Space cabin suspended ceiling buckling device

By using a linkage buckle device in the space capsule-shaped house, the ceiling can be quickly installed and disassembled, solving the problems of long time and cumbersome traditional installation methods, and improving installation efficiency and connection reliability.

CN224002188UActive Publication Date: 2026-03-17SHANGHAI LIZEO METAL PRODUCE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-14
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

The existing space capsule house ceiling installation process is cumbersome, time-consuming, and difficult to maintain, failing to meet the need for convenience and efficiency.

Method used

It adopts a snap-fit ​​device including a mounting base and a snap-fit ​​mechanism, and realizes the synchronous operation of multiple snap-fits through linkage components, simplifying the installation and disassembly process.

Benefits of technology

It improves the efficiency of ceiling installation and dismantling, simplifies the operation process, enhances the stability and reliability of the connection, and meets the needs of convenient and efficient installation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a space cabin suspended ceiling buckling device which comprises an installation base and a buckling mechanism, installation holes are evenly distributed in the upper end of the installation base, and the space cabin suspended ceiling buckling device further comprises a clamping mechanism. The buckling mechanism comprises mounting shafts, buckles, linkage assemblies and a rotating shaft, the symmetrically-distributed mounting shafts are rotationally connected to the bottom wall of the mounting base, the buckles are arranged on the outer arc faces of the mounting shafts, the linkage assemblies are arranged between the middle buckle and the left buckle and the right buckle respectively, the rotating shaft is rotationally connected to the right end of the lower side face of the mounting base, and the rotating shaft is rotationally connected to the right end of the lower side face of the mounting base. The upper end of the rotating shaft is fixedly connected with the center of the lower end face of the mounting shaft on the rightmost side, the linkage assembly comprises pin shafts, connecting rods, shifting columns and shifting grooves, and the connecting rods are rotationally connected to the front ends of the upper side faces of the two buckles on the left side through the pin shafts. And the tedious process of operating the mounting components one by one is avoided.
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Description

Technical Field

[0001] This utility model relates to the field of space capsule processing technology, specifically a space capsule ceiling buckle device. Background Technology

[0002] With people's pursuit of personalized living experiences and their love for outdoor living, convenient small-scale dwellings are gradually entering the public eye. Among them, space capsule-style houses stand out due to their unique advantages. These small houses have a novel and unique appearance, full of technological sense, which meets people's current pursuit of personalized aesthetics. At the same time, their convenient installation method allows them to be quickly built on various terrains. Whether it is a scenic tourist area, a nature-friendly campsite, or a creative homestay, they can be found everywhere, providing people with unique living spaces and greatly satisfying diverse accommodation needs.

[0003] In the construction of the space capsule house, every step is related to the living experience, and the ceiling installation is particularly important. It not only affects the aesthetics of the space capsule interior, but also plays a key role in the overall spatial comfort. It is an indispensable part of creating a high-quality living environment.

[0004] Currently, the most common methods for installing ceilings in small space capsule houses are traditional nailing and adhesive bonding. For traditional nailing, workers first need to accurately mark the fixing points of the panels on the roof frame according to the ceiling design plan. Then, they use tools such as an electric drill to drill holes at the marked points. Next, they insert nails one by one through the pre-drilled holes at the corresponding positions on the ceiling panels. With the help of tools such as a hammer or nail gun, they firmly fix the ceiling panels to the roof frame, completing the entire nailing process. For adhesive bonding, the roof frame and the adhesive surfaces of the ceiling panels must be cleaned before construction to ensure there is no dust, oil, or other impurities. Then, an appropriate amount of adhesive is evenly applied to the adhesive area on the roof frame, or adhesive is applied to the back of the ceiling panels. After applying the adhesive, the ceiling panels are quickly and precisely aligned with the corresponding positions on the roof frame and glued on. A certain amount of pressure needs to be applied during this process to ensure a tight fit between the panels and the frame until the adhesive cures, thus completing the ceiling installation.

[0005] Existing ceiling installation technologies for space capsule miniature houses have significant shortcomings in terms of convenience and efficiency. Traditional nailing requires drilling and nailing one by one, which is cumbersome, time-consuming, and labor-intensive, severely slowing down the overall construction speed of the space capsule miniature house. Adhesive bonding methods have high requirements for the construction environment, requiring preparation of a suitable environment in advance. The application of glue and the pasting of panels during installation require precise operation, which is also time-consuming and not conducive to rapid construction. In addition, when it is necessary to maintain or replace the ceiling, whether it is the trouble caused by nail removal and nail hole treatment for nailing or the difficulty of removing panels and cleaning glue for adhesive bonding, it greatly increases the maintenance time and cost, failing to meet the needs of convenience and efficiency. Therefore, we propose a space capsule ceiling clip device. Utility Model Content

[0006] The technical problem to be solved by this utility model is to overcome the existing defects and provide a space capsule ceiling buckle device, which improves the efficiency of installing or dismantling the ceiling, avoids the tedious process of operating the installation components one by one, and can effectively solve the problems in the background art.

