Hole plate mounting member
By combining connecting components and fixing sleeves, along with the use of structural adhesive, the problems of unstable installation and poor aesthetics of perforated panels are solved, achieving a stable connection and simplified construction.
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
The existing perforated board installation method has insufficient stability, is prone to falling off, lacks standardized supporting components, resulting in positional displacement, instability, and affecting aesthetics and construction efficiency.
The perforated board adopts a combination structure of connecting components and fixing sleeves. The connecting components include a bottom surface, a fixing flange and a slot, and the fixing sleeve includes an outer ring and a sleeve body. It is fixed to the base plate with screws. Combined with the use of structural adhesive, a stable connection between the perforated board and the base plate is achieved.
It improves the installation stability and aesthetics of perforated boards, simplifies the construction process, and enhances the installation's firmness and overall appearance.
Smart Images

Figure CN224244290U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of building materials technology, and in particular to a perforated board mounting component. Background Technology
[0002] In the field of architectural decoration, perforated panels are widely used for interior and exterior wall decoration due to their light transmission, aesthetic appeal, and ventilation. However, in current technology, the installation of perforated panels mainly relies on adhesive application, that is, directly pasting the perforated panels to the substrate or supporting structure using structural adhesive. This installation method has the following drawbacks:
[0003] Insufficient stability: The adhesive method lacks mechanical fixing means, and over time, environmental factors (such as thermal expansion and contraction, aging, etc.) may cause the bonding strength to decrease, resulting in the risk of falling off.
[0004] Lack of standardized supporting components: In existing technologies, there are no dedicated matching connecting components between perforated panels and adjacent wall panels (such as prefabricated wall panels), which can easily lead to problems such as positional displacement and instability during installation, affecting the overall aesthetics and construction efficiency.
[0005] Therefore, there is an urgent need for a new type of installation component that can simultaneously achieve mechanical fixing and efficient connection between perforated panels and wall panels, in order to improve installation stability, aesthetics, and ease of construction. Summary of the Invention
[0006] In view of this, the present application provides a perforated board mounting component to solve the problems of insufficient stability, easy detachment, insecure installation, and impact on overall aesthetics in the prior art.
[0007] This application provides a perforated panel mounting component, including: a connecting component, the connecting component including a bottom surface, a fixing flange and a first slot, a second slot forming between the fixing flange and the bottom surface of the connecting component, the second slot engaging with the side surface of the perforated panel, and the first slot being inserted into the decorative panel to engage with the decorative panel; a fixing sleeve, the fixing sleeve including an outer ring and a sleeve body, the outer ring of the fixing sleeve fitting against the surface of the perforated panel, the sleeve body passing through a hole in the perforated panel, and the bottom surface of the fixing sleeve being connected to a base plate; wherein, a screw passes through the bottom surface of the sleeve body to fix the fixing sleeve to the base plate.
[0008] In one possible implementation, the connecting member further includes a decorative panel disposed below the bottom surface and behind the second slot. The decorative panel is used to cover the side of the perforated plate and the connection position of the connecting member, so as to hide the joint position between the connecting member and the perforated plate.
[0009] In one possible implementation, the decorative panel is fixed to the finish layer of the connecting member by adhesive bonding, and the appearance of the decorative panel matches the surface appearance of the perforated panel.
[0010] In one possible implementation, both the first and second slots are U-shaped structures, with the shape of the second slot matching the side edge of the perforated plate so that the side of the perforated plate can be embedded into the second slot.
[0011] In one possible implementation, the fixing flange of the connecting member is a planar plate-like structure arranged laterally along the length of the connecting member, which forms a second slot with the bottom surface to provide side mounting for the perforated plate.
[0012] In one possible implementation, the main body of the fixed sleeve is a hollow cylindrical structure, the diameter of the main body of the sleeve is adapted to the hole in the perforated plate, and the bottom surface of the fixed sleeve is used to limit the depth of insertion of the main body of the sleeve into the hole.
[0013] In one possible implementation, the outer ring is arranged circumferentially along the sleeve body and has an annular structure. The diameter of the outer ring is larger than the diameter of the sleeve body, and the outer ring contacts and engages with the edge of the hole in the perforated plate to limit the position of the perforated plate.
