piece (20) blocks and limits the plug (21).
5. The angle-adjustable aluminum alloy grid ceiling installation structure according to claim 4, characterized in that: When the plug (21) is pushed into the installation groove (14), the two groups of supporting clamps (16) are squeezed along the inclined surface. The supporting clamps (16) clamp the bolt rod inside the reserved screw hole (13), and the supporting clamps (16) drive the pressing piece (18) to clamp the rubber clamp (19).
6. The angle-adjustable aluminum alloy grid ceiling installation structure according to claim 1, characterized in that: The connecting member comprises a connecting handle (10), an assembling groove (11) and a notch (28); the connecting handle (10) is a "convex"-shaped column structure; the connecting handle (10) is slidably connected in the assembling groove (11); the assembling groove (11) is provided on the top surface of the aluminum alloy grille (12); the notch (28) is provided at the bottom end of the connecting positioning rod (9); a screw is screwed to the bottom surface of the notch (28); and the screw passes through the connecting handle (10) and the top plate of the aluminum alloy grille (12).
Citation Information
Patent Citations
Plastic grid ceiling system
CN102953498A