Quickly assembled wallboard structure
By designing the arc-shaped protrusions and slot structures of the first and second interlocking parts on the lightweight partition wall panel, combined with the sliding fit of the connecting rod and the pin groove, the problem of adjusting the flatness and evenness during wall panel installation is solved, achieving a fast and stable wall panel assembly effect.
Patent Information
- Application Number
- CN202520459725.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-14
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-03-14
AI Technical Summary
The existing lightweight partition wall panels make it difficult to quickly judge and adjust the vertical and horizontal flatness of adjacent wall panels during installation, which affects the installation effect and aesthetics.
The structure adopts a first and second insertion part, including arc-shaped protrusions and slots on the first and second convex plates. Combined with the sliding fit of the connecting rod and the pin groove, it can achieve rapid assembly and adjustment of insertion depth and flatness. The addition of a connecting plate and retaining ring structure improves connection stability.
It enables rapid and stable wall panel assembly, ensuring efficient and aesthetically pleasing installation, while also improving the positional uniformity and connection stability of adjacent wall panels, meeting the needs of different installation environments.
Smart Images

Figure CN223853746U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to house construction technical field, concretely relates to a quick assembly type wallboard structure. BACKGROUND
[0002] Light partition wallboard is widely used as a kind of home decoration wall surface protection and decoration appliance, when installing, usually, the board is erected and pasted on the wall surface by foaming glue, and the adjacent boards are assembled by male and female tenon and groove or connecting piece, however, the male and female tenon and groove structure on the two sides of conventional wallboard has certain installation quickness, but it is inconvenient to judge and adjust the up-down flatness and left-right flatness between adjacent wallboards, which affects the installation effect, and the structure of connecting piece between wallboards also easily affects the overall appearance and use experience of wallboard. SUMMARY
[0003] The utility model provides a quick assembly type wallboard structure, the wallboard structure can be quickly assembled, and the up-down flatness and left-right flatness between adjacent wallboards can be observed and judged when assembling, so that the position uniformity and installation efficiency of multiple wallboards are guaranteed when installing, and the addition of the assembling structure on the two sides of wallboard does not affect the appearance and use experience of wallboard.
[0004] The utility model discloses a quick assembly type wallboard structure that can quickly assemble and observe and judge the up-down flatness and left-right flatness between adjacent wallboards when assembling, guaranteeing that multiple wallboards have high position uniformity and installation efficiency when installing, and the addition of the assembling structure on the two sides of wallboard does not affect the appearance and use experience of wallboard.
[0005] A quick assembly type wallboard structure, comprising a board body and first and second plug-in parts provided on the two sides of the board body for assembly, wherein the first and second plug-in parts each comprise a first and second protruding plate extending from the two sides of the board body and a first and second insertion slot formed by the first and second protruding plates respectively, a plurality of groups of arc-shaped protrusions are uniformly arranged on one side wall of the first protruding plate, and a plurality of groups of arc-shaped clamping grooves adapted to the arc-shaped protrusions are uniformly arranged on the corresponding side of the board body in the second insertion slot, a plurality of groups of connecting rods are arranged on one side wall of the second protruding plate, and a plurality of groups of pin grooves adapted to the connecting rods are arranged on the corresponding positions of the corresponding side of the board body in the first insertion slot.
[0006] Preferably, the second plug-in part further comprises a connecting plate arranged in the second insertion slot and slidingly arranged on the second protruding plate, one end of the connecting rod acts on the corresponding board body on one side of the connecting plate and is slidingly arranged left and right through a plurality of groups of through holes formed in the second protruding plate, a compression spring is arranged outside the connecting rod, and a clamping ring is arranged around the corresponding rod body, and a plurality of groups of ring grooves adapted to the clamping ring are formed around the through holes.
[0007] Preferably, the first protruding plate is provided with a plurality of first connecting parts and a plurality of second connecting parts which are uniformly arranged and used for mutual clamping on the side wall of the first protruding plate away from the arc-shaped protrusion and on the side wall of the connecting plate away from the connecting rod.
