Detachable wallboard component

By setting up plug-in grooves and socket structures at the adjacent ends of the wall panels, a detachable connection between the wall panels and the wall is achieved, solving the problem of low efficiency in installation and replacement of prefabricated wall panels and improving decoration efficiency and aesthetics.

CN120666887APending Publication Date: 2025-09-19重庆集凯科技服务有限公司
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Patent Information

Application Number
CN202511039427.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-25
Publication Date
2025-09-19

AI Technical Summary

Technical Problem

The installation and replacement efficiency of existing prefabricated wall panels is low, and professional workers are required to perform high-precision installation, resulting in low replacement efficiency and affecting the popularity of wall panels in the field of interior decoration.

Method used

By adopting detachable wall panel components, plug-in grooves and socket structures are set at the adjacent ends of adjacent wall panels, and the plug-in components and the socket structures are plugged into each other, a detachable connection between the wall panels and the wall is achieved, simplifying the installation and disassembly process.

Benefits of technology

It realizes convenient installation and disassembly of wall panels, reduces installation errors, improves replacement efficiency, reduces dependence on professional workers, and improves decoration efficiency and aesthetics.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a detachable wallboard component which is characterized in that inserting grooves are formed in the opposite adjacent ends of two adjacent wallboards respectively, the detachable wallboard component is arranged between the adjacent ends of the two adjacent wallboards, and the detachable wallboard component comprises a fixing mechanism connected to the outer surface of a wall body, the fixing mechanism is provided with a socket structure which is convexly arranged in the direction away from the wall body along the adjacent end of the wall plate; a supporting part is formed at one end of the plug piece, and a decorative surface is formed at the other end of the plug piece; in the state that the supporting part of the plug piece moves towards the wall body and is connected with the socket structure in an inserted mode, the socket structure can expand in the direction close to the adjacent end so as to be connected into the inserting groove in a clamped mode; when the supporting part and the socket structure are inserted and abut against each other, the decorative surfaces are connected with the outer side surfaces of the two adjacent wallboards respectively; the problems that in the existing indoor wallboard decoration field, wallboard replacement is limited by the wallboard installation sequence, the replacement efficiency is low, and installation errors are easily generated are solved.
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Description

Technical Field

[0001] The present disclosure relates to the technical field of interior decoration, and in particular to a detachable wall panel component. Background Art

[0002] In the field of interior decoration, prefabricated decoration is becoming increasingly popular among consumers due to its advantages such as convenience, speed, greenness and pollution-freeness. Wall panels, as a key product in prefabricated decoration, are also widely used.

[0003] However, the prefabricated wall panels commonly found on the market need to be connected to the wall in prefabricated decoration, but the installation of the wall panels needs to be continuous to form a complete wall surface. Therefore, the installation process of the existing wall panels on the market usually involves setting connectors at one end of the wall panel close to the wall, and installing them through common connectors such as bolts, and strictly limiting the installation order of the wall panels. For example, for the installation of a wall surface, priority is given to installing the wall panels from the end located at the inner corner of the wall, and then installing the wall panels on the wall in sequence. In this way, workers can perform operations such as tightening bolts from the side of the gap between the wall panel and the wall to achieve the installation of the wall panel, and gradually install it to the end of the wall located at the outer corner, which is convenient for workers to perform edge sealing. Operation, so the entire wall panel installation process is carried out strictly in a certain order. However, with the increase of living time, especially the wall panels located in the bathroom and other places are easily affected by moisture, discoloration and deformation, or the wall panels are easily damaged by bumps. If you consider replacing the wall panels, you need to contact the manufacturer's installation workers, and remove the wall panels step by step from the positive corner of the wall in reverse order until you remove the wall panels that need to be replaced, and then replace them accordingly and install the wall panels step by step in the forward direction. Each replacement and installation requires professional and skilled workers to install with high precision to avoid error accumulation. The efficiency is extremely low, which seriously affects the popularization and promotion of wall panels in the field of interior decoration.

