Fabricated wallboard mounting piece
By combining linear profiles, translucent gauze, and a back panel, the problems of monotonous decorative effects, complex installation, and instability of prefabricated wall panels are solved, enabling rapid installation and disassembly and improving both decorative effect and stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 重庆集凯科技服务有限公司
- Filing Date
- 2024-12-31
- Publication Date
- 2026-05-15
AI Technical Summary
Existing prefabricated wall panels have a relatively simple decorative effect, are complicated to install and dismantle, and are not secure enough, affecting their service life and stability. They are especially difficult to balance fixation and shape support in light-transmitting material applications.
It adopts a combination structure of linear profiles, translucent gauze and back panel. The installation groove is formed by the arc edge and the upper support edge. The back panel insertion groove matches the linear profile. Fasteners pass through and fix it. The translucent gauze is connected to the profile by applying glue to form a shape support.
It achieves rich decorative effects, is easy to install and disassemble, has good sturdiness, and improves the service life and stability of the wall panel. It is especially suitable for wall decoration with translucent gauze patterns.
Smart Images

Figure CN224244320U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of decoration and building materials technology, and in particular to a prefabricated wall panel installation component. Background Technology
[0002] Prefabricated wall panels, as a common building decoration material, are widely used in interior and exterior wall decoration due to their modular design and relatively convenient installation. However, existing prefabricated wall panels offer relatively limited decorative effects, failing to meet increasingly diverse and personalized aesthetic demands. Furthermore, in applications using translucent materials, current technology struggles to balance material fixation with structural support, thus restricting the decorative effect of the wall panels.
[0003] Furthermore, existing prefabricated wall panels often employ simple splicing or adhesive methods during installation. This not only makes installation and disassembly complex and hinders quick replacement or adjustment, but also results in insufficient installation stability, affecting the lifespan and stability of the wall panels. Therefore, a prefabricated wall panel installation component and method that can enrich decorative effects, enable rapid installation and disassembly, and possess sufficient robustness is needed to solve the aforementioned problems. Summary of the Invention
[0004] In view of this, the present application provides a prefabricated wall panel installation component to solve the problems of complex installation and disassembly, unstable installation, affecting the service life and stability of the wall panel, and monotonous decorative effect in the prior art.
[0005] This application provides a prefabricated wall panel installation component, comprising: a linear profile, the top of which has an arc edge and an upper support edge; the linear profile has an installation groove for fixing translucent gauze; the arc edge and the upper support edge provide arc-shaped support for the translucent gauze; a back panel insertion groove, which is located on both sides of the linear profile; one end of the back panel is inserted into the back panel insertion groove; the back panel insertion groove cooperates with the bottom edge of the linear profile to realize the installation of the linear profile; and fasteners, which penetrate the bottom edge of the linear profile and are fixedly connected to the back panel; the translucent gauze is connected to the arc edge and the upper support edge of the linear profile by applying adhesive to form a point-like connection, thus forming a shape support.
[0006] In one possible implementation, the upper support edge and the arc edge of the linear profile form a closed mounting groove on the upper part of the linear profile, and an opening structure extending along the length of the linear profile is formed between adjacent arc edges, with the end of the translucent gauze inserted into the opening structure.
[0007] In one possible implementation, the mounting groove inside the linear profile has a T-shaped structure, and an insertion edge is provided above the bottom edge of the linear profile, forming a back plate insertion groove between the bottom edge and the insertion edge.
[0008] In one possible implementation, the back panel is installed in a plug-in manner with the linear profile via a back panel insertion slot, so as to assemble and connect the linear profile and the back panel.
[0009] In one possible implementation, the surface of the back panel is provided with a light-emitting component, which is fixed by an adhesive. The light-emitting component is located on the back of the light-transmitting gauze, and the light-emitting component and the light-transmitting gauze work together to achieve uniform light transmission.
[0010] In one possible implementation, the translucent gauze is a flexible material, and the translucent gauze is connected to the upper support edge and the rounded edge of the linear profile by a back-coated adhesive to form a dotted connection, thereby fixing the shape of the translucent gauze.
