Combined integrated wallboard wall closing structure
Patent Information
- Application Number
- CN202522267628.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-27
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2035-10-27
AI Technical Summary
[0003]传统的天花板与集成墙板墙面通过收口条进行收边卡合,收口条通过结构胶与墙壁粘合,且一侧卡条在外侧对墙板进行限位,防止墙板脱落,但在后期维护,如需对墙板进行更换时,需要暴力拆卸才能拆下墙板,常会导致对应墙板或收口条损坏,不仅比较费时费力还增加了维护成本
[0012] The technical effect achieved by this utility model is that the detachable combination and splicing of the limiting strip and the transition strip realizes the closing and locking of the integrated wall panel, which facilitates quick disassembly in subsequent maintenance. Without damaging the wall panel of the closing machine, the wall panel can be quickly replaced, saving time and effort and reducing maintenance costs.
Smart Images

Figure CN224769753U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of building decoration technology, specifically relating to a combined integrated wall panel wall surface finishing structure. Background Technology
[0002] Integrated wall panels are a modular, integrated wall decoration solution that enables rapid construction through snap-on installation. In modular buildings, especially in interior decoration of steel-structured buildings, decorative surfaces such as walls, ceilings, and floors often use factory-produced, dry-construction materials. Standardized accessories are used to achieve physical connections between decorative surfaces and between surfaces and the main structure. Edge trims are functional accessories in integrated wall panel systems used to handle wall edges, corners, and junctions with other materials, aiming to achieve visual transitions, structural stability, and sealing protection.
[0003] Traditionally, ceilings and integrated wall panels are joined together using edge trim strips. These strips are bonded to the wall with structural adhesive, and one side of the strip limits the wall panel's position to prevent it from falling off. However, when it comes to later maintenance, such as replacing the wall panel, it requires forceful disassembly, which often damages the corresponding wall panel or edge trim strip. This is not only time-consuming and labor-intensive but also increases maintenance costs. Utility Model Content
[0004] The purpose of this utility model is to provide a modular integrated wall panel wall finishing structure. The wall panel is finished and locked by the detachable combination of limiting strips and transition strips, which facilitates quick disassembly during subsequent maintenance. The wall panel can be quickly replaced without damaging the finishing wall panel, saving time and effort and reducing maintenance costs.
[0005] The specific technical solution adopted by this utility model is as follows: A modular integrated wall panel wall finishing structure includes a transition strip. The transition strip is a right-angled U-shaped structure with an opening on one side. Partitions are symmetrically fixed to the inner sides of its two side walls. The opening edges of the transition strip are all folded inward to form symmetrically arranged side plates. A fitting cavity is formed between the partitions and the side plates, and a limiting strip is embedded in the fitting cavity. The limiting strip has a quasi-Z-shaped structure with all corners at right angles. One end of the limiting strip extends horizontally to form a horizontal convex plate, and the outer side of the first bent section of the limiting strip protrudes downward to form a vertical convex plate. The upper side plate has through slots at equal intervals along its length, and a blocking component is installed in the through slot with an interference fit.
[0006] The transition strip is detachably connected to the wall using fasteners. The two partitions are separated from each other, and the gap between them forms a through slot for the fastener to pass through.
[0007] The vertical height of the partition is greater than the vertical height of the side plate.
[0008] The angle between the horizontal convex plate and the limiting strip is 90°, and the lower side corner of the horizontal convex plate is set as a beveled surface.
[0009] The vertical convex plate and the horizontal convex plate are arranged opposite to each other. When the limiting strip and the transition strip are in the assembled state, the horizontal convex plate and the vertical convex plate are both accommodated in the fitting cavity between the partition plate and the side plate. Furthermore, the horizontal and vertical convex plates do not contact the transition strip, and the limiting strip is in close contact with the partition.
[0010] The blocking element is located between the transverse convex plate and the side wall plate of the partition.
