An insertable wall-mounted component
By designing stable female ports and plugs, the problems of wall panel installation error accumulation and plug-in position adjustment in the prior art are solved, and convenient and efficient wall panel installation and stable connection are achieved, and the installation requirements of non-standard boards and corners are adapted to the installation requirements of non-standard boards and corners.
Patent Information
- Application Number
- CN202210721412.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-06-24
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2042-06-24
AI Technical Summary
The existing wall panel installation method is single, resulting in accumulated installation errors, the inability to flexibly adjust the plug position, it is difficult to remove a single wall panel for maintenance, and the gap cannot be adjusted using a unified mounting piece, which cannot meet the installation requirements of non-standard boards and corners.
Design a stable female port and plug-in, including a board connection layer and a wall connection layer, plug-in is achieved through plug-in slots and plug-in components, and the movement of plug-in components is restricted by clamping projections and limiting surfaces, and fixed connections are made with threaded holes and self-tapping screws.
It realizes convenient and efficient wall panel installation, and can adjust the plug position as needed, enhance the plug stability, simplify the installation process, and adapt to the installation needs of non-standard boards and corners.
Smart Images

Figure CN114961161B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of wall mounting members, and particularly to an insertable wall mounting member. Background Art
[0002] A wall mounting member is a component that strengthens the stability of other structures by connecting to a reliable fixed end and is capable of transmitting tensile and compressive forces. The wall attachment achieved by using wall mounting members plays an important role in enhancing the overall stability of a scaffold, improving its stable load-bearing capacity, and preventing major accidents such as tipping or collapse.
[0003] Based on the existing wall panel installation methods in the market, products with different gradients, different appearance shapes, different structures, and their installation methods are provided; during the assembly process of prefabricated walls, due to the single existing wall panel installation method, the wall panels are assembled in different ways.
[0004] The traditional market assembly method cannot install a single panel. A specific installation sequence is required, resulting in the accumulation of errors in the last installed panel, leading to installation deviations. Moreover, the traditional market assembly method cannot demolish and repair a single wall panel. If a single wall panel is damaged, multiple wall panels need to be demolished for repair; for different panel installation gaps, different installation parts or connecting lines with different gaps are required, and it is impossible to use a single installation part and adjust the installation gap as needed. The products on the market have high installation requirements for non-standard panels and panels at internal corners, and require line closing, making it impossible to achieve convenient installation and a simple appearance.
[0005] Chinese Patent No. CN discloses an insertable wall decoration structure, including a decoration board assembly, a plug-in assembly, and a support assembly. The plug-in assembly is fixed on the decoration board assembly, the support assembly is fixed on the wall, and there is a mutually adapted plug-in structure between the plug-in assembly and the support assembly. The decoration board assembly is installed on the support assembly through the plug-in assembly, where: the plug-in assembly includes a transfer board, which extends horizontally. One side of it has a connecting edge, and the connecting edge deflects upward and is perpendicular to the transfer board. The connecting edge adheres to the inner side of the decoration board assembly, and a set of connecting holes are provided in the connecting edge. Connecting screws are provided in the connecting holes, and the connecting screws pass through the connecting holes and extend into the decoration board assembly.
[0006] The above disclosed structure is relatively complex and it is difficult to adjust the plug-in position, and the plug-in position cannot be adjusted according to actual needs. Summary of the Invention
[0007] The present invention aims to overcome the above-mentioned defects in the prior art and provides an insertable wall mounting member with stable plugging, simple structure, and adjustable spacing.
[0008] To achieve the above-mentioned invention object, the present invention adopts the following technical solutions: An insertable wall-mounted component, comprising a female component and a plug-in component connected to each other; the female component includes a board surface connection layer and a closing component arranged on the board surface connection layer, and an insertion slot is formed inside the closing component, and the insertion slot is composed of a first insertion hole and a second insertion hole that are communicated with each other; the plug-in component includes a wall surface connection layer and a plug-in component arranged on the wall surface connection layer, and a first insertion layer and a second insertion layer are formed on the plug-in component; a stable opening corresponding to the second insertion layer is formed at the opening of the insertion slot, the first insertion layer corresponds to the first insertion hole or the second insertion hole, and the second insertion layer corresponds to the second insertion hole or the stable opening.
[0009] As a preferred solution of the present invention, the closing component includes closing plates arranged oppositely, and the insertion slot is formed between the oppositely arranged closing plates.
