Double-layer soft film ceiling structure
The protection and connection component design of the double-layer soft membrane ceiling structure solves the problem of dust and insects entering the traditional soft membrane ceiling structure, and achieves the effects of dustproof, insectproof and quick disassembly and assembly.
Patent Information
- Application Number
- CN202422679176.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-04
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2034-11-04
AI Technical Summary
The traditional soft film ceiling structure has problems such as dust and insects easily entering the heat dissipation holes, the internal space is easily polluted, and it is inconvenient to disassemble and assemble.
It adopts a double-layer soft film ceiling structure, including protective components and connecting components. The protective components are composed of double H-type buckles, Class A fire-proof and light-transmitting film, calcium silicate board base and reflective tin foil. The connecting components are composed of springs, limit plates and plug-in shafts. Dustproof, insect-proof and quick disassembly and assembly are achieved through dust covers and cross-arranged LED soft light strips.
It effectively prevents dust and insects from entering the light-transmitting film, forms a closed space to reduce pollution, increases the cleaning frequency, and facilitates the installation and removal of the light-transmitting film.
Smart Images

Figure CN223423482U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a soft membrane ceiling field, concretely to a double-layer soft membrane ceiling structure. BACKGROUND
[0002] The soft membrane ceiling is a kind of high-grade green environmental protection decoration ceiling flexible material newly emerging in recent years, and its structural component parts have: hanging piece, light steel keel, air hole, LED soft light band, tin foil, edge strip, aluminum alloy H type buckle and polyvinyl chloride soft membrane etc., the light of LED soft light band is formed flat, white and clean ceiling effect through the polyvinyl chloride milky white soft membrane, and the traditional soft membrane structure has the following shortcomings:
[0003] 1, the air hole is easy to enter dust and enter insect, and cause shadow area to light transmission film;
[0004] 2, the space in soft membrane cannot be relatively closed, is easily polluted, and the cleaning frequency is high, and long-term effect is difficult to guarantee;
[0005] 3, the light transmission film is inconvenient to disassemble;
[0006] Therefore, it is necessary to provide a double-layer soft membrane ceiling structure. UTILITY MODEL CONTENTS
[0007] The utility model aims at providing a double-layer soft membrane ceiling structure to solve the problems in the above background.
[0008] To achieve the above-mentioned purpose, the utility model provides the following technical scheme:
[0009] A double-layer soft membrane ceiling structure, comprising a first keel frame and a second keel frame, the second keel frame is installed at the bottom of the first keel frame by bolts, a soft membrane ceiling mechanism is arranged on the second keel frame, and the soft membrane ceiling mechanism can be installed for dust and insect prevention of building soft membrane ceiling;
[0010] The soft membrane ceiling mechanism comprises a protection assembly and a connecting assembly, the protection assembly;
[0011] The protection assembly for dust and insect prevention of soft membrane ceiling is installed on the second keel frame;
[0012] The connecting assembly for facilitating the disassembly of the protection assembly is installed on the second keel frame.
[0013] Preferably, the protection assembly comprises double H type buckles, a first layer of A grade fireproof light transmission film and a second layer of A grade fireproof light transmission film, the double H type buckles are assembled on the inner side of the second keel frame, the H type buckle is respectively provided with a first buckle slot, a second buckle slot and a jack, the two ends of the first layer of A grade fireproof light transmission film are respectively clamped in the first buckle slot, and the two ends of the second layer of A grade fireproof light transmission film are respectively clamped in the second buckle slot.
[0014] Preferably, the protective component also includes a calcium silicate board base, reflective tin foil and air holes. The calcium silicate board base is installed on the second keel frame by screws, and the reflective tin foil is installed on the lower surface of the calcium silicate board base. The inner walls of the calcium silicate board base and the reflective tin foil are both provided with air holes.
