A wall surface profile assembly structure
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHEJIANG YOUBANG INTEGRATED CEILING
- Filing Date
- 2025-08-19
- Publication Date
- 2026-08-07
AI Technical Summary
但在实际使用时,集成墙面上需要设置个性化的装饰件和功能件,且墙面上还会开设用于形成门洞、窗洞以及柜洞的孔洞,使得现有型材无法满足上述要求,需要设置对应的连接组件实现装配,既增加了装配难度,还会因连接组件不匹配而增加了装配成本和维护成本,影响使用体验
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Figure CN224605919U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of integrated wall panels, specifically to a profile assembly structure for wall panels. Background Technology
[0002] Existing integrated wall panels consist of connecting profiles and decorative panels. The profiles are laid regularly on the wall surface, and the decorative panels are neatly installed on the profiles in a matrix pattern to ensure a smooth, overlapping, and overlapping appearance. However, in actual use, integrated wall panels require customized decorative and functional components, and holes are often cut into the wall surface to form doorways, window openings, and cabinet openings. Existing profiles cannot meet these requirements, necessitating the use of corresponding connecting components for assembly. This increases assembly difficulty and, due to incompatible connecting components, raises assembly and maintenance costs, ultimately impacting the user experience. Utility Model Content
[0003] To address the shortcomings of existing technologies, this utility model provides a wall panel profile assembly structure, which sets up a variety of profiles to meet various needs during integrated wall panel installation. This not only effectively simplifies the structure and facilitates selection and assembly, but also effectively reduces assembly and maintenance costs and improves the user experience.
[0004] This utility model is achieved through the following method: a wall panel profile assembly structure includes a long strip-shaped body and functional components connected to the body. The body has a vertically penetrating adjustment hole in the middle of its cross-section. The rear wall of the body extends rearward to form a fixing groove. At least one connecting part is provided around the periphery of the body for installing corresponding functional components. The body is fixed to the wall surface via a fixing component located in the fixing groove, thus fixing the functional components to the wall surface. The functional components are connected and fixed to the wall surface by the corresponding connecting parts on the body. This not only showcases the corresponding functions of the functional components but also allows for the use of various profiles to meet the installation needs of different functional components, thereby increasing the functionality of the integrated wall panel. Furthermore, it effectively simplifies the structure, facilitates selection and assembly, and effectively reduces assembly and maintenance costs, improving the user experience.
[0005] Preferably, each section of the body has the same profile, and the body is fixed to the wall in a vertical position. The body is a profile, processed to a uniform length, which facilitates mass production and transportation, and also allows for cutting according to usage requirements, ensuring that profiles of any length have the same cross-sectional profile and facilitate the assembly of corresponding functional components.
[0006] Preferably, the body cross-section has an adjustment hole in the middle, and the adjustment hole has a notch around its periphery, so that the diameter of the adjustment hole can be adjusted by deformation. The adjustment hole is set along the profile axis, and the port of the adjustment hole is exposed on the end face of the profile, which facilitates the connection of the support leg and the adjustment of the profile height, ensuring that the profile is vertically positioned. The notch around the adjustment hole provides deformation space for adjusting the diameter of the adjustment hole. The expansion of the notch makes the diameter of the adjustment hole larger, ensuring that the screw rod on the support leg can be tightly screwed into the adjustment hole, which not only improves the reliability of the support leg connection and prevents the support leg from detaching from the profile, but also ensures that the support leg can be installed smoothly.
[0007] Preferably, the middle of the side wall of the fixing groove extends inward to form a limiting strip. The fixing assembly includes a mounting plate that can be attached to the wall and a mounting seat disposed on the side of the mounting plate and screwed with a fastener. The mounting seat is inserted into the fixing groove and abuts against the limiting strip. The end of the fastener is engaged between the rear wall of the limiting strip and the front wall of the fixing groove. The screw of the fastener passes through the gap between the limiting strips and is screwed to the mounting seat, so that the body is fixed to the wall by the mounting plate. The end of the fastener is engaged between the limiting strip and the front wall of the fixing groove to prevent the fastener from horizontally disengaging from the fixing groove. The screw of the fastener is screwed and locked into the screw hole on the mounting seat to ensure that the mounting seat can be tightly inserted into the fixing groove, ensuring that the body can be firmly connected to the wall and that the relative position between the body and the wall is fixed, preventing displacement or deflection. The mounting plate is attached to the wall and fixed and locked by expansion screws.