[0011] One side of the blocking member extends to both sides along its length and is connected to a flexible end. Both ends of the through groove are provided with snap grooves for the flexible end to be matched and fitted.
[0012] The technical effect achieved by this utility model is that the detachable combination and splicing of the limiting strip and the transition strip realizes the closing and locking of the integrated wall panel, which facilitates quick disassembly in subsequent maintenance. Without damaging the wall panel of the closing machine, the wall panel can be quickly replaced, saving time and effort and reducing maintenance costs. Attached Figure Description
[0013] Figure 1 This is a side cross-sectional view of the assembling of the closing structure provided in the embodiment of this utility model; Figure 2 This is a side view of the closing structure provided in the embodiment of this utility model during disassembly; Figure 3 This is a partial view of the blocking component provided in an embodiment of this utility model when it is pulled out.
[0014] The attached diagram lists the components represented by each number as follows: 1. Transition strip; 101. Partition plate; 102. Side plate; 103. Fastener; 104. Through groove; 105. Clip groove; 106. Blocking component; 107. Flexible end; 108. Limiting strip; 109. Horizontal convex plate; 110. Vertical convex plate. Detailed Implementation
[0015] To make the objectives and advantages of this utility model clearer, the following detailed description is provided in conjunction with embodiments. It should be understood that the following text is merely used to describe one or more specific embodiments of this utility model and does not strictly limit the scope of protection specifically claimed by this utility model.
[0016] like Figures 1-2 As shown, a combined integrated wall panel wall finishing structure includes a transition strip 1. The transition strip 1 is detachably connected to the wall surface by fasteners 103. The transition strip 1 has a right-angled U-shaped structure with one side open. The inner sides of its two side walls are symmetrically fixed with partitions 101. The two partitions 101 are separated from each other, and the gap between them forms a through groove for the fasteners 103 to pass through. The opening edges of the transition strip 1 are all folded inward to form symmetrically arranged side plates 102. A fitting cavity is formed between the partitions 101 and the side plates 102, and a limiting strip 108 is embedded in the fitting cavity.
[0017] According to the above structure, the transition strip 1 is fixed to the wall, i.e., between the ceiling and the integrated wall panel, by fastener 103 to form a transition. The through groove formed by the gap between the two partitions 101 facilitates the operation of the fastener 103. The top of the transition strip 1 supports the ceiling. The horizontal convex plate 109 is embedded in the fitting cavity (upper part) between the partition 101 and the side plate 102 at a predetermined tilt angle. Then, the limiting strip 108 is slightly rotated around the horizontal convex plate 109 as the axis, so that the vertical convex plate 110 is also embedded in the fitting cavity (lower part) between the partition 101 and the side plate 102.
[0018] refer to Figures 1-2 The limiting strip 108 has a quasi-Z-shaped structure with all corners at right angles. One end of it extends horizontally to form a horizontal convex plate 109. The outer side of the first bent section of the limiting strip 108 protrudes downward to form a vertical convex plate 110. The vertical convex plate 110 and the horizontal convex plate 109 are arranged opposite to each other. When the limiting strip 108 and the transition strip 1 are in the assembled state, the horizontal convex plate 109 and the vertical convex plate 110 are both accommodated in the fitting cavity between the partition plate 101 and the side plate 102. The horizontal convex plate 109, the vertical convex plate 110 and the transition strip 1 are not in contact. The limiting strip 108 and the partition plate 101 are tightly fitted together.
[0019] According to the above structure, when the horizontal convex plate 109 and the vertical convex plate 110 are fitted into the cavity between the partition plate 101 and the side plate 102, the limiting strip 108 is attached to the partition plate 101, and the side plate 102 limits the horizontal convex plate 109 and the vertical convex plate 110 to prevent them from moving outward. The horizontal convex plate 109 and the vertical convex plate 110 have gaps with the two side wall panels of the transition strip 1, providing operating space for subsequent disassembly. At this time, the horizontal height of the downward-extending end of the limiting strip 108 is lower than the bottom of the transition strip 1, thereby limiting the wall panel and preventing the wall panel from moving outward.
