Combined special-shaped water ripple stainless steel ceiling and construction method
By using modular, irregularly shaped stainless steel ripple ceilings, and employing various shapes and specifications of assembly modules and back-rib connection structures, the problems of inconvenient installation and hole accuracy of existing stainless steel ripple ceilings have been solved, achieving efficient and aesthetically pleasing ceiling construction and equipment installation.
Patent Information
- Application Number
- CN202510242963.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-03
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2045-03-03
AI Technical Summary
The existing installation methods for stainless steel water ripple ceilings have problems such as high construction costs, inconvenient installation, and limited design options. In addition, the holes made in the ceiling panels affect the overall effect, especially the inaccuracy of installation for devices such as lights, smoke detectors, and sprinkler heads.
The system employs a modular, irregularly shaped, rippled stainless steel ceiling, which consists of various shaped and sized assembly modules forming ceiling panels. Installation gaps are created between the modules for equipment installation, simplifying the installation structure. Back ribs and vertical connectors are welded together for fixation, further simplifying the construction process.
It achieves efficient and aesthetically pleasing ceiling installation, reduces construction costs, has high adaptability, and integrates equipment installation on the ceiling panel into the decorative effect, avoiding additional openings and improving construction efficiency and overall aesthetics.
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Figure CN119801192B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of decorative suspended ceilings, and in particular to a combined special-shaped water ripple stainless steel suspended ceiling and a construction method. BACKGROUND
[0002] As a new type of suspended ceiling material and technology, the stainless steel water ripple suspended ceiling can fully exert its unique decorative effect and improve the visual aesthetics of space, and has superior fireproof, moisture-proof, easy-to-clean, corrosion-resistant and other properties, and is widely used in public buildings and commercial spaces.
[0003] The stainless steel water ripple suspended ceiling has the following advantages:
[0004] (1) Artistic effect: The unique texture and material of the stainless steel water ripple suspended ceiling can greatly enrich the level and light and shadow effect of the space, and has the effect of extending the visual space. Compared with the monotonous appearance of traditional stainless steel, especially under the illumination of light, the effect of ripples is more beautiful, and adds dynamic and artistic effect to the space.
[0005] (2) Durability: The stainless steel water ripple suspended ceiling has higher wear resistance and corrosion resistance, and does not need frequent maintenance and maintenance. In contrast, wood veneer and gypsum board suspended ceilings are prone to moisture and deformation and need regular maintenance.
[0006] (3) Environmental protection: The stainless steel water ripple suspended ceiling has the advantages of no radiation, waterproofness, fireproofness, moisture resistance, easy cleaning, etc., and has more obvious advantages compared with wood veneer and gypsum board suspended ceilings, and meets the green and environmental protection concept of modern buildings.
[0007] (4) Safety: Stainless steel material itself is not flammable and has good fireproof performance, which is safer than wood veneer suspended ceiling. Its light weight and high strength can reduce the self-weight of the building and improve the safety performance of the building.
[0008] At present, the main installation methods of the stainless steel water ripple suspended ceiling are as follows:
[0009] (1) Adhesive type: mainly composed of a hanging rod, a main furring, a secondary furring, a base plate and a water ripple stainless steel plate, the base plate is used for leaving a gap and bottoming, the stainless steel plate is folded, the folded edge is inserted into the pre-leaved gap, and the back of the stainless steel plate is adhered by structural adhesive.
[0010] (2) Ear fixing type: mainly composed of a hanging rod, a main furring, a secondary furring, a base plate, an angle code and a water ripple stainless steel plate, the angle code is welded and fixed around the folded edge of the stainless steel plate, the stainless steel plate is fixed on the base plate by using self-tapping screws, and the use of this method, the stainless steel plate is not designed too large, which is easy to cause the plate to fall down and affect the overall effect of the suspended ceiling.
[0011] The above method needs to install a base plate on the keel now, and then install a stainless steel plate on the base plate, which has high construction cost, is inconvenient to install and has single modeling; in addition, for the project of the application, there are a large number of lamps, smoke sensors, spray heads, loudspeakers and other equipment on the suspended ceiling plate, a large number of hole positions need to be opened on the base plate and the stainless steel plate, which has large workload and poor control of the accuracy of the hole position, and is not suitable for construction, and a large number of hole positions arranged on the water ripple stainless steel plate have great influence on the overall effect of the suspended ceiling. SUMMARY
[0012] The application provides a combined special-shaped water ripple stainless steel suspended ceiling and a construction method, which solve the above problems.