[0008] Preferably, the connecting part includes a first insertion plate formed by extending forward from the middle of the side wall of the main body. The rear wall edge of the functional component has an L-shaped fitting. The fitting is fitted onto the first insertion plate through a rearward groove. Adjacent functional components are fitted onto their corresponding first insertion plates via the fittings, so that connected functional components are adjacently joined and fixed to the wall surface via the main body. The L-shaped fitting includes a rearward groove arranged in a front-to-back direction and a connecting plate perpendicular to the opening direction of the rearward groove. The connecting plate is tightly fitted and fixed to the rear wall of the functional component and is fitted and fixed to the first insertion plate through the rearward groove. The first insertion plate is the same length as the profile, and the rearward groove can be fitted onto any section of the first insertion plate as needed, so that the functional component is installed in a preset position.
[0009] Preferably, the kit is T-shaped, including a forward-facing groove aligned with the rearward groove and covering the sidewalls of the functional components. The connecting portion includes a forward extension extending forward from both sides of the front wall of the main body and inserted between adjacent functional components. The front wall of the forward extension has a forward extension groove, and a functional groove is formed between the forward extensions. The sidewall of the functional groove is recessed to form a power-collecting groove for laying the power supply strip. The kit includes a forward groove facing away from the rearward groove. The forward groove and the forward extension groove are used to secure the decorative strip, improving connection reliability and preventing the decorative strip from deflecting. There are two opposing forward extensions, which can form two forward extension grooves for securing different decorative strips, and also form a forward-exposed functional groove between the forward extensions. The functional groove contains a power-collecting groove for the power supply strip, and electrical appliances installed in the functional groove can obtain the power required for operation through the power supply strip.
[0010] Preferably, the functional component is an adjacent decorative panel. The front wall edge of the decorative panel is provided with a decorative strip with a main insert and a secondary insert. The decorative strip is arranged along the front wall edge of the decorative panel and is fixedly inserted into the forward groove and the forward extension groove by the main insert and the secondary insert, respectively. The decorative strip is fixed to the corresponding side edge of the decorative panel and serves a decorative function. The decorative strip is inserted into the forward groove by the main insert and into the forward extension groove by the secondary insert, thereby improving the connection reliability by adding a connection structure.
[0011] Preferably, the functional component is an edge trimming strip. The edge trimming strip has a secondary insert strip in the middle of its side wall that can be inserted into the front extension groove, and a rearward groove on its rear side wall that can be fitted onto the first insertion plate. The edge trimming strip has a secondary insert strip and a rearward groove for inserting and connecting the secondary insert strip and the first insertion plate, thus improving connection reliability.
[0012] Preferably, the functional component is an edge trim strip that is arranged adjacently and matched, and the body is used to connect edge trim strips of different shapes to form a larger edge trim structure and improve aesthetics.
[0013] Preferably, the functional component includes a decorative panel that is disposed adjacent to and flatly spliced with the edge trim, and the body is used to connect the decorative panel and the edge trim.
[0014] Preferably, the edge trim includes multiple detachable components, which facilitates independent processing of each component, effectively reducing processing difficulty and cost, and also facilitates assembly and splicing, improving assembly efficiency.
[0015] Preferably, the connecting part includes a lateral groove extending outward from the rear side edge of the main body. The functional component is a decorative panel that is staggered and adjacent to each other. The decorative panel is laterally inserted into the lateral groove and secured. The lateral groove is provided with multi-level buckles to hold decorative panels of different thicknesses. The lateral groove facilitates the installation of the decorative panel, and the different distances between the decorative panels on both sides of the main body and the wall create a multi-layered decorative surface, enhancing aesthetics. The buckles in the lateral groove facilitate the insertion and fixation of decorative panels of different thicknesses, simplifying assembly.
[0016] Preferably, the functional component is a corner trim. One end of the corner trim is fitted onto the first plug-in plate, and the other end extends outward to the edge of the corresponding decorative panel and is exposed to cover the edge gap of the decorative panel. The corner trim is used for the installation of decorative panels at the corner of the wall. It can not only be attached and fixed to the corresponding decorative panel and fixed to the body, but also cover the decorative panel with its end and attach it to the adjacent wall, effectively sealing the gap between the side edge of the decorative panel and the adjacent wall at the corner, ensuring that the wall is completely covered and effectively improving the aesthetics.