[0014] In one possible implementation, the baseboard is fixed to the partition wall stud by bolts, and the screws pass through the bottom surface of the connecting member, the baseboard and the partition wall stud in sequence to fix the connecting member to the partition wall stud.
[0015] In one possible implementation, both the connecting member and the fixing sleeve are made of metal, and both are integrally formed.
[0016] In one possible implementation, structural adhesive is also included, which is applied between the baseboard and the decorative panel, as well as between the baseboard and the perforated panel.
[0017] The perforated panel mounting component provided in this application includes: a connecting component, which includes a bottom surface, a fixing flange, and a first slot; a second slot is formed between the fixing flange and the bottom surface of the connecting component, and the second slot engages with the side of the perforated panel; the first slot is inserted into the decorative panel and engages with the decorative panel; and a fixing sleeve, which includes an outer ring and a sleeve body; the outer ring of the fixing sleeve is fitted to the surface of the perforated panel, the sleeve body passes through a hole in the perforated panel, and the bottom surface of the fixing sleeve is connected to the base plate; wherein a screw passes through the bottom surface of the sleeve body to fix the fixing sleeve to the base plate. This application can improve the stability and safety of perforated panel installation, resulting in a more secure installation and a more aesthetically pleasing overall appearance. Attached Figure Description
[0018] 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.
[0019] Figure 1 This is a structural schematic diagram of the perforated plate mounting component provided in the embodiments of this application;
[0020] Figure 2 This is a schematic diagram of the structure of the fixing sleeve provided in the embodiment of this application;
[0021] Figure 3 This is a schematic diagram of the installation position of the perforated plate mounting component and fixing sleeve provided in the embodiments of this application.
[0022] The reference numerals in the figures are as follows: 1. Connecting component; 11. Bottom surface; 12. Fixing flange; 13. First slot; 14. Second slot; 15. Decorative panel; 2. Perforated panel; 3. Decorative panel; 4. Fixing sleeve; 41. Outer ring; 42. Sleeve body; 5. Base plate; 6. Structural adhesive; 7. Screw; 8. Partition wall keel. Detailed Implementation
[0023] 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.
[0024] In the description of this application, 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", "circumferential", etc., indicating the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, are only for the convenience of describing this application 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, and therefore should not be construed as a limitation of this application.
[0025] 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 application, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.
[0026] In this application, unless otherwise expressly specified and limited, the terms "installation," "connection," "joining," 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 expressly limited. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.
[0027] In this application, unless otherwise expressly 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," "on top of," and "over" 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.
[0028] As described in the background section, perforated panels are a type of structural material widely used for architectural decoration, sound insulation, and ventilation. Their surface has regularly spaced holes, and when connected and installed with other components, they can achieve both good decorative effects and specific functions (such as ventilation and sound insulation). In practical applications, the installation method of perforated panels needs to consider the following requirements:
[0029] Stability: Pegboards are typically installed on building foundations and must remain secure and resistant to detachment over the long term. Aesthetics: Installation components must not damage the decorative surface of the pegboard and must conceal the fixing structure.
[0030] Ease of construction: It needs to be easy to install and disassemble, while ensuring construction efficiency.
[0031] Traditionally, perforated panels are installed by directly fixing them to the base wall with screws. While this method is simple, it still has the following drawbacks: it can easily damage the decorative panel, affecting its appearance; the screws may not be evenly fixed during construction, causing the panel to loosen or fall off; and the screw heads are exposed, affecting the overall decorative effect.
[0032] Currently, some improved installation methods employ snap-fit or frame structures to address the aforementioned issues. For example, snap-fit installation involves slots on the back of the perforated board, allowing it to connect to the wall's joists via clips. However, this method typically requires complex pre-processing of the perforated board, increasing manufacturing costs.
[0033] Alternatively, there is frame installation: a frame is used to hold the perforated board in place and connect it to the base wall. While this method reduces damage to the board, the frame may be exposed, affecting aesthetics, and the construction process is more complex.
[0034] Therefore, existing technologies cannot simultaneously meet the requirements of stability, aesthetics, and ease of construction when installing perforated panels.
[0035] In view of the problems existing in the prior art, this application aims to solve the above-mentioned technical problems. The purpose of this application is to provide an installation component that can enhance the installation firmness of perforated panels and realize the matching connection between perforated panels and prefabricated wall panels, ensuring the stability and appearance of the structure. At the same time, it provides an installation method that makes installation more convenient and efficient.