[0015] Preferably, the upper end of the air diffusion hole is clamped with a dust cover, and the dust cover includes a connecting pipe, a mesh cover and an arc-shaped top plate. The mesh cover is installed on the upper end of the connecting pipe, the arc-shaped top plate is installed on the upper end of the mesh cover, and the connecting pipe is clamped in the air diffusion hole.
[0016] Preferably, a first LED soft light strip and a second LED soft light strip are respectively installed on the bottom of the reflective tinfoil, and the first LED soft light strip and the second LED soft light strip are cross-arranged.
[0017] Preferably, the connecting assembly includes a spring, a limit plate and an insert shaft, one end of the spring is installed inside the second keel frame, the other end of the spring is connected to the limit plate, the other end of the limit plate is connected to the insert shaft, and the insert shaft passes through the second keel frame and is inserted into the socket.
[0018] Preferably, a connecting rod is installed at one end of the limiting plate, and the connecting rod passes through the inside of the spring. A connecting wire is installed at the other end of the connecting rod. An arc groove roller is also rotatably installed inside the second keel frame. The connecting wire is transmission-connected in the arc groove roller, and the lower end of the connecting wire is connected to the pull ring.
[0019] Additional aspects and advantages of the present invention will be given in part in the following description and will become apparent from the following description or learned through practice of the present invention.
[0020] Beneficial effects:
[0021] 1. By setting a dust cover, the possibility of dust and insects entering the translucent film is reduced;
[0022] 2. By setting up a double-layer transparent film structure, pollutants are blocked. The first and second layers of transparent films form a closed space to avoid the possibility of contamination of the bottom layer of transparent film;
[0023] 3. By setting up the connection components, the double H-type buckle can be quickly clamped and supported, so that the double-layer light-transmitting film can be quickly installed and disassembled. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 This is a schematic diagram of a double-layer soft membrane ceiling structure;
[0025] Figure 2 This is a cross-sectional view of a dust cover in a double-layer soft membrane ceiling structure;
[0026] Figure 3 This is a schematic diagram of a double H-shaped buckle in a double-layer soft membrane ceiling structure;
[0027] Figure 4 An enlarged view of the connection components in a double-layer soft membrane ceiling structure.
[0028] In the figure: 1. First keel frame; 11. Second keel frame; 2. Soft membrane ceiling structure; 3. Protective component; 31. Calcium silicate board base layer; 32. Reflective tin foil; 33. Dust cover; 331. Connecting pipe; 332. Mesh cover; 333. Curved top plate; 34. First LED soft light strip; 35. Second LED soft light strip; 36. Double H-shaped buckle; 361. First buckle groove; 362. Second buckle groove; 363. Socket; 37. First layer of Class A fireproof and translucent film; 371. Second layer of Class A fireproof and translucent film; 38. Air diffusion hole; 4. Connecting component; 41. Spring; 42. Limiting piece; 43. Insert shaft; 44. Connecting rod; 45. Connecting line; 46. Arc groove roller; 47. Pull ring. DETAILED DESCRIPTION
[0029] The following describes embodiments of the present invention in detail. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended only to explain the present invention and are not to be construed as limiting the present invention.
[0030] like Figures 1-4 ;
[0031] A double-layer soft membrane ceiling structure includes a first keel frame 1 and a second keel frame 11. The second keel frame 11 is installed at the bottom of the first keel frame 1 by bolts. The first and second keel frames 11 serve as support brackets for the building soft membrane ceiling. A soft membrane ceiling mechanism 2 is provided on the second keel frame 11. The soft membrane ceiling mechanism 2 can be installed in a dust-proof and insect-proof manner for the building soft membrane ceiling.
[0032] The soft film ceiling mechanism 2 includes a protective component 3 and a connecting component 4, the protective component 3; the protective component 3 for protecting the soft film ceiling from dust and insects is installed on the second keel frame 11; the connecting component 4 for convenient disassembly and assembly of the protective component 3 is installed on the second keel frame 11, and the double H-shaped buckle 36 is supported and connected by the connecting component 4, which facilitates the quick installation and removal of the first layer of Class A fireproof and light-transmitting film 37 and the second layer of Class A fireproof and light-transmitting film 371.
