An integrated assembly system for customized cabinets and wall panels

Through the integrated assembly system of customized cabinets and wall panels, the position adjustment mechanism and clamping components are used to achieve vertical adjustment and quick disassembly and assembly of the skeleton body, which solves the installation gap problem between the customized cabinet and the wall, improves construction efficiency and aesthetics, and facilitates later maintenance.

CN120284073BActive Publication Date: 2025-09-16SUOFEIYA HOME COLLECTION
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Patent Information

Application Number
CN202510779915.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-06-12
Publication Date
2025-09-16
Estimated Expiration
2045-06-12

AI Technical Summary

Technical Problem

There are installation gap issues caused by dimensional errors between existing custom cabinets and wall installations. Traditional installation methods increase construction cycles and material costs, and cannot achieve quick disassembly and assembly and subsequent maintenance.

Method used

An integrated assembly system of customized cabinets and wall panels is adopted, including a first skeleton body with a position adjustment mechanism, an elastic snap-in component and a detachable wall panel connection mechanism. The vertical movement of the skeleton body is achieved through the adjustment element. Combined with the snap-in component and the wall panel connection mechanism, the back panel and side panels can be quickly disassembled and assembled, forming a modular assembly system.

Benefits of technology

It solves the installation gap problem caused by wall size errors, simplifies the construction process, reduces the need for closing, improves installation efficiency and space aesthetics, and facilitates later maintenance and component replacement.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an integrated assembly system for custom cabinets and wall panels, comprising a first skeleton body, comprising a main body, a first connecting portion, and a second connecting portion, both of which extend away from the wall; a position adjustment mechanism, comprising a connecting element for connecting the main body to the wall and an adjusting element for driving the first skeleton body to move in a direction perpendicular to the wall, the main body and the connecting element being movably connected; a snap-fit ​​assembly, disposed on a back panel, configured to elastically snap-fit ​​or detach with the second connecting portion to achieve detachable installation of the back panel and the first skeleton body; and a wall panel connecting mechanism, configured to connect a wall decorative panel and a side panel, the wall panel connecting mechanism being configured to allow detachable installation and removal of the wall decorative panel and the side panel, the wall decorative panel and the door panel sharing the side panel. The system has the advantages of eliminating the need for a closing process, shortening the construction period, and facilitating later maintenance.
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Description

Technical Field

[0001] The present invention relates to the technical field of furniture, and in particular to an integrated assembly system of customized cabinets and wall panels. Background Art

[0002] In the current interior decoration industry, the installation of custom cabinets and wall installations is generally carried out in batches and by separate teams. Specifically, the wall installation is usually completed first by the interior decoration construction team, involving processes such as wall base preparation, painting, and wall tile laying. After the installation is completed, the custom furniture production team will then produce and install the custom cabinets based on on-site measurements.

[0003] From a structural and installation perspective, custom cabinets are primarily secured to the wall using fasteners like expansion screws and brackets, typically leaving a gap of approximately 30-50mm between the two to accommodate dimensional variations in the wall. This installation method presents numerous drawbacks: First, dimensional variations during wall hard installation are difficult to completely avoid, leading to mismatches in the width and depth of the space during installation. This is particularly true when the wall is not perpendicular, creating a significant gap between the custom cabinet and the wall. Second, to address this gap, conventional approaches include adding finishing strips or gap-off closures to the edges of the custom cabinets. These closures not only increase installation steps and material costs, but also disrupt the overall coherence and aesthetics of the space. Third, the phased construction model prolongs the construction period and can lead to management issues such as unclear responsibilities between various links. Furthermore, the traditional installation method often uses fixed connections between the back panel and the frame, and between the wall panels and the side panels, making them difficult to quickly disassemble and disassemble. This results in the need for complete dismantling for maintenance or space renovations, resulting in a waste of resources. To address these issues, existing technologies urgently need improvement. Summary of the Invention

[0004] In response to the above defects in the existing technology, the present invention provides an integrated assembly system of customized cabinets and wall panels, which has the advantages of improving installation accuracy, reducing closing requirements, shortening construction period and facilitating later maintenance.