[0013] To solve the above technical problems, the application adopts the following technical scheme:
[0014] The combined special-shaped water ripple stainless steel suspended ceiling has the characteristics that it comprises a keel system installed on a building structure and a suspended ceiling plate installed on the keel system, the suspended ceiling plate comprises a plurality of shape and specification assembling modules, the plurality of specification assembling modules are combined to form a planar suspended ceiling plate, each of the assembling modules comprises a straight line part and an outward convex arc part arranged at an end of the assembling module and a sun corner, an inward concave arc part is arranged at a moon corner of the assembling module, and the outward convex arc part and the inward concave arc part can be connected and matched.
[0015] An installation gap is formed at a connection position of the two outward convex arc parts and the straight line part or the four outward convex arc parts, and the installation gap is used for installing lamps, smoke sensors, spray heads or loudspeakers.
[0016] The combined special-shaped water ripple stainless steel suspended ceiling further has the characteristics that the radius of the outward convex arc part and the inward concave arc part is the same.
[0017] The combined special-shaped water ripple stainless steel suspended ceiling further has the characteristics that the length of at least one side of the plurality of specification assembling modules is the same.
[0018] The combined special-shaped water ripple stainless steel suspended ceiling further has the characteristics that the assembling module comprises a module A, a module B, a module C, a module D, a module E, a module F and a module G.
[0019] The module A is L-shaped, and the lengths of two sides of the module A are the same.
[0020] The module B is T-shaped, and the vertical length of the module B is the same as the vertical length of the module A.
[0021] The module C is Y-shaped, and the vertical length of the module C is the same as the vertical length of the module A.
[0022] One end of the module A is connected with a spherical tenon, both sides of the connection between the module A and the spherical tenon are provided with concave arc-shaped parts, and the module A and the spherical tenon are combined to form a module D.
[0023] The module E is linear, and the length of the module E is the same as the horizontal length of the module A.
[0024] The module F is L-shaped, and one side length of the module F is the same as the side length of the module A.
[0025] One end of the module E is connected with a spherical tenon, both sides of the connection between the module E and the spherical tenon are provided with concave arc-shaped parts, and the module E and the spherical tenon are combined to form a module G.
[0026] Further, the spherical tenon in the module D and the module G is arranged obliquely, and the oblique angle is 45° with the vertical direction.
[0027] Further, the outer convex arc-shaped part at the end of the assembly module corresponds to a central angle of 180°.
[0028] Further, the assembly module is a water wave-shaped stainless steel plate.
[0029] Further, the back of the assembly module is provided with a back rib, and the back rib is connected with the keel system.
[0030] Further, the keel system comprises vertical keels connected with the building structure, a keel conversion layer connected with the vertical keels, and vertical connecting pieces connected with the keel conversion layer, and the vertical connecting pieces are welded and fixed with the back rib.
[0031] A construction method comprises the following steps:
[0032] Step 1: design layout, the suspended ceiling plate is divided into assembly modules of various shapes and specifications, the installation positions of lamps, smoke sensors, spray heads or loudspeakers are taken as starting points, the assembly modules are spliced to form installation gaps at the installation positions of the lamps, smoke sensors, spray heads or loudspeakers, and then the assembly modules at the remaining positions are filled;
[0033] Step 2: measure and lay out, the installation positions of the keel system are located, and the keel system is installed;
[0034] Step 3: install the suspended ceiling plate, according to the design layout, the assembly modules are installed in a way of gradually installing from the middle to the edge, and the positions of the assembly modules are adjusted in time to ensure the flatness of the suspended ceiling plate.
[0035] Compared with the prior art, the present application has the following beneficial effects:
[0036] 1. The present application adopts water ripple stainless steel plates of various shapes and specifications to splice to form a suspended ceiling plate, realizes installation of a combined special-shaped suspended ceiling with unique water ripple effects in a high and large space, forms installation gaps between spliced modules for installation of lamps, smoke sensors, spray heads or loudspeakers and other equipment on the suspended ceiling plate, does not need to open holes again, and the water ripple stainless steel plate and a large number of installation gaps form a unique appearance effect, so that the installation of the lamps, smoke sensors, spray heads or loudspeakers is integrated into the decorative effect of the suspended ceiling plate, installation is more convenient, and good decorative effects are achieved.