[0017] Preferably, the wall surface has openings, and the functional components are an inner panel and an outer panel covering the inner wall of the opening and the perimeter of the port. The inner panel and the outer panel are vertically connected and fixed by a body. The opening is a doorway, window opening, or cabinet opening. The body is fixed to the perimeter of the opening, with the outer panel fixed to one side of the body to ensure that the outer panel covers the perimeter of the opening, and the inner panel fixed to the other side of the body to cover the inner wall of the opening. The outer panel and the inner panel are arranged perpendicular to each other so that the outer panel and the inner panel cooperate to cover the surface of the opening.
[0018] The beneficial effects of this utility model are: the functional components are connected and fixed to the wall surface by the corresponding connecting parts set on the main body, which can not only show the corresponding functions of the functional components, but also use a series of various profiles to meet the installation requirements of different functional components, thereby increasing the functions of the integrated wall panel, effectively simplifying the structure, facilitating selection, assembly and use, and effectively reducing assembly and maintenance costs, and improving the user experience. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the assembly structure of the profile described in Example 1;
[0020] Figure 2 This is a cross-sectional structural diagram of the profile described in Embodiment 1;
[0021] Figure 3 A schematic diagram of the assembly structure when decorative lines are provided on the kit described in Embodiment 1;
[0022] Figure 4 This is a schematic diagram of the assembly structure when the top corner line is set in the kit described in Embodiment 1;
[0023] Figure 5 This is a schematic diagram of the assembly structure of the profile described in Example 2;
[0024] Figure 6 This is a schematic diagram of the assembly structure of the profile described in Example 3;
[0025] Figure 7 This is a schematic diagram of the assembly structure of the profile described in Example 4;
[0026] Figure 8 This is a schematic diagram of the assembly structure when multiple edge trims are assembled onto the profile described in Example 4;
[0027] Figure 9 This is a schematic diagram of the assembly structure when the profile assembly described in Embodiment 4 includes multiple modular edge trim strips;
[0028] Figure 10 This is a schematic diagram of the assembly structure of the profile described in Example 5;
[0029] Figure 11 This is a schematic diagram of the assembly structure when assembling the edge trim strip of the profile described in Example 5;
[0030] Figure 12 This is a schematic diagram of the assembly structure when the profile described in Example 6 is used in a cabinet opening;
[0031] Figure 13 This is a schematic diagram of the assembly structure when the profile described in Example 6 is used for door and window openings;
[0032] In the diagram: 1. Body, 2. Adjustment hole, 3. Fixing groove, 4. Notch, 5. Limiting strip, 6. Mounting plate, 7. Mounting base, 8. Plug-in plate, 9. Kit, 10. Rear groove, 11. Decorative panel, 12. Front groove, 13. Front extension, 14. Front extension groove, 15. Power supply strip, 16. Main plug, 17. Secondary plug, 18. Decorative strip, 19. Edge trim, 20. Side groove, 21. Buckle, 22. Inner panel, 23. Outer panel. Detailed Implementation
[0033] The essential features of this utility model will be further described below with reference to the accompanying drawings and specific embodiments.
[0034] Example 1:
[0035] This embodiment provides a profile assembly structure for wall surfaces.
[0036] like Figure 1The wall panel profile assembly structure shown comprises a long strip-shaped body 1 and functional components connected to the body 1. The body 1 has a vertically penetrating adjustment hole 2 in the middle of its cross-section. The rear wall of the body 1 extends rearward to form a fixing groove 3. At least one connecting part is provided around the periphery of the body 1 for installing corresponding functional components. The body 1 is fixed to the wall surface via a fixing component located in the fixing groove 3, thus fixing the functional components to the wall surface. The functional components are connected and fixed to the wall surface by the corresponding connecting parts on the body 1. This not only showcases the corresponding functions of the components but also allows for the use of a series of profiles to meet the installation needs of different functional components, thereby increasing the functionality of the integrated wall panel. It also effectively simplifies the structure, facilitates selection and assembly, and effectively reduces assembly and maintenance costs, improving the user experience. The series of profiles share common connecting parts, allowing users to quickly master the installation method and apply it to various models within the same series, effectively improving ease of use.
