Ceiling non-bound floating edge-closing system
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIAXING JIANMEI INTEGRATED HOME FURNISHING CO LTD
- Filing Date
- 2025-09-04
- Publication Date
- 2026-08-07
AI Technical Summary
此外,如何根据建筑墙面的误差灵活的进行缝隙调整也至关重要;而且我们卫浴、厨房等空间环境由于烟道或者换气通道的原因,墙面往往是具有较多的拐角的,那么吊顶也就会具有相应的多个拐角,这些拐角也为吊顶安装带来了较大的困难
[0014]本实用新型相比现有技术突出且有益的技术效果是:通过对收边件创造性的设计,能够实现对铝蜂窝板吊顶和墙面缝隙收口进行良好处理的同时,消除了传统的“L”形收边条所带来的长的、外凸的边所导致的吊顶在视觉上的美观度上的缺陷;并且收边件的支撑部可以在固定件的第二臂上移动,实现了第二臂对收边件进行承托的同时,二者浮动式的连接,那么就可以灵活的根据墙面的误差进行调整补偿;第一限位件和第二限位件的设置对收边件的活动范围进行限位,避免工人在调整过程中,收边件以及铝蜂窝板掉落,保证了材料和工人的安全。多个高度方向平行设置的插槽满足了不同吊顶高度的灵活调节,以及快捷方便的安装。当然,通过卡槽的设计,在墙面拐角处配合直角角码,直角角码插入到卡槽内,并且配合紧固件将相邻的收边件固定连接,相对于传统的收边条的方式,连接更加灵活,并且更加美观,连接强度和连接可靠性也大幅提升。此外,收边件上设置卡槽,在卡槽内可以安装光源如灯带等,通过罩体将光源遮蔽,并且起到扩散和均匀光线的作用,在光源开启后,光源的光线在视觉效果上进一步弱化了铝蜂窝板与墙面的缝隙,提升了视觉效果上的完整性。
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Figure CN224605847U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of decorative ceiling technology, specifically relating to a ceiling seamless floating edge finishing system. Background Technology
[0002] Ceiling installation is an essential part of home and office renovations, and its impact on the overall design is crucial. Traditional ceilings include plaster ceilings, aluminum composite panel ceilings, and the currently popular aluminum honeycomb panel ceilings. Because structural wall finishes allow for centimeter-level errors, in real-world home renovation environments—where the floor plan is not a regular rectangle—it's common for two walls to differ by 1-2 cm. Currently, the industry often uses... Figure 1 The edge-finishing structure shown includes an edge strip 80, which is fixed to the wall using methods such as glass glue and expansion screws. The edge of the aluminum honeycomb panel 50 is embedded into the installation groove of the strip 40, and the two are fixedly connected. The lower edge 42 and upper edge 43 of the strip 40 limit and adhere the honeycomb aluminum panel 50. The upper edge 41 of the strip 40 is inserted into the pre-installed triangular keel or other elastic fasteners. Thus, the L-shaped protruding lower decorative edge of the edge strip 80 conceals the gap between the ceiling and the wall. However, the existing edge-finishing structure mainly uses an "L-shaped" end, which has evolved into different end bend shapes. After installation, there is a protruding edge at the corner. Although this appearance has become the industry default, it is a defect in terms of the overall aesthetics of the ceiling and is the reason why it has not been recognized by high-end designers.
[0003] How to conceal the edge trim to achieve a minimalist visual effect is the key research and development direction of this application. Furthermore, how to flexibly adjust gaps based on wall surface variations is also crucial; moreover, bathrooms, kitchens, and other spaces often have many corners in their walls due to flues or ventilation channels, resulting in multiple corners in the ceiling as well, which presents significant challenges for ceiling installation. Summary of the Invention
[0004] The purpose of this utility model is to provide a seamless floating edge finishing system for ceilings, which aims to solve the problem of concealing protruding edges at the junction of traditional ceilings and walls, while also being able to flexibly adjust according to the distance deviation between the walls; of course, it can also better adapt to ceiling installations with multiple corners.