[0011] In one possible implementation, the fastener is a screw that passes through the back panel and connects to the bottom edge of the linear profile in order to secure the linear profile to the back panel.
[0012] In one possible implementation, the length of the translucent gauze matches the length of the prefabricated wall panel, and the back panel is a flat or curved structure.
[0013] In one possible implementation, the linear profile is made of a rigid material, and the back panel is made of a high-strength material that complements the linear profile.
[0014] In one possible implementation, the light-emitting component is an LED light, which is connected to the wall base structure via a power supply and is evenly distributed on the back of the translucent gauze.
[0015] The prefabricated wall panel installation component provided in this application includes: a linear profile with a rounded edge and an upper support edge at the top; the linear profile has an installation groove for fixing translucent gauze, and the rounded edge and upper support edge provide arc-shaped support for the translucent gauze; a back panel insertion groove located on both sides of the linear profile, with one end of the back panel inserted into the groove, and the groove engaging with the bottom edge of the linear profile to achieve installation; and fasteners that penetrate the bottom edge of the linear profile and are fixedly connected to the back panel. The translucent gauze is connected to the rounded edge and upper support edge of the linear profile by applying adhesive, forming a point-like support. This application offers simple installation and disassembly, secure installation, improved service life and stability of the wall panel, and enhanced decorative effect of the prefabricated wall panel. Attached Figure Description
[0016] To more clearly illustrate the technical solutions in the embodiments of this application, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0017] Figure 1 This is a structural schematic diagram of the prefabricated wall panel installation component provided in the embodiments of this application;
[0018] Figure 2 This is an installation diagram of the prefabricated wall panel mounting component provided in the embodiments of this application.
[0019] The reference numerals in the figures are as follows: 1. Linear profile; 11. Rounded edge; 12. Upper support edge; 13. Mounting groove; 14. Back panel insertion groove; 15. Bottom edge; 16. Opening structure; 17. Insertion edge; 2. Translucent gauze; 3. Back panel; 4. Fastener; 5. Light-emitting component. Detailed Implementation
[0020] The technical solutions of the embodiments of this application will now be described with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application.
[0021] In the description of this invention, it should be understood that the terms "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," "counterclockwise," "axial," "radial," and "circumferential" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.
[0022] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this invention, "a plurality of" means at least two, such as two, three, etc., unless otherwise explicitly specified.
[0023] In this invention, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components, unless otherwise explicitly limited. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.
[0024] In this invention, unless otherwise explicitly specified and limited, "above" or "below" the second feature can mean that the first feature is in direct contact with the second feature, or that the first feature is in indirect contact with the second feature through an intermediate medium. Furthermore, "above," "over," and "on top" of the second feature can mean that the first feature is directly above or diagonally above the second feature, or simply that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature can mean that the first feature is directly below or diagonally below the second feature, or simply that the first feature is at a lower horizontal level than the second feature.
[0025] As described in the background section, prefabricated wall panels are a common wall decoration material in modern building decoration, attracting much attention due to their modular design and easy installation. However, existing prefabricated wall panels offer relatively limited decorative effects, failing to meet diverse and personalized aesthetic needs. Furthermore, their installation methods are often complex, disassembly is inconvenient, and quick replacement or adjustment is not possible. In addition, the stability of the wall panel installation is insufficient, potentially leading to a shortened lifespan or damage to the decorative effect.
[0026] Existing prefabricated wall panels mainly employ simple splicing or adhesive methods, lacking comprehensive consideration of aesthetics and functionality in their structural design. This is especially true in applications using translucent materials (such as gauze), where current technology struggles to balance material fixation and structural support. Furthermore, existing installation components typically fail to enable quick and easy installation and disassembly, resulting in low construction efficiency and high maintenance costs. Therefore, designing a prefabricated wall panel installation component that enhances decorative effects, meets the requirements for rapid installation and disassembly, and possesses sufficient robustness is a pressing issue in the current technological field.