[0036] The optional embodiments of this application are described in detail below with reference to the accompanying drawings.
[0037] Please see Figures 1 to 3 , Figure 1 This is a structural schematic diagram of the perforated plate mounting component provided in the embodiments of this application. Figure 2 This is a schematic diagram of the structure of the fixing sleeve provided in the embodiment of this application. Figure 3 This is a schematic diagram showing the installation position of the perforated plate mounting component and fixing sleeve provided in the embodiments of this application. For example... Figures 1 to 3 As shown in the embodiment of this application, a perforated panel mounting component is provided. The perforated panel mounting component includes: a connecting component 1, which includes a bottom surface 11, a fixing flange 12, and a first slot 13. A second slot 14 is formed between the fixing flange 12 and the bottom surface 11 of the connecting component 1. The second slot 14 engages with the side of the perforated panel 2. The first slot 13 is inserted into the decorative panel 3 and engages with the decorative panel 3. A fixing sleeve 4 includes an outer ring 41 and a sleeve body 42. The outer ring of the fixing sleeve 4 is fitted to the surface of the perforated panel 2. The sleeve body 42 passes through a hole in the perforated panel 2. The bottom surface of the fixing sleeve 4 is connected to the base plate 5. A screw 7 passes through the bottom surface of the sleeve body 42 to fix the fixing sleeve 4 onto the base plate 5.
[0038] In some embodiments, the connecting member 1 further includes a decorative plate 15, which is disposed below the bottom surface 11 and behind the second slot 14. The decorative plate 15 is used to cover the side of the perforated plate 2 and the connection position of the connecting member 1 to hide the joint position of the connecting member 1 and the perforated plate 2.
[0039] Specifically, the decorative panel 15 is fixed to the bottom surface 11 by adhesive or snap-fit. Its shape is adapted to the side of the perforated panel 2 to cover the connection position between the side of the perforated panel 2 and the connecting member 1. By setting the decorative panel 15, the joint position between the connecting member 1 and the perforated panel 2 can be effectively hidden, so that the perforated panel has a more beautiful appearance after installation.
[0040] In use, after the perforated plate 2 is inserted into the second slot 14 through its side and engages, the decorative plate 15 covers the joint area between the side of the perforated plate 2 and the second slot 14. Thus, the decorative plate 15 not only enhances the aesthetics but also provides some protection to the joint area, preventing external dust or other contaminants from entering between the joint components, thereby further extending the service life of the overall structure.
[0041] Furthermore, the material of the decorative panel 15 can be either flexible or rigid, depending on the application scenario. For example, in scenarios where an enhanced aesthetic appeal is required, a metal decorative panel 15 can be used; in cost-sensitive scenarios or scenarios requiring a certain degree of flexibility, a plastic or composite material decorative panel 15 can be chosen.
[0042] Through the above structural design, the decorative panel 15 is used in conjunction with the bottom surface 11 and the second slot 14 of the connecting member 1, which not only enhances the functionality of the perforated panel mounting member, but also further optimizes the overall visual effect and practical performance of the perforated panel after installation.
[0043] In some embodiments, the decorative panel 15 is fixed to the finishing layer of the connecting member 1 by adhesive bonding, and the appearance of the decorative panel 15 matches the surface appearance of the perforated panel 2.
[0044] Specifically, the shape and size of the decorative panel 15 match the surface appearance of the perforated panel 2, making the overall appearance more harmonious and unified after installation. The decorative panel 15 covers the decorative layer 12 of the connecting member 1 and is used to cover the joint between the connecting member 1 and the perforated panel 2, thereby hiding the connection position and improving the aesthetics of the installation structure.
[0045] Decorative panel 15 is fixed to the surface layer 12 using an adhesive bonding process. High-strength, durable adhesives can be selected to ensure that decorative panel 15 will not fall off during long-term use. Furthermore, the surface material of decorative panel 15 is consistent with that of perforated panel 2; for example, the same metal, plastic, or surface-coated decorative materials can be used to create a visually unified effect.