[0004] It should be noted that the above technical background is merely provided to provide a clear and complete description of the technical solutions of the present invention and to facilitate understanding by those skilled in the art. Simply because these solutions are described in the technical background section of the present invention, it should not be assumed that the above technical solutions are well known to those skilled in the art. Summary of the Invention

[0005] In view of the above problems, the present disclosure provides a detachable wall panel component, which solves the problem in the existing indoor wall panel decoration field that wall panel replacement is limited by the wall panel installation sequence, resulting in low replacement efficiency and easy installation errors.

[0006] An embodiment of the present disclosure provides a detachable wall panel component, wherein adjacent ends of two adjacent wall panels facing each other are respectively formed with plug-in grooves, and the detachable wall panel component is arranged between the adjacent ends of the two adjacent wall panels, and the detachable wall panel component includes: a fixing mechanism, which is connected to the outer surface of the wall, and the fixing mechanism has a socket structure protruding along the adjacent end of the wall panel in a direction away from the wall; a plug piece, one end of the plug piece forms a support portion, and the other end forms a decorative surface; wherein, when the support portion of the plug piece moves toward the wall and is plugged into the socket structure, the socket structure can be expanded in a direction close to the adjacent end to be clamped in the plug-in groove; when the support portion and the socket structure are plugged into each other, the decorative surfaces are respectively connected to the outer side surfaces of the two adjacent wall panels.

[0007] In some exemplary embodiments, the socket structure includes two relatively arranged clips, and the two clips are respectively arranged near the adjacent ends of two adjacent wall panels, and the clips extend along the adjacent ends of the wall panels in a direction away from the wall. The two clips are connected at one end close to the wall to form a slot for socketing the support part; wherein, when the support part moves toward the wall and is inserted into the slot, the support part can push the two clips to swing toward the adjacent ends of the two adjacent wall panels and be clamped in the plug-in grooves of the two adjacent wall panels.

[0008] In some exemplary embodiments, a guide portion is connected to each end of the two clamping parts facing each other and away from the wall, and the opposite surfaces of the two guide portions are guide surfaces. The distance between the two guide surfaces gradually increases from the notch of the slot toward the direction away from the wall.

[0009] In some exemplary embodiments, the guide portion is formed by a side wall of the clamping member extending in a direction away from the wall.

[0010] In some exemplary embodiments, the two clamping members are arranged to be inclined in opposite directions, and the width of the slots formed at the ends of the two clamping members away from the wall is smaller than the distance between the ends of the two clamping members close to the wall.

[0011] In some exemplary embodiments, a clamping portion is provided on each end of the two clamping members facing away from the wall and facing away from each other, wherein the clamping portion protrudes from the clamping member toward the adjacent adjacent end, and the clamping portion is used to be clamped in the plug-in slot.

[0012] In some exemplary embodiments, the surface of the clamping portion facing the adjacent adjacent end is a guiding surface, and the distance between the guiding surfaces of the two clamping portions gradually decreases from the end close to the wall toward the direction away from the wall.

[0013] In some exemplary embodiments, the width of the clamping portion in a direction perpendicular to the wall surface is the same as the width of the plug-in slot in a direction perpendicular to the wall surface.

[0014] In some exemplary embodiments, a chamfer is provided at a connection between the clamping portion and the clamping member on a side of the clamping member facing the adjacent abutting end.

[0015] In some exemplary embodiments, the fixing mechanism further includes: a fixing structure, which is connected to one end of the socket structure close to the wall, and the fixing structure extends along the outer surface of the wall to support two adjacent wall panels. A connecting position is provided on the fixing structure, and the fixing structure is connected to the wall through the connecting position. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] The above contents and other objects, features and advantages of the present disclosure will become more apparent through the following description of the embodiments of the present disclosure with reference to the accompanying drawings, in which:

[0017] Figure 1 Schematically shows a top view of a removable wall panel component before installation according to an embodiment of the present disclosure;

[0018] Figure 2 Schematically shows a top view of a removable wall panel component after installation according to an embodiment of the present disclosure;

[0019] Figure 3 Schematically shows a structural diagram of a plug member of a detachable wall panel component according to an embodiment of the present disclosure;

[0020] Figure 4 A structural diagram schematically illustrates a fixing mechanism for a detachable wall panel component according to an embodiment of the present disclosure;

[0021] Figure 5 The figure schematically shows the structure of the plug component and the fixing mechanism of the detachable wall panel component after being connected according to the embodiment of the present disclosure.