[0037] In this embodiment, each section of the main body 1 has the same profile, and the main body 1 is fixed to the wall in a vertical position. The functional component is a decorative panel 11 with the same size. During installation, firstly, each main body 1 is fixed to the wall in a vertical position, and the distance between adjacent main bodies 1 matches the width of the decorative panel 11; then, a support foot that is screwed to the adjustment hole 2 is provided in the middle of the bottom end face of the main body 1 to ensure that the main body 1 is effectively supported and positioned; then, a kit 9 is provided on both sides of the decorative panel 11, and the rearward groove 10 on the kit 9 is opened to the rear; finally, the decorative panel 11 is connected to the corresponding plug-in plate 8 of the corresponding main body 1 from front to back by the kit 9 provided on its two sides.
[0038] After installation, the decorative panel 11 is connected to the corresponding plug-in plate 8 via the kits 9 on both sides, ensuring that the two sides of the decorative panel 11 are fixedly connected to the corresponding body 1, and that the decorative panel 11 is fixed in the preset position. By repeating the above operation, the installation of all decorative panels 11 can be completed, ensuring the stability and aesthetics of the overall structure. The tight connection between the decorative panel 11 and the body 1 effectively improves the overall service life and user experience. Adjusting the relative position between the kits 9 and the side edges of the decorative panel 11 to achieve the relative position between adjacent decorative panels 11 can achieve both a tight fit between the corresponding edges of adjacent decorative panels 11 and a separation between the corresponding edges of adjacent decorative panels 11 to form decorative grooves. Both of these should be considered specific implementation methods of this embodiment.
[0039] In this embodiment, the body 1 can be cut and spliced as needed to obtain a length that meets the usage requirements. A shorter body 1 can be obtained by cutting, and a longer body 1 can be obtained by linear splicing.
[0040] In this embodiment, an adjustment hole 2 is provided in the middle of the cross-section of the main body 1 (e.g., Figure 2 As shown, the adjustment hole 2 has a notch 4 around its periphery, allowing the diameter of the adjustment hole 2 to be adjusted by deformation. The port of the adjustment hole 2 is exposed to the end face of the body 1, used to connect the support legs, facilitating contact with the ground or ceiling and vertical positioning of the body 1, ensuring the height of the body 1 remains constant and preventing the decorative panel 11 from deflecting due to vertical displacement of the body 1. The notch 4 around the adjustment hole 2 allows the diameter of the adjustment hole 2 to be increased by expanding the notch 4, thus facilitating the connection of the support legs.
[0041] In this embodiment, the side wall of the plug plate 8 is provided with anti-slip teeth, which are clamped between the groove wall of the rear groove 10 and the side wall of the plug plate 8, effectively improving the anti-slip effect and ensuring that the relative position between the kit 9 and the body 1 is fixed.
[0042] In this embodiment, a limiting strip 5 is formed by extending inward from the middle of the side wall of the fixing groove 3. The fixing assembly includes a mounting plate 6 that can be attached to the wall and a mounting seat 7 that is disposed on the side of the mounting plate 6 and screwed with a fastener. The mounting seat 7 is inserted into the fixing groove 3 and abuts against the limiting strip 5. The end of the fastener is engaged between the rear wall of the limiting strip 5 and the front wall of the fixing groove 3. The screw of the fastener passes through the gap between the limiting strips 5 and is screwed to the mounting seat 7, so that the body 1 is fixed to the wall by the mounting plate 6. The end of the fastener is engaged between the limiting strip 5 and the front wall of the fixing groove 3, and the screw is screwed to the mounting seat 7. This ensures that the body 1 can be fixed to the mounting seat 7 by the fastener and that the mounting seat 7 can be embedded in the fixing groove 3. The tight fit prevents the two from shifting or deflecting, ensuring that the relative position and relative posture of the body 1 relative to the wall always remain constant. The mounting plate 6 is attached to the wall and fixed with screws, serving to support the main body 1 and the decorative panel 11.
[0043] In this embodiment, the connecting part includes a plug-in plate 8 formed by extending forward from the middle of the side wall of the main body 1. The rear wall edge of the functional component is provided with an L-shaped fitting 9. The fitting 9 is fitted onto the plug-in plate 8 through a rearward groove 10. Adjacent functional components are fitted onto their corresponding plug-in plates 8 through the fitting 9, so that the connected functional components are adjacently spliced and fixed to the wall surface through the main body 1. The horizontal part of the fitting 9 is fitted and fixed to the rear wall edge of the decorative panel 11, and the vertical part forms a rearward groove 10. This not only facilitates the rearward fitting of the decorative panel 11 onto the plug-in plate 8 by moving it backward, but also effectively avoids adjacent decorative panels 11, ensuring that each decorative panel 11 can be independently disassembled and installed without interfering with each other, facilitating disassembly and maintenance.