[0046] In practical applications, when the perforated panel 2 is installed onto the connecting member 1, the decorative panel 15 can completely cover the finishing layer 12 of the connecting member 1 and the related joint area, thereby achieving the following functions:
[0047] Enhance the overall aesthetic appeal of the installation structure, making the perforated panel 2 more harmonious with the surrounding decorative environment; provide additional protection to prevent the surface layer 12 of the connecting component 1 from being exposed to the external environment and becoming contaminated or worn; through a matching appearance design, the decorative panel 15 is seamlessly integrated with the perforated panel 2 after installation, achieving a simple and beautiful visual effect.
[0048] Through the above structural design, the setting of decorative panel 15 not only optimizes the functionality of the perforated panel mounting components, but also enhances the overall visual unity after installation, providing a more complete solution for the actual application scenarios of perforated panels.
[0049] In some embodiments, both the first slot 13 and the second slot 14 are U-shaped structures, and the shape of the second slot 14 matches the side edge of the perforated plate 2 so that the side of the perforated plate 2 can be embedded in the second slot 14.
[0050] Specifically, the opening of the first slot 13 faces the trim panel 3 and is used to fit into the edge of the trim panel 3 to ensure a fixed connection between the trim panel 3 and the connecting member 1. The inner wall dimensions of the first slot 13 are designed to match the thickness of the trim panel 3 to achieve a stable locking effect and prevent the trim panel 3 from loosening or falling off.
[0051] The second slot 14 is formed between the fixing flange 12 of the connecting member 1 and the bottom surface 11. Its shape matches the side edge of the perforated plate 2, and it is used to embed the side of the perforated plate 2 into the second slot 14. The U-shaped structure of the second slot 14 has two inner walls and a bottom. The two inner walls are respectively fitted to the side edge of the perforated plate 2, and the bottom is used to support the side of the perforated plate 2. This embedding structure ensures that the perforated plate 2 remains stable in the second slot 14 and is not easy to slide or fall off.
[0052] During actual installation, the side edge of the perforated plate 2 is pressed into the opening of the second slot 14, and the U-shaped structure clamps and fixes it in place. Simultaneously, because the shape of the second slot 14 matches the side edge of the perforated plate 2, the fit of the clamping is further improved, preventing loosening due to shape mismatch.
[0053] Through the above structural design, the U-shaped structure of the first slot 13 and the second slot 14 not only enhances the fixing effect between the connecting member 1 and the decorative panel 3 and the perforated board 2, but also simplifies the installation steps and ensures the stability and reliability of the perforated board mounting member during use.
[0054] In some embodiments, the fixing flange 12 of the connecting member 1 is a planar plate-like structure arranged laterally along the length direction of the connecting member 1, which is used to form a second slot 14 between itself and the bottom surface 11 so as to provide side mounting for the perforated plate 2.
[0055] Specifically, the fixed flange 12 is arranged parallel to the bottom surface 11, forming a second slot 14 with an opening facing the perforated plate 2. The width of the second slot 14 is designed to match the side edge of the perforated plate 2, and is used to embed the side of the perforated plate 2 into it to achieve a snap-fit fixation. The fixed flange 12 has a plate-like structure, which provides sufficient support during snap-fit, preventing the perforated plate 2 from detaching from the slot due to force.
[0056] During installation, the side edge of the perforated plate 2 is inserted along the opening direction of the second slot 14 and clamped and fixed by the upper and lower inner walls of the second slot 14. Due to the parallel arrangement of the fixing flange 12 and the bottom surface 11, and the planar plate structure of the laterally extending fixing flange 12, the side of the perforated plate 2 can fit tightly against the inner wall of the second slot 14, thereby improving the stability of the installation.
[0057] Furthermore, the planar plate-like structure design of the fixed flange 12 facilitates manufacturing and processing, while also reducing material usage and improving the overall lightweight effect of the component. In practical use, the fixed flange 12 not only provides a side-mounted support structure for the perforated plate 2, but also effectively restricts the lateral displacement of the perforated plate 2 through its cooperation with the bottom surface 11, further enhancing the installation stability of the perforated plate 2.
[0058] Through the above structural design, the fixed flange 12, as an important component of the second slot 14, together with the bottom surface 11, forms a reliable snap-fit structure, providing an efficient and stable solution for the side mounting of the perforated plate 2.
[0059] In some embodiments, the sleeve body 42 of the fixing sleeve 4 is a hollow cylindrical structure, the diameter of the sleeve body 42 is adapted to the hole on the perforated plate 2, and the bottom surface of the fixing sleeve 4 is used to limit the depth of the sleeve body 42 inserted into the hole.
