A kind of assembled integrated ceiling structure for living room
By omitting the keel structure of the room, the problems of complex structure and difficult assembly positioning in the existing ceiling technology are solved, and efficient ceiling installation and disassembly operations are achieved.
Patent Information
- Application Number
- CN202210844921.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-09-19
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2042-09-19
AI Technical Summary
The existing ceiling technology requires the installation of keel structure, which is complex in structure, and is troublesome in installation and disassembly; the ceiling panel is installed on a large scale, and assembly and positioning is difficult.
The prefabricated integrated ceiling structure of the living room with omitted keel structure is installed through ceiling panel splicing, enclosure plugging and hanging components, and the ceiling panels and other parts are processed in the factory, and only splicing and installation are carried out on the construction site.
It improves the installation efficiency of the suspended ceiling, is convenient to install and disassemble, simplifies the construction process, and reduces the adverse effects of on-site construction.
Smart Images

Figure CN115928932B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of suspended ceilings, in particular to an assembled integrated suspended ceiling structure for a room. Background Art
[0002] In everyday life, ceilings for homes or fine-decorated apartments are typically made of gypsum board. These are installed on-site, creating harsh working environments and lengthy construction cycles, making them no longer suitable for today's needs. Existing ceiling installation methods require on-site work by specialized carpenters and painters, including installing the keel structure. These workers also need to process wood and board materials, perform stapling and gluing operations, and perform other tasks. This results in high labor costs, labor-intensive work, and long construction periods. Furthermore, on-site construction often generates significant amounts of construction waste, noise, and odor, damaging the environment.
[0003] For example, Chinese patent publication number CN103397730B, published on November 25, 2015, is named "ceiling", which includes a fixing device for installation on the top of the wall, a flat keel frame and at least one rectangular ceiling panel. The fixing device, keel frame and ceiling panel are connected in sequence from top to bottom. The keel frame has a structure with at least two parallel track grooves on the bottom surface. Each track groove has a plug-in plate inserted horizontally between the top and bottom. The plug-in plates inserted into the same track groove are at least two card plates arranged at intervals. Each ceiling panel is connected to a card block at the four corners of the top surface for pushing upward into the track groove. The outer end of the card block has a clamping opening for pushing the clamp horizontally to be clamped on the card plate.
[0004] The disadvantages of the existing patents are: (1) the existing ceiling technology requires the installation of a keel structure, which is complex and difficult to install and disassemble; (2) the ceiling panels are installed over a large area, making assembly and positioning more difficult. Summary of the Invention
[0005] The purpose of the present invention is to overcome the problems of the existing ceiling technology that requires the installation of a keel structure, which is complex in structure and troublesome to install and disassemble; and the problem that the ceiling panel is installed over a large area and the assembly and positioning are difficult, and to provide a room assembled integrated ceiling structure that omits the keel structure and can be assembled and disassembled on site.
[0006] In order to achieve the above object, the present invention adopts the following technical solutions:
[0007] A assembled integrated ceiling structure for a room, comprising:
[0008] A ceiling assembly, comprising a high-position ceiling, a low-position ceiling, and a panel splicing assembly for connecting the high-position ceiling and the low-position ceiling, wherein the high-position ceiling is formed by splicing a plurality of ceiling panels;
[0009] A panel splicing assembly, comprising a panel splicing plate, a female corner connector for connecting a high-position suspended ceiling and the panel plug-in plate, and a male corner connector for connecting a low-position suspended ceiling and the panel plug-in plate;
[0010] The hanging assembly includes a hanging mounting member arranged above the high-position ceiling panel, a hanger fixed on the floor structure layer, a transfer hanger arranged at the lower end of the hanger, and a rotatable connector for connecting the transfer hanger and the hanging mounting member.
[0011] The prefabricated integrated ceiling structure for a residential building, developed in this application, involves splicing ceiling panels, plugging in enclosure panels, and installing hanging components, eliminating the keel installation steps typically associated with existing ceiling technologies. The processing of the ceiling panels and other components is all completed in the factory, requiring only splicing and installation. This facilitates installation and disassembly, improving ceiling assembly efficiency.
[0012] Preferably, the enclosure splicing assembly also includes an anti-slip component, which includes a first anti-slip part, a second anti-slip part and a connecting plate for connecting the first anti-slip part and the second anti-slip part. The outer side wall of the first anti-slip part is provided with a first clip that is obliquely arranged in the opposite direction of the connecting plate, the outer side wall of the second anti-slip part is provided with a second clip that is obliquely arranged in the opposite direction of the connecting plate, and the inner side wall of the second anti-slip part is provided with a third clip that is obliquely arranged in the direction of the connecting plate.
[0013] Preferably, the internal and external corner connectors each include an inserting portion and a mounting portion, and the upper and lower ends of the enclosure plug-in plate are each provided with an inserting slot that cooperates with the inserting portion. The inserting portion is provided with a stopper, and the inserting slot is provided with a stopper that cooperates with the stopper, and the stopper is used to limit the inserting portion within the inserting slot.