[0005] The present invention is achieved by adopting the following technical solutions:

[0006] A customized cabinet and wall panel integrated assembly system, comprising:

[0007] The first frame body includes a main body portion for connecting to the wall, a first connecting portion for connecting to the side panels, and a second connecting portion for connecting to the back panel, wherein the first connecting portion and the second connecting portion are both extended away from the wall;

[0008] a position adjustment mechanism comprising a connecting element for connecting the main body to the wall and an adjusting element for driving the first frame body to move in a direction perpendicular to the wall, the main body being movably connected to the connecting element;

[0009] a snap-fit ​​assembly disposed on the back plate, the snap-fit ​​assembly being configured to elastically snap-fit ​​or snap-fit ​​with the second connecting portion to achieve detachable installation of the back plate and the first skeleton body;

[0010] A wall panel connecting mechanism is used to connect a wall decoration panel and a side panel, wherein the wall panel connecting mechanism is configured to allow the wall decoration panel and the side panel to be detachably installed and removed, and the wall decoration panel and the door panel share the side panel.

[0011] Furthermore, the adjusting element is rotatably arranged on the connecting element, wherein a first transmission matching structure is provided between the adjusting element and the connecting element, and a second transmission matching structure is provided between the main body and the connecting element, and the first transmission matching structure and the second transmission matching structure are configured to drive the first skeleton body to move linearly by rotating the adjusting element.

[0012] Furthermore, the main body part has a first through hole with an internal thread, the connecting element has an external thread, the connecting element passes through the first through hole and is adapted to the internal thread of the first through hole, the adjusting element has an internal thread, the adjusting element is sleeved on the connecting element and is adapted to the external thread of the connecting element, and by rotating the adjusting element, the first skeleton body can be driven to move along the connecting element.

[0013] Furthermore, the position adjustment mechanism is provided in plurality, and the plurality of position adjustment mechanisms are arranged in sequence along the vertical direction of the first skeleton body.

[0014] Furthermore, the snap-fit ​​assembly is provided with a first mating portion, and the second connecting portion is provided with a second mating portion. The first mating portion or the second mating portion is made of elastic material, and generates a snap-fit ​​force through deformation. The first mating portion and the second mating portion are constructed to achieve elastic snap-fit ​​or disengagement through relative displacement to achieve installation or disassembly of the back panel and the first skeleton body.

[0015] Furthermore, the main body part and the first connecting part constitute a clamping position for clamping the side panel. The first connecting part has a positioning hole that can be penetrated by a self-tapping screw. The self-tapping screw passes through the positioning hole and is screwed into the side panel to fix the first connecting part to the side panel.

[0016] Furthermore, the wall panel connection mechanism includes a first connection member and a second connection member, the first connection member is arranged on the wall decoration panel or side panel, the first connection member is provided with a plug-in groove, the second connection member is arranged on the wall decoration panel or side panel, the second connection member is provided with a plug-in protrusion that cooperates with the plug-in groove, and the plug-in protrusion can be detachably plugged into the plug-in groove to realize the detachable installation and disassembly of the wall decoration panel and the side panel.

[0017] Furthermore, the plug-in groove opening is arranged toward the insertion direction of the plug-in protrusion, and the side wall of the plug-in groove is provided with a guiding inclined surface.

[0018] Furthermore, a wall panel base plate is provided between the wall decoration panel and the wall body, and the wall panel base plate and the wall decoration panel are detachably installed and disassembled via a wall panel connection mechanism.

[0019] Furthermore, it also includes a second skeleton body, which has two spaced-apart third connecting parts extending away from the wall and two spaced-apart fourth connecting parts. The two third connecting parts are combined with the second skeleton body to form an installation slot for clamping the side panel, and the fourth connecting part is used to connect to the clamping assembly on the back panel.

[0020] Compared with the prior art, the beneficial effects of the present invention include at least:

[0021] The first skeleton body of the present invention cooperates with a position adjustment mechanism to achieve linear adjustment of the first skeleton body in the vertical direction, thereby solving the installation gap problem caused by wall size errors; the back panel, wall decoration panel and side panel can be quickly disassembled and assembled through the snap-fit ​​assembly and the wall panel connection mechanism, avoiding the maintenance difficulties caused by traditional fixed connections, thereby reducing the need for closing, improving construction efficiency and the aesthetics of the space. Through the first skeleton body with a position adjustment function, combined with the elastic snap-fit ​​of the snap-fit ​​assembly and the detachable wall panel connection mechanism, a modular assembly system is formed, which supports rapid disassembly and assembly, facilitates later maintenance and component replacement, simplifies the installation process, and allows the installation of hard and cabinet bodies to be carried out simultaneously, thereby improving installation efficiency and greatly shortening the construction period. At the same time, the integrated connection design achieves a seamless connection between wall decoration and customized cabinets, thereby improving the aesthetics of the space. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 is a top view of the integrated assembly system of custom cabinets and wall panels according to an embodiment of the present invention;