[0027] Therefore, in view of the problems existing in the prior art, this application provides a novel prefabricated wall panel mounting component. The prefabricated wall panel mounting component of this application mainly includes a linear profile, translucent gauze, a back panel, and fasteners. The top of the linear profile has an arc edge and an upper support edge, forming a mounting groove for fixing the translucent gauze and providing support for its arc-shaped design; the bottom of the linear profile has a back panel insertion groove for interlocking with the back panel; the translucent gauze is connected to the linear profile in a dotted manner by applying adhesive and fixing its shape; the fasteners penetrate the back panel and the bottom edge of the linear profile, achieving a stable connection between the components. This mounting component has a compact structure and is easy to install, improving the decorative effect of the wall panel while enabling rapid installation and disassembly, and ensuring its firmness and stability. This application is particularly suitable for wall decoration scenarios with translucent gauze designs, not only improving the decorative effect of the wall panel but also enabling rapid installation and disassembly, ensuring the firmness and stability of the installation.
[0028] The optional embodiments of this application are described in detail below with reference to the accompanying drawings.
[0029] Please see Figures 1 to 2 , Figure 1 This is a structural schematic diagram of the prefabricated wall panel installation component provided in the embodiments of this application. Figure 2 This is an installation diagram of the prefabricated wall panel mounting components provided in the embodiments of this application. Figures 1 to 2 As shown, this application embodiment provides a prefabricated wall panel mounting component. The prefabricated wall panel mounting component includes: a linear profile 1, the top of which is provided with an arc edge 11 and an upper support edge 12; the linear profile 1 has a mounting groove 13 for fixing a translucent gauze 2; the arc edge 11 and the upper support edge 12 provide arc-shaped support for the translucent gauze 2; a back panel insertion groove 14, which is provided on both sides of the linear profile 1; one end of the back panel 3 is inserted into the back panel insertion groove 14; the back panel insertion groove 14 cooperates with the bottom edge 15 of the linear profile 1 to realize the installation of the linear profile 1; and a fastener 4, which passes through the bottom edge 15 of the linear profile 1 and is fixedly connected to the back panel 3. The translucent gauze 2 is connected to the arc edge 11 and the upper support edge 12 of the linear profile 1 by applying adhesive to form a point-like connection, thus forming a shape support.
[0030] In some embodiments, the upper support edge 12 and the arc edge 11 of the linear profile 1 form a closed mounting groove 13 on the upper part of the linear profile 1, and an opening structure 16 extending along the length direction of the linear profile 1 is formed between adjacent arc edges 11, and the end of the light-transmitting gauze 2 is inserted into the opening structure 16.
[0031] Specifically, the linear profile 1 is the core component of the mounting assembly, and its upper part includes an upper support edge 12 and a rounded edge 11. The upper support edge 12 and the rounded edge 11 are integrally formed to form a closed mounting groove 13. The main function of this mounting groove 13 is to fix the light-transmitting gauze 2. At the top of the linear profile 1, an opening structure 16 extending along the length of the linear profile 1 is formed between adjacent rounded edges 11. This opening structure 16 allows the end of the light-transmitting gauze 2 to be inserted into it. Through this design, the light-transmitting gauze 2 can be securely inserted into the mounting groove 13, thereby achieving stable positioning and support while maintaining light transmission and aesthetics.
[0032] The end of the translucent gauze 2 is inserted into the opening structure 16 and secured firmly by the closing design of the mounting groove 13. This fixing method prevents the translucent gauze 2 from falling off due to external force, while ensuring that it remains flat during use. The main function of the translucent gauze 2 is to provide light transmission and form a unique shape within the overall structure.
[0033] The linear profile 1 has back plate insertion slots 14 on both sides. One end of the back plate 3 is inserted into the back plate insertion slot 14 by insertion, thus completing the fit with the linear profile 1. The back plate 3 not only provides support, but also forms the overall frame of the installation component together with the linear profile 1, ensuring the structural stability of the prefabricated wall panel installation component.
[0034] At the bottom of the linear profile 1, a bottom edge 15 is provided. Fasteners (such as screws) pass through the bottom edge 15 through the linear profile 1 and are fixedly connected to the back plate 3, further enhancing the overall connection strength. This fastening method can effectively prevent the components from loosening due to vibration or external force during use.