[0010] As a preferred solution of the present invention, a first clamping protrusion and a second clamping protrusion are formed on the inner sides of the oppositely arranged closing plates, the first clamping protrusion is located in the middle of the closing plate, and the second clamping protrusion is located at the end of the closing plate.
[0011] As a preferred solution of the present invention, a first insertion layer is formed between the two first clamping protrusions on the oppositely arranged closing plates and the board surface connection layer, and a second insertion layer is formed between the two second clamping protrusions on the oppositely arranged closing plates.
[0012] As a preferred solution of the present invention, a placement surface is formed on the inner sides of the first clamping protrusion and the second clamping protrusion, and a limiting surface is formed on the outer sides of the first clamping protrusion and the second clamping protrusion. The placement surface is arranged parallel to the board surface connection layer, and the limiting surface is arranged obliquely to the placement surface.
[0013] As a preferred solution of the present invention, a stable opening is formed between the two limiting surfaces on the oppositely arranged second clamping protrusions.
[0014] As a preferred solution of the present invention, the plug-in component includes a support main body, the first insertion layer is located at the end of the support main body, and the second insertion layer is located in the middle of the support main body.
[0015] As a preferred solution of the present invention, a mating surface that abuts against the first clamping protrusion or the second clamping protrusion is formed at the bottoms of both sides of the first insertion layer and the second insertion layer, inclined surfaces are formed on both sides of the first insertion layer and the second insertion layer, and a horizontal surface that abuts against the board surface connection layer is formed at the end of the first insertion layer.
[0016] As a preferred solution of the present invention, the closing component is arranged in the middle of the board surface connection layer, threaded holes are formed on the board surface connection layer on both sides of the closing component, the plug-in component is arranged in the middle of the wall surface connection layer, and threaded holes are also formed on the wall surface connection layer on both sides of the plug-in component.
[0017] As a preferred embodiment of the present invention, the closing component is integrally formed with the board surface connection layer, and the plug-in component is also integrally formed with the wall surface connection layer.
[0018] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0019] 1. By designing the female socket part and the plug part in a plug-in form, and connecting the female socket part and the plug part to the board body and the wall body respectively, the installation method of the wall panel can be realized through plugging, and the installation method is convenient and efficient;
[0020] 2. By plugging the plug part into different depth positions of the female socket part, the gap between the board body and the wall body can be adjusted, so that the plugging position of the plug part can be selected according to actual needs;
[0021] 3. By designing the plug-in component in a tree structure and the corresponding closing component, when the female socket part and the plug part are plugged, there is a large contact area between the plug-in component and the closing component, and the two sides and the end of the plug part are abutted, so that the plugging of the female socket part and the plug part has better stability. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 is a schematic structural diagram of the female socket part;
[0023] Figure 2 is a schematic structural diagram of the plug part;
[0024] Figure 3 is a connection schematic diagram of Embodiment 1;
[0025] Figure 4 is a connection schematic diagram of Embodiment 2;
[0026] Figure 5 is a connection schematic diagram of the wall surface and the board body;
[0027] Figure 6 is a connection schematic diagram of the wall surface and the board body;
[0028] Reference numerals: female socket part 1, plug part 2, board surface connection layer 3, closing component 4, closing board 4-1, first clamping protrusion 4-2, second clamping protrusion 4-3, first plugging hole 4-4, second plugging hole 4-5, stable opening 4-6, placing surface 4-7, limiting surface 4-8, board body 5, wall body 6, self-tapping screw 7, wall surface connection layer 8, plug-in component 9, supporting main body 9-1, first plugging layer 9-2, second plugging layer 9-3, mating surface 9-4, inclined surface 9-5, horizontal surface 9-6. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0029] The embodiments of the present invention will be described in detail below with reference to the drawings.
[0030] As Figures 1-6 shown, a plug-in wall-mounted component includes a female connector 1 and a plug connector 2 connected to each other; the female connector 1 includes a board surface connection layer 3 and a closing component 4 provided on the board surface connection layer 3, and a plug-in slot is formed in the closing component 4, and the plug-in slot is composed of a first plug-in hole 4-4 and a second plug-in hole 4-5 that are communicated with each other; the plug connector 2 includes a wall surface connection layer 8 and a plug-in component 9 provided on the wall surface connection layer 8, and a first plug-in layer 9-2 and a second plug-in layer 9-3 are formed on the plug-in component 9; a stable opening 4-6 corresponding to the second plug-in layer 9-3 is formed at the opening of the plug-in slot, the first plug-in layer 9-2 corresponds to the first plug-in hole 4-4 or the second plug-in hole 4-5, and the second plug-in layer 9-3 corresponds to the second plug-in hole 4-5 or the stable opening 4-6.