[0007] To achieve the above objectives, this utility model provides the following technical solution: a space capsule ceiling buckle device, including a mounting base, wherein the upper end of the mounting base is provided with evenly distributed mounting holes, and also includes a buckling mechanism;

[0008] The fastening mechanism includes a mounting shaft, a snap fastener, a linkage component, and a rotating shaft. The bottom wall of the mounting base is rotatably connected to symmetrically distributed mounting shafts. Each mounting shaft has a snap fastener on its outer arc surface. A linkage component is provided between the middle snap fastener and the two snap fasteners on the left and right. The lower right side of the mounting base is rotatably connected to a rotating shaft. The upper end of the rotating shaft is fixedly connected to the center of the lower end face of the rightmost mounting shaft. This improves the efficiency of installing or disassembling the ceiling and avoids the tedious process of operating each mounting component individually.

[0009] Furthermore, the linkage assembly includes a pin, a connecting rod, a shift pin, and a shift groove. The connecting rods are rotatably connected to the front ends of the upper sides of the two buckles on the left side via the pin. The right ends of the connecting rods extend to the upper side of the adjacent buckle on the right side. The right ends of the connecting rods are provided with shift pins. The upper sides of the two buckles on the right side are provided with shift grooves. The shift pins are located inside the adjacent shift grooves on the lower side, which facilitates the linkage between the buckles.

[0010] Furthermore, the fastening mechanism also includes rib grooves and ribs. The rear end of the buckle is provided with evenly distributed rib grooves, and the outer arc surface of the mounting shaft is provided with evenly distributed ribs. The rib grooves are slidably connected to the adjacent ribs above and below, providing stable support for the buckle.

[0011] Furthermore, the bottom wall of the mounting base is provided with evenly distributed arc-shaped limiting frames. The front side of each arc-shaped limiting frame is inclined. There is an arc-shaped limiting frame on the right side of each buckle. The lower end of the right side of each buckle is provided with an inclined groove. The inclined groove is configured to cooperate with the adjacent arc-shaped limiting frame on the right side. The buckle moves upward by cooperating with the arc-shaped limiting frame and the inclined groove, which facilitates the installation of the ceiling panel.

[0012] Furthermore, a sliding column is provided on the right side of the bottom wall of the mounting base, and a lower pressure bracket is slidably connected to the upper end of the sliding column. The lower pressure bracket is located on the upper side of the buckle and provides downward pressure for the buckle.

[0013] Furthermore, a lead screw is rotatably connected to the right end of the mounting base, and the upper end of the lead screw is threadedly connected to the lower right end of the lower pressure frame, driving the lower pressure frame to move.

[0014] Furthermore, the bottom wall of the mounting base is provided with symmetrically distributed spring plates, which are located between two horizontally adjacent buckles to initially clamp the ceiling panel.

[0015] Compared with the prior art, the beneficial effects of this utility model are as follows: This space capsule ceiling buckle device has the following advantages:

[0016] During ceiling installation, the interlocking components inside the fastening mechanism work together. When the rightmost buckle is operated, for example, rotating the shaft drives the rightmost mounting shaft to rotate, and the connected buckle moves. At this time, the lever on the connecting rod slides in the lever groove, which allows the buckles on both sides to engage or disengage synchronously. This greatly improves the efficiency of ceiling installation or disassembly and avoids the tedious process of operating each buckle individually. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the structure of this utility model;

[0018] Figure 2 This is a partial cross-sectional view of the right end of the present invention.

[0019] Figure 3 This is a cross-sectional view of the upper end of the mounting shaft of this utility model;

[0020] Figure 4 This is a structural schematic diagram of the front cross-section of the buckle of this utility model.