[0005] To solve the above-mentioned technical problems, the purpose of this utility model is achieved as follows:
[0006] A suspended ceiling edge-finishing system includes a fastener, an edge-finishing component, and an aluminum beam insert. The fastener is L-shaped, with its first arm fixed to the wall and its second arm extending away from the wall. The edge-finishing component includes a flat main panel, a support portion extending from the upper end of the main panel towards the fastener, and an insert mounting portion extending away from the support portion. The support portion is located above the second arm and supported by the second arm. The insert mounting portion has at least one slot along the length of the main panel. The upper end of the aluminum beam insert is inserted into the slot, such that the minimum distance between the lower end of the aluminum beam insert and the main panel is less than the upper edge thickness of the edge of the aluminum honeycomb panel.
[0007] Based on the above scheme and as a preferred embodiment of the above scheme: a first limiting member is provided at the end of the second arm; a second limiting member is provided at the far end of the support part, and when the support part moves to the extreme position away from the wall, the first limiting member blocks the second limiting member.
[0008] Based on the above solution and as a preferred embodiment of the above solution: a T-slot is provided on the support part; right-angle brackets can be inserted into the T-slots of adjacent edge-gathering parts and the two are fixedly connected by fasteners.
[0009] Based on the above scheme and as a preferred embodiment of the above scheme: the slots are arranged in parallel on two sides.
[0010] Based on the above solution and as a preferred solution: a slot is provided on the main body plate below the support part, and a cover is attached to the opening of the slot.
[0011] Based on the above scheme and as a preferred embodiment of the above scheme: a light source is installed in the card slot.
[0012] Based on the above scheme and as a preferred embodiment of the above scheme: the cover is transparent or semi-transparent.
[0013] Based on the above scheme and as a preferred embodiment of the above scheme: the inner wall of the slot is provided with a protrusion; the cover is a groove-shaped structure, the ends of its two sides are inclined inward and a positioning recess is provided on the two sides, the cover is inserted into the slot, and the protrusion is embedded in the positioning recess.
[0014] The outstanding and beneficial technical effects of this utility model compared to existing technologies are as follows: Through the creative design of the edge trim, it achieves excellent finishing of the gaps between aluminum honeycomb panel ceilings and walls, while eliminating the visual aesthetic defects of the ceiling caused by the long, protruding edges of traditional "L"-shaped edge trims. Furthermore, the support part of the edge trim can move on the second arm of the fixing member, achieving a floating connection where the second arm supports the edge trim, allowing for flexible adjustment and compensation based on wall surface errors. The first and second limiting members limit the range of motion of the edge trim, preventing it and the aluminum honeycomb panel from falling during adjustment, ensuring the safety of materials and workers. Multiple slots arranged parallel in multiple height directions allow for flexible adjustment of different ceiling heights and quick and convenient installation. Of course, the slot design, combined with right-angle brackets at wall corners, allows for more flexible and aesthetically pleasing connections between adjacent edge trim pieces, secured by fasteners. This significantly improves connection strength and reliability compared to traditional edge trim strips. Furthermore, the slots on the edge trim allow for the installation of light sources such as LED strips. The light source is shielded by a cover, which diffuses and evens out the light. When the light source is on, it further minimizes the visual appearance of the gap between the aluminum honeycomb panel and the wall, enhancing the overall visual integrity. Attached Figure Description
[0015] Figure 1 This is a structural diagram of the existing aluminum honeycomb panel ceiling finishing technology.
[0016] Figure 2 This is a schematic diagram of the overall structure of this utility model;
[0017] Figure 3 This is a schematic diagram of the connection structure between the edge trimming component, the fixing component, and the aluminum beam insert of this utility model.
[0018] Figure 4 This is a schematic diagram of the assembly structure of the edge trim and the cover. Detailed Implementation
[0019] To make the objectives, technical solutions, and advantages of this application clearer, the technical solutions in the embodiments will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the given embodiments, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0020] In the description of this application, it should be understood that the terms "upper" and "lower" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this 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. Therefore, they should not be construed as limitations on this application.