[0023] Figure 2 is a cross-sectional view of a first skeleton body according to an embodiment of the present invention;

[0024] Figure 3 is a schematic structural diagram of a first through hole according to an embodiment of the present invention;

[0025] Figure 4 is a cross-sectional view of a second skeleton body according to an embodiment of the present invention;

[0026] Figure 5 is a schematic structural diagram of a second through hole according to an embodiment of the present invention;

[0027] Figure 6 It is a left side view of the clamping assembly according to an embodiment of the present invention;

[0028] Figure 7 is a front view of a clamping assembly according to an embodiment of the present invention;

[0029] Figure 8 is a left side view of a wall panel connection mechanism according to an embodiment of the present invention;

[0030] Figure 9 is a front view of a wall panel connection mechanism according to an embodiment of the present invention;

[0031] Figure 10 is a cross-sectional view of an adjusting element according to an embodiment of the present invention;

[0032] In the figure: 10. First skeleton body; 11. Main body; 12. First connecting part; 13. Second connecting part; 131. Second matching part; 14. First through hole; 15. Clamping position; 16. First groove; 17. First rubber strip; 20. Position adjustment mechanism; 21. Connecting element; 22. Adjusting element; 30. Clamping assembly; 31. First matching part; 32. Connecting hole; 40. Wall panel connecting mechanism; 41. First connecting member; 410. Inserting groove; 42. Second connecting member; 420. Inserting protrusion; 50. Cabinet; 51. Side panel; 52. Back panel; 53. Door panel; 60. Wall; 70. Second skeleton body; 71. Third connecting part; 72. Fourth connecting part; 73. Clamping slot; 74. Second groove; 75. Second rubber strip; 76. Second through hole; 80. Wall decoration panel; 81. Wall panel base plate; 90. Self-tapping screw. DETAILED DESCRIPTION

[0033] Example embodiments will now be described more fully with reference to the accompanying drawings. However, example embodiments can be implemented in many forms and should not be construed as limited to the embodiments set forth herein; rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the concepts of the example embodiments to those skilled in the art. Identical reference numerals in the drawings represent identical or similar structures, and thus repeated descriptions thereof will be omitted.

[0034] The words expressing positions and directions described in the present invention are all explained with reference to the accompanying drawings as examples, but can be modified as needed, and all such modifications are within the scope of protection of the present invention.

[0035] like Figures 1 to 10 As shown, the present invention provides a customized cabinet and wall panel integrated assembly system, comprising:

[0036] The first skeleton body 10 includes a main portion 11 for connecting to the wall 60, a first connecting portion 12 for connecting to the side panels 51, and a second connecting portion 13 for connecting to the back panel 52. The first connecting portion 12 and the second connecting portion 13 are both extended away from the wall 60.

[0037] a position adjustment mechanism 20 comprising a connecting element 21 for connecting the main body 11 to the wall 60 and an adjusting element 22 for driving the first skeleton body 10 to move in a direction perpendicular to the wall 60, wherein the main body 11 is movably connected to the connecting element 21;

[0038] The clamping assembly 30 is provided on the back plate 52 and is configured to be elastically engaged with or disengaged from the second connecting portion 13 to achieve detachable installation of the back plate 52 and the first skeleton body 10;

[0039] The wall panel connecting mechanism 40 is used to connect the wall decoration panel 80 and the side panel 51. The wall panel connecting mechanism 40 is configured to allow the wall decoration panel 80 and the side panel 51 to be detachably installed and removed. The wall decoration panel 80 and the door panel 53 share the side panel 51.