[0021] In the diagram: 1 Mounting base, 2 Fastening mechanism, 21 Mounting shaft, 22 Buckle, 221 Inclined groove, 23 Linkage assembly, 231 Pin, 232 Connecting rod, 233 Pulley, 234 Pulley groove, 24 Rotating shaft, 25 Rib groove, 26 Rib, 3 Arc-shaped limit bracket, 4 Sliding column, 5 Lower pressure bracket, 6 Lead screw, 7 Spring plate. Detailed Implementation

[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0023] Please see Figure 1-4This embodiment provides a technical solution: a space capsule ceiling buckle device, including a mounting base 1, with evenly distributed mounting holes at the upper end of the mounting base 1. The evenly distributed mounting holes at the upper end of the mounting base 1 are used for initial fixing with the installation position on the top of the space capsule. Bolts and other connecting parts are used to pass through the mounting holes to install the mounting base 1 in the designated position, ensuring that the mounting base 1 is stable and facilitating the installation of ceiling components. It also includes a fastening mechanism 2.

[0024] The fastening mechanism 2 includes a mounting shaft 21, a buckle 22, a linkage component 23, and a rotating shaft 24. The bottom wall of the mounting base 1 is rotatably connected to symmetrically distributed mounting shafts 21. Each mounting shaft 21 has a buckle 22 on its outer arc surface. The fastening mechanism 2 also includes rib grooves 25 and ribs 26. The rear end of each buckle 22 has evenly distributed rib grooves 25. Each mounting shaft 21 has evenly distributed ribs 26 on its outer arc surface. Each rib groove 25 is slidably connected to adjacent ribs 26. The bottom wall of the mounting base 1 has evenly distributed arc-shaped limiting frames 3. The front side of each arc-shaped limiting frame 3 is inclined. Each buckle 22 has an arc-shaped limiting frame 3 on its right side. The lower end of the right side surface of each buckle 22 has an inclined groove 221, which is matched with the adjacent arc-shaped limiting frame 3 on its right side. The mounting base 1 has a sliding column 4 on the right side of its bottom wall. A lower pressure frame 5 is slidably connected to the upper end of the sliding column 4. The lower pressure frame 5 is located above the buckle 22. A lead screw 6 is rotatably connected to the right end of the mounting base 1. The upper end of the lead screw 6 is threaded to the lower right end of the lower pressure frame 5. Symmetrically distributed spring plates 7 are located on the bottom wall of the mounting base 1, between two horizontally adjacent buckles 22. A linkage assembly 23 is provided between the middle buckle 22 and the two left and right buckles 22. The linkage assembly 23 includes a pin 231, a connecting rod 232, a shift pin 233, and a shift groove 234. The connecting rod 232 is rotatably connected to the upper front end of the two left buckles 22 via the pin 231. The right end of the connecting rod 232 extends to the upper side of the adjacent right buckle 22. Each of the two latches 22 on the right side is provided with a pin 233, and the upper side of each of the two latches 22 on the right side is provided with a slot 234. The pins 233 are located inside the adjacent slots 234 on the lower side. The lower right side of the mounting base 1 is rotatably connected to a rotating shaft 24. The upper end of the rotating shaft 24 is fixedly connected to the center of the lower end face of the rightmost mounting shaft 21. When the ceiling component needs to be installed on the fastening mechanism 2, the rotating shaft 24 is rotated counterclockwise. The rotation of the rotating shaft 24 will drive the rightmost mounting shaft 21 to rotate. At this time, through the cooperation of the rib groove 25 and the rib 26, the latch 22 on the outer arc surface of the rightmost mounting shaft 21 rotates counterclockwise. At this time, the slot 234 on the upper side of the rightmost latch 22 moves the adjacent pin 233 synchronously. Then, the adjacent connecting rod 232 is pulled to move. The connecting rod 232 drives the middle pin 231 to move through the adjacent pin 231. At this time, under the limit of the middle mounting shaft 21, the middle buckle 22 rotates counterclockwise. At this time, the right-side lever 233 slides and rotates in the right-side lever groove 234. The leftmost buckle 22 also performs the above actions simultaneously, realizing the synchronous opening and closing of multiple buckles 22. During the rotation of the buckle 22, when the inclined groove 221 at its lower end contacts the inclined surface of the adjacent arc-shaped limit frame 3, it will slide upward during the rotation (the rib groove 25 slides upward along the rib 26), and then the ceiling plate is inserted into the gap between the spring plate 7 and the mounting base 1. Then the rotating shaft 24 is rotated in the opposite direction to make the buckle 22 rotate to the initial position. At this time, the front end of the buckle 22 is located on the upper side of the ceiling.Next, rotate the lead screw 6, which is threadedly connected to the lower pressure bracket 5. As the lead screw 6 rotates, the lower pressure bracket 5 slides up and down along the sliding column 4. Once the buckle 22 engages with the ceiling component, rotating the lead screw 6 moves the lower pressure bracket 5 downwards. The lower pressure bracket 5 applies downward pressure to the buckle 22, further tightening the ceiling component, enhancing the stability of the connection, and preventing the buckle 22 from loosening during use, thus improving the reliability of the entire ceiling connection structure.