[0022] Figure Numbers

[0023] 100, fixing mechanism; 110, socket structure; 111, clamping member; 112, slot; 113, guide portion; 1131, guide surface; 114, clamping portion; 1141, guiding surface; 120, fixing structure; 121, connection position;

[0024] 200, plug member; 210, support portion; 220, decorative surface;

[0025] 300, wall panel; 310, plug-in slot; 320, adjacent end. DETAILED DESCRIPTION

[0026] In order to enable those skilled in the art to better understand the technical solutions of the present disclosure, the technical solutions in the embodiments of the present disclosure will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present disclosure. Obviously, the described embodiments are only part of the embodiments of the present disclosure, not all of the embodiments. Based on the embodiments of the present disclosure, all other embodiments obtained by ordinary technicians in this field without making any creative efforts should fall within the scope of protection of the present disclosure.

[0027] The terms used herein are only for describing specific embodiments and are not intended to limit the present disclosure. The terms "comprise," "include," etc. used herein indicate the presence of the features, steps, operations, and / or components, but do not exclude the presence or addition of one or more other features, steps, operations, or components.

[0028] All terms used herein (including technical and scientific terms) have the meanings commonly understood by those skilled in the art unless otherwise defined. It should be noted that the terms used herein should be interpreted as having a meaning consistent with the context of this specification and should not be interpreted in an idealized or overly rigid manner.

[0029] When expressions such as “at least one of A, B, and C, etc.” are used, they should generally be interpreted in accordance with the meaning commonly understood by those skilled in the art. For example, “a system having at least one of A, B, and C” should include but is not limited to systems having A alone, B alone, C alone, A and B, A and C, B and C, and / or A, B, and C, etc. When expressions such as “at least one of A, B, or C, etc.” are used, they should generally be interpreted in accordance with the meaning commonly understood by those skilled in the art. For example, “a system having at least one of A, B, or C” should include but is not limited to systems having A alone, B alone, C alone, A and B, A and C, B and C, and / or A, B, and C, etc.

[0030] As one aspect of the embodiments of the present disclosure, Figures 1 to 5As shown, a detachable wall panel component is provided, wherein the adjacent ends 320 of two adjacent wall panels 300 facing each other are respectively formed with plug-in grooves 310, and the detachable wall panel component is arranged between the adjacent ends 320 of the two adjacent wall panels 300. The detachable wall panel component includes: a fixing mechanism 100, which is connected to the outer surface of the wall, and the fixing mechanism 100 has a socket structure 110 protruding from the adjacent ends 320 of the wall panels 300 in a direction away from the wall; a plug member 200, one side of which is provided with a plug member 200. A support portion 210 is formed at one end, and a decorative surface 220 is formed at the other end; wherein, when the support portion 210 of the plug member 200 moves toward the wall and is plugged into the socket structure 110, the socket structure 110 can be expanded in the direction close to the adjacent end 320 to be snapped into the plug groove 310; when the support portion 210 and the socket structure 110 are plugged into each other, the decorative surface 220 is respectively connected to the outer side surfaces of two adjacent wall panels 300.

[0031] Specifically, in the detachable wall panel component of the embodiment of the present disclosure, the detachable connection relationship between the wall panel 300 and the wall can be achieved by the mutual plug-in cooperation of the socket structure 110 and the plug member 200. When the wall panel 300 and the wall need to be fixedly connected, the plug member 200 is directly inserted into the socket structure 110, and the larger diameter part of the front end of the plug member 200 is used to squeeze the socket structure 110 so that the socket structure 110 can radially expand in the direction close to the adjacent end 320, and finally the socket structure 110 is clamped in the socket slot 112. When the plug member 200 is continuously inserted into the socket structure 110, the socket structure 110 can fix the wall panel 300 on the wall to prevent the wall panel 300 from falling off unexpectedly. The decorative surface 220 of the plug member 200 is also connected to the outer side surfaces of the two adjacent wall panels 300, realizing a smooth transition of the surface of the wall panel 300, making it difficult to detect the gap between the two wall panels 300 in appearance, making the installation effect more beautiful. Furthermore, when removing the wall panel 300, by pulling the plug member 200 out of the socket structure 110, the socket structure 110 can shrink its radius away from the adjacent end 320 when it is not squeezed by the plug member 200, so that the socket structure 110 is out of contact with the adjacent end 320 of the wall panel 300, realizing the disconnection between the fixing mechanism 100 and the wall panel 300. At this time, the wall panel 300 can be easily removed from the fixing mechanism 100 of the wall.