[0033] Furthermore, the protective component 3 includes a double H-shaped buckle 36, a first layer of Class A fireproof and light-transmitting film 37, and a second layer of Class A fireproof and light-transmitting film 371. The double H-shaped buckle 36 is assembled on the inner side of the second keel frame 11. The first layer of Class A fireproof and light-transmitting film 37 and the second layer of Class A fireproof and light-transmitting film 371 are supported by the double H-shaped buckle 36 and are used to quickly install the first layer of Class A fireproof and light-transmitting film 37 and the second layer of Class A fireproof and light-transmitting film 371 on the second keel frame 11. The H-shaped buckle 36 is respectively provided with a first buckle groove 361, a second buckle groove 362 and a socket 363. The two ends of the first layer of Class A fireproof and light-transmitting film 37 are respectively clamped in the first buckle groove 361, which is convenient for the disassembly and assembly of the first layer of Class A fireproof and light-transmitting film 37. The two ends of the second layer of Class A fireproof and light-transmitting film 371 are respectively clamped in the second buckle groove 362, which is convenient for the disassembly and assembly of the second layer of Class A fireproof and light-transmitting film 371.
[0034] Furthermore, the protective component 3 also includes a calcium silicate board base 31, a reflective tin foil 32 and air holes 38. The calcium silicate board base 31 is installed on the second keel frame 11 by screws. The calcium silicate board base 31 is 10MM thick and is used to support and install the first LED soft light strip 34 and the second LED soft light strip 35. The reflective tin foil 32 is laid and installed on the lower surface of the calcium silicate board base 31. The reflective tin foil 32 can achieve a reflective effect, increasing the first LED soft light strip 34 and the second The lighting brightness of the LED soft light strip 35, the inner walls of the calcium silicate board base 31 and the reflective tin foil 32 are provided with air holes 38, which act as heat dissipation holes. The upper end of the air hole 38 is clamped with a dust cover 33, and the upper end of the air hole 38 is blocked by the dust cover 33. The dust cover 33 includes a connecting pipe 331, a mesh cover 332 and an arc-shaped top plate 333. The mesh cover 332 is installed at the upper end of the connecting pipe 331, and ventilation and heat dissipation are carried out through the mesh cover 332, while reducing dust from entering the second layer A level The fireproof light-transmitting film 371 is also used to prevent mosquitoes from entering the second layer of A-level fireproof light-transmitting film 371. The arc-shaped top plate 333 is installed on the upper end of the mesh cover 332. The arc-shaped top plate 333 is used to prevent dust from falling into the mesh cover 332. The edge of the arc-shaped top plate 333 extends from the edge of the mesh cover 332. The connecting pipe 331 is clamped in the air diffusion hole 38; the bottom of the reflective tin foil 32 is respectively installed with the first LED soft light strip 34 and the second LED soft light strip 35. 4 and the second LED soft light strip 35 both play a role in lighting. The first LED soft light strip 34 and the second LED soft light strip 35 are arranged crosswise. When dust enters the second layer of Class A fireproof and light-transmitting film 371 and creates a shadow area on the first layer of Class A fireproof and light-transmitting film 37, the cross-irradiation of the second LED soft light strip 35 on the first layer of Class A fireproof and light-transmitting film 37 eliminates the shadow area. The second layer of Class A fireproof and light-transmitting film 371 can also prevent dust from falling on the first layer of Class A fireproof and light-transmitting film 37.