[0008] Preferably, the clamping ring comprises a first clamping ring and a second clamping ring which are respectively arranged at the corresponding positions of the rod bodies of the connecting rods, and the fitting ring groove which is arranged in the through hole of the second protruding plate comprises a first ring groove and a second ring groove which are respectively used for clamping the first clamping ring and the second clamping ring, and the third ring groove which is arranged in the pin groove at the corresponding position of the plate body is further arranged and used for clamping the second clamping ring.
[0009] Compared with the prior art, the utility model has the following advantages and effects:
[0010] The utility model discloses a quick assembly type wallboard structure, compared with the male and female tenon and groove structure of conventional assembly, the first inserting part and the second inserting part which are arranged on the both sides of the plate body are convenient for quick inserting assembly, and in the gradual clamping process of the arc-shaped protrusion on the side wall of the first protruding plate and the arc-shaped clamping groove which is arranged on the corresponding side plate body in the second inserting groove, the corresponding inserting depth of the first inserting part and the second inserting part can be conveniently judged and adjusted, so that the installation flatness between the adjacent wallboards which are pasted on the wall surface is guaranteed, and the sliding process of the connecting rod on the side wall of the second protruding plate and the pin groove which is arranged on the corresponding position of the corresponding side plate body in the first inserting groove is combined, so that the up-down flatness between the adjacent plate bodies which are pasted on the wall surface is guaranteed, the position uniformity and installation efficiency of the wallboards are high when the wallboards are installed, meanwhile, the structure of the first inserting part and the second inserting part on the both sides of the plate body can further improve the connection stability between the adjacent plate bodies, and compared with the conventional assembly mode of the adjacent plate bodies by adding connecting pieces, the appearance and use experience of the wallboard are not affected, and different installation environments and use requirements are met. ACCURACY
[0011] Figure 1 It is the connection structure schematic view of the plurality of plate bodies through the first inserting part and the second inserting part on the both sides of the utility model embodiment.
[0012] Figure 2 It is the structure enlarged view of the first inserting part and the second inserting part.
[0013] Figure 3 It is the connection structure schematic view of the plurality of plate bodies through the first inserting part and the second inserting part and the connecting plate which are arranged in the utility model embodiment.
[0014] Figure 4 is the enlarged view of the connecting structure of the first plug-in part and the second plug-in part and the connecting plate thereof according to the embodiment of the utility model.
[0015] Figure 5 is the enlarged view of the connecting structure between the connecting rod and the pin slot.
[0016] Figure 6 is the exploded view of the connecting structure between the connecting plate and the second convex plate.
[0017] Drawing number: plate body 100, first plug-in part 1, first convex plate 11, arc-shaped protrusion 111, first connecting part 112, first plug-in slot 12, pin slot 121, third ring groove 1211, second plug-in part 2, second convex plate 21, through hole 211, ring groove 2110, first ring groove 2111, second ring groove 2112, second plug-in slot 22, arc-shaped clamping groove 221, connecting rod 23, clamping ring 230, first clamping ring 231, second clamping ring 232, connecting plate 24, second connecting part 241, compression spring 25. DETAILED DESCRIPTION
[0018] The utility model will be preferred in the following detailed description in combination with the drawings and through the embodiment, the following embodiment is the explanation of the utility model and the utility model is not limited to the following embodiment.
[0019] Referring to Figures 1-2 , the embodiment relates to a kind of quick assembly type wallboard structures, including plate body 100 and the first plug-in part 1 and second plug-in part 2 for assembling respectively arranged on both sides thereof, the first plug-in part 1 and second plug-in part 2 respectively include the first convex plate 11 and second convex plate 21 extended on both sides of plate body 100 and the first plug-in slot 12 and second plug-in slot 22 respectively formed by the first convex plate 11 and second convex plate 21, the first convex plate 11 side wall is evenly arranged with several groups of arc-shaped protrusion 111, and corresponding one side plate body 100 in second plug-in slot 22 is evenly arranged with the several groups of arc-shaped clamping groove 221 of adaptive arc-shaped protrusion 111, the second convex plate 21 side wall is provided with multiple connecting rods 23, and the corresponding position of corresponding one side plate body 100 in first plug-in slot 12 is provided with multiple pin slots 121 of adaptive connecting rod 23.