[0032] In some embodiments, the socket structure 110 can be a variable diameter sleeve structure. When the socket structure 110 is squeezed by the plug component 200, it can undergo its own radial diameter change, so that the radial outer side of the socket structure 110 is clamped in the connecting slot 112 after the diameter change. In other embodiments, the socket structure 110 can also be set as two relatively arranged clamping parts 111, wherein the two relatively arranged clamping parts 111 can respectively generate a swinging tendency away from the adjacent clamping parts 111 when squeezed by the plug component 200, and the outer side of the clamping part 111 can be clamped in the connecting slot 112 to realize the connection relationship between the fixing mechanism 100 and the wall.

[0033] like Figure 1 、 Figure 2 、 Figure 4 and Figure 5As shown, in some exemplary embodiments, the socket structure 110 includes two oppositely arranged clips 111, and the two clips 111 are respectively arranged near the adjacent ends 320 of two adjacent wall panels 300, and the clips 111 extend along the adjacent ends 320 of the wall panels 300 in a direction away from the wall. The two clips 111 are connected at one end close to the wall to form a slot 112 for socketing the support part 210; wherein, when the support part 210 moves toward the wall and is inserted into the slot 112, the support part 210 can push the two clips 111 to swing toward the adjacent ends 320 of the two adjacent wall panels 300 and be clamped in the plug-in groove 310 of the two adjacent wall panels 300. Specifically in this embodiment, the two clamping parts 111 actually constitute a pair of clamping arms with elastic reset characteristics, and the two clamping parts 111 are connected to each other near the root area of ​​the wall or formed on a common base, thereby defining the slot 112 between the two; when the support part 210 of the plug member 200 is inserted into the slot 112 in a direction perpendicular to the wall surface and continues to move toward the wall, the support part 210 will contact the inner wall of the slot 112 and apply a force. Since the size of the support part 210 is designed to be larger than the notch size of the slot 112 in its natural state, the support part 210 will contact the inner wall of the slot 112 and apply a force. The wedging effect of the support portion 210 forces the pair of clips 111 to overcome their own elastic resistance and produce a significant swinging displacement in the direction away from each other, that is, toward the adjacent ends 320 of their respective adjacent wall panels 300; during this swinging process, a specific locking structure (such as a flange, a hook or a thickened edge) provided on the outside of the clip 111 (that is, the side away from the slot 112) will swing outward synchronously with the clip 111, and finally accurately embed into the pre-set insertion groove 310 of the adjacent end 320 of the corresponding wall panel 300, thereby firmly locking the wall panel 300 on the fixing mechanism 100. In these embodiments, the top area of ​​the clip 111 can be designed to have a specific guiding profile. For example, the shape of the two clips 111 themselves can be a straight arm, a curved arm with a certain curvature, or have a variable thickness in the length direction to optimize the elastic performance and strength; the connection method of the two clips 111 can be directly integrally formed on the base, or can be movably connected through detachable hinges, elastic hinges and other connectors; the core of the swinging action is that the root of the clip 111 acts as a fulcrum similar to a "hinge", and its free end deflects outward under the drive of the support part 210, thereby achieving effective radial expansion and reliable clip locking.