[0040] In this embodiment, the first skeleton body 10 refers to the basic frame structure that supports the connection between the cabinet body 50 and the wall 60. The main part 11 is connected to the wall 60 through a position adjustment mechanism 20, wherein the position adjustment mechanism 20 is used to adjust the front and rear distance between the first skeleton body 10 and the wall 60 to cope with the situation where the wall is not vertical and compensate for the wall construction error. Specifically, the linear movement of the first skeleton body 10 is achieved through the adjustment element 22, and the distance between the first skeleton body 10 and the wall 60 can be adjusted, effectively solving the practical problem of uneven wall surface and achieving a vertical effect, thereby achieving a vertical effect of the overall appearance, significantly improving the integrity and aesthetics of the customized cabinet, and making the visual effect of the space more concise and smooth; the back panel 52 and the first skeleton body 10 can be quickly disassembled and assembled through the snap-in assembly 30. Compared with the traditional back panel groove fixing method, this structure does not require a complicated grooving process, effectively simplifies the production process, and shortens the processing cycle. At the same time, the design of the snap-on assembly 30 makes the back panel 52 detachable, making it easy to hide electrical accessories such as light strips and electronic password locks in the space between the cabinet body 50 and the wall 60, greatly improving ease of use and maintenance efficiency. The wall panel connection mechanism 40 connects the wall decorative panel 80 to the side panel 51, and a standardized interface allows the two to share the same side panel 51, achieving the purpose of eliminating the seam. This breaks through the technical limitations of traditional custom cabinets that rely on seam strips to handle gaps, achieving a seamless connection between the custom cabinet and the wall panel, fundamentally eliminating installation gaps and eliminating the seam closing process. This design not only significantly improves the integrity and aesthetics of the custom cabinet, making the visual effect of the space more concise and smooth, but also reduces the production and installation of seam strips, thereby improving the production and installation efficiency of the custom cabinet.

[0041] Specifically, during assembly, the first frame body 10 is first mounted on the wall 60 using the position adjustment mechanism 20. The adjustment element 22 then drives the first frame body 10 in a direction perpendicular to the wall surface, eliminating installation errors caused by deviations in wall flatness. The back panel 52 is elastically connected to the second connecting portion 13 via the snap assembly 30. The side panels 51 are connected to the first connecting portion 12 via self-tapping screws 90. The wall decoration panel 80 is connected to the side panels 51 via the wall panel connection mechanism 40. The shared structural design of the side panels 51 creates a coherent appearance for the cabinet door and wall decoration.

[0042] The traditional installation method relies on expansion screws to directly fix the cabinet 50, which cannot compensate for wall errors. There is a lack of adjustable mounting structure between the cabinet 50 and the wall 60, so that the hard installation and cabinet 50 installation processes need to be carried out separately. The present invention uses an adjustable first skeleton body 10 to form a linkage adjustment mechanism between the cabinet 50 and the wall 60, so that the installation position of the cabinet 50 can be dynamically adjusted according to the wall condition; at the same time, the design of the wall decoration panel 80 and the cabinet 50 sharing the side panel 51 can achieve dimensional error compensation and integrated assembly, and the traditional closing strip can be eliminated, so that the wall decoration and the cabinet 50 form a visual whole. The present invention forms a modular assembly system through a first skeleton body 10 with a position adjustment function, combined with the elastic snap connection of the snap-in component 30 and the detachable wall panel connection mechanism 40, which supports quick disassembly and assembly, facilitates later maintenance and component replacement, simplifies the installation process, and the hard installation and cabinet 50 installation can be carried out simultaneously, thereby improving installation efficiency and greatly shortening the construction period. It effectively solves the installation gap problem of the cabinet 50 caused by wall errors, avoids the use of additional closing materials, and the integrated connection design realizes seamless connection between wall decoration and customized cabinets, thereby improving the aesthetics of the space.

[0043] As a preferred embodiment, the adjusting element 22 is rotatably arranged on the connecting element 21, wherein a first transmission matching structure is provided between the adjusting element 22 and the connecting element 21, and a second transmission matching structure is provided between the main body 11 and the connecting element 21, and the first transmission matching structure and the second transmission matching structure are configured to drive the first skeleton body 10 to move linearly by rotating the adjusting element 22.

[0044] In this embodiment, the first transmission matching structure refers to a mechanical structure for power transmission between the adjusting element 22 and the connecting element 21, which can be specifically implemented by a threaded pair. The second transmission matching structure refers to a mechanical structure for motion conversion between the main body 11 and the connecting element 21, which can be specifically implemented by a threaded pair. The rotational motion of the connecting element 21 is converted into linear movement of the skeleton body. The matching relationship of the transmission matching structure enables the rotational motion to be converted into linear motion, thereby achieving precise control of the position of the first skeleton body 10. Specifically, during implementation, when the adjusting element 22 is rotated, the threaded pair in the first transmission matching structure generates relative motion, driving the connecting element 21 to rotate, and the threaded pair in the second transmission matching structure transmits the rotation of the connecting element 21 to the main body 11, causing it to generate linear displacement along the axial direction of the connecting element 21. This motion transmission method enables the first frame body 10 to achieve displacement adjustment perpendicular to the wall 60 without changing the fixed state of the connecting element 21 and the wall 60, thereby adapting to various structural errors of the wall 60. Due to the linear adjustment function of the first frame body 10, the installation process does not rely on the accuracy of the wall 60, simplifying the installation process and improving adjustment efficiency. The coordinated relationship of the transmission structure ensures a stable and controllable adjustment process, reducing the impact of manual error on installation quality.