[0044] In this embodiment, the edge of the kit 9 may extend along the side edge of the decorative panel 11 and form a decorative line exposed on the front wall side edge of the decorative panel 11 (e.g., Figure 3As shown, this should also be considered a specific implementation of this embodiment.
[0045] In this embodiment, the functional component is the top corner line (e.g., Figure 4 As shown, one end of the top corner line is fitted onto the plug-in plate 8, and the other end extends outward to the edge of the corresponding decorative panel 11 and is exposed to cover the edge gap of the decorative panel 11. This should also be regarded as a specific implementation of this embodiment.
[0046] Example 2:
[0047] Compared to Embodiment 1, this embodiment provides an alternative assembly structure for the profile.
[0048] like Figure 5 As shown, the profile described in Embodiment 1 is improved by adding connecting parts to obtain a series of profile structures. Specifically, the connecting part includes a front extension 13 extending forward from both sides of the front wall of the body 1 and inserted between adjacent functional components. The front wall of the front extension 13 is provided with a front extension groove 14, and a functional groove is formed between the front extensions 13. The sidewall of the functional groove is recessed to form a power-collecting groove for laying the power supply strip 15. The functional groove is exposed through the gap between adjacent decorative panels 11, which facilitates the installation of electrical appliances and ensures that the electrical appliances can obtain power through the power supply strip 15 and operate normally.
[0049] In this embodiment, a light strip can be installed in the functional slot. The light strip emits light when powered on and transmits it outward through the slot opening of the functional slot, serving both lighting and decorative purposes.
[0050] The other structures and effects of the profile assembly structure described in this embodiment are the same as those in Embodiment 1, and will not be repeated here.
[0051] Example 3:
[0052] Compared to Embodiment 2, this embodiment provides another profile assembly structure.
[0053] like Figure 6 As shown, the functional component includes a decorative panel 11 fixedly connected to the body 1 and a decorative strip 18 installed on the edge of the decorative panel 11. Adjacent decorative panels 11 are separated. The decorative strip 18 is arranged along the edge of the decorative panel 11 and forms a decorative groove. The opening of the functional groove is exposed through the decorative groove, which not only improves the aesthetics but also facilitates the installation of electrical appliances on the functional groove, ensuring that the electrical appliances can obtain power through the power supply strip 15 and operate normally.
[0054] In this embodiment, the kit 9 is T-shaped and includes a forward groove 12. The forward groove 12 is aligned with the rear groove 10 and covers the sidewall of the functional component. The front wall edge of the decorative panel 11 is provided with a decorative strip 18 with a main insert 16 and a secondary insert 17. The decorative strip 18 is set along the front wall edge of the decorative panel 11 and is fixedly inserted into the forward groove 12 and the forward extension groove 14 by the main insert 16 and the secondary insert 17, respectively. The front groove 12 is provided at the front end of the vertical part of the kit 9. The forward extension groove 14 and the forward groove 12 are both forward-facing and staggered, which facilitates the insertion and connection of the decorative strip 18 with the forward groove 12 and the forward extension groove 14 by the main insert 16 and the secondary insert 17, respectively. The decorative strip 18 is fixedly connected to both the kit 9 and the body 1, which effectively improves the connection reliability of the decorative strip 18 and ensures that the relative position between it and the decorative panel 11 is fixed.
[0055] In this embodiment, the rear edge of the adjustment hole 2 has a notch 4 and is connected to the fixing groove 3, which effectively reduces the deformation of the front part of the body 1, ensures that the front extension 13 can be smoothly inserted into the decorative groove between adjacent decorative panels 11, and also ensures that the adjustment hole 2 can be effectively deformed and meet the requirements for the support foot installation.
[0056] The other structures and effects of the profile assembly structure described in this embodiment are the same as those in Embodiment 2, and will not be repeated here.
[0057] Example 4:
[0058] Compared to Embodiment 1 or 2, this embodiment provides another profile assembly structure.
