Channel matching type adjustable suspended ceiling pinch plate structure
By using a wide and narrow buckle structure with a groove-fitting design, the difficulties in fixing and sizing of existing buckle structures are solved, achieving a buckle structure with stable connection and fireproof function.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- YANGZHONG HUAWEI DOORS & WINDOWS FACTORY (INDIVIDUAL IND & COMMERCIAL HOUSEHOLDS)
- Filing Date
- 2025-05-13
- Publication Date
- 2026-04-17
AI Technical Summary
Existing snap-on structures require the use of frames or bolts for fixing, making it impossible to connect them after non-destructive cutting, and size adjustment is difficult.
The design employs a groove-fitting system, combining wide and narrow buckles to achieve both flat and vertical connections between the buckle panels. The interlocking of wide and narrow grooves ensures connection versatility and adjustability.
It achieves a stable connection between the panels, is versatile and adjustable, maintains the connection even after cutting, and uses fire-resistant materials to prevent the spread of fire.
Smart Images

Figure CN224134037U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a snap-on structure, specifically an adjustable ceiling snap-on structure with a channel fit. Background Technology
[0002] Ceiling panels are widely used in daily and industrial production equipment. In daily applications, they are used in kitchen and bathroom ceilings; in industrial production equipment, they are used in pipe wiring protection panels and electrical wiring enclosure panels.
[0003] Surrounding panels are primarily used as structural components for pipes and wiring, typically made of metal or plastic. Their main functions are twofold: firstly, to prevent mechanical damage, corrosion, or other environmental factors during construction, installation, or use; and secondly, to provide support, shielding, and protection. These panels can be installed on the outside of wiring and pipes to form a protective layer, serving both protective and decorative purposes.
[0004] Currently, most conventional ceiling panel structures require the use of a frame for installation, or are fixed by means of clips, bolts, etc. Clips or bolt connection ports are reserved on the ceiling panels; if the dimensions are cut, non-destructive connection is not possible. Utility Model Content
[0005] The purpose of this utility model is to provide an adjustable ceiling panel structure with a channel fit, so as to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution:
[0007] An adjustable ceiling panel structure with a groove fit includes a panel body, wherein a wide buckle and a narrow buckle are formed on one side of the panel body;
[0008] The wide buckle is two in number, located on the same side of the buckle plate body and disposed at both ends of the buckle plate body along the length or width direction of the buckle plate body;
[0009] The narrow buckle is multiple and arranged on the same side, with the multiple narrow buckles arranged side by side at equal intervals;
[0010] The wide buckle at one end of any buckle body can be connected flush or perpendicularly to any narrow buckle on the other buckle body.
[0011] The adjustable ceiling panel structure with groove matching as described above: the wide buckle includes two opposing first protruding structures, each of which includes a first connecting part that connects to one side of the panel body and is perpendicular to one side of the panel body.
[0012] The first protruding structure further includes a first extension portion connecting the first connecting portion to the side away from the buckle body, the first extension portion being perpendicular to and parallel to the buckle body;
[0013] The two first protruding structures in the wide buckle are arranged opposite each other to form a wide channel between them.
[0014] The adjustable ceiling panel structure with groove matching as described above: the narrow buckle includes a second protruding structure, the second protruding structure includes a second connecting part that connects to one side of the panel body and is perpendicular to one side of the panel body;
[0015] The second protruding structure further includes a second extension portion connecting the second connecting portion to the side away from the buckle body, the second extension portion being perpendicular to and parallel to the buckle body;
[0016] A narrow channel is formed between two adjacent narrow buckles.
[0017] The adjustable ceiling panel structure with groove matching as described above: two adjacent second protruding structures are adapted to the wide groove;
[0018] The distance between two adjacent second connecting parts is equal to the distance between two opposing first extensions in the wide buckle;
[0019] When the two buckle bodies are joined together, and the narrow buckle and the wide buckle are engaged, one of the second extensions is fitted into the wide channel, and the two ends of the wide buckle are fitted with the two adjacent second connecting parts.
[0020] As described above, the adjustable ceiling panel structure with groove matching: the first outward protrusion structure located at the end of the panel body in the wide buckle is adapted to the narrow groove;
[0021] When the two buckle plate bodies are vertically connected, and the first protruding structure at the end of the buckle plate body cooperates with the narrow channel, the first protruding structure that cooperates with the narrow channel is embedded in the narrow channel.