[0045] While traditional installation methods require a large gap between the wall 60 and the cabinet 50, and the use of a closing strip to compensate for errors, the present invention's transmission structure allows for direct adjustment of the first skeleton body 10 after installation, without the need to disassemble or re-secure the connectors. While prior art methods rely on multiple measurements and drilling to adjust the position of the cabinet 50, the present invention achieves continuous control of linear displacement through the rotation of the adjustment element 22, enabling stepless adjustment. This solves the problem of cabinet 50 installation position deviations caused by construction errors in the wall 60 and eliminates the need for additional structures such as closing strips.

[0046] As a preferred embodiment, the main body 11 has a first through hole 14 with an internal thread, the connecting element 21 has an external thread, the connecting element 21 passes through the first through hole 14 and is adapted to the internal thread of the first through hole 14, the adjusting element 22 has an internal thread, the adjusting element 22 is sleeved on the connecting element 21 and is adapted to the external thread of the connecting element 21, and by rotating the adjusting element 22, the first skeleton body 10 can be driven to move along the connecting element 21.

[0047] In this embodiment, the main body 11 and the connecting element 21 are mated via internal and external threads, achieving transmission. The adjusting element 22 is threadedly connected to the connecting element 21. Rotating the adjusting element 22 drives the connecting element 21, which in turn is transmitted to the main body 11, causing the main body 11 to linearly move along the axis of the connecting element 21, thereby adjusting the linear position of the first frame body 10 relative to the wall 60. Clockwise or counterclockwise rotation allows for bidirectional displacement of the first frame body 10 perpendicular to the wall 60, thereby compensating for construction errors in the wall 60 or adjusting installation gaps. Conventional fixing methods rely on a single installation position for expansion bolts, resulting in limited error compensation capabilities. The threaded structure of the present invention allows for micron-level precision adjustment, addressing installation gap issues caused by wall flatness deviations. Precise position control of the first frame body 10 can be achieved through rotational adjustment, eliminating the need for additional components such as conventional closing strips, reducing installation steps and material loss. The threaded transmission mechanism also provides a stable position locking function, ensuring that the adjusted structure remains in the preset position without shifting.

[0048] Preferably, the adjusting element 22 of the present invention is preferably an adjusting nut, and the connecting element 21 is preferably a bolt.

[0049] As a preferred embodiment, the position adjustment mechanism 20 is provided in plurality, and the plurality of position adjustment mechanisms 20 are arranged in sequence along the vertical direction of the first frame body 10. This allows for coordinated adjustment of multiple positions and dynamic correction of the installation position of the first frame body 10 to compensate for unevenness or posture deviation of the installation surface of the wall 60.

[0050] As a preferred embodiment, the snap-fit ​​assembly 30 is provided with a first mating portion 31, and the second connecting portion 13 is provided with a second mating portion 131. The first mating portion 31 or the second mating portion 131 is made of elastic material, and a snap-fit ​​force is generated through deformation. The first mating portion 31 and the second mating portion 131 are constructed to achieve elastic snap-fit ​​or disengagement through relative displacement to achieve installation or disassembly of the back panel 52 and the first skeleton body 10.

[0051] In this embodiment, the first mating portion 31 is preferably a mating groove, and the second mating portion 131 is preferably an elastic snap-fit ​​wall. When the back panel 52 needs to be installed, the second mating portion 131 contacts the first mating portion 31 and generates elastic deformation, causing the second mating portion 131 to snap into the corresponding mating groove. At this time, the reverse force generated by the second mating portion 131 recovering its deformation forms a snap-fit ​​retention force. During disassembly, external force is applied to the back panel 52 to disengage the snap-fit ​​assembly 30 from the second mating portion 131, thereby achieving the back panel 52's removal. Conventional back panel 52 installation relies on screw fastening or gluing, which not only requires special tools but also carries the risk of secondary disassembly damage. In this embodiment, the elastic snap-fit ​​assembly 30 replaces mechanical fasteners, achieving barehand operation while ensuring connection reliability. This allows for rapid disassembly and assembly of the back panel 52 and the first skeleton body 10, without the need for tools and without residual damage. The selection of elastic materials for the first mating portion 31 or the second mating portion 131 enables precise control of the snap-fit ​​force, ensuring both connection stability and ensuring that the disassembly operating force is within an ergonomically comfortable range.