[0059] like Figure 7 As shown, the functional component includes an edge trim 19 disposed adjacent to the decorative panel 11. When installed with the profile described in Embodiment 1, the rear side edge of the edge trim has a rearward groove 10 that can be fitted onto the insertion plate 8. When installed with the profile described in Embodiment 2, in addition to the rearward groove 10, the edge trim also has a secondary insertion strip 17 in the middle of the side wall that can be inserted into the front extension groove 14. By setting a matching structure to fix it to the body 1, the installation convenience and connection reliability are effectively improved. Both should be regarded as specific implementation methods of this embodiment.
[0060] In this embodiment, the functional component is an edge trim strip 19 that is adjacent to and matched with the edge trim strip (e.g., ...). Figure 8 (as shown), or it can be a finishing strip 19 containing multiple detachable assemblies (such as...). Figure 9 As shown in the figure, this results in an edge-finishing structure with a larger size and more complex shape, which not only improves the aesthetics but also facilitates processing, disassembly, and maintenance.
[0061] In this embodiment, the functional component includes a decorative panel 11 that is disposed adjacent to and flatly spliced with the edge trim 19. The corresponding edges of the edge trim 19 and the decorative panel 11 are flatly spliced together, which can not only use the edge trim 19 to perform the function of edge trimming and decoration, but also ensure that the edge trim 19 and the decorative panel 11 match and connect, thereby improving the aesthetics of the connection.
[0062] The other structures and effects of the profile assembly structure described in this embodiment are the same as those in Embodiment 1 or 2, and will not be repeated here.
[0063] Example 5:
[0064] Compared to Embodiment 2, this embodiment provides another profile assembly structure.
[0065] like Figure 10 As shown, the connecting part includes a lateral groove 20 extending outward from the rear side edge of the main body 1. The functional component is a decorative panel 11 that is staggered front to back and adjacent to each other. The decorative panel 11 is laterally inserted into the lateral groove 20 and fixed in place. By providing the lateral groove 20, diverse installation options are available for the decorative panel 11, resulting in different distances between the decorative panels 11 on both sides of the main body 1 and the wall surface, thereby forming a multi-layered decorative surface and enhancing aesthetics.
[0066] In this embodiment, the functional components are the decorative panel 11 and the edge trim 19 (e.g., Figure 11 As shown in the figure, during installation, the decorative panel 11 is installed on the side groove 20 and the plug plate 8 located on the body 1 away from the side groove 20. The edge trim 19 is set on the plug plate 8 on the same side of the body 1 and the side groove 20. The edge trim 19 is used to cover the area of the body 1 exposed between adjacent decorative panels 11, thereby improving the aesthetics.
[0067] In this embodiment, the side groove 20 is provided with multi-level buckles 21 to hold decorative panels 11 with different thicknesses, effectively expanding the applicability of the body 1 and thus improving ease of use.
[0068] The other structures and effects of the profile assembly structure described in this embodiment are the same as those in Embodiment 2, and will not be repeated here.
[0069] Example 6:
[0070] Compared to Embodiment 2, this embodiment provides another profile assembly structure.
[0071] like Figure 12 and 13 As shown, the wall surface has holes, and the functional components are an inner plate 22 and an outer plate 23 covering the inner wall of the holes and the periphery of the ports. The inner plate 22 and the outer plate 23 are vertically connected and fixed by the body 1. The holes are door openings, window openings or cabinet openings.
[0072] In this embodiment, when the hole is a cabinet opening, the outer edge of the inner panel 22 is perpendicularly connected to the outer panel 23, and a cabinet bottom plate is provided between the inner edges of the inner panel 22, thereby enclosing and forming a cabinet body.
[0073] In this embodiment, when the holes are through-hole window and door openings, the outer panel 23 covers the periphery of the two ends of the hole, and the inner panel 22 passes through the hole and spans between the corresponding edges of the outer panel 23, thereby forming a window frame and a door frame, which facilitates disassembly and maintenance.
[0074] The other structures and effects of the profile assembly structure described in this embodiment are the same as those in Embodiment 2, and will not be repeated here.
Claims
1. A wall panel profile assembly structure, comprising a long strip-shaped body (1) and functional components connected to the body (1), characterized in that, The body (1) has a vertically penetrating adjustment hole (2) in the middle of its cross section. The rear wall of the body (1) extends backward to form a fixing groove (3). The periphery of the body (1) has at least one connecting part for installing corresponding functional components. The body (1) is fixed to the wall surface by a fixing component set at the fixing groove (3) so that the functional components are fixedly installed on the wall surface.