[0020] Specifically in the embodiment, as Figure 1 indicated, the wallboard is connected by the first plug-in part 1 and second plug-in part 2 arranged on both sides of plate body 100 respectively, a group of plate body 100 adhered on wall surface carries out the assembly process of adjacent plate body 100 by the second plug-in part 2 arranged on one side and the first plug-in part 1 arranged on the corresponding side of another plate body 100, specifically when assembling, can refer to Figure 2As shown, the first protruding plate 11 provided on the corresponding side can be adapted to be inserted into the second slot 22, and at the same time, the second protruding plate 21 is inserted into the first slot 12 synchronously. During the insertion process, a plurality of groups of arc-shaped protrusions 111 arranged uniformly on one side wall of the first protruding plate 11 can be gradually clamped on a plurality of groups of arc-shaped clamping grooves 221 corresponding to the arc-shaped protrusions 111 arranged uniformly on the corresponding side plate body 100 in the second slot 22, and at the same time, a plurality of groups of connecting rods 23 provided on one side wall of the second protruding plate 21 can slide in a plurality of groups of pin grooves 121 corresponding to the connecting rods 23 provided at the corresponding positions of the corresponding side plate body 100 in the first slot 12. Thus, when the first protruding plate 11 and the second protruding plate 21 are respectively inserted into the second slot 22 and the first slot 12, the arc-shaped protrusions 111 on the first protruding plate 11 are completely clamped on the arc-shaped clamping grooves 221 in the second slot 22, and the plurality of groups of connecting rods 23 on the second protruding plate 21 reach the maximum sliding distance in the pin grooves 121, that is, the optimal connection state between the first insertion part 1 and the second insertion part 2 is reached, and the assembly process between the adjacent plate bodies 100 is completed. Figure 1 The optimal connection state between the first insertion part 1 and the second insertion part 2 is reached, and the assembly process between the adjacent plate bodies 100 is completed. Compared with the conventional male-female tongue-and-groove structure for assembly, the first insertion part 1 and the second insertion part 2 provided on both sides of the plate body 100 facilitate quick insertion and assembly, and during the assembly process, the gradual clamping process of the plurality of groups of arc-shaped protrusions 111 arranged uniformly on one side wall of the first protruding plate 11 on the plurality of groups of arc-shaped clamping grooves 221 corresponding to the arc-shaped protrusions 111 arranged uniformly on the corresponding side plate body 100 in the second slot 22 can facilitate the judgment and adjustment of the corresponding insertion depth of the first insertion part 1 and the second insertion part 2, thereby ensuring the installation flatness between the plurality of adjacent wall panels pasted on the wall surface, and the sliding process of the plurality of groups of connecting rods 23 provided on one side wall of the second protruding plate 21 in the plurality of groups of pin grooves 121 corresponding to the connecting rods 23 provided at the corresponding positions of the corresponding side plate body 100 in the first slot 12 can ensure the up-down flatness between the plurality of adjacent plate bodies 100 pasted on the wall surface, thereby ensuring high position uniformity and installation efficiency of the plurality of wall panels during installation. At the same time, the structure of the first insertion part 1 and the second insertion part 2 provided on both sides of the plate body 100 can further improve the connection stability between the adjacent plate bodies 100, and compared with the conventional method of assembling adjacent plate bodies 100 by adding connecting members, it does not affect the appearance and use experience of the wall panel, thereby meeting different installation environments and use requirements.