[0052] The clamping assembly 30 of this embodiment is further provided with a connection hole 32 , and the clamping assembly 30 is fixed to the back plate 52 using screws.

[0053] As a preferred embodiment, the main body part 11 and the first connecting part 12 constitute a clamping position 15 for clamping the side panel 51. The first connecting part 12 has a positioning hole that can be penetrated by a self-tapping screw 90. The self-tapping screw 90 passes through the positioning hole and is screwed into the side panel 51, so that the first connecting part 12 is fixedly connected to the side panel 51.

[0054] In this embodiment, when installing the side panel 51, first embed the edge of the side panel 51 into the clamping position 15, and use the clamping position 15 to preliminarily position and limit the side panel 51. Subsequently, pass the self-tapping screw 90 through the positioning hole and screw it into the inside of the side panel 51, so that a clamping force is generated between the first connecting part 12 and the side panel 51. In this way, the side panel 51 maintains verticality under the constraint of the clamping position 15, and at the same time, the screw-in depth of the self-tapping screw 90 can control the degree of compression of the connecting part, avoiding loosening or deformation of the connection due to thickness error of the side panel 51. Traditional custom cabinet side panels 51 are mostly installed by directly fixing them to the wall with expansion screws. The position cannot be fine-tuned according to the actual size of the cabinet body 50, and the expansion screws are difficult to remove after installation. However, this solution uses the clamping position 15 to preliminarily position the side panel 51, combined with the adjustable screw-in depth of the self-tapping screw 90, to achieve rapid disassembly and repeated installation. The combination of the self-tapping screws 90 and the positioning holes avoids the process of pre-drilling holes on the side panels 51, simplifies the installation process and reduces processing costs. The dual fixing method of the latch 15 and the self-tapping screws 90 enhances the stability of the connection of the side panels 51, prevents the cabinet body 50 from being displaced due to long-term load-bearing, and at the same time, there is no need to add additional closing strips, maintaining the overall beauty of the cabinet body 50.

[0055] Preferably, a first groove 16 is provided on the inner wall of the first connecting portion 12 close to the side panel 51 , and a first rubber strip 17 is provided in the first groove 16 . The cooperation between the first rubber strip 17 and the self-tapping screw 90 further enhances the stability of the connection between the side panel 51 and the first skeleton body 10 .

[0056] As a preferred embodiment, the wall panel connection mechanism 40 includes a first connection member 41 and a second connection member 42. The first connection member 41 is arranged on the wall decoration panel 80 or the side panel 51, and the first connection member 41 is provided with a plug-in groove 410. The second connection member 42 is arranged on the wall decoration panel 80 or the side panel 51, and the second connection member 42 is provided with a plug-in protrusion 420 that cooperates with the plug-in groove 410. The plug-in protrusion 420 can be detachably plugged into the plug-in groove 410 to realize the detachable installation and disassembly of the wall decoration panel 80 and the side panel 51.

[0057] In this embodiment, the first connector 41 and the second connector 42 are both provided with holes for connecting with the wall decoration panel 80 or the side panel 51. The first connector 41 and the second connector 42 can be locked to the wall decoration panel 80 or the side panel 51 by screws. When the wall decoration panel 80 needs to be installed, the plug-in protrusion 420 of the second connector 42 is pushed in along the opening direction of the plug-in groove 410 so that the plug-in protrusion 420 is embedded in the plug-in groove 410 of the first connector 41. At this time, the wall decoration panel 80 and the side panel 51 are fixedly connected. When disassembly is required, it is only necessary to apply reverse force to pull the plug-in protrusion 420 out of the plug-in groove 410. The first connector 41 and the second connector 42 can be quickly positioned and disassembled through the plug-in structure. The operation can be completed without complex tools, simplifying the installation process, reducing the complexity of manual operation, avoiding the use of additional closing materials, and improving installation efficiency and the overall coordination between the wall and the cabinet 50.

[0058] As a preferred embodiment, the insertion groove 410 is opened toward the insertion direction of the insertion protrusion 420, and the sidewalls of the insertion groove 410 are provided with guiding slopes. The guiding slopes of the sidewalls of the insertion groove 410 can guide the insertion protrusion 420 accurately into the insertion groove 410, avoiding misalignment during installation. At the same time, the design of the guiding slopes can improve the connection reliability between the first connector 41 and the second connector 42.