[0034] like Figure 4 and Figure 5As shown, in some exemplary embodiments, the ends of the two clamping parts 111 facing each other and away from the wall are respectively connected to a guide portion 113, and the opposite surfaces of the two guide portions 113 are guide surfaces 1131. The distance between the two guide surfaces 1131 gradually increases from the notch of the slot 112 toward the direction away from the wall. Specifically in this embodiment, the guide portion 113 is integrated in the top area of ​​the end of the clip 111 away from the wall, and its two guide surfaces 1131 together constitute a trumpet-shaped guide channel with a wide entrance and a narrow interior; when the operator aligns the support portion 210 of the plug component 200 with the slot 112 to prepare for insertion, the front end of the support portion 210 will first contact and fall on the gradually expanding guide surface 1131; as the plug component 200 continues to advance in the direction close to the wall, since the guide surface 1131 tends to gradually shrink the groove, the support portion 210 can be automatically corrected and centered under the constraint and guidance of the guide surface 1131, and smoothly slides into the channel with a gradually shrinking width defined by the two guide surfaces 1131, and finally accurately guides it into the narrower entrance of the slot 112 below, effectively avoiding the problem of the plug component 200 getting stuck or damaging the clip 111 due to alignment deviation during the insertion process. In these embodiments, the specific form of the guide surface 1131 can have multiple implementation methods, for example, it can be a straight inclined surface, or it can be an arc surface with a specific curvature, and the common feature is that a guiding opening is formed; the guide portion 113 can be an integrated structure formed by directly extending or folding the main material of the clip 111 outward, or it can be a guide block or guide wheel independently attached to the top of the clip 111; the increasing distance design of the guide surface 1131 can have a constant slope, or it can be a nonlinear change to adapt to different insertion force requirements, so as to provide different capture ranges, and further improve the convenience and fault tolerance of the plug-in operation.

[0035] like Figure 4 and Figure 5 As shown, in some exemplary embodiments, the guide portion 113 is formed by extending the side wall of the clip 111 away from the wall. Specifically, in this embodiment, the guide portion 113 is not an independent additional component, but rather a structure formed by the material itself extending away from the wall at the top area of ​​the clip 111 at the end away from the wall. In these embodiments, this design of the guide portion 113 being formed integrally by the extension of the side wall of the clip 111 has significant structural advantages. It eliminates the connection interface between the guide portion 113 and the main body of the clip 111, thereby avoiding the risk of failure due to loose connection, breakage, or dust accumulation in the gap, greatly improving the reliability, durability, and sealing of the overall structure. In addition, because the guide portion 113 and the main body of the clip 111 form a smooth transition between the material continuum, its mechanical properties are more uniform in the transition area, and stress concentration is effectively alleviated, which is conducive to withstanding repeated insertion and removal loads, ensuring the long-term stability and effectiveness of the guiding function.

[0036] like Figure 1 、 Figure 2 、 Figure 4 and Figure 5 As shown, in some exemplary embodiments, the two clips 111 are tilted in opposite directions, and the slot width of the slot 112 formed at the end of the two clips 111 away from the wall is smaller than the distance between the ends of the two clips 111 close to the wall. Specifically in this embodiment, the configuration of the two clips 111 tilting towards each other makes the top free ends of the clips 111 away from the wall closer to each other in a natural state, thereby forming a convergent slot 112 entrance that is wide at the top and narrow at the bottom between the two clips 111. This preset inward angle provides the clips 111 with an initial elastic preload. When the support portion 210 of the plug 200 is inserted into the slot 112, the support portion 210 first contacts the narrow slot. Since the radial dimension of the support portion 210 is generally larger than the slot width, the support portion 210 must overcome the elastic resistance of the clips 111. Only then can it penetrate into the slot 112; on the one hand, this resistance ensures the self-locking effect of the plug component 200 during the insertion process to prevent accidental loosening, and on the other hand, it forces the clamping component 111 to undergo significant elastic deformation from the free state, which provides sufficient and controllable travel space for the subsequent clamping portion 114 of the clamping component 111 to expand outward and accurately snap into the plug slot 310 of the wall panel 300; at the same time, this inclined setting makes it easier for the swing direction of the clamping component 111 when squeezed by the support portion 210 to guide the expected expansion path on both sides perpendicular to the insertion direction, thereby optimizing the stability and reliability of the clamping action.