[0035] At the top of the linear profile 1, the rounded edge 11 and the upper support edge 12 together provide an arc-shaped support structure, allowing the translucent gauze 2 to maintain an elegant arc shape and have a certain decorative effect. At the bottom of the linear profile 1, the design of the back plate insertion groove 14 and the fastener 16 realizes the efficient connection between the back plate 3 and the linear profile 1, ensuring the overall installation is firm and reliable.
[0036] In some embodiments, the mounting groove 13 inside the linear profile 1 has a T-shaped structure, and an insertion edge 17 is provided opposite to the bottom edge 15 of the linear profile 1, forming a back plate insertion groove 14 between the bottom edge 15 and the insertion edge 17.
[0037] Specifically, the mounting groove 13 inside the linear profile 1 adopts a T-shaped cross-section structure, forming a geometry of a top opening and an internal extended area. The translucent gauze 2 can be inserted into the mounting groove 13 through the top opening and fixed within the extended area of the mounting groove, thus preventing the gauze from falling off due to external force. This T-shaped structure design of the mounting groove 13 not only provides a reliable fixing effect but also allows for quick installation and replacement of the translucent gauze 2 through the top opening.
[0038] Above the bottom edge 15 of the linear profile 1, an interlocking edge 17 is provided. A narrow backplate interlocking groove 14 is formed between the bottom edge 15 and the interlocking edge 17. The main function of the interlocking groove 14 is to cooperate with the backplate 3 to achieve a stable connection between the backplate 3 and the linear profile 1 through an interlocking method. During the assembly process, one end of the backplate 3 is inserted into the backplate interlocking groove 14, and the bottom edge 15 and the interlocking edge 17 of the linear profile 1 clamp the backplate 3, thereby ensuring the stability of the backplate 3 and the overall strength of the assembly structure.
[0039] In the design of the linear profile 1, the relative arrangement of the bottom edge 15 and the insertion edge 17 not only forms the back plate insertion groove 14, but also enhances the mechanical strength of the linear profile 1 through a reasonable structural design. In actual assembly, after the back plate 3 is inserted into the back plate insertion groove 14, it is further connected to the back plate 3 by fasteners (such as screws) passing through the bottom edge 15, forming a more reliable fixing structure. This multi-point fixing method can effectively prevent the components from loosening due to external forces or long-term use.
[0040] Through the above structural design, the T-shaped mounting groove 13 and the back plate insertion groove 14 of the linear profile 1 achieve a stable installation of the light-transmitting gauze 2 and the back plate 3, while optimizing the assembly efficiency and stability of the components.
[0041] In some embodiments, the back plate 3 is installed in a plug-in manner with the linear profile 1 through the back plate insertion groove 14, so that the linear profile 1 and the back plate 3 are assembled and connected.
[0042] Specifically, the bottom of the linear profile 1 is provided with a back plate insertion groove 14 extending along its length. The insertion groove 14 is formed by the bottom edge 15 and the upper insertion edge 17 of the linear profile 1 being arranged opposite to each other. The back plate insertion groove 14 has sufficient width and depth to accommodate one end of the back plate 3, so that the back plate 3 can be securely installed on the linear profile 1 by insertion.
[0043] During assembly, one end of the back plate 3 is inserted into the back plate insertion groove 14 along the insertion direction. The back plate 3 is initially fixed to the linear profile 1 by the clamping force inside the back plate insertion groove 14. After insertion, the bottom edge 15 and the insertion edge 17 of the linear profile 1 form a clamping fit with the insertion end of the back plate 3, ensuring a stable connection between the back plate 3 and the linear profile 1.
[0044] The design of the backplate insertion slot 14 simplifies the assembly process between the linear profile 1 and the backplate 3, making it more efficient. The insertion method not only facilitates installation and disassembly but also improves the overall strength and stability of the assembly. Furthermore, the insertion method avoids additional connecting parts, making the structure simpler and reducing processing and assembly costs.