[0022] The adjustable ceiling panel structure with groove matching as described above: an end buckle is formed at the end of the panel body along the length or width direction, and an "L"-shaped groove is formed inside the end buckle;
[0023] When the two buckle plate bodies are vertically connected, and the first protruding structure at the end of the buckle plate body is engaged with the narrow channel, the second protruding structure on one side of the narrow channel is engaged with the first protruding structure, and the second protruding structure on the other side of the narrow channel is engaged with the "L"-shaped channel.
[0024] The adjustable ceiling panel structure with groove matching as described above: the tail section of the "L"-shaped groove forms a fitting part, and a stop part is formed at the end of the "L"-shaped groove;
[0025] The fitting portion engages with the second extension portion, and the stop portion engages with the inner upper edge of the narrow channel.
[0026] The adjustable ceiling panel structure with groove matching as described above: the narrow buckle, the wide buckle, and the panel body are all made of fire-resistant material and are integrally molded.
[0027] Compared with the prior art, the beneficial effects of this utility model are: by setting wide buckles and narrow buckles in combination, not only can the flat connection between two adjacent buckle bodies be realized, but also the vertical connection between two adjacent buckle bodies can be realized, which has the characteristic of connection diversity; in addition, the connection position between two adjacent buckle bodies is adjustable, and the connection height between the two buckle bodies can be adjusted by using the wide buckle on one buckle body to connect with any narrow buckle on the other buckle body.
[0028] Since the wide and narrow buckles run through the entire buckle body along its length or width, they still maintain the aforementioned connection diversity and adjustability even after being cut along the width or length of the buckle body. Attached Figure Description
[0029] Figure 1 This is a structural diagram of an adjustable ceiling panel structure with a channel fit.
[0030] Figure 2 for Figure 1 Enlarged view of point A in the middle.
[0031] Figure 3 for Figure 1 Enlarged view of point B in the middle.
[0032] Figure 4 This is a schematic diagram showing the two snap-on panels joined together.
[0033] Figure 5 for Figure 4 Enlarged view of point C in the middle.
[0034] Figure 6 In order to be in Figure 4 The diagram shows the structure after the two snap-fit panels that were joined together are removed.
[0035] Figure 7 for Figure 6 Enlarged view of point D in the middle.
[0036] Figure 8 This is a structural diagram showing the vertical connection of two snap-on panels.
[0037] Figure 9 for Figure 8 Enlarged view of point E in the middle.
[0038] Figure 10 In order to be in Figure 8 The diagram shows the structure after the two vertically connected buckle panels are separated.
[0039] Figure 11 for Figure 10 Enlarged view of point F in the middle.
[0040] In the picture:
[0041] 100 - Panel body;
[0042] Wide buckle; 1011-First connecting part; 1012-First extension part;
[0043] End buckle; 1021-stop part; 1022-fitting part;
[0044] 103-Narrow buckle; 1031-Second connecting part; 1032-Second extension part. Detailed Implementation
[0045] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0046] Please see Figures 1-11 As an embodiment of the present utility model, the adjustable ceiling panel structure with groove matching includes a panel body 100, and a wide buckle 101 and a narrow buckle 103 are formed on one side of the panel body 100.
[0047] There are two wide buckles 101, located on the same side of the buckle body 100 and arranged at both ends of the buckle body 100 along the length or width direction of the buckle body 100.
[0048] The narrow buckle 103 is multiple and arranged on the same side, with the multiple narrow buckles 103 arranged side by side at equal intervals;
[0049] The wide buckle 101 at one end of any buckle body 100 can be connected to any narrow buckle 103 on another buckle body 100 either flush or perpendicularly.
[0050] In this embodiment, by using the wide buckle 101 and the narrow buckle 103 together, not only can a flat connection be achieved between two adjacent buckle body 100, but also a vertical connection can be achieved between two adjacent buckle body 100, which has the characteristic of connection diversity. In addition, the connection position between two adjacent buckle body 100 is adjustable. By using the wide buckle 101 on one buckle body 100 to connect with any narrow buckle 103 on the other buckle body 100, the connection height between the two buckle body 100 is adjustable.
[0051] Since the wide buckle 101 and the narrow buckle 103 extend through the entire buckle body 100 along the length or width direction, they still possess the aforementioned connection diversity and adjustability even after being cut along the width or length direction of the buckle body 100.
[0052] As a further embodiment of this utility model, please refer to... Figure 2 The wide buckle 101 includes two opposing first protruding structures, each of which includes a first connecting portion 1011 that connects to one side of the buckle body 100 and is perpendicular to one side of the buckle body 100.
[0053] The first protruding structure further includes a first extension 1012 connecting the first connecting portion 1011 to the side away from the buckle body 100. The first extension 1012 is perpendicular to the first connecting portion 1011 and parallel to the buckle body 100.