[0060] Specifically, the sleeve body 42 has a certain length and diameter, the diameter of which is designed to fit the holes on the perforated plate 2, so as to pass through the holes in the perforated plate 2, thereby realizing the mating installation of the fixing sleeve 4 and the perforated plate 2. Since the sleeve body 42 is a hollow cylindrical structure, its internal space can effectively reduce the overall weight of the fixing sleeve 4, and at the same time facilitate its subsequent fixing to the base plate 5 by screws 7.
[0061] The bottom surface of the fixing sleeve 4 is located at one end of the sleeve body 42, and its diameter is larger than that of the sleeve body 42, thus forming an outwardly extending edge structure. This bottom surface is used to limit the depth of insertion of the sleeve body 42 into the hole of the perforated plate 2. That is, when the sleeve body 42 is inserted into the hole, the bottom surface will contact the surface of the perforated plate 2 and form a support, preventing the sleeve body 42 from being excessively inserted into the hole of the perforated plate 2.
[0062] During actual installation, after the sleeve body 42 passes through the hole in the perforated plate 2, the bottom surface of the fixing sleeve 4 is in contact with the surface of the perforated plate 2, while the other end of the sleeve body 42 passes through the perforated plate 2 and extends towards the base plate 5. Subsequently, the screw 7 passes through the center of the bottom surface of the sleeve body 42 and is directly screwed into the base plate 5, thereby firmly installing the fixing sleeve 4 on the base plate 5 and achieving mechanical fixation of the perforated plate 2 through the sleeve body 42.
[0063] Through the above structural design, the hollow cylindrical structure of the sleeve body 42 not only ensures precise fit with the holes in the perforated plate 2, but also limits the insertion depth by utilizing the bottom surface of the fixed sleeve 4, thus guaranteeing the reliability and stability of the installation. Furthermore, the hollow structure design optimizes the weight and material usage of the fixed sleeve 4, further improving the overall performance and economy of the installation components.
[0064] In some embodiments, the outer ring 41 is arranged circumferentially along the sleeve body 42, and the outer ring 41 has an annular structure. The diameter of the outer ring 41 is larger than the diameter of the sleeve body 42. The outer ring 41 contacts and engages with the edge of the hole in the perforated plate 2 to limit the position of the perforated plate 2.
[0065] Specifically, the outer ring 41 and the sleeve body 42 are integrally formed. The diameter of the outer ring 41 is larger than the diameter of the sleeve body 42, and its plane is perpendicular to the axis of the sleeve body 42. The outer ring 41 extends circumferentially around the top of the sleeve body 42, forming an annular edge wider than the sleeve body 42, for contact and mating with the edge of the hole in the perforated plate 2.
[0066] During actual installation, when the sleeve body 42 passes through the hole in the perforated plate 2, the outer ring 41 fits against the edge of the hole in the perforated plate 2. Since the diameter of the outer ring 41 is larger than the diameter of the hole, the outer ring 41 can effectively limit the hole in the perforated plate 2, preventing the perforated plate 2 from shifting along the axial direction of the sleeve body 42, thereby maintaining the stability and positional accuracy of the perforated plate 2 during installation.
[0067] Furthermore, the annular structure design of the outer ring 41 not only evenly distributes the pressure of the sleeve body 42 on the edge of the perforated plate 2, but also enhances the overall mechanical stability, preventing deformation or damage caused by localized stress. The thickness and diameter of the outer ring 41 can be adjusted according to the hole size of the perforated plate 2 to accommodate different types of perforated plate installation requirements.
[0068] Through the above structural design, the outer ring 41 and the sleeve body 42 work together to reliably limit the edge of the hole in the perforated plate 2, while ensuring the stability and accuracy of the perforated plate 2 during installation, thereby improving the overall functionality and reliability of the perforated plate installation components.
[0069] In some embodiments, the base plate 5 is fixed to the partition wall keel 8 by bolts, and the screws 7 pass through the bottom surface 11 of the connecting member 1, the base plate 5 and the partition wall keel 8 in sequence to fix the connecting member 1 and the partition wall keel 8.