2. The wall panel profile assembly structure according to claim 1, characterized in that, Each section of the body (1) has the same profile, and the body (1) is fixed to the wall in a vertical position.
3. The wall panel profile assembly structure according to claim 2, characterized in that, The body (1) has an adjustment hole (2) in the middle of its cross section, and a notch (4) is provided around the adjustment hole (2) so that the diameter of the adjustment hole (2) can be adjusted by deformation; or, the middle of the side wall of the fixing groove (3) extends inward to form a limiting strip (5), and the fixing assembly includes a mounting plate (6) that can be attached to the wall and a mounting seat (7) provided on the side of the mounting plate (6) and screwed with fasteners. The mounting seat (7) is inserted into the fixing groove (3) and abuts against the limiting strip (5). The end of the fastener is stuck between the rear wall of the limiting strip (5) and the front wall of the fixing groove (3). The screw of the fastener passes through the gap between the limiting strips (5) and is screwed to the mounting seat (7) so that the body (1) is fixed to the wall by the mounting plate (6).
4. The wall panel profile assembly structure according to claim 1, characterized in that, The connecting part includes a plug-in plate (8) formed by extending forward from the middle of the side wall of the body (1). The rear wall edge of the functional component is provided with an L-shaped kit (9). The kit (9) is fitted onto the plug-in plate (8) through a rearward groove (10). Adjacent functional components are fitted onto the corresponding plug-in plates (8) through the kit (9) so that the connected functional components are adjacently spliced and fixed to the wall surface through the body (1).
5. The wall panel profile assembly structure according to claim 4, characterized in that, The kit (9) is T-shaped and includes a forward groove (12) that opens forward. The forward groove (12) and the rear groove (10) are aligned in the front and back direction and cover the side wall of the functional component. The connecting part includes a forward extension (13) that extends forward from both sides of the front wall of the body (1) and is inserted between adjacent functional components. The front wall of the forward extension (13) is provided with a forward extension groove (14). A functional groove is formed between the forward extensions (13). The side wall of the functional groove is recessed to form a power extraction groove for laying the power supply strip (15).
6. The wall panel profile assembly structure according to claim 5, characterized in that, The functional component is a decorative panel (11) arranged adjacent to each other. The front wall edge of the decorative panel (11) is provided with a decorative strip (18) with a main insert (16) and a secondary insert (17). The decorative strip (18) is arranged along the front wall edge of the decorative panel (11) and is inserted and fixed in the forward groove (12) and the forward extension groove (14) respectively by the main insert (16) and the secondary insert (17).
7. A wall panel profile assembly structure according to claim 4 or 5, characterized in that, The functional component is a trim strip (19), and the middle of the side wall of the trim strip is provided with a secondary insert strip (17) that can be inserted into the front extension groove (14). The rear side edge of the trim strip is provided with a rearward groove (10) that can be fitted onto the insert plate (8).
8. A wall panel profile assembly structure according to claim 4 or 5, characterized in that, The functional component is an edge trim (19) that is adjacent to and matched; or, the functional component includes a decorative panel (11) that is adjacent to and flatly spliced with the edge trim (19); or, the edge trim (19) includes multiple detachable assemblies.
9. A wall panel profile assembly structure according to claim 4 or 5, characterized in that, The connecting part includes a lateral groove (20) extending outward from the rear side edge of the body (1). The functional component is a decorative panel (11) that is staggered front and rear and arranged adjacent to each other. The decorative panel (11) is inserted laterally into the lateral groove (20) and fixed in place. The lateral groove (20) is provided with multi-level buckles (21) to hold the decorative panel (11) with different thicknesses.
10. A wall profile assembly structure according to claim 5, characterized in that, The functional component is a top corner line, one end of which is sleeved and connected to the plug plate (8), and the other end extends outward to the edge of the corresponding decorative panel (11) and is exposed to cover the edge gap of the decorative panel (11); or, the wall surface is provided with a hole, and the functional component is an inner plate (22) and an outer plate (23) covering the inner wall of the hole and the periphery of the port. The inner plate (22) and the outer plate (23) are vertically connected and fixed by the body (1), and the hole is a door opening, window opening or cabinet opening.