[0014] Preferably, the mounting portion includes a slot, the anti-slip member is located within the slot, the edge of the high-positioned ceiling extends into the slot of the internal corner connector, and the edge of the low-positioned ceiling extends into the slot of the external corner connector. The slot has an opening edge provided with an inclined surface facing the slot opening, the inclined surface facilitating insertion of the anti-slip member into the slot.
[0015] Preferably, a side wall of the slot facing the plug-in part is provided with a protrusion distributed along the length direction of the slot, and a clamping cavity for clamping a rotatable connecting part is formed between the protrusion and the bottom of the slot, and a protrusion is provided on the side wall of the protrusion facing the plug-in part, and the protrusion limits the first clamping part in the slot, and the protrusion limits the first anti-slip part in the slot.
[0016] Preferably, the rotatable connector includes a cylindrical connector body, a flange arranged at the upper end of the connector body and extending axially outward, and a clip arranged on the outer side wall of the lower end of the connector body, and the clips are symmetrically distributed according to the axis of the connector body.
[0017] Preferably, the mounting portion of the internal corner connector is provided with a first engaging hole, which extends through the outer wall of the internal corner connector and the inner wall of the engaging cavity; the hook mounting member is provided with a second engaging hole, both of which engage with the engaging member. During installation, the engaging member is inserted into the first engaging hole or the second engaging hole, and the connector body is rotated, whereupon the engaging member rotates 90 degrees and locks below the first engaging hole or the second engaging hole.
[0018] Preferably, a first mounting port for inserting a suspension rod is provided on the upper end surface of the adapter hanger, and a second mounting port for inserting a rotatable connector is provided on the lower end surface of the adapter hanger. The suspension rod is limited in the first mounting port of the adapter hanger by a nut, and the first mounting port is located between the two nuts. The suspension rod is provided with a thread that cooperates with the nut, and the connector body is clamped at the second mounting port of the adapter hanger through a flange.
[0019] Preferably, the adjacent ceiling panels are spliced together by connecting inserts, and a splicing groove is provided on the splicing surface of the two adjacent ceiling panels, and the connecting insert is located in the splicing groove.
[0020] Preferably, an air-conditioning fan coil is suspended on the floor structure layer, and the air-conditioning fan coil is located above the low-level ceiling. An air supply outlet is provided on the enclosure splicing plate, and an air return outlet is provided at the low-level ceiling.
[0021] Therefore, the present invention has the following beneficial effects: (1) the installation of the keel structure and the on-site processing of the ceiling panels are omitted, which greatly improves the installation efficiency; (2) the ceiling panels are directly spliced and assembled at the construction site, which is convenient to install and has a simple structure. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 It is a structural schematic diagram of the present invention.
[0023] Figure 2 yes Figure 1 A partial enlarged view of point A in the middle.
[0024] Figure 3 yes Figure 1 A local enlarged view of point B in the middle.
[0025] Figure 4 It is a structural schematic diagram of the hanging assembly in the present invention.
[0026] Figure 5 It is a structural schematic diagram of the external corner connector in the present invention.
[0027] Figure 6 It is a structural schematic diagram of the internal angle connector in the present invention.
[0028] Figure 7 It is a structural schematic diagram of the hanging installation part in the present invention.
[0029] Figure 8 It is a structural schematic diagram of the rotatable connecting member in the present invention.
[0030] Figure 9 It is a top view of the rotatable connecting member in the present invention.
[0031] Figure 10 yes Figure 1 A partial enlarged view of point D in the middle.
[0032] Figure 11 yes Figure 1 A partial enlarged view of point C in the middle.
[0033] Figure 12 It is a structural diagram of the transfer pendant in the present invention.
[0034] As shown in the figure: high ceiling 1, low ceiling 2, enclosure splicing board 3,
[0035] Hanging mounting piece 4, second clamping hole 4.1
[0036] Boom 5,
[0037] Adapter 6, first mounting port 6.1, second mounting port 6.2,
[0038] Rotatable connector 7, connector body 7.1, flange 7.2, clamping member 7.3,
[0039] Anti-slip part 8, first anti-slip part 8.1, second anti-slip part 8.2, first clamping part 8.3, second clamping part 8.4, third clamping part 8.5,
[0040] Plug-in portion 9, plug-in slot 9.1,
[0041] Mounting portion 10, slot 10.1, protrusion 10.2, connecting cavity 10.3, protrusion 10.4, first connecting hole 10.5,
[0042] Nut 11, connecting piece 12,
[0043] Air conditioning fan coil 13, air supply outlet 13.1, return air outlet 13.2, floor structure layer 14. DETAILED DESCRIPTION
[0044] In order to make the purpose, technical solutions and advantages of the technical solution embodiments of the present invention clearer, the present invention is further described below in conjunction with the accompanying drawings and specific implementation methods.