[0070] Specifically, the base plate 5 is installed on the surface of the partition wall keel 8. Its material can be metal plate, composite material plate or other materials with sufficient strength to provide reliable support for the connecting member 1. The bottom surface 11 of the connecting member 1 is fixed to the base plate 5 by screws, wherein the screws pass through the pre-set holes in the bottom surface 11 and pass through the base plate 5 and the partition wall keel 8 in sequence along the vertical direction, and finally the screws are firmly locked by nuts or threaded connection.
[0071] During installation, the base plate 5 is first fixed to the partition wall keel 8, ensuring that the surface of the base plate 5 is flat. Then, the bottom surface 11 of the connecting component 1 is aligned with the base plate 5, and screws are passed through the pre-set mounting holes in sequence through the bottom surface 11, the base plate 5 and the partition wall keel 8. Finally, the connecting component 1 is firmly connected to the partition wall keel 8 by tightening the nuts or threads.
[0072] Through the above structural design, the base plate 5 serves as a transitional support, enhancing the load-bearing capacity of the partition wall stud 8 and providing a stable fixing foundation for the connecting component 1. Simultaneously, screws penetrate the connecting component 1, base plate 5, and partition wall stud 8, forming an integrated fixing structure that effectively improves the overall strength and durability of the perforated board installation components. The fixed connection of the base plate 5 to the partition wall stud with screws not only ensures the stable installation of the connecting component 1 but also enhances the overall structural stability and service life of the perforated board installation components. Furthermore, this installation method can adapt to standard partition wall stud structures, facilitating construction and maintenance.
[0073] In some embodiments, both the connecting member 1 and the fixing sleeve 4 are made of metal material, and both the connecting member 1 and the fixing sleeve 4 are integrally formed.
[0074] In some embodiments, structural adhesive 6 is also included, which is applied between the base plate 5 and the decorative panel 3, and between the base plate 5 and the perforated panel 2.
[0075] Specifically, structural adhesive 6 is a high-strength adhesive that forms a strong adhesive layer after application. During installation, a layer of structural adhesive 6 is first evenly applied to the surface of the baseboard 5, and then the decorative panel 3 is pressed onto the baseboard 5, where it is bonded and fixed using structural adhesive 6. At the same time, structural adhesive 6 is also applied to the contact surface between the baseboard 5 and the perforated panel 2. After the perforated panel 2 is snapped into the connecting member 1 through the second slot 14, its bottom is bonded and fixed to the baseboard 5 using structural adhesive 6, thereby further enhancing the stability of the installation.
[0076] By applying structural adhesive 6 to the above-mentioned locations, the following functions can be achieved:
[0077] Improved installation stability: The adhesive of structural adhesive 6 provides additional adhesion on top of screw and snap-fit fixing, effectively preventing the perforated board 2 and decorative panel 3 from loosening or falling off due to long-term use or external force.
[0078] Buffering and sealing function: Structural adhesive 6 can fill the tiny gaps that may exist between the base plate 5, the perforated plate 2, and the decorative panel 3, thereby enhancing the sealing of the structure and playing a certain role in shock absorption and buffering.
[0079] Optimize the appearance: Through the bonding of structural adhesive 6, the decorative panel 3 can fit more tightly to the base plate 5, hiding the joint position of the connecting parts, thereby improving the aesthetics of the overall installation structure.
[0080] In addition, the choice of structural adhesive 6 can be adjusted according to the actual use environment. For example, a waterproof structural adhesive can be selected in a humid environment, and a high-temperature resistant structural adhesive can be selected in a high-temperature environment to adapt to different construction conditions and usage requirements.
[0081] Through the above structural design, the structural adhesive 6 is combined with mechanical fixing methods such as screws and clips to form a composite connection method, which not only improves the overall stability of the perforated board installation components, but also further extends its service life and reliability.
[0082] The above embodiments have provided a detailed description of the structure of the perforated plate mounting component of this application. The following describes in detail the installation method of the perforated plate mounting component with reference to the perforated plate mounting component provided in the above embodiments.
[0083] Please continue reading. Figures 1 to 3 The installation method for this perforated plate mounting component may specifically include the following operations:
[0084] First, fix the baseboard to the partition wall studs. Then, use screws to pass through the bottom of the connecting component, sequentially inserting them into the baseboard and partition wall studs to secure the connecting component firmly to both. The fixing flange of the connecting component should fit snugly against the baseboard, while the slot should face the direction where the perforated plate will be installed.