[0037] like Figure 1 、 Figure 2 、 Figure 4 and Figure 5As shown, in some exemplary embodiments, the two clamping members 111 are each provided with a clamping portion 114 at one end away from the wall and facing away from each other, wherein the clamping portion 114 protrudes from the clamping member 111 toward the adjacent adjacent end 320, and the clamping portion 114 is used to be clamped in the plug-in slot 310. Specifically in this embodiment, the clamping portion 114 is essentially a structure protruding outward from the main body of the clamping member 111, and its protruding direction clearly points to the adjacent adjacent end 320 of the wall panel 300, forming a physical interference point for cooperating with the plug-in slot 310 of the wall panel 300; the clamping portion 114 can be presented as a block-shaped protrusion directly protruding from the outer surface of the side wall of the clamping member 111, or a hook-shaped, step-shaped or lip-shaped structure extending outward from the edge of the clamping member 111. Its key feature is that it has a supporting surface facing the wall and an exposed surface opposite thereto; when the clamping member 111 is driven by the support portion 210 to swing outward into place, the protruding clamping portion 114 is just embedded in the plug-in slot 310 corresponding to the adjacent end 320 of the wall panel 300, and the supporting surface of the clamping portion 114 abuts against the corresponding groove wall in the plug-in slot 310, forming a mechanical lock to prevent the wall panel 300 from moving in a direction perpendicular to the wall surface. In these embodiments, the specific three-dimensional form of the clamping portion 114 can have multiple options. For example, the cross-sectional shape of its protruding portion can be rectangular, trapezoidal, arc-shaped, or other regular or irregular shapes that are convenient for clamping. The clamping portion 114 can cover the entire top area of ​​the clamping component 111 away from the wall end, or one or more discrete protrusions can be set only at key positions of the clamping component 111 away from the wall end. Its exposed surface can be designed as a plane, an inclined surface, or a curved surface to adapt to different installation and disassembly requirements.

[0038] like Figure 1 、 Figure 2 、 Figure 4 and Figure 5As shown, in some exemplary embodiments, the surface of the clamping portion 114 facing the adjacent adjacent end 320 is a guiding surface 1141, and the distance between the guiding surfaces 1141 of the two clamping portions 114 gradually decreases from the end close to the wall toward the direction away from the wall. Specifically in this embodiment, the guide surface 1141 is designed to be a part of the exposed surface of the clamping portion 114, and has a specific inclined or curved surface shape, so that the guide surfaces 1141 of the two clamping portions 114 together form a guide space on the outer side of the socket structure 110; during the installation of the wall panel 300, when the wall panel 300 moves in a direction perpendicular to the wall toward the wall, the edge of the adjacent end 320 of the wall panel 300 (that is, the edge of the wall panel 300 on the side close to the wall) will first contact the clamping portion 114 and slide along the guide surface 1141 of the clamping portion 114. Since the guide surface 1141 is inclined and contracted from the end close to the wall toward the end away from the wall toward the inner side of the socket structure 110, the wall panel 300 moves toward the wall. When moving, under the guidance of the guide surface 1141, it will be forced to produce a small horizontal displacement in the direction away from the adjacent wall panel 300, that is, the wall panel 300 is "stretched" a little, so that the wall panel 300 can be accurately positioned and installed. Furthermore, when the wall panel 300 continues to move toward the wall, the groove edge of the plug-in slot 310 of the wall panel 300 close to the wall will contact and slide along the guide surface 1141 of the clamping part 114, further guiding the wall panel 300 to move to the installation position, avoiding the risk of installation difficulties or damage caused by the clamping part 114 hooking the edge of the plug-in slot 310 or the edge of the wall panel 300 during installation, avoiding hard collision and jamming of the clamping part 114 and the wall panel 300, and achieving smooth introduction and positioning. In these embodiments, the specific form of the guiding surface 1141 can be a continuous smooth inclined surface, or a composite guiding surface composed of multiple small flat surfaces or curved surfaces; its gradually decreasing distance change can be uniformly linear or nonlinear to optimize the guiding force at a specific stage; in a more optimized embodiment, the guiding surface 1141 can be integrally formed with the guide portion 113 at the end of the clamping portion 114 away from the wall to form a coherent guiding structure.