[0021] In the description of this application, the terms "first," "second," etc., 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.
[0022] See details Figure 2-4 As shown, this application discloses a ceiling-mounted seamless floating edge finishing system, including a fixing member 10, an edge finishing member 20, and an aluminum beam insert 30. The fixing member 10 is L-shaped, with its first arm 11 fixed to the wall surface and its second arm 12 extending away from the wall surface. The fixing member 10 is preferably made of a single aluminum alloy profile. To improve the connection stability between the fixing member 10 and the wall surface, this embodiment preferably has continuous wavy protrusions on the side of the first arm 11 that is in contact with the wall surface. The edge finishing member 20 includes a flat main body plate 21, a support portion 23 extending from the upper end of the main body plate 21 towards the fixing member 10, and an insert mounting portion 24 extending away from the support portion 23. The support portion 23 is located above the second arm 12 and is supported by the second arm 12. Therefore, the support 23 can slide on the second arm 12. This sliding motion allows for adjustment and compensation of the gap between the edge trim 20 and the wall. Simultaneously, the second arm 12 always conceals the gap between the edge trim 20 and the wall. However, considering that during adjustment, if the gap between the wall and the aluminum honeycomb panel is large, workers might excessively move the support 23 outwards, causing it to fall off the second arm 12, potentially leading to worker accidents or damage to other items and materials. Therefore, in this embodiment, a first limiting member 121 is preferably provided at the end of the second arm 12; a second limiting member 231 is provided at the far end of the support 23. When the support 23 moves away from the wall to its limit position, the first limiting member 121 blocks the second limiting member 231. At the limit position, the first and second limiting members limit the range of motion of the edge trim, preventing it from falling. It should be noted that... Figure 2-3As shown, after installation, the force is mainly transmitted by the second limiting member 231 abutting against the upper surface of the second arm 12, and the first limiting member 121 abutting against the lower surface of the support part 23, thereby realizing the support of the fixing member 10 for the edge trim 20. Since the aluminum honeycomb panel 50 is lightweight, and in actual installation, the honeycomb aluminum panels 50 in other areas of the ceiling are hung under the roof with triangular keels, and the upper edge of the line 40 of the honeycomb aluminum panel 50 is inserted into the triangular keel, more than 95% of the ceiling weight has been distributed. The edge trim 20 of this application only bears a very small weight, and its purpose is also for finishing the edge. It is not used as the main load-bearing structure, and there will be no problems such as instability or tilting. Therefore, the above structure can fully meet the design requirements for use. Furthermore, at least one slot 241 is provided in the insert mounting section 24 along the length of the main body plate 21. The upper end of the aluminum beam insert 30 is inserted into the slot 241, so that the minimum distance between the lower end of the aluminum beam insert 30 and the main body plate 21 is less than the upper edge thickness of the edge line of the aluminum honeycomb panel 50. This design allows the upper edge of the edge line 40 to open up the lower end of the aluminum beam insert 30 after it is inserted into the gap between the lower end of the aluminum beam insert 30 and the main body plate 12. This allows the lower section of the aluminum beam insert 30 to be pressed against the surface of the main body plate 21 under the elastic deformation of the aluminum beam insert 30. The aluminum beam insert 30 is a thin-walled part with a certain elastic deformation capacity. When its upper end is inserted into the slot 241, it will open up the lower end of the aluminum beam insert 30, causing a certain degree of elastic deformation, thereby pressing the upper edge 41 of the edge line 40. Furthermore, preferably, two slots 241 are arranged parallel to each other in the height direction. Depending on the different ceiling heights of the aluminum honeycomb panels 50, the upper end of the aluminum beam insert 30 can be inserted into slots 241 of different heights, thereby better adapting to different ceiling heights.