[0045] Through the above structural design, the linear profile 1 is installed in conjunction with the back panel 3 through the back panel insertion groove 14, which not only realizes the efficient assembly of the prefabricated wall panel installation parts, but also ensures its stability and reliability in use.
[0046] In some embodiments, the surface of the back plate 3 is provided with a light-emitting component 5, which is fixed by an adhesive. The light-emitting component 5 is disposed on the back of the light-transmitting gauze 2, and the light-emitting component 5 cooperates with the light-transmitting gauze 2 to achieve uniform light transmission.
[0047] Specifically, the light-emitting component 5 is an illumination device capable of generating light, such as an LED light strip or other suitable light-emitting element. The light-emitting component 5 is fixed to the surface of the back plate 3 by an adhesive. The adhesive should be selected to have good adhesion and durability to ensure that the light-emitting component 5 will not loosen during long-term use, while also facilitating assembly.
[0048] The light-emitting component 5 is positioned on the back of the translucent gauze 2, maintaining an appropriate distance from it. The material of the translucent gauze 2 has a certain degree of light transmittance and diffusion effect, which can soften and evenly scatter the light emitted by the light-emitting component 5. Through this design, light passes evenly through the translucent gauze 2, avoiding the glare caused by direct light and enhancing the overall decorative effect, making the prefabricated wall panel both functional and aesthetically pleasing.
[0049] The light-emitting component 5 is glued to the back panel 3, ensuring a stable relative position with the translucent gauze 2 during assembly. The translucent gauze 2 is fixed in the mounting groove 13 of the linear profile 1, and the light-emitting component 5 works in conjunction with the back of the translucent gauze 2. In the overall structure, the light provided by the light-emitting component 5 is diffused by the translucent gauze 2 and ultimately shines through in a uniform and soft manner, providing a unique visual effect for the wall panel.
[0050] In one alternative implementation, the light-emitting component 5 can be an LED light, which is connected to the wall base structure via a power supply and is evenly distributed on the back of the translucent gauze 2.
[0051] Through the above structural design, the combined use of the light-emitting component 5 and the translucent gauze 2 not only enhances the decorative effect of the wall panel but also provides users with an efficient and aesthetically pleasing light source solution. The light-emitting component 5 is fixed with adhesive, simplifying the installation process and ensuring a secure connection between the light-emitting component 5 and the back panel 3.
[0052] In some embodiments, the translucent gauze 2 is a flexible material, and the translucent gauze 2 is connected to the upper support edge 12 and the arc edge 11 of the linear profile 1 by the adhesive coated on the back to form a point-like connection, so as to fix the shape of the translucent gauze 2.
[0053] Specifically, the translucent gauze 2 is made of flexible materials, such as high-transmittance fiber fabric or flexible plastic film. Its flexibility allows the translucent gauze 2 to be naturally bent and closely adhere to the curved structure of the linear profile 1 during installation, thereby achieving a complex shape support effect. The translucent gauze 2 also has a certain degree of diffusion properties, which can soften and evenly scatter the light emitted by the light source (such as the light-emitting component 5), enhancing the decorative effect.
[0054] The back of the translucent gauze 2 is coated with an adhesive that has a dotted distribution. During installation, the back of the translucent gauze 2 forms a dotted connection with the upper support edge 12 and the rounded edge 11 of the linear profile 1 through the adhesive. Specifically, after the adhesive is applied to the back of the translucent gauze 2, manual or mechanical pressing is used to bond localized areas of the translucent gauze 2 to the surfaces of the upper support edge 12 and the rounded edge 11 of the linear profile 1, thereby achieving fixation. This dotted connection design not only ensures the stability of the translucent gauze 2 but also effectively avoids problems such as air bubbles or material deformation that may be caused by large-area bonding.
[0055] The upper support edge 12 and the rounded edge 11 of the linear profile 1 together form an arc-shaped structure to provide shape support for the translucent gauze 2. The connection points between the translucent gauze 2 and the linear profile 1 are distributed in local areas of the upper support edge 12 and the rounded edge 11, fixing the translucent gauze 2 to the outer surface of the linear profile 1 through point connections. The fixing positions of the point connections can be flexibly adjusted according to specific shape requirements to ensure that the translucent gauze 2 maintains a flat and stable arc-shaped appearance after installation.