[0021] Referring to Figures 3-6The second insertion part 2 further includes a connecting plate 24 slidably disposed within the second slot 22 and on the second protruding plate 21. One end of the connecting rod 23 acts on a corresponding plate 100 on one side of the connecting plate 24 and slides left and right through multiple sets of through holes 211 provided on the second protruding plate 21. A compression spring 25 is sleeved on the outside of the connecting rod 23, and a retaining ring 230 is arranged around the corresponding rod body. An adapter groove 2110 for engaging the retaining ring 230 is provided around the through hole 211. (See also...) Figure 3 The multiple wall panels shown are connected by a connection structure between the first insertion part 1 and the second insertion part 2 on both sides of the panel body 100 and the connecting plate 24 on the second insertion part 2. For details during assembly, please refer to [the relevant documentation / reference]. Figure 4 As shown, the connecting plate 24 can be made to slide left and right along the second slot 22 on one side of the second convex plate 21 by means of multiple sets of connecting rods 23 passing through the corresponding through holes 211 on the second convex plate 21. This is achieved by the action of the compression springs 25 sleeved on the outside of the connecting rods 23 and the locking action of the corresponding rods 23 through the retaining rings 230 provided on them in the annular grooves 2110 inside the through holes 211. Thus, during assembly, when the first convex plate 11 is inserted into the second slot 22, it can abut against the connecting plate 24. At the same time, the connecting plate 24 is driven to move in the direction close to the second convex plate 21 by means of the matching compression springs 25 sleeved on the outside of the connecting rods 23. During the movement, the multiple sets of connecting rods 23 in the corresponding through holes 211 of the second convex plate 21 can slide out and be locked in the pin grooves 121 provided on the corresponding side of the other plate 100, thereby realizing... Figure 3 In the connection process shown, the addition of the connecting plate 24 on the second insertion part 2 and the connection method between it and the second protruding plate 21 can further improve the connection effect between adjacent plates 100 through the first insertion part 1 and the second insertion part 2. Simultaneously, under the action of the compression spring 25, when the first insertion part 1 is inserted into the second insertion part 2, the connecting plate 24, which is located in the second slot 22 and slidably disposed on the second protruding plate 21, can provide a certain buffering effect, appropriately reducing unnecessary wear or even damage to the plates 100 caused by excessive force during the insertion process. Furthermore, while ensuring the connection stability between adjacent plates 100 and the connection between the first insertion part 1 and the second insertion part 2 on both sides... Figure 3 In the plug-in state shown, at the corresponding distance between the connecting plate 24 and the second protruding plate 21, the fitting length of the compression spring 25 sleeved around the connecting rod 23 and its position... Figure 3 The maximum deformation setting process during the compression process in the shown state, and in this state, the corresponding length of the connecting rod 23 sliding out on one side of the second convex plate 21, is used to set the maximum depth of the pin groove 121 on another set of plates 100, thereby ensuring that there is a certain distance between adjacent plates 100.Figure 3 The optimal assembly effect in the shown state avoids the activity space of the first insertion part 1 and the second insertion part 2 between the adjacent plate bodies 100 and the existence of a larger installation gap between the corresponding plate surfaces. The corresponding setting process of the spring 25 structure can be performed according to different installation requirements. If a gap exists between the first convex plate 11 and the second insertion groove 22 between the adjacent plate bodies 100, the filling process of the adhesive medium such as glue can also be performed, which can further improve the connection stability between the adjacent plate bodies 100 and meet different installation requirements.
[0022] A plurality of groups of first connecting parts 112 and second connecting parts 241 for mutual clamping and uniform arrangement are respectively arranged on the side wall of the first convex plate 11 away from the arc-shaped protrusion 111 and placed in the first insertion groove 12 and the side wall of the connecting plate 24 away from the connecting rod 23. Figure 3 And Figure 4 As can be seen from , the corresponding structure setting of the first connecting part 112 and the second connecting part 241 on the corresponding side wall of the first convex plate 11 and the connecting plate 24, specifically in the assembly process, when the first convex plate 11 and the connecting plate 24 are abutted, the first connecting part 112 and the second connecting part 241 with the corresponding structure setting of a plurality of groups of arc-shaped protrusions 111 and arc-shaped clamping grooves 221 arranged at the corresponding positions can be gradually clamped, which further improves the connection effect and assembly convenience between the first convex plate 11 and the connecting plate 24, and improves the insertion effect and connection stability between the first insertion part 1 and the second insertion part 2.