[0037] 2. By arranging a back rib at the back of the spliced module, the vertical connecting piece is welded with the back rib, the installation structure of the water ripple stainless steel plate is simplified, installation is more convenient, and construction cost is lower.
[0038] 3. The unique size and combination mode of each spliced module can facilitate combination of spliced modules of various specifications, achieve seamless connection of the suspended ceiling plate, and have high adaptability.
[0039] The present application will be further described below in combination with the drawings. BRIEF DESCRIPTION OF DRAWINGS
[0040] Figure 1 is a structural schematic view of the present application;
[0041] Figure 2 is a splicing schematic view of multiple spliced units of the present application;
[0042] Figure 3 is a partial planar schematic view of the suspended ceiling plate of the present application;
[0043] Figure 4 is a structural schematic view of each specification of the spliced module of the present application;
[0044] Figure 5 is a back rib installation structure schematic view of the spliced module of the present application.
[0045] Reference signs:
[0046] 1, building structure; 2, vertical keel; 3, keel conversion layer; 4, vertical connecting piece; 5, suspended ceiling plate; 6, spliced module; 6.1, module A; 6.2, module B; 6.3, module C; 6.4, module D; 6.5, module E; 6.6, module F; 6.7, module G; 7, straight line part; 8, outer convex arc part; 9, inner concave arc part; 10, installation gap; 11, spherical tenon; 12, back rib. DETAILED DESCRIPTION
[0047] As Figures 1-5As shown, the application discloses a combined special-shaped water ripple stainless steel ceiling and a construction method, the water ripple stainless steel ceiling comprises a keel system mounted on a building structure 1 and a ceiling panel 5 mounted on the keel system, the keel system comprises vertical keels 2 fixedly connected with the building structure 1, a keel conversion layer 3 connected with the vertical keels 2 and vertical connecting pieces 4 connected with the keel conversion layer 3, and the vertical connecting pieces 4 are fixedly connected with the ceiling panel 5.
[0048] In the embodiment of the application, the ceiling panel 5 is a water ripple stainless steel panel, the back of the water ripple stainless steel panel is provided with a folded edge, the ceiling panel 5 is formed by a plurality of groups of assembling units, each group of assembling units comprises a plurality of assembling modules 6 of different shapes and specifications, the assembling modules 6 of different specifications are combined to form a planar assembling unit, each assembling module 6 comprises a straight line part 7 and an outward convex arc part 8 arranged at the end and the external corner of the assembling module 6, and an inward concave arc part 9 is arranged at the internal corner of the assembling module 6, and the outward convex arc part 8 and the inward concave arc part 9 can be connected and matched.
[0049] In the combination of the assembling modules 6 of different shapes and specifications, two outward convex arc parts 8 and one straight line part 7 or four outward convex arc parts 8 are provided with mounting gaps 10 at the connecting positions, and the mounting gaps 10 are used for mounting lamps, smoke sensors, spray heads or loudspeakers and the like.
[0050] Further, the radii of the outward convex arc part 8 and the inward concave arc part 9 are the same, and the lengths of at least one side of the assembling modules 6 of different specifications are the same, so that the assembling modules 6 of different specifications can be combined conveniently and have high adaptability.
[0051] Specifically, in the embodiment of the application, the assembling module 6 comprises a module A 6.1, a module B 6.2, a module C 6.3, a module D 6.4, a module E 6.5, a module F 6.6 and a module G 6.7, the module A 6.1 is L-shaped, the lengths of two sides of the module A 6.1 are the same, the two ends and the external corner of the module A 6.1 are provided with outward convex arc parts 8 with the same diameter, and the internal corner is provided with an inward concave arc part 9 with the same diameter as the outward convex arc part 8; the module B 6.2 is T-shaped as a whole, the vertical length of the module B 6.2 is the same as the vertical length of the module A 6.1, the vertical part of the module B 6.2 is eccentrically arranged towards one end of the horizontal part of the module B 6.2, and the length of the vertical part of the module B 6.2 is the same as the length of the horizontal part on the eccentric side, so that the assembling modules 6 of different specifications can be combined conveniently and have high adaptability.