[0035] Furthermore, the connecting component 4 includes a spring 41, a limiting plate 42 and an insertion shaft 43. One end of the spring 41 is installed inside the second keel frame 11. When the tension on the insertion shaft 43 is loosened, the spring 41 is used to push the insertion shaft 43 so that the insertion shaft 43 is inserted into the socket 363 of the double H-type buckle 36 to support the double H-type buckle 36. The other end of the spring 41 is connected to the limiting plate 42. The limiting plate 42 is used to limit the moving position of the insertion shaft 43. The other end of the limiting plate 42 is connected to the insertion shaft 43. The insertion shaft 43 passes through the second keel frame 11 and is inserted into the socket 363. A connecting rod 44 is installed at one end of the limiting plate 42. The connecting rod 44 passes through the inside of the spring 41. The other end of the connecting rod 44 is installed with a connecting line 45. An arc groove roller 46 is also rotatably installed inside the second keel frame 11. The arc groove roller 46 is used to guide and pull the connecting wire 45, and the connecting wire 45 is pulled by the pull ring 47. The connecting wire 45 pulls the connecting rod 44, and the connecting rod 44 pulls back the plug shaft 43, compresses the spring 41, and makes the plug shaft 43 disengage from the double H-type buckle 36. At this time, it is convenient to take out the double H-type buckle 36 downward. When the connecting wire 45 is released, the plug shaft 43 is pushed back according to the elastic force of the spring 41, so that the plug shaft 43 is inserted into the socket 363 of the double H-type buckle 36 again, and the double H-type buckle 36 is clamped and supported, thereby completing the connection support and quick removal of the double H-type buckle 36, thereby facilitating the quick disassembly and assembly of the first layer of Class A fire-proof and light-transmitting film 37 and the second layer of Class A fire-proof and light-transmitting film 371. The connecting wire 45 is transmission-connected in the arc groove roller 46, and the lower end of the connecting wire 45 is connected to the pull ring 47.
[0036] The working principle of the utility model is: through the upper end of the dust cover 33 of the air hole 38, the upper end of the air hole 38 is blocked, through the mesh cover 332 ventilation and heat dissipation, at the same time, the dust into the second layer A level fireproof light transmission film 371 is reduced, also be used for blocking mosquito into the second layer A level fireproof light transmission film 371, through the first LED soft lamp strip 34 and the second LED soft lamp strip 35 play the role of illumination, the first LED soft lamp strip 34 and the second LED soft lamp strip 35 are cross -set, when the dust in the second layer A level fireproof light transmission film 371 produces shadow area to the first layer A level fireproof light transmission film 37, again through the cross -irradiation of the second LED soft lamp strip 35 eliminates the shadow area to the first layer A level fireproof light transmission film 37, through the second layer A level fireproof light transmission film 371 still can avoid the dust to fall on the first layer A level fireproof light transmission film 37, the both ends of the first layer A level fireproof light transmission film 37 are respectively clamped in the first buckle groove 361, the both ends of the second layer A level fireproof light transmission film 371 are respectively clamped in the second buckle groove 362, so that the first layer A level fireproof light transmission film 37 and the second layer A level fireproof light transmission film 371 are installed on the double H type buckle 36, pull the pull ring 47, the pull ring 47 pulls the connecting line 45, the connecting line 45 moves in the arc groove roller 46 direction, the connecting line 45 pulls the connecting rod 44, the connecting rod 44 pulls back the plug shaft 43, compresses the spring 41, pulls back the plug shaft 43, inserts the double H type buckle 36 into the second keel frame 11 inside, the insertion hole 363 and the plug shaft 43 are aligned, loosen the connecting line 45, according to the elastic force of the spring 41, the plug shaft 43 is pushed back, the plug shaft 43 is inserted into the insertion hole 363 of the double H type buckle 36, the double H type buckle 36 is clamped and supported, thereby the first layer A level fireproof light transmission film 37 and the second layer A level fireproof light transmission film 371 are quickly installed and supported, and similarly, the connecting line 45 is pulled again, and the first layer A level fireproof light transmission film 37 and the second layer A level fireproof light transmission film 371 can be quickly removed.