[0031] The board surface connection layer 3 is connected to the corresponding board body 5, and the surface of the board surface connection layer 3 is attached to the surface of the board body 5, so that there is better stability and a larger contact area between the board surface connection layer 3 and the board body 5. The closing component 4 is located on the board surface connection layer 3. Similarly, the wall surface connection layer 8 is connected to the corresponding wall body 6, and the surface of the wall surface connection layer 8 is attached to the surface of the wall body 6, so that there is better stability and a larger contact area between the wall surface connection layer 8 and the wall body 6. The plug-in component 9 is located on the wall surface connection layer 8, and the plug-in component 9 is connected to the closing component 4 by plugging.
[0032] The closing component 4 is vertically provided on the board surface connection layer 3. Similarly, the plug-in component 9 is also vertically provided on the wall surface connection layer 8. When the closing component 4 and the plug-in component 9 are plugged, the plug-in component 9 is entirely wrapped in the closing component 4, the plug-in component 9 and the closing component 4 are arranged in parallel, the board surface connection layer 3 and the wall surface connection layer 8 are arranged in parallel, and the plug-in component 9 can be plugged into the first plug-in hole 4-4 or the second plug-in hole 4-5, so as to realize the adjustment of the gap between the board surface connection layer 3 and the wall surface connection layer 8, and the end surface of the first plug-in hole 4-4 or the second plug-in hole 4-5 abuts against the plug-in component 9, restricting the plug-in component 9 and the closing component 4 from moving along the length direction of the plug-in component 9 after plugging.
[0033] The closing component 4 includes oppositely arranged closing plates 4-1, and a plug-in slot is formed between the oppositely arranged closing plates 4-1. The size of the plug-in slot is designed according to the size of the plug-in component 9. First clamping protrusions 4-2 and second clamping protrusions 4-3 are formed on the inner sides of the oppositely arranged closing plates 4-1. The first clamping protrusion 4-2 is located in the middle of the closing plate 4-1, and the second clamping protrusion 4-3 is located at the end of the closing plate 4-1.
[0034] A first insertion layer 9-2 is formed between two first clamping protrusions 4-2 on the oppositely arranged closing plates 4-1 and the plate surface connection layer 3, and a second insertion layer 9-3 is formed between two second clamping protrusions 4-3 on the oppositely arranged closing plates 4-1.
[0035] A placement surface 4-7 is formed on the inner sides of the first clamping protrusion 4-2 and the second clamping protrusion 4-3, and a limiting surface 4-8 is formed on the outer sides of the first clamping protrusion 4-2 and the second clamping protrusion 4-3. The placement surface 4-7 is arranged parallel to the plate surface connection layer 3, and the limiting surface 4-8 is arranged obliquely to the placement surface 4-7.
[0036] Both the first clamping protrusion 4-2 and the second clamping protrusion 4-3 are triangular structures. An included angle is formed between the placement surface 4-7 and the limiting surface 4-8. The placement surface 4-7 is used to abut against the insertion component 9, thereby restricting the movement of the insertion component 9 along the length direction of the insertion component 9.
[0037] The first insertion layer 9-2 is a rectangular structure, and the second insertion layer 9-3 is a trapezoidal structure. The placement surface 4-7 is used to restrict the retraction of the insertion component 9, and the plate surface connection layer 3 and the limiting surface 4-8 are used to restrict the inward push of the insertion component 9, thereby limiting the two movement directions in the length direction of the insertion component 9, so that the distance between the plate surface connection layer 3 and the wall surface connection layer 8 can be controlled under the action of the insertion component 9 and the closing component 4.
[0038] A stable opening 4-6 is formed between two limiting surfaces 4-8 on the oppositely arranged second clamping protrusions 4-3. The stable opening 4-6 forms a trapezoidal opening, which is used to increase the contact area between the insertion component 9 and the closing component 4, so that the insertion component 9 and the closing component 4 have better stability after insertion.
[0039] The insertion component 9 includes a support body 9-1. The first insertion layer 9-2 is located at the end of the support body 9-1, and the second insertion layer 9-3 is located in the middle of the support body 9-1. The support body 9-1 is vertically arranged on the wall surface connection layer 8, and both the first insertion layer 9-2 and the second insertion layer 9-3 are trapezoidal structures.