[0054] The two first protruding structures in the wide buckle 101 are arranged opposite each other to form a wide channel between them, and the wide buckle 101 is integrally formed with the buckle plate body 100.
[0055] In this embodiment, the two opposing first protruding structures in the wide buckle 101 and the wide groove formed between them cooperate with the narrow buckle 103 to achieve the flat and vertical connection between two adjacent buckle bodies 100. Moreover, once the two buckle bodies 100 are connected to each other, the mutual constraint of the structure can ensure the stable connection between the two buckle bodies 100.
[0056] As a further embodiment of this invention, please refer to... Figure 3 The narrow buckle 103 includes a second outward protrusion structure, which includes a second connecting portion 1031 that connects to one side of the buckle body 100 and is perpendicular to one side of the buckle body 100.
[0057] The second protruding structure also includes a second extension 1032 that connects the second connecting portion 1031 to the side away from the buckle body 100. The second extension 1032 is perpendicular to the second connecting portion 1031 and parallel to the buckle body 100.
[0058] A narrow channel is formed between two adjacent narrow buckles 103, and the narrow buckle 103 is integrally formed with the buckle plate body 100.
[0059] In this embodiment, the narrow channel formed between the first protruding structure in the wide buckle 101 and the narrow buckle 103, along with the second protruding structure, work together to ensure that when the buckle body 100 is inserted into each other, it not only effectively ensures the straightness between the two but also ensures the perpendicularity between them when they are vertically connected.
[0060] As a further embodiment of this invention, please refer to [link / reference]. Figures 4-7 The two adjacent second protruding structures are adapted to the wide channel;
[0061] The spacing between two adjacent second connecting portions 1031 is equal to the spacing between two opposing first extension portions 1012 in the wide buckle 101;
[0062] When the two buckle bodies 100 are joined together, and the narrow buckle 103 and the wide buckle 101 are engaged, one of the second extensions 1032 is fitted into the wide channel, and the two ends of the wide buckle 101 are attached to the two adjacent second connecting parts 1032.
[0063] In this embodiment, reference is made to Figure 5 When the two buckle bodies 100 are joined together, the wide buckle 101 encloses the second connecting portion 1031 of the two adjacent narrow buckles 103, and one of the first extension portions 1012 is close to one of the second connecting portions 1031, and the other first extension portion 1012 is close to the other second connecting portion 1031; and one of the second extension portions 1032 is fitted into the wide channel.
[0064] In this way, after the two buckle bodies 100 are inserted into each other, the wide buckle 101 on one buckle body 100 and the narrow buckle 103 on the other buckle body 100 can not only restrict the two from moving up and down, but also restrict them from moving left and right, and even prevent them from deflecting relative to each other.
[0065] As a further embodiment of this invention, please refer to [link / reference]. Figures 8-10 The first outward protruding structure located at the end of the buckle body 100 in the wide buckle 101 is adapted to the narrow channel;
[0066] When two buckle plate bodies 100 are vertically connected, and the first protruding structure at the end of the buckle plate body 100 engages with the narrow channel, the first protruding structure engaging with the narrow channel is fitted into the narrow channel.
[0067] In this embodiment, reference is made to Figure 9One of the first protruding structures on one side is completely fitted into the narrow channel, and the corresponding first extension 1012 is completely abutted against one of the second extensions 1032 of the narrow channel. In this way, when the two buckle bodies 100 are vertically connected, they cannot move up, down, left or right.
[0068] As a further embodiment of this invention, please refer to [link / reference]. Figure 2 , Figure 9 ,and Figure 11 An end buckle 102 is formed at the end of the buckle body 100 along the length or width direction, and an "L"-shaped channel is formed in the end buckle 102.
[0069] When the two buckle plate bodies 100 are vertically connected, and the first protruding structure at the end of the buckle plate body 100 is engaged with the narrow channel, the second protruding structure on one side of the narrow channel is engaged with the first protruding structure, and the second protruding structure on the other side of the narrow channel is engaged with the "L"-shaped channel.
[0070] In this embodiment, when the two buckle plate bodies 100 are vertically connected, the buckle plate body 100 in the horizontal state has a large downward swing tendency under the action of gravity. By adding an "L"-shaped channel and cooperating with the second outward protruding structure on the other side of the narrow channel, the connection strength between the two buckle plate bodies 100 is increased.
[0071] As a further embodiment of this invention, please refer to [link / reference]. Figure 11 The tail section of the "L"-shaped channel forms a fitting part 1022, and a stop part 1021 is formed at the port of the "L"-shaped channel.