[0037] Although the utility model has been described in the foregoing with reference to the embodiments, various improvements can be made and equivalent parts can be replaced without departing from the scope of the utility model. In particular, as long as there is no structural conflict, the features in the embodiments disclosed by the utility model can be combined in any way, and the combinations are not exhaustively described in the specification only for the purpose of saving space and resources. Therefore, the utility model is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.
Claims
1. A double-layer soft membrane ceiling structure, comprising a first keel frame (1) and a second keel frame (11), wherein the second keel frame (11) is mounted on the bottom of the first keel frame (1) by bolts, characterized in that: A soft film ceiling mechanism (2) is provided on the second keel frame (11), and the soft film ceiling mechanism (2) can be installed in a dust-proof and insect-proof manner on the building soft film ceiling; The soft membrane ceiling mechanism (2) comprises a protection component (3) and a connection component (4), wherein the protection component (3); A protective component (3) for preventing dust and insects from the soft film ceiling is installed on the second keel frame (11); A connecting assembly (4) for conveniently assembling and disassembling the protection assembly (3) is mounted on the second keel frame (11).
2. The double-layer soft membrane ceiling structure according to claim 1, characterized in that: The protective component (3) comprises a double H-shaped buckle (36), a first layer of A-grade fireproof light-transmitting film (37) and a second layer of A-grade fireproof light-transmitting film (371). The double H-shaped buckle (36) is assembled on the inner side of the second keel frame (11). The H-shaped buckle (36) is respectively provided with a first buckle groove (361), a second buckle groove (362) and a socket (363). The two ends of the first layer of A-grade fireproof light-transmitting film (37) are respectively clamped in the first buckle groove (361), and the two ends of the second layer of A-grade fireproof light-transmitting film (371) are respectively clamped in the second buckle groove (362).
3. The double-layer soft membrane ceiling structure according to claim 1, characterized in that: The protective component (3) further comprises a calcium silicate board base (31), a reflective tin foil (32) and air holes (38); the calcium silicate board base (31) is mounted on the second keel frame (11) by screws; the reflective tin foil (32) is mounted on the lower surface of the calcium silicate board base (31); and the inner walls of the calcium silicate board base (31) and the reflective tin foil (32) are both provided with air holes (38).
4. The double-layer soft membrane ceiling structure according to claim 3, characterized in that: The upper end of the air diffusion hole (38) is clamped with a dust cover (33), and the dust cover (33) comprises a connecting pipe (331), a mesh cover (332) and an arc-shaped top plate (333). The mesh cover (332) is mounted on the upper end of the connecting pipe (331), and the arc-shaped top plate (333) is mounted on the upper end of the mesh cover (332). The connecting pipe (331) is clamped in the air diffusion hole (38).
5. The double-layer soft membrane ceiling structure according to claim 3, characterized in that: A first LED soft light strip (34) and a second LED soft light strip (35) are respectively installed on the bottom of the reflective tin foil (32), and the first LED soft light strip (34) and the second LED soft light strip (35) are arranged crosswise.
6. The double-layer soft membrane ceiling structure according to claim 1, characterized in that: The connecting assembly (4) comprises a spring (41), a limiting plate (42) and an inserting shaft (43); one end of the spring (41) is installed inside the second keel frame (11); the other end of the spring (41) is connected to the limiting plate (42); the other end of the limiting plate (42) is connected to the inserting shaft (43); the inserting shaft (43) passes through the second keel frame (11) and is inserted into the insertion hole (363).
7. The double-layer soft membrane ceiling structure according to claim 6, characterized in that: A connecting rod (44) is installed at one end of the limiting plate (42), and the connecting rod (44) passes through the inside of the spring (41). A connecting wire (45) is installed at the other end of the connecting rod (44). A circular arc groove roller (46) is also rotatably installed inside the second keel frame (11). The connecting wire (45) is transmission-connected inside the circular arc groove roller (46), and the lower end of the connecting wire (45) is connected to a pull ring (47).