[0040] On both sides of the bottom of the first insertion layer 9-2 and the second insertion layer 9-3, there are formed mating surfaces 9-4 that abut against the first clamping protrusion 4-2 or the second clamping protrusion 4-3. On both sides of the first insertion layer 9-2 and the second insertion layer 9-3, there are formed inclined surfaces 9-5. At the end of the first insertion layer 9-2, there is formed a horizontal surface 9-6 that abuts against the plate surface connection layer 3. The mating surface 9-4 is arranged parallel to the placement surface 4-7, and the inclined surface 9-5 is arranged parallel to the limiting surface 4-8.
[0041] Embodiment 1: During actual use, when the plugging component 9 is plugged into the first plugging hole 4-4 and the second plugging hole 4-5 simultaneously, at this time, the first plugging layer 9-2 is plugged into the first plugging hole 4-4, and the second plugging layer 9-3 is plugged into the second plugging hole 4-5. The horizontal plane 9-6 at the top of the first plugging layer 9-2 abuts against the surface of the board surface connection layer 3. The mating surface 9-4 of the first plugging layer 9-2 abuts against the placement surface 4-7 of the first clamping protrusion 4-2, and the mating surface 9-4 of the second plugging layer 9-3 abuts against the placement surface 4-7 of the second clamping protrusion 4-3, realizing the limit of the plugging component 9 in the length direction.
[0042] At the same time, both sides of the first plugging layer 9-2 and the second plugging layer 9-3 abut against the inner sides of the closing plates 4-1 on the opposite two sides respectively, thereby limiting the position of the plugging component 9. The ends of the closing plates 4-1 on the opposite two sides abut against the wall surface connection layer 8.
[0043] Embodiment 2: During actual use, when the plugging component 9 is plugged into the second plugging hole 4-5, at this time, the first plugging layer 9-2 is plugged into the second plugging hole 4-5, and the second plugging layer 9-3 is located in the stable opening 4-6. The mating surface 9-4 of the first plugging layer 9-2 abuts against the placement surface 4-7 of the second clamping protrusion 4-3, the inclined surface 9-5 of the first plugging layer 9-2 abuts against the limiting surface 4-8 of the second clamping protrusion 4-3, and the inclined surface 9-5 of the second plugging layer 9-3 abuts against the limiting surface 4-8 at the stable opening 4-6. At the same time, the mating surface 9-4 of the first plugging layer 9-2 abuts against the placement surface 4-7 of the second clamping protrusion 4-3, realizing the limit of the plugging component 9 in the length direction.
[0044] And under the fitting action of the inclined surface 9-5 and the limiting surface 4-8, the connection between the plugging component 9 and the closing component 4 has better stability.
[0045] The closing component 4 is arranged in the middle of the board surface connection layer 3. Threaded holes 10 are formed on the board surface connection layer 3 on both sides of the closing component 4. The plugging component 9 is arranged in the middle of the wall surface connection layer 8. Threaded holes 10 are also formed on the wall surface connection layer 8 on both sides of the plugging component 9.
[0046] Self-tapping screws 7 are provided in the threaded holes 10. Both sides of the board surface connection layer 3 are connected to the board body 5 through the self-tapping screws 7, thereby realizing the fixed connection between the board surface connection layer 3 and the board body 5, and supporting and positioning the closing component 4.
[0047] Similarly, both sides of the wall surface connection layer 8 are connected to the wall body 6 through the self-tapping screws 7, thereby realizing the fixed connection between the wall surface connection layer 8 and the wall body 6, and supporting and positioning the plugging component 9.
[0048] The closing component 4 and the board surface connection layer 3 are integrally formed, and the plug-in component 9 and the wall surface connection layer 8 are also integrally formed.
[0049] During the installation process, determine the fixing positions of the female connector 1 and the plug-in connector 2 according to the spacing distance between the wall body 6 and the board body 5, and perform alignment installation on the female connector 1 and the plug-in connector 2 to ensure that the deviation between the female connector 1 and the plug-in connector 2 is less than 1 mm. Fix the female connector 1 and the plug-in connector 2 to the wall body 6 or the board body 5 with self-tapping screws 7 respectively. Note that the length of the self-tapping screws 7 used needs to be less than the thickness of the wall body 6 and the board body 5. Align the plug-in connector 2 with the female connector 1 for insertion, and directly push the board body 5 towards the wall body 6. When there are two sounds of the metal parts being snapped in, the installation is completed.