[0020] refer to Figures 1-3The upper side plate 102 has through slots 104 evenly spaced along its length. A stopper 106 is installed in the through slot 104 with an interference fit. The vertical height of the partition plate 101 is greater than the vertical height of the side plate 102. The angle between the horizontal convex plate 109 and the limiting strip 108 is 90°. The lower side corner of the horizontal convex plate 109 is set as a chamfer. The stopper 106 is located between the horizontal convex plate 109 and the side wall of the partition plate 101. One side of the stopper 106 extends to both sides along its length and is connected to a flexible end 107. The two ends of the through slot 104 have buckle slots 105 for matching and fitting the flexible end 107.
[0021] According to the above structure, the blocking member 106 is inserted into the through groove 104, and the flexible end 107 is fitted into the snap groove 105. At this time, the blocking member 106 is located between the horizontal convex plate 109 and the top side wall plate of the transition strip 1, preventing the horizontal convex plate 109 from moving up and down, thereby restricting the limiting strip 108 within the fitting cavity. The blocking member 106 can be made of materials such as rubber and metal. When rubber is selected, it is connected to the through groove 104 by an interference fit. When metal is selected, a magnetic strip can be added to the side of the blocking member 106 that abuts against the partition plate 101, so that the two are attracted and connected. The flexible end 107 can be made of materials such as rubber, but is not limited to rubber. Flexible materials such as glue, nylon, and plastic can be used to pull out the blocking member 106 when it is pulled out. This is done by lifting the flexible end 107 and pulling it out. After the blocking member 106 is pulled out, the limiting strip 108 is lifted up slightly so that the vertical convex plate 110 is flush with the edge of the side plate 102 located below. At this time, the limiting strip 108 is rotated outward so that the vertical convex plate 110 is rotated to the outside of the side plate 102. Then the limiting strip 108 is moved down so that the limiting strip 108 is separated from the transition strip 1 and no longer limits the wall panel. The beveled surface of the horizontal convex plate 109 is used to reduce the friction generated when the limiting strip 108 rotates.
[0022] The working principle of this utility model is as follows: the transition strip 1 is firmly installed on the wall with the help of fasteners 103 and is positioned in the connection area between the ceiling and the integrated wall panel to play a transitional connection role. The gap formed between the two partitions 101 constitutes a through groove, which facilitates the operation of the fasteners 103. The top of the transition strip 1 bears the function of supporting the ceiling. In actual operation, the horizontal convex plate 109 is first inserted into the upper fitting cavity between the partition 101 and the side plate 102 at a preset tilt angle. Then, with the horizontal convex plate 109 as the axis, the limiting strip 108 is slightly rotated to cause the vertical convex plate 110 to be inserted into the lower part of the fitting cavity.
[0023] Furthermore, when the horizontal convex plate 109 and the vertical convex plate 110 are both fitted into the cavity between the partition plate 101 and the side plate 102, the limiting strip 108 is attached to the surface of the partition plate 101, while the side plate 102 limits the horizontal convex plate 109 and the vertical convex plate 110, preventing them from displacing outward. At this time, a certain gap is maintained between the horizontal convex plate 109 and the vertical convex plate 110 and the side wall panels of the transition strip 1, providing sufficient operating space for subsequent disassembly operations.