[0039] like Figure 1 、 Figure 2 、 Figure 4 and Figure 5As shown, in some exemplary embodiments, the width of the clamping portion 114 in the direction perpendicular to the wall surface is the same as the width of the insertion groove 310 in the direction perpendicular to the wall surface. Specifically in this embodiment, the extended height of the clamping portion 114 in the thickness direction of the wall panel 300 is designed to be equal to the depth of the insertion groove 310 of the adjacent end 320 of the wall panel 300 in this direction. When the clamping portion 114 is fully inserted into the insertion groove 310, the surface of the clamping portion 114 in the thickness direction of the wall panel 300 can be tightly fitted with the corresponding groove wall in the insertion groove 310, thereby minimizing the matching clearance between the clamping portion 114 and the insertion groove 310 in the thickness direction of the wall panel 300, and effectively limiting the wall panel 300 in the direction perpendicular to the wall surface (i.e., the wall panel 300). 0 thickness direction), thereby ensuring that the wall panel 300 will not move due to external force or its own weight; since the gap perpendicular to the wall surface is eliminated, when two adjacent wall panels 300 are precisely fixed at the same height perpendicular to the wall surface by the clamping portion 114, the outer surfaces (decorative surfaces 220) of the two wall panels 300 can be perfectly maintained at the same horizontal plane, completely avoiding the misalignment, gaps or unevenness caused by height difference, ensuring the flatness and aesthetics of the overall wall installation effect, and achieving a seamless visual effect.

[0040] like Figure 1 、 Figure 2 、 Figure 4 and Figure 5As shown, in some exemplary embodiments, the connection between the clamping portion 114 and the clamping member 111 is provided with a chamfer at the side of the clamping member 111 facing the adjacent adjacent end 320. Specifically in this embodiment, the chamfer refers to the formation of an arc-shaped smooth curved surface in the transition area between the clamping portion 114 and the side wall of the clamping member 111 to which it is connected. It eliminates the sharp corners or right-angled edges that may have existed originally, and optimizes the stress distribution state of the connection area. When the clamping member 111 swings outward under the insertion drive of the support portion 210, and the clamping portion 114 is finally inserted into the wall panel 300 insertion groove 310 and bears the load of the wall panel 300, the force applied to the clamping portion 114 will be transmitted to the clamping member 111 through the connection; if there is a sharp corner there, the stress will be highly concentrated at the corner apex, which is very likely to cause micro cracks. The initiation and expansion may eventually cause fatigue fracture or plastic deformation failure of the clip 111 in the weak area; the introduction of the chamfered corners significantly increases the effective load-bearing cross-sectional area of ​​the connection, so that the stress can be smoothly and evenly dispersed and transmitted on a wider arc surface, avoiding the occurrence of stress peaks; this not only greatly improves the structural strength and fatigue resistance of the connection between the clip 114 and the clip 111, extends the service life of the component, and ensures the connection reliability in long-term use, but also the smooth rounded surface also helps the wall panel 300 to slide more smoothly through the area during installation and disassembly, reduces friction resistance, and improves the operating experience.

[0041] like Figure 1 、 Figure 2 、 Figure 4 and Figure 5As shown, in some exemplary embodiments, the fixing mechanism 100 further includes: a fixing structure 120, the fixing structure 120 being connected to one end of the socket structure 110 close to the wall, the fixing structure 120 extending along the outer surface of the wall to support two adjacent wall panels 300, the fixing structure 120 being provided with a connection position 21, and the fixing structure 120 being connected to the wall via the connection position 21. Specifically in this embodiment, the fixing structure 120 constitutes the bearing base of the entire fixing mechanism 100, and the fixing structure 120 is connected to the root area of ​​the socket structure 110 close to one end of the wall; in some embodiments, one side surface of the fixing structure 120 can stably support the side surfaces of the two adjacent wall panels 300 located on both sides thereof close to the wall side; in other embodiments, the surface of the fixing structure 120 close to the wall side can be designed with a supporting edge extending in the direction close to the wall, and the supporting edge can cooperate with the wall surface to support the wall panels 300; in some embodiments, the fixing structure 120 is provided with a specific recessed area. The recessed area constitutes the connection position 21; the head of the connector can be sunken into the recessed area, so that the fixed structure 120 is firmly fixed to the supporting foundation of the wall surface (such as a leveling keel or directly fixed to the wall) through the connector; the design of the recessed area ensures that the head of the connector does not protrude from the upper surface of the fixed structure 120, thereby avoiding interference with the wall panel 300 and ensuring that the wall panel 300 can be placed flatly on the fixed structure 120; the bottom of the fixed structure 120 is usually directly attached to the surface of the wall or the leveling keel, providing a solid and flat installation foundation for the entire detachable wall panel component.