[0056] Through dotted connections with adhesive on the back, the translucent gauze 2 can be quickly and reliably fixed to the surface of the linear profile 1, while maintaining a certain degree of flexibility and adjustability. This fixing method has the following advantages:
[0057] Point-to-point bonding allows the translucent gauze 2 to naturally bend according to the curved structure of the linear profile 1, forming the desired shape. This avoids stress concentration on the flexible material caused by large-area bonding, thus reducing the risk of damage or tearing. Fixing can be achieved by applying adhesive and localized pressing, reducing assembly complexity.
[0058] In some embodiments, the fastener 4 is a screw that passes through the back plate 3 and connects to the bottom edge 15 of the linear profile 1 to fix the linear profile 1 to the back plate 3.
[0059] Specifically, fastener 4 is a conventional screw, whose structural design allows it to easily penetrate the back plate 3 and form a threaded connection with the linear profile 1. The screw head has good locking performance and is used to fix the linear profile 1 and the back plate 3, so that a reliable mechanical connection is formed between the two, thereby ensuring the stability and long-term durability of the entire assembly structure.
[0060] Threaded holes or openings for screws are pre-drilled on the bottom edge 15 of the linear profile 1. During assembly, the screws pass through the back plate 3 in sequence and are further screwed into the bottom edge 15 of the linear profile 1, thus achieving a fixed connection between the linear profile 1 and the back plate 3. Through this connection method, the back plate 3 forms an integrated structure with the linear profile 1, preventing the connection from loosening due to vibration or external force during use.
[0061] In the entire assembly structure, the linear profile 1 is fixed to the back plate 3 by screws via its bottom edge 15. The back plate 3 simultaneously provides load-bearing and support for the translucent gauze 2 and the light-emitting component 5. The screw connection method ensures precise positioning between the linear profile 1 and the back plate 3, enabling the overall prefabricated wall panel to exhibit excellent sturdiness and seismic resistance after installation.
[0062] Through the above structural design, a firm connection is achieved between the bottom edge 15 of the linear profile 1 and the back plate 3 using fasteners 4 (screws). This connection method is simple and efficient, ensuring the stability of the overall structure and facilitating subsequent maintenance and adjustment.
[0063] In some embodiments, the length of the translucent gauze 2 matches the length of the prefabricated wall panel, and the back panel 3 is a flat structure or an arc-shaped panel.
[0064] Specifically, the length of the translucent gauze 2 matches the length of the prefabricated wall panel, allowing the gauze 2 to completely cover the installation area of the prefabricated wall panel, ensuring the continuity and integrity of the overall visual effect. Meanwhile, the back panel 3 can be designed as a flat or curved structure to adapt to different wall shape requirements, thereby achieving diverse decorative effects.
[0065] The translucent gauze 2 is made of flexible material, and its length is customized according to the specific dimensions of the prefabricated wall panel, perfectly matching its length. During installation, both ends of the translucent gauze 2 are fixed to the arc edge 11 and upper support edge 12 of the linear profile 1 using dot-matrix adhesive, ensuring that the translucent gauze 2 remains tightly fitted along the direction of the linear profile 1, guaranteeing its even distribution throughout the assembly area without sagging or wrinkles. This length-matching design ensures that the translucent gauze 2 presents a flat and aesthetically pleasing visual effect after assembly, while also cooperating with the linear profile 1 and back panel 3 to achieve a secure installation.
[0066] The back panel 3 serves as the supporting structure for the linear profile 1 and the translucent gauze 2, and can be designed as a flat plate or an arc-shaped plate according to actual assembly requirements.
[0067] In one alternative implementation, when the back panel 3 is designed as a flat plate, its surface is smooth and it mates with the translucent gauze 2 and the mounting groove 13 of the linear profile 1 to achieve standardized assembly. This design is suitable for ordinary flat wall decoration scenarios, with a simple structure, convenient processing, and easy installation in conjunction with other assembly components.