[0072] The fitting portion 1022 fits into the second extension portion 1032, and the stop portion 1021 fits into the inner upper edge of the narrow channel.
[0073] In this embodiment, the two vertically connected buckle bodies 100 are further constrained from moving left and right by the fitting part 1022 and the second extension part 1032; and by fitting the stop part 1021 and the inner upper edge of the narrow channel, the two buckle bodies 100 are constrained from being misaligned upward.
[0074] As a further improvement of this utility model, the buckle plate body 100 is made of fire-resistant material.
[0075] In this embodiment, the panel body 100 made of fire-resistant material can play a fire-resistant role and effectively prevent the spread of fire after it occurs.
[0076] The above embodiments are exemplary and not restrictive. Therefore, without departing from the spirit or basic characteristics of this utility model, any technical solutions that can be implemented in other specific forms are included in this utility model.
Claims
1. A channel-fitting adjustable ceiling panel structure, comprising a panel body (100), characterized in that: A wide buckle (101) and a narrow buckle (103) are formed on one side of the buckle body (100). There are two wide buckles (101), located on the same side of the buckle body (100) and arranged at both ends of the buckle body (100) along the length or width direction of the buckle body (100). The narrow buckle (103) is multiple and arranged on the same side, and the multiple narrow buckles (103) are arranged side by side at equal intervals; The wide buckle (101) at one end of any buckle body (100) can be connected flush or perpendicularly to any of the narrow buckles (103) on the other buckle body (100).
2. The channel-fit adjustable ceiling panel structure according to claim 1, wherein, The wide buckle (101) includes two opposing first protruding structures, each of which includes a first connecting portion (1011) that connects to one side of the buckle body (100) and is perpendicular to one side of the buckle body (100). The first protruding structure further includes a first extension (1012) connecting the first connecting portion (1011) to the side away from the buckle body (100), the first extension (1012) being perpendicular to the first connecting portion (1011) and parallel to the buckle body (100). The two first protruding structures in the wide buckle (101) are arranged opposite each other to form a wide channel between them.
3. The adjustable ceiling panel structure with channel fitting according to claim 2, characterized in that, The narrow buckle (103) includes a second outward protrusion structure, which includes a second connecting part (1031) that connects to one side of the buckle body (100) and is perpendicular to one side of the buckle body (100). The second protruding structure further includes a second extension (1032) connecting the second connecting portion (1031) to the side away from the buckle body (100), the second extension (1032) being perpendicular to and parallel to the second connecting portion (1031) and the buckle body (100). A narrow channel is formed between two adjacent narrow buckles (103).
4. The channel-fit adjustable ceiling panel structure according to claim 3, wherein The two adjacent second protruding structures are adapted to the wide channel; The distance between two adjacent second connecting portions (1031) is equal to the distance between two opposing first extensions (1012) in the wide buckle (101); When the two buckle bodies (100) are joined together, and the narrow buckle (103) and the wide buckle (101) are engaged, one of the second extensions (1032) is fitted into the wide channel, and the two ends of the wide buckle (101) are attached to the two adjacent second connecting parts (1031).
5. The channel-fit adjustable ceiling panel structure according to claim 3, wherein The first protruding structure located at the end of the buckle body (100) in the wide buckle (101) is adapted to the narrow channel; When the two buckle plate bodies (100) are vertically connected, the first protruding structure at the end of the buckle plate body (100) engages with the narrow channel, and the first protruding structure engaging with the narrow channel is fitted into the narrow channel.
6. A channel-fit adjustable ceiling panel structure according to claim 5, wherein An end buckle (102) is formed at the end of the buckle body (100) along the length or width direction, and an "L"-shaped channel is formed in the end buckle (102); When the two buckle plate bodies (100) are vertically connected, and the first protruding structure at the end of the buckle plate body (100) is engaged with the narrow channel, the second protruding structure on one side of the narrow channel is engaged with the first protruding structure, and the second protruding structure on the other side of the narrow channel is engaged with the "L"-shaped channel.
7. A channel-fit adjustable ceiling panel structure according to claim 6, wherein The tail section of the "L"-shaped channel forms a fitting part (1022), and a stop part (1021) is formed at the port of the "L"-shaped channel. The fitting portion (1022) fits into the second extension portion (1032), and the stop portion (1021) fits into the inner upper edge of the narrow channel.
8. A channel-fitted adjustable ceiling panel structure according to any one of claims 1-7, characterized in that, The narrow buckle (103), wide buckle (101), and buckle plate body (100) are all made of fire-resistant material and integrally molded.