[0042] Those skilled in the art will appreciate that the features described in the various embodiments of the present disclosure may be combined and / or coupled in various ways, even if such combinations or couplings are not explicitly described in the present disclosure. In particular, the features described in the various embodiments of the present disclosure may be combined and / or coupled in various ways without departing from the spirit and teachings of the present disclosure. All such combinations and / or couplings fall within the scope of the present disclosure.

[0043] The above describes the embodiments of the present disclosure. However, these embodiments are for illustrative purposes only and are not intended to limit the scope of the present disclosure. Although each embodiment has been described separately above, this does not mean that the measures in each embodiment cannot be advantageously used in combination. Without departing from the scope of the present disclosure, those skilled in the art may make various substitutions and modifications, which should all fall within the scope of the present disclosure.

Claims

1. A detachable wall panel component, characterized in that: The adjacent ends of two adjacent wall panels facing each other are respectively formed with plug-in grooves, and the removable wall panel component is arranged between the adjacent ends of the two adjacent wall panels, and the removable wall panel component includes: A fixing mechanism connected to the outer surface of the wall, the fixing mechanism having a socket structure protruding along the adjacent end of the wall panel away from the wall; A plug component, wherein a support portion is formed at one end of the plug component and a decorative surface is formed at the other end; wherein, when the support portion of the plug component moves toward the wall and is plugged into the socket structure, the socket structure can be expanded in a direction close to the adjacent end to be snapped into the plug-in groove; when the support portion and the socket structure are plugged into each other, the decorative surfaces are respectively connected to the outer side surfaces of two adjacent wall panels.

2. The detachable wall panel component according to claim 1, characterized in that: The socket structure includes two oppositely arranged clamping members, the two clamping members are respectively arranged near the adjacent ends of two adjacent wall panels, the clamping members extend along the adjacent ends of the wall panels in a direction away from the wall, and the ends of the two clamping members close to the wall are connected to form a slot for socketing the support portion; When the support portion moves toward the wall and is inserted into the slot, the support portion can push the two clamping members to swing toward the adjacent ends of two adjacent wall panels and clamp into the insertion slots of the two adjacent wall panels.

3. The detachable wall panel component according to claim 2, characterized in that: The ends of the two clamping parts facing each other and away from the wall are respectively connected with a guide part, and the opposite surfaces of the two guide parts are guide surfaces. The distance between the two guide surfaces increases gradually from the notch of the slot toward the direction away from the wall.

4. The detachable wall panel component according to claim 3, characterized in that: The guide portion is formed by extending the side wall of the clamping component in a direction away from the wall.

5. The detachable wall panel component according to claim 3, characterized in that: The two clamping members are respectively arranged to be inclined in opposite directions, and the width of the slots formed at one end of the two clamping members away from the wall is smaller than the distance between the two ends of the two clamping members close to the wall.

6. The detachable wall panel component according to claim 3 or 4, characterized in that: The two clamping members are each provided with a clamping portion at one end away from the wall and facing away from each other, wherein the clamping portion protrudes from the clamping member toward the adjacent adjacent end, and is used to be clamped in the plug-in slot.

7. The detachable wall panel component according to claim 6, characterized in that: The surface of the clamping portion facing the adjacent adjacent end is a guiding surface, and the distance between the guiding surfaces of the two clamping portions gradually decreases from the end close to the wall toward the direction away from the wall.

8. The detachable wall panel component according to claim 6, characterized in that: The width of the clamping portion in a direction perpendicular to the wall surface is the same as the width of the inserting slot in a direction perpendicular to the wall surface.

9. The detachable wall panel component according to claim 6, characterized in that: A chamfered corner is provided at a connection between the clamping portion and the clamping piece on a side of the clamping piece facing the adjacent adjacent end.

10. The detachable wall panel component according to claim 6, characterized in that: The fixing mechanism further comprises: A fixing structure is connected to one end of the socket structure close to the wall, and the fixing structure extends along the outer surface of the wall to support two adjacent wall panels. A connecting position is provided on the fixing structure, and the fixing structure is connected to the wall through the connecting position.