[0052] The module C 6.3 is Y-shaped, the vertical length of the module C 6.3 is the same as the vertical length of the module A 6.1, the three ends of the module C 6.3 are provided with outward convex arc parts 8, and the internal corner is provided with an inward concave arc part 9, and in addition, in the application, the module C 6.3 can only have curves, that is, the outward convex arc part 8 and the inward concave arc part 9 are directly connected to form the Y-shaped module C 6.3 structure, which is better in visual effect and assembling adaptability.
[0053] One end of the module A6.1 is connected with the spherical tenon 11, and the two sides of the connection between the spherical tenon 11 and the module A6.1 are provided with the concave arc-shaped part 9, and the module A6.1 and the spherical tenon 11 are combined to form the module D6.4 which is V-shaped as a whole.
[0054] The module E6.5 is linear, and the length of the module E6.5 is the same as the horizontal length of the module A6.1, and the two ends are provided with the convex arc-shaped part 8, and the middle part is provided with the straight part 7.
[0055] The module F6.6 is L-shaped, and the length of one side of the module F6.6 is the same as the length of the side of the module A6.1, and the length of the other side of the module F6.6 is longer than the length of the side of the module A6.1.
[0056] One end of the module E6.5 is connected with the spherical tenon 11, and the two sides of the connection between the spherical tenon 11 and the module E6.5 are provided with the concave arc-shaped part 9, and the module E6.5 and the spherical tenon 11 are combined to form the module G6.7.
[0057] The spherical tenon 11 in the module D6.4 and the module G6.7 is inclinedly arranged, and the inclination angle of the spherical tenon 11 is 45° with the vertical direction, and in addition, the central angle of the convex arc-shaped part 8 corresponding to the end of the assembled module 6 is 180°.
[0058] In an embodiment of the present application, the horizontal length and the vertical length of the module A6.1 are both 1475mm; the horizontal length of the module B6.2 is 2950mm, and the vertical length of the module B6.2 is 1475mm; the horizontal length of the module C6.3 is 2215mm, and the vertical length of the module C6.3 is 1475mm; the horizontal length of the module D6.4 is 2215mm, and the vertical length of the module D6.4 is 1475mm; the horizontal length of the module E6.5 is 1475mm, and the vertical length of the module E6.5 is half of the horizontal length; the horizontal length of the module F6.6 is 1475mm, and the vertical length of the module F6.6 is 2210mm; the horizontal length of the module G6.7 is 2210mm, and the vertical length of the module G6.7 is 1475mm.
[0059] The back of the assembled module 6 is welded with the back rib 12 for reinforcement, and the vertical connecting piece 4 is welded and fixed with the back rib 12.
[0060] The construction method comprises the following steps:
[0061] Step one: design layout, the water ripple stainless steel plate is divided into seven plate blocks of modules A6.1, B, C, D, E, F and G, and when the layout is designed, the installation position of the equipment such as the lamp, the smoke sensor, the spray head or the loudspeaker is taken as the starting point, the installation gap 10 is spliced at the installation position of the equipment to serve as the installation position of the equipment such as the lamp, the smoke sensor, the spray head or the loudspeaker, and then the remaining position of the assembled module 6 is filled.
[0062] Step two: measure the release, positioning out vertical keel 2 and keel conversion layer 3 installation position, using expansion bolts vertical keel 2 and building structure 1 is fixed, then the keel conversion layer 3 longitudinal keel and transverse keel installation and welding work.
[0063] Step three: installation, water ripple stainless steel plate is divided into 7 modules, when installing, from the middle to the edge gradually installed, so as to facilitate the adjustment of the error in the edge, according to the design layout will be assembled module 6 splicing installation, using welding method, back muscle 12 and vertical connecting piece 4 is welded and fixed, when installing the position of the leveling assembly module 6, ensure the overall flatness to meet the design specification requirements and the final finish decoration effect.
[0064] Step four: water ripple stainless steel ceiling and the surrounding wall interface do light groove connection, stainless steel plate edge with the same material L type stainless steel batten closing.
[0065] The above described embodiments are merely preferred embodiments of the present application, and are not intended to limit the scope of the present application, without departing from the design spirit of the present application, the person skilled in the art to the technical scheme of the present application makes various modifications and improvements, all should fall within the scope of the present application determined by the claims.