[0059] As a preferred embodiment, a wall panel base plate 81 is provided between the wall decoration panel 80 and the wall 60 , and the wall panel base plate 81 and the wall decoration panel 80 are detachably installed and removed via a wall panel connection mechanism 40 .

[0060] In this embodiment, the wall panel base plate 81 refers to a transitional support structure provided between the wall decorative panel 80 and the wall 60. Specifically, it can be implemented using a plate with embedded fixings. Its function is to establish an indirect connection between the wall decorative panel 80 and the wall 60, preventing the wall decorative panel 80 from directly contacting the original wall 60. The wall panel connection mechanism 40 provides a mechanical interface for quick assembly and disassembly of the wall panel base plate 81 and the wall decorative panel 80. Its function is to achieve modular installation of the wall decorative panel 80 through a standardized interface design, while maintaining the stability and adjustability of the wall decorative panel 80 after installation. This eliminates the need for drilling or repairing the wall 60 during assembly and disassembly of the wall decorative panel 80, thereby reducing damage to the building structure caused by construction. At the same time, the cooperation between the wall panel base plate 81 and the wall panel connection mechanism 40 enables the wall decorative panel 80 to be repeatedly assembled and disassembled, facilitating the rapid replacement of the wall decorative panel 80 during subsequent maintenance and updates.

[0061] It can be understood that by unifying the planning of the custom cabinets and the wall decoration panels 80, and fixing the wall decoration panels 80 on the wall panel base plate 81 in a detachable installation manner, the custom cabinets and wall decoration panels 80 can still be reused when they are replaced in the future. Only the visible panels on the surface need to be replaced to achieve a rapid conversion of space style and function, effectively reduce the cost of renovation and improvement, improve the flexibility and sustainability of space utilization, and solve the problem that existing custom cabinets are difficult to renovate.

[0062] As a preferred embodiment, it also includes a second skeleton body 70, which has two spaced-apart third connecting parts 71 and two spaced-apart fourth connecting parts 72 extending in a direction away from the wall 60. The two third connecting parts 71 are combined with the second skeleton body 70 to form an installation slot 73 for clamping the side panel 51, and the fourth connecting part 72 is used to connect to the clamping assembly 30 on the back panel 52.

[0063] In this embodiment, the second frame body 70 has a substantially identical structure to the first frame body 10, differing in that the second frame body 70 is provided with two second through holes 76, connected to the wall 60 via two position adjustment mechanisms 20. The second frame body 70 also includes slots 73 for engaging the side panels 51 and allows for mounting the back panel 52 on either side, thereby satisfying various scenarios. Therefore, the primary function of the second frame body 70 is to secure the side panels 51, the wall panel base plate 81, and the back panel 52. Specifically, the inner sidewalls of the two third connecting portions 71 are symmetrically provided with second grooves 74, within which second adhesive strips 75 are disposed, stably securing the side panels 51 within the slots 73.

[0064] See Figure 1The second skeleton body 70 is located between the two first skeleton bodies 10. The first skeleton body 10 and the second skeleton body 70 are preferably column profiles. In this way, by installing the first skeleton body 10 and the second skeleton body 70 at intervals on the wall 60, the installation requirements of different types of cabinets 50 can be met, and the stability of the cabinet 50 can be enhanced.

[0065] Although the embodiments of the present invention have been shown and described above, it will be understood that the above embodiments are illustrative and are not to be construed as limiting the present invention. A person skilled in the art may change, modify, replace and modify the above embodiments within the scope of the invention without departing from the principles and purpose of the present invention. All such changes shall fall within the scope of protection of the claims of the present invention.

Claims

1. A customized cabinet and wall panel integrated assembly system, characterized in that: include: A first skeleton body (10) comprising a main body portion (11) for connecting to a wall (60), a first connecting portion (12) for connecting to a side panel (51), and a second connecting portion (13) for connecting to a back panel (52), wherein both the first connecting portion (12) and the second connecting portion (13) are arranged to extend away from the wall (60); a position adjustment mechanism (20), comprising a connecting element (21) for connecting the main body (11) to the wall (60) and an adjusting element (22) for driving the first skeleton body (10) to move in a direction perpendicular to the wall (60), wherein the main body (11) is movably connected to the connecting element (21); a snap-fit ​​assembly (30) disposed on the back plate (52), the snap-fit ​​assembly (30) being configured to be elastically snap-fitted or disengaged from the second connecting portion (13) to achieve detachable installation of the back plate (52) and the first skeleton body (10); A wall panel connection mechanism (40) is used to connect a wall decoration panel (80) and a side panel (51), wherein the wall panel connection mechanism (40) is configured to allow the wall decoration panel (80) and the side panel (51) to be detachably installed and removed, and the wall decoration panel (80) and the door panel (53) share the side panel (51).