[0068] In another alternative implementation, when the back panel 3 is designed as a curved panel structure, its surface has a certain curvature to adapt to curved walls or other special shape requirements. In the curved panel structure, the flexibility of the translucent gauze 2 allows it to fit snugly against the curved surface of the back panel 3, while maintaining a good curved fit with the linear profile 1. This structure is particularly suitable for decorating curved walls, increasing visual depth and aesthetics.
[0069] In some embodiments, the linear profile 1 is made of a rigid material, and the back plate 3 is made of a high-strength material that cooperates with the linear profile 1.
[0070] Specifically, the linear profile 1, as the core structural component of the prefabricated wall panel installation, mainly serves to support the translucent gauze 2, connect the back panel 3, and fix the entire structure. Therefore, the linear profile 1 is made of rigid materials, such as metal materials (e.g., aluminum alloy, stainless steel) or high-strength rigid plastics (e.g., ABS, polycarbonate).
[0071] The backplate 3, as an installation structure that works in conjunction with the linear profile 1, primarily functions to support the light-emitting component 5 and provide stable support for the translucent gauze 2. It is also fixedly connected to the linear profile 1 to enhance overall strength. Therefore, the backplate 3 is made of high-strength materials, such as high-strength steel plates, composite materials (e.g., glass fiber reinforced plastics), or high-density wood-based panels.
[0072] The rigid material of the linear profile 1 and the high-strength material of the back plate 3 work together, achieving a plug-in connection through the back plate insertion slot 14, and are further secured together with screws. This combination of materials offers the following advantages:
[0073] The rigid profile 1 provides rigid support for the translucent gauze 2, while the high-strength backplate 3 provides load-bearing and impact resistance for the entire installation.
[0074] The combination of two high-performance materials enables prefabricated wall panels to maintain stable performance during long-term use and resist the erosion of the external environment.
[0075] The high precision of the rigid material ensures a precise fit between the linear profile 1 and the back plate 3, further improving the assembly efficiency and connection strength of the overall structure.
[0076] The above embodiments have provided a detailed description of the structure of the prefabricated wall panel installer of this application. The following describes in detail the installation method of the prefabricated wall panel installer in conjunction with the prefabricated wall panel installer provided in the above embodiments.
[0077] The following section provides a complete explanation of the installation process for the prefabricated wall panel installation components of this application, using examples from specific scenarios. This process may include the following:
[0078] First, the linear profile 1 is inserted into one end of the back plate 3 via its back plate insertion slot 14. Specifically, at the bottom of the linear profile 1, the back plate insertion slot 14 is formed by a bottom edge 15 and an insertion edge 17 facing each other, creating a narrow channel for inserting the back plate 3. During assembly, one end of the back plate 3 is inserted along the insertion direction of the insertion slot 14 until the back plate 3 is fully embedded in the back plate insertion slot 14, forming a secure mechanical connection. Subsequently, the linear profile 1 and the back plate 3 are further fixedly connected using fasteners (such as screws) (this part is detailed in step S304). Through this step, the linear profile 1 and the back plate 3 form a preliminary assembly structure.
[0079] Next, the end of the translucent gauze 2 is inserted into the opening structure at the top of the linear profile 1. The opening structure 16 at the top of the linear profile 1 is formed between adjacent arcuate edges 11 and upper support edges 12, and is used to accommodate the edge of the translucent gauze 2. During installation, one end of the translucent gauze 2 is inserted into the opening structure 16 and gradually inserted along the length of the linear profile 1, so that it is flatly attached to the mounting groove 13. The mounting groove 13 of the linear profile 1 is formed by the upper support edges 12, providing stable support for the arcuate shape of the translucent gauze 2.