[0050] The above description of the disclosed embodiments enables those skilled in the art to implement or use the present invention. Various modifications to these embodiments will be obvious to those skilled in the art. The general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention will not be limited to these embodiments shown herein, but rather to the broadest scope consistent with the principles and novel features disclosed herein.
[0051] Although the following terms are used more frequently in this article: female connector 1, plug-in connector 2, board surface connection layer 3, closing component 4, closing board 4-1, first clamping protrusion 4-2, second clamping protrusion 4-3, first insertion hole 4-4, second insertion hole 4-5, stable opening 4-6, placement surface 4-7, limiting surface 4-8, board body 5, wall body 6, self-tapping screw 7, wall surface connection layer 8, plug-in component 9, support body 9-1, first insertion layer 9-2, second insertion layer 9-3, mating surface 9-4, inclined surface 9-5, horizontal surface 9-6, etc., the possibility of using other terms is not excluded. These terms are used only to more conveniently describe and explain the essence of the present invention; interpreting them as any additional limitation is contrary to the spirit of the present invention.
Claims
1. An insertable wall-mounted component, characterized in that, Comprising a connected female connector part (1) and a plug-in part (2); the female connector part (1) includes a board surface connection layer (3) and a closing component (4) arranged on the board surface connection layer (3), a plug-in slot is formed inside the closing component (4), and the plug-in slot is composed of a first plug-in hole (4-4) and a second plug-in hole (4-5) that are connected; the plug-in part (2) includes a wall surface connection layer (8) and a plug-in component (9) arranged on the wall surface connection layer (8), a first plug-in layer (9-2) and a second plug-in layer (9-3) are formed on the plug-in component (9); a stable opening (4-6) corresponding to the second plug-in layer (9-3) is formed at the opening of the plug-in slot, the first plug-in layer (9-2) corresponds to the first plug-in hole (4-4) or the second plug-in hole (4-5), and the second plug-in layer (9-3) corresponds to the second plug-in hole (4-5) or the stable opening (4-6); the closing component (4) includes oppositely arranged closing plates (4-1), and a plug-in slot is formed between the oppositely arranged closing plates (4-1); a first clamping protrusion (4-2) and a second clamping protrusion (4-3) are formed on the inner sides of the oppositely arranged closing plates (4-1), the first clamping protrusion (4-2) is located in the middle of the closing plate (4-1), and the second clamping protrusion (4-3) is located at the end of the closing plate (4-1); a first plug-in layer (9-2) is formed between the two first clamping protrusions (4-2) on the oppositely arranged closing plates (4-1) and the board surface connection layer (3), and a second plug-in layer (9-3) is formed between the two second clamping protrusions (4-3) on the oppositely arranged closing plates (4-1); a placement surface (4-7) is formed on the inner sides of the first clamping protrusion (4-2) and the second clamping protrusion (4-3), and a limiting surface (4-8) is formed on the outer sides of the first clamping protrusion (4-2) and the second clamping protrusion (4-3), the placement surface (4-7) is arranged parallel to the board surface connection layer (3), and the limiting surface (4-8) is inclined to the placement surface (4-7); a stable opening (4-6) is formed between the two limiting surfaces (4-8) on the oppositely arranged second clamping protrusions (4-3); the plug-in component (9) includes a support main body (9-1), the first plug-in layer (9-2) is located at the end of the support main body (9-1), and the second plug-in layer (9-3) is located in the middle of the support main body (9-1); a mating surface (9-4) that abuts against the first clamping protrusion (4-2) or the second clamping protrusion (4-3) is formed at the bottoms on both sides of the first plug-in layer (9-2) and the second plug-in layer (9-3), inclined surfaces (9-5) are formed on both sides of the first plug-in layer (9-2) and the second plug-in layer (9-3), and a horizontal surface (9-6) that abuts against the board surface connection layer (3) is formed at the end of the first plug-in layer (9-2).
2. The plug-in wall-mounted member according to claim 1, wherein The closing component (4) is arranged in the middle of the board surface connection layer (3), threaded holes (10) are formed on the board surface connection layer (3) on both sides of the closing component (4), the plug-in component (9) is arranged in the middle of the wall surface connection layer (8), and threaded holes (10) are also formed on the wall surface connection layer (8) on both sides of the plug-in component (9).
3. The plug-in wall mounting member according to claim 2, characterized in that, The closing component (4) is integrally formed with the board surface connection layer (3), and the plug-in component (9) is also integrally formed with the wall surface connection layer (8).
Citation Information
Patent Citations
Plug-in wall mounting part
CN217734686U