2. The integrated assembly system of customized cabinets and wall panels according to claim 1 is characterized in that: The adjusting element (22) is rotatably arranged on the connecting element (21), wherein a first transmission matching structure is provided between the adjusting element (22) and the connecting element (21), and a second transmission matching structure is provided between the main body (11) and the connecting element (21), and the first transmission matching structure and the second transmission matching structure are configured to drive the first skeleton body (10) to move linearly by rotating the adjusting element (22).

3. The integrated assembly system of customized cabinets and wall panels according to claim 1 is characterized in that: The main body (11) has a first through hole (14) with an internal thread, the connecting element (21) has an external thread, the connecting element (21) passes through the first through hole (14) and is adapted to the internal thread of the first through hole (14), the adjusting element (22) has an internal thread, the adjusting element (22) is sleeved on the connecting element (21) and is adapted to the external thread of the connecting element (21), and by rotating the adjusting element (22), the first skeleton body (10) can be driven to move along the connecting element (21).

4. The integrated assembly system of custom cabinets and wall panels according to claim 1 is characterized in that: A plurality of the position adjustment mechanisms (20) are provided, and the plurality of position adjustment mechanisms (20) are arranged in sequence along the vertical direction of the first skeleton body (10).

5. The integrated assembly system of customized cabinets and wall panels according to claim 1 is characterized in that: The snap-fit ​​assembly (30) is provided with a first mating portion (31), and the second connecting portion (13) is provided with a second mating portion (131). The first mating portion (31) or the second mating portion (131) is made of an elastic material and generates a snap-fitting force through deformation. The first mating portion (31) and the second mating portion (131) are constructed to achieve elastic snap-fitting or disengagement through relative displacement, so as to achieve installation or disassembly of the back plate (52) and the first skeleton body (10).

6. The integrated assembly system of custom cabinets and wall panels according to claim 1 is characterized in that: The main body (11) and the first connecting portion (12) form a clamping position (15) for clamping the side panel (51). The first connecting portion (12) has a positioning hole that can be tapped by a self-tapping screw (90). The self-tapping screw (90) passes through the positioning hole and is screwed into the side panel (51), so that the first connecting portion (12) is fixedly connected to the side panel (51).

7. The integrated assembly system of custom cabinets and wall panels according to claim 1, characterized in that: The wall panel connection mechanism (40) comprises a first connection member (41) and a second connection member (42), wherein the first connection member (41) is provided on the wall decoration panel (80) or the side panel (51), and the first connection member (41) is provided with a plug-in groove (410), and the second connection member (42) is provided on the wall decoration panel (80) or the side panel (51), and the second connection member (42) is provided with a plug-in protrusion (420) that matches the plug-in groove (410), and the plug-in protrusion (420) is detachably plugged into the plug-in groove (410), thereby realizing detachable installation and removal of the wall decoration panel (80) and the side panel (51).

8. The integrated assembly system of custom cabinets and wall panels according to claim 7, characterized in that: The opening of the plug-in groove (410) is arranged toward the insertion direction of the plug-in protrusion (420), and a guide slope is provided on the side wall of the plug-in groove (410).

9. The integrated assembly system of custom cabinets and wall panels according to claim 1, characterized in that: A wall panel base plate (81) is provided between the wall decoration panel (80) and the wall body (60), and the wall panel base plate (81) and the wall decoration panel (80) are detachably mounted and disassembled via a wall panel connection mechanism (40).

10. The integrated assembly system of custom cabinets and wall panels according to claim 1, characterized in that: The second frame body (70) further comprises two spaced-apart third connection parts (71) and two spaced-apart fourth connection parts (72) extending in a direction away from the wall (60), the two third connection parts (71) and the second frame body (70) being combined into a mounting slot (73) for snapping the side panel (51), and the fourth connection part (72) being used for connecting to the snap-fit ​​assembly (30) on the back panel (52).

Citation Information

Patent Citations

  • Wallboard furniture connecting decoration structure

    CN211021718U

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    CN219165973U