[0025] The working principle of the space capsule ceiling clip device provided by this utility model is as follows: The mounting holes evenly distributed on the upper end of the mounting base 1 are used for initial fixation with the installation position on the top of the space capsule. Bolts and other connecting parts are used to install the mounting base 1 in the designated position through the mounting holes to ensure the stability of the mounting base 1. When it is necessary to install the ceiling component onto the fastening mechanism 2, the rotating shaft 24 is rotated counterclockwise. The rotation of the rotating shaft 24 will drive the rightmost mounting shaft 21 to rotate. At this time, through the cooperation of the rib groove 25 and the rib 26, the clip 22 on the outer arc surface of the rightmost mounting shaft 21 rotates counterclockwise. At this time, the push groove 234 on the upper side of the rightmost clip 22 pushes the adjacent push post 233 to move synchronously. At this time, the adjacent connecting rod 232 is pulled to move. The connecting rod 232 drives the middle pin 231 to move through the adjacent pin 231. At this time, under the limit of the middle mounting shaft 21, the middle clip 22 rotates counterclockwise. At this time, the right push post 233 is in the right push groove 23 4. The inner sliding and rotating mechanism causes the leftmost buckle 22 to also perform the above actions simultaneously, achieving synchronized opening and closing of multiple buckles 22. During the rotation of buckle 22, the inclined groove 221 at its lower end slides upward during rotation when it contacts the inclined surface of the adjacent arc-shaped limiting frame 3 (rib groove 25 slides upward along rib 26). Then, the ceiling plate is inserted into the gap between the spring plate 7 and the mounting base 1. Then, the rotating shaft 24 is rotated in the opposite direction to make buckle 22 rotate to the initial position. At this time, the front end of buckle 22 is located on the upper side of the ceiling. Next, the screw 6 is rotated. The screw 6 is threadedly connected to the lower pressure frame 5. When the screw 6 rotates, the lower pressure frame 5 slides up and down along the sliding column 4. After buckle 22 is engaged with the ceiling component, the screw 6 is rotated to make the lower pressure frame 5 move downward. The lower pressure frame 5 applies downward pressure to buckle 22 to further tighten the ceiling component, enhance the stability of the connection, and prevent buckle 22 from loosening during use, thereby improving the reliability of the entire ceiling connection structure.

[0026] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. A space warehouse ceiling fastener device, comprising a mounting seat (1), the upper end of the mounting seat (1) is provided with uniformly distributed mounting holes, characterized in that: The buckle mechanism (2) further comprises a rib groove (25) and a rib (26), the rear end of the buckle (22) is internally provided with uniformly distributed rib grooves (25), the outer arc surface of the mounting shaft (21) is provided with uniformly distributed ribs (26), and the rib grooves (25) are slidably connected with the adjacent ribs (26) upward and downward. The bottom wall of the mounting seat (1) is provided with uniformly distributed arc-shaped limiting racks (3), the front side of the arc-shaped limiting rack (3) is an inclined surface, the right side of each buckle (22) is provided with an arc-shaped limiting rack (3), the right side surface of the buckle (22) is internally provided with an inclined groove (221), and the inclined groove (221) is arranged in cooperation with the adjacent arc-shaped limiting rack (3) on the right side.

2. A space panel suspended ceiling fastener according to claim 1, wherein: The right side of the bottom wall of the mounting seat (1) is provided with a sliding column (4), the upper end of the sliding column (4) is slidably connected with a pressing frame (5), and the pressing frame (5) is located on the upper side of the buckle (22).

3. The space panel suspension fastener system of claim 1, wherein: The right end of the mounting seat (1) is rotatably connected with a lead screw (6), and the upper end of the lead screw (6) is threadedly connected with the right lower end of the pressing frame (5).

4. The space panel suspension fastener system of claim 1, wherein: The bottom wall of the mounting seat (1) is provided with symmetrically distributed spring sheets (7), and the spring sheets (7) are respectively located between two transversely adjacent buckles (22).

5. The space panel suspension clip of claim 1, wherein: The bottom wall of the mounting seat (1) is provided with symmetrically distributed spring sheets (7), and the spring sheets (7) are respectively located between two transversely adjacent buckles (22).

6. A space panel suspended ceiling fastener according to claim 5, wherein: ​ 7. The space panel suspension clip of claim 1, wherein: ​