Claims
1. A modular, irregularly shaped, water ripple stainless steel ceiling, characterized in that: The system includes a keel system installed on the building structure (1) and a ceiling panel (5) installed on the keel system. The ceiling panel (5) includes various shapes and specifications of assembly modules (6). The various specifications of assembly modules (6) are combined to form a planar ceiling panel (5). Each assembly module (6) includes a straight part (7) and an outwardly convex arc-shaped part (8) provided at the end and external corner of the assembly module (6). The internal corner of the assembly module (6) is provided with an inwardly concave arc-shaped part (9). The outwardly convex arc-shaped part (8) and the inwardly concave arc-shaped part (9) can be spliced together. An installation gap (10) is formed at the joint between the two convex arc-shaped parts (8) and the straight part (7) or the four convex arc-shaped parts (8), and the installation gap (10) is used to install lamps, smoke detectors, sprinkler heads or speakers; The radii of the convex arc-shaped portion (8) and the concave arc-shaped portion (9) are the same; The assembly modules (6) of various specifications have at least one side with the same length; The assembly module (6) includes module A (6.1), module B (6.2), module C (6.3), module D (6.4), module E (6.5), module F (6.6), and module G (6.7); Module A (6.1) is L-shaped with both sides having the same length; Module B (6.2) is T-shaped, and its vertical length is the same as the vertical side length of module A (6.1); Module C (6.3) is Y-shaped, and its vertical length is the same as the vertical side length of module A (6.1); One end of module A (6.1) is connected to a spherical tenon (11). Both sides of the connection between the spherical tenon (11) and module A (6.1) are provided with concave arc-shaped parts (9). The combination of module A (6.1) and spherical tenon (11) forms module D (6.4). Module E (6.5) is a straight line, and its length is the same as the horizontal length of module A (6.1); Module F (6.6) is L-shaped, and the length of one side is the same as the side length of module A (6.1); One end of module E (6.5) is connected to a spherical tenon (11). Both sides of the connection between the spherical tenon (11) and module E (6.5) are provided with concave arc-shaped parts (9). The combination of module E (6.5) and spherical tenon (11) forms module G (6.7). The spherical tenon (11) in modules D (6.4) and G (6.7) is inclined, and its inclination angle is 45° with the vertical direction.
2. The combined irregular-shaped water ripple stainless steel ceiling according to claim 1, characterized in that, The central angle corresponding to the outwardly convex arc-shaped part (8) at the end of the assembly module (6) is 180°.
3. The combined irregular-shaped water ripple stainless steel ceiling according to claim 1, characterized in that, The assembly module (6) is a water ripple stainless steel plate.
4. The combined irregular-shaped water ripple stainless steel ceiling according to claim 3, characterized in that, The assembly module (6) has a back rib (12) on its back, and the back rib (12) is connected to the keel system.
5. The combined irregular-shaped water ripple stainless steel ceiling according to claim 4, characterized in that, The keel system includes a vertical keel (2) connected to the building structure (1), a keel transition layer (3) connected to the vertical keel (2), and a vertical connector (4) connected to the keel transition layer (3). The vertical connector (4) is welded and fixed to the back reinforcement (12).
6. A method for constructing the combined irregular-shaped water ripple stainless steel suspended ceiling as described in any one of claims 1-5, characterized in that, Includes the following steps: Step 1: Design layout. The ceiling panel (5) is divided into various shapes and specifications of assembly modules (6). Starting from the installation position of equipment such as lamps, smoke detectors, sprinkler heads or speakers, the assembly modules (6) are spliced at the above equipment installation positions to form installation gaps (10) as the installation positions of lamps, smoke detectors, sprinkler heads or speakers. Then fill the remaining positions with assembly modules (6). Step 2: Measure and lay out the lines to locate the installation position of the keel system, and then install the keel system; Step 3: Install the ceiling panel (5). According to the design layout, install each assembly module (6) step by step from the middle to the edge. Adjust the position of the assembly module (6) at any time during installation to ensure the flatness of the ceiling panel (5).
Citation Information
Patent Citations
Round light transmission flexible film suspended ceiling
CN203834784U
Combined ceiling
CN222333077U