[0024] Furthermore, the lower end of the limiting strip 108 is horizontally lower than the bottom of the transition strip 1, thereby limiting the wall panel and preventing the wall panel from moving outward. The blocking member 106 is inserted into the through groove 104, so that the flexible end 107 fits into the fastening groove 105. At this time, the blocking member 106 is exactly located between the horizontal convex plate 109 and the top side wall panel of the transition strip 1, which prevents the horizontal convex plate 109 from moving up and down, thereby firmly limiting the limiting strip 108 in the fitting cavity. Furthermore, the blocking component 106 can be made of various materials, including but not limited to rubber and metal. If rubber is selected, it is tightly connected to the through groove 104 by an interference fit. If metal is selected, a magnetic strip can be added to the side of the blocking component 106 that abuts against the partition 101 to achieve adsorption connection by using magnetic force. The flexible end 107 can also be made of various flexible materials, such as rubber, nylon, and plastic. Furthermore, during subsequent disassembly operations, simply lift the flexible end 107 and apply appropriate pulling force to pull out the blocking member 106. After the blocking member 106 is pulled out, slightly lift the limiting strip 108 upwards so that the vertical protrusion 110 is flush with the edge of the lower side plate 102. Then rotate the limiting strip 108 outwards to move the vertical protrusion 110 to the outside of the side plate 102. Finally, move the limiting strip 108 downwards to separate the limiting strip 108 from the transition strip 1 and release the restriction on the wall panel. In addition, the beveled design of the horizontal protrusion 109 effectively reduces the friction generated during the rotation of the limiting strip 108.
[0025] The above description is merely a preferred embodiment of this utility model. It should be noted that those skilled in the art can make various improvements and modifications without departing from the principle of this utility model, and these improvements and modifications should also be considered within the scope of protection of this utility model. Structures, devices, and operating methods not specifically described or explained in this utility model, unless otherwise specified or limited, shall be implemented using conventional methods in the field.
Claims
1. A combined integrated wallboard wall closing structure, comprising a transition strip (1), characterized in that: The transition strip (1) is a right-angled U-shaped structure with an opening on one side. The inner sides of its two side walls are symmetrically fixed with partitions (101). The opening edges of the transition strip (1) are all folded inward to form symmetrically arranged side plates (102). A fitting cavity is formed between the partition (101) and the side plate (102), and a limiting strip (108) is embedded in the fitting cavity. The limiting strip (108) has a quasi-Z-shaped structure with all corners at right angles. One end of it extends horizontally to form a horizontal convex plate (109), and the outer side of the first bent section of the limiting strip (108) protrudes downward to form a vertical convex plate (110). The upper side plate (102) has through slots (104) at equal intervals along its length, and a stopper (106) is installed in the through slot (104) with an interference fit.
2. The modular integrated wall panel wall closure structure according to claim 1, wherein: The transition strip (1) is detachably connected to the wall by fasteners (103); The two partitions (101) are separated from each other, and the gap between them forms a through slot for the fastener (103) to pass through.
3. The modular integrated wall panel wall closure structure according to claim 2, wherein: The vertical height of the partition (101) is greater than the vertical height of the side plate (102).
4. The modular integrated wall panel wall closure structure of claim 1, wherein: The angle between the horizontal convex plate (109) and the limiting strip (108) is 90°, and the lower side corner of the horizontal convex plate (109) is set as a bevel.
5. The modular integrated wall panel wall closure structure of claim 1, wherein: The vertical convex plate (110) and the horizontal convex plate (109) are arranged opposite to each other. When the limiting strip (108) and the transition strip (1) are in the assembled state, the horizontal convex plate (109) and the vertical convex plate (110) are both accommodated in the fitting cavity between the partition plate (101) and the side plate (102). Furthermore, the horizontal convex plate (109), the vertical convex plate (110) and the transition strip (1) are not in contact, and the limiting strip (108) is in close contact with the partition (101).
6. The modular integrated wall panel wall closure structure of claim 1, wherein: The blocking element (106) is located between the transverse convex plate (109) and the side wall plate of the partition (101).
7. The modular integrated wall panel wall closure structure of claim 1, wherein: The blocking member (106) has a flexible end (107) extending to both sides along its length direction on one side, and the through groove (104) has a snap groove (105) at both ends for the flexible end (107) to be matched and fitted.