[0023] A T-slot 22 is provided on the support part 23; the right-angle bracket can be inserted into the T-slot 22 of two adjacent edge trim pieces 20 and fixedly connected by fasteners. Therefore, at the corner of the house, only a 45° bevel is cut between the two mating edge trim pieces 20, and the two arms of the right-angle bracket are inserted into the T-slot 22 to form a 90° right angle. The right-angle bracket is then locked in the T-slot 22 with fasteners, thus flexibly and quickly finishing the corner. This solves the problem of ineffective traditional finishing structures and inconvenient operation in kitchens, bathrooms, and other areas with many corners due to flues. It should be noted that the right-angle bracket and matching fasteners are existing technology and will not be described in detail here.
[0024] like Figure 3As shown, in a further preferred embodiment, a slot 25 is provided on the main body plate 21 below the support portion 23, and a cover 60 is fitted into the opening of the slot 25. Preferably, a light source is installed in the slot 25, and the cover 60 is transparent or semi-transparent. Since the ceiling needs to be used for a long time after installation, the installation reliability of its various accessories must be more stable. To ensure that the cover 60 is more securely fitted into the slot 25, this embodiment preferably provides a protrusion 251 on the inner wall of the slot 25; the cover 60 has a groove-shaped structure, with its two sides inclined inwards and having positioning recesses 62 on both sides. The cover 60 is fitted into the slot 25, and the protrusion 251 is embedded in the positioning recess 62. By setting a slot 25 on the edge trim, a light source such as a light strip can be installed in the slot 25. The light source is shielded by the cover, which also diffuses and evens out the light. When the light source is turned on, the light from the light source further weakens the gap between the aluminum honeycomb panel and the wall in terms of visual effect, and improves the integrity of the visual effect.
[0025] The above embodiments are merely preferred embodiments of the present utility model and are not intended to limit the scope of protection of the present utility model. Therefore, all equivalent changes made to the structure, shape, and principle of the present utility model should be covered within the scope of protection of the present utility model.
Claims
1. A ceiling-mounted seamless floating edge finishing system, characterized in that: It includes a fastener (10), an edge trimmer (20), and an aluminum beam insert (30); the fastener (10) is L-shaped, with its first arm (11) fixed to the wall and its second arm (12) extending away from the wall; the edge trimmer (20) includes a flat main plate (21), a support part (23) extending from the upper end of the main plate (21) toward the fastener (10), and an insert extending away from the support part (23). Part (24), the support part (23) is located above the second arm (12) and supported by the second arm (12); the insert mounting part (24) has at least one slot (241) arranged along the length direction of the main body plate (21); the upper end of the aluminum beam insert (30) is inserted into the slot (241) so that the minimum distance between the lower end of the aluminum beam insert (30) and the main body plate (21) is less than the upper edge thickness of the edge line of the aluminum honeycomb panel (50).
2. The ceiling seamless floating edge finishing system according to claim 1, characterized in that: The end of the second arm (12) is provided with a first limiting member (121); the far end of the support part (23) is provided with a second limiting member (231). When the support part (23) moves to the limit position in the direction away from the wall, the first limiting member (121) blocks the second limiting member (231).
3. The ceiling seamless floating edge finishing system according to claim 1, characterized in that: The support part (23) is provided with a T-slot (22); the right angle bracket can be inserted into the T-slot (22) of the adjacent edge trimming part (20) and the two are fixedly connected by fasteners.
4. The ceiling seamless floating edge finishing system according to claim 1, characterized in that: The slot (241) has two parallel arrangement.
5. The ceiling seamless floating edge finishing system according to claim 1, characterized in that: A slot (25) is provided on the main plate (21) below the support part (23), and a cover (60) is attached to the opening of the slot (25).
6. The ceiling seamless floating edge finishing system according to claim 5, characterized in that: A light source is installed in the card slot (25).
7. A ceiling-mounted seamless floating edge finishing system according to claim 6, characterized in that: The cover (60) is transparent or semi-transparent.
8. A ceiling-mounted seamless floating edge finishing system according to any one of claims 5-7, characterized in that: The inner wall of the slot (25) is provided with a protrusion (251); the cover (60) is a groove-shaped structure, with the ends of its two sides inclined inward and a positioning recess (62) provided on both sides. The cover (60) is inserted into the slot (25), and the protrusion (251) is embedded in the positioning recess (62).