[0023] Figures 5-6 The clamping ring 230 includes a first clamping ring 231 and a second clamping ring 232 respectively arranged at the corresponding positions of the two ends of the rod body of the connecting rod 23, and a ring groove 2110 is annularly provided in the through hole 211 of the second convex plate 21, which includes a first ring groove 2111 and a second ring groove 2112 for clamping the first clamping ring 231 and the second clamping ring 232, respectively. The pin groove 121 arranged at the corresponding position of the plate body 100 also annularly has a third ring groove 1211 for clamping the second clamping ring 232, as shown in Figure 5 The position setting of the connecting plate 24 in the natural state in the second insertion groove 22 under the action of the spring 25, in this state, the first clamping ring 231 arranged at the corresponding position of one end of the rod body of the connecting rod 23 is placed outside the through hole 211 in the second insertion groove 22, and the second clamping ring 232 arranged at the other end of the rod body is in the through hole 211 and clamped with the first ring groove 2111; further, when the first convex plate 11 in the first insertion part 1 abuts against the connecting plate 24 and is inserted into the second insertion groove 22, i.e. in the state shown in Figure 3 Figure 5 As shown, the first clamping ring 231 arranged at one end of the connecting rod 23 can be placed in the through hole 211 and adaptively clamped with the first clamping groove in the through hole 211, and the second clamping ring 232 arranged at the other end of the connecting rod 23 is placed outside the second protruding plate 21 and adaptively clamped with the third ring groove 1211 in the corresponding pin groove 121 in the first plug-in part 1 on one side of the other group of plate bodies 100. The first clamping ring 231, the second clamping ring 232, the first ring groove 2111, the second ring groove 2112 and the third ring groove 1211 arranged in the above structure and corresponding positions can further improve the connection effect between the first plug-in part 1 and the second plug-in part 2, facilitate the operator to judge and adjust the position of the connecting plate 24 and the connection between the first plug-in part 1 and the second plug-in part 2 during assembly, reduce the damage and unstable insertion of the first plug-in part 1 and the second plug-in part 2 caused by excessive or insufficient operation force during assembly, and improve the operation stability and efficiency during installation.
[0024] The above description in the specification is only an example of the present application. Those skilled in the art of the present application can make various modifications or supplements to the described specific embodiments or replace them with similar ways, as long as they do not deviate from the content of the specification or exceed the scope defined by the claims.
Claims
1. A fast assembly wall panel structure, characterized by: The utility model provides a plate body and its both sides respectively set up with first and second plug -in parts for assembling, first and second plug -in parts respectively include the first lug and second lug that the plate body extends on both sides and the first insertion groove and second insertion groove that the first lug and second lug form respectively, the side wall of first lug is evenly arranged with a plurality of groups of arc convex and the corresponding one side plate body in second insertion groove is evenly arranged with a plurality of groups of arc -shaped clamping groove of adaptive arc convex, the side wall of second lug is provided with a plurality of groups of connecting rods and the corresponding position of corresponding one side plate body in first insertion groove is provided with a plurality of groups of pin groove of adaptive connecting rod.
2. The quick assembly wall panel structure according to claim 1, wherein: Second plug -in part still includes the connecting plate that is arranged on the second lug in the sliding of second insertion groove, one end of connecting rod acts on the corresponding plate body of one side of connecting plate and is arranged in left and right sliding through the multiple groups of through -hole that are set up on the second lug, the outside of connecting rod is equipped with compression spring and is provided with snap ring around the corresponding rod body, the through -hole is provided with the adaptive ring groove that is used for the card of ring card around opening.
3. The quick assembly wall panel structure according to claim 2, wherein: The first lug is provided with a plurality of groups of first connecting parts and second connecting parts for mutual clamping and evenly arranged on the side wall away from the arc convex and on the connecting plate in the first insertion groove and on the side wall away from the connecting rod on the connecting plate respectively.
4. The quick assembly wall panel structure according to claim 2, wherein: The snap ring includes the first snap ring and the second snap ring respectively arranged on the corresponding position of the rod body of the connecting rod respectively, and the adaptive ring groove around opening in the through -hole on the second lug includes the first ring groove and the second ring groove for the first snap ring and the second snap ring respectively, and the third ring groove for the second snap ring is also around opening in the pin groove arranged on the corresponding position of the plate body.