[0080] Then, adhesive is applied to the back of the translucent gauze 2, and the translucent gauze 2 is dot-bonded to the arc edge 11 and upper support edge 12 of the linear profile 1. Specifically, an appropriate amount of adhesive is applied to multiple locations on the back of the translucent gauze 2 (such as edges or local support areas), and then dot-bonded to the arc edge 11 and upper support edge 12 of the linear profile 1. The dot-bonding design ensures the secure installation of the translucent gauze 2 while preventing material deformation or damage to light transmission performance that may occur with large-area bonding. At the same time, the dot-bonding maintains the arc shape and aesthetics of the translucent gauze 2 surface during the shaping and support process.
[0081] Finally, fasteners (such as screws) are used to penetrate the bottom edge 15 of the back panel 3 and the linear profile 1 to securely connect the linear profile 1 and the back panel 3. Specifically, screw holes or fastening holes are pre-drilled in the bottom edge 15 of the linear profile 1. The fasteners extend through the back panel 3 and screw into the bottom edge 15 to form a secure threaded connection. This through-type fixing method not only enhances the overall stability of the linear profile 1 and the back panel 3, but also further improves the seismic resistance and durability of the prefabricated wall panel.
[0082] It should be understood that the sequence number of each step in the above method embodiments does not imply the order of execution. The execution order of each process should be determined by its function and internal logic, and should not constitute any limitation on the implementation process of the embodiments of this disclosure.
[0083] The above are merely preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention should be included within the scope of protection of the present invention. Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit them. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present invention.
Claims
1. A prefabricated wall panel installation component, characterized in that, include: A linear profile, wherein the top of the linear profile is provided with an arc edge and an upper support edge, the linear profile has a mounting groove for fixing a translucent gauze, and the arc edge and the upper support edge are used to provide arc-shaped support for the translucent gauze; The back plate insertion slot is provided on both sides of the linear profile. One end of the back plate is inserted into the back plate insertion slot. The back plate insertion slot cooperates with the bottom edge of the linear profile to realize the installation of the linear profile. Fasteners are used to fix the back plate through the bottom edge of the linear profile. The translucent gauze is connected to the arc edge and upper support edge of the linear profile by applying glue to form a shape support.
2. The prefabricated wall panel installation component according to claim 1, characterized in that, The upper support edge and the arc edge of the linear profile form a closed mounting groove on the upper part of the linear profile, and an opening structure extending along the length direction of the linear profile is formed between adjacent arc edges, and the end of the light-transmitting gauze is inserted into the opening structure.
3. The prefabricated wall panel installation component according to claim 1, characterized in that, The mounting groove inside the linear profile has a T-shaped structure, and an insertion edge is provided opposite to the bottom edge of the linear profile. The bottom edge and the insertion edge form the back plate insertion groove.
4. The prefabricated wall panel installation component according to claim 3, characterized in that, The back panel is installed in a plug-in manner with the linear profile through the back panel insertion slot, so that the linear profile and the back panel are assembled and connected.
5. The prefabricated wall panel installation component according to claim 1, characterized in that, The back panel is provided with a light-emitting component on its surface. The light-emitting component is fixed by an adhesive and is located on the back of the light-transmitting gauze. The light-emitting component and the light-transmitting gauze work together to achieve uniform light transmission.
6. The prefabricated wall panel installation component according to claim 1, characterized in that, The translucent gauze is a flexible material. The translucent gauze is connected to the upper support edge and the arc edge of the linear profile by a back-coated adhesive to form a dotted connection, thereby fixing the shape of the translucent gauze.
7. The prefabricated wall panel installation component according to claim 1, characterized in that, The fastener is a screw that passes through the back plate and connects to the bottom edge of the linear profile to fix the linear profile to the back plate.
8. The prefabricated wall panel installation component according to claim 1, characterized in that, The length of the translucent gauze is matched with the length of the prefabricated wall panel, and the back panel is a flat plate or an arc-shaped plate.
9. The prefabricated wall panel installation component according to claim 1, characterized in that, The linear profile is made of a rigid material, and the back plate is made of a high-strength material that matches the linear profile.
10. The prefabricated wall panel installation component according to claim 5, characterized in that, The light-emitting component is an LED lamp, which is connected to the wall base structure via a power supply and is evenly distributed on the back of the translucent gauze.