[0085] Align the side edge of the pre-drilled perforated plate with the slot of the connecting component, and apply appropriate pressure to embed the side edge of the perforated plate into the slot, so that the inner wall of the slot fits against the side edge of the perforated plate, thereby achieving side fixation of the perforated plate.
[0086] Insert the main body of the fixing sleeve through the hole in the perforated plate until the outer ring of the fixing sleeve is in contact with the surface of the perforated plate. The bottom surface of the fixing sleeve contacts the base plate, limiting the insertion depth of the sleeve body and ensuring the stability of the perforated plate.
[0087] Insert a screw into the hollow part of the sleeve body, pass the screw through the bottom surface of the fixing sleeve, and screw it into the base plate until the fixing sleeve and the base plate are completely and tightly connected. At this time, the outer ring of the fixing sleeve effectively limits the edge of the hole in the perforated plate, preventing it from shifting horizontally or vertically during installation.
[0088] Structural adhesive is applied to the contact area between the bottom surface of the perforated panel and the baseboard, and also to the contact area between the sides of the perforated panel and the decorative panel. The application of structural adhesive further enhances the installation stability of the perforated panel and improves the sealing and durability of the joints.
[0089] Align the decorative panel with the first slot of the connecting component, and press the panel into the slot to ensure it adheres to the surface layer of the connecting component. Simultaneously, the decorative panel covers the connection point between the connecting component and the perforated panel, concealing the joint and enhancing the wall's aesthetics.
[0090] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of this application should be included within the scope of protection of this application. Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this application and are not intended to limit them. Although this application 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 this application.
Claims
1. A perforated panel mounting component, characterized in that, include: A connecting member includes a bottom surface, a fixed flange, and a first slot. A second slot is formed between the fixed flange and the bottom surface of the connecting member. The second slot engages with the side of the perforated panel. The first slot is inserted into the decorative panel and engages with the decorative panel. A fixing sleeve includes an outer ring and a sleeve body. The outer ring of the fixing sleeve is fitted to the surface of the perforated plate, and the sleeve body is inserted into a hole in the perforated plate. The bottom surface of the fixing sleeve is connected to the base plate. A screw passes through the bottom surface of the sleeve body to fix the fixing sleeve to the base plate.
2. The perforated plate mounting component according to claim 1, characterized in that, The connecting member also includes a decorative panel, which is disposed below the bottom surface and behind the second slot. The decorative panel is used to cover the side of the perforated plate and the connection position of the connecting member, so as to hide the joint position of the connecting member and the perforated plate.
3. The perforated plate mounting component according to claim 2, characterized in that, The decorative panel is fixed to the surface layer of the connecting member by adhesive bonding, and the appearance of the decorative panel matches the surface appearance of the perforated board.
4. The perforated plate mounting component according to claim 1, characterized in that, Both the first slot and the second slot are U-shaped structures. The shape of the second slot matches the side edge of the perforated plate so that the side of the perforated plate can be embedded in the second slot.
5. The perforated plate mounting component according to claim 1, characterized in that, The fixed flange of the connecting member is a planar plate-like structure arranged laterally along the length of the connecting member, which is used to form the second slot with the bottom surface so as to provide side mounting for the perforated plate.
6. The perforated plate mounting component according to claim 1, characterized in that, The main body of the fixed sleeve is a hollow cylindrical structure, and the diameter of the main body of the sleeve is adapted to the hole in the perforated plate. The bottom surface of the fixed sleeve is used to limit the depth to which the main body of the sleeve is inserted into the hole.
7. The perforated plate mounting component according to claim 6, characterized in that, The outer ring is arranged circumferentially along the sleeve body and has an annular structure. The diameter of the outer ring is larger than the diameter of the sleeve body. The outer ring contacts and engages with the edge of the hole in the perforated plate to limit the position of the perforated plate.
8. The perforated plate mounting component according to claim 1, characterized in that, The base plate is fixed to the partition wall keel by bolts, and the screws pass through the bottom surface of the connecting member, the base plate and the partition wall keel in sequence to fix the connecting member to the partition wall keel.
9. The perforated plate mounting component according to any one of claims 1 to 8, characterized in that, Both the connecting member and the fixing sleeve are made of metal, and both are integrally formed.
10. The perforated plate mounting component according to claim 1, characterized in that, It also includes structural adhesive, which is applied between the baseboard and the decorative panel, and between the baseboard and the perforated panel.