[0045] like Figures 1 to 11 In the embodiment shown, a room assembled integrated ceiling structure includes:
[0046] The ceiling assembly includes a high ceiling 1, a low ceiling 2, and a panel splicing assembly for connecting the high ceiling 1 and the low ceiling 2. The high ceiling 1 is spliced by a number of ceiling panels.
[0047] The hoarding splicing assembly includes a hoarding splicing plate 2, a female corner connector for connecting the high-position ceiling 1 and the hoarding plug-in plate, and a male corner connector for connecting the low-position ceiling 2 and the hoarding plug-in plate;
[0048] The hanging assembly includes a hanging mounting member 4 arranged above the high-position ceiling 1 board, a hanger 5 fixed on the floor structure layer 14, an adapter hanger 6 arranged at the lower end of the hanger 5, and a rotatable connecting member 7 for connecting the adapter hanger 6 and the hanging mounting member 4.
[0049] The prefabricated integrated ceiling structure for a residential building, developed in this application, involves splicing ceiling panels, plugging in enclosure panels, and installing hanging components, eliminating the keel installation steps typically associated with existing ceiling technologies. The processing of the ceiling panels and other components is all completed in the factory, requiring only splicing and installation. This facilitates installation and disassembly, improving ceiling assembly efficiency.
[0050] When installing the ceiling structure, the splicing and assembly are carried out directly on the construction site, omitting the installation of the keel structure and the on-site processing of the ceiling panels, which greatly improves the installation efficiency.
[0051] As shown in the figure, the enclosure splicing assembly also includes an anti-slip component 8, which includes a first anti-slip portion 8.1, a second anti-slip portion 8.2 and a connecting plate for connecting the first anti-slip portion 8.1 and the second anti-slip portion 8.2. The outer wall of the first anti-slip portion 8.1 is provided with a first clip 8.3 obliquely arranged in the opposite direction of the connecting plate, the outer wall of the second anti-slip portion 8.2 is provided with a second clip 8.4 obliquely arranged in the opposite direction of the connecting plate, and the inner wall of the second anti-slip portion 8.2 is provided with a third clip 8.5 obliquely arranged in the direction of the connecting plate.
[0052] As shown in the figure, both the internal and external corner connectors include an inserting portion 9 and a mounting portion 10. The upper and lower ends of the panel inserting plate are provided with inserting slots 9.1 that mate with the inserting portion 9. The inserting portion 9 is provided with a stopper, and the inserting slot 9.1 is provided with a stopper groove that mates with the stopper groove. The stopper groove is used to limit the inserting portion 9 within the inserting slot 9.1.
[0053] As shown, the mounting portion 10 includes a slot 10.1, within which the retaining member 8 is positioned. The edge of the high-level ceiling 1 extends into the slot 10.1 of the internal corner connector, while the edge of the low-level ceiling 2 extends into the slot 10.1 of the external corner connector. The opening edge of the slot 10.1 is provided with an inclined surface facing the opening of the slot 10.1, which facilitates the insertion of the retaining member 8 into the slot 10.1.
[0054] As shown in the figure, a side wall of the slot 10.1 facing the plug-in portion 9 is provided with a protrusion 10.2 distributed along the length direction of the slot 10.1, and a clamping cavity 10.3 for clamping the rotatable connecting member 7 is formed between the protrusion 10.2 and the bottom of the slot 10.1. A protrusion 10.4 is provided on the side wall of the protrusion 10.2 facing the plug-in portion 9. The protrusion 10.2 limits the first clamping member 8.3 in the slot 10.1, and the protrusion 10.4 limits the first anti-slip portion 8.1 in the slot 10.1.
[0055] As shown in the figure, the rotatable connector 7 includes a cylindrical connector body 7.1, a flange 7.2 provided at the upper end of the connector body 7.1 and extending axially outward, and a clamping member 7.3 provided on the outer side wall of the lower end of the connector body 7.1. The clamping members 7.3 are symmetrically distributed according to the axis of the connector body 7.1.
[0056] As shown in the figure, the mounting portion 10 of the internal corner connector is provided with a first engaging hole 10.5, which extends through the outer wall of the internal corner connector and the inner wall of the engaging cavity 10.3. The hook-mounting member 4 is provided with a second engaging hole 4.1, which both mate with the engaging member 7.3. During installation, the engaging member 7.3 is inserted into the first engaging hole 10.5 or the second engaging hole 4.1. The connector body 7.1 is rotated, causing the engaging member 7.3 to rotate 90 degrees and become locked below the first engaging hole 10.5 or the second engaging hole 4.1.
[0057] As shown in the figure, the upper end surface of the adapter hanger 6 is provided with a first mounting opening 6.1 for installing the suspension rod 5, and the lower end surface of the adapter hanger 6 is provided with a second mounting opening 6.2 for installing the rotatable connector 7. The suspension rod 5 is limited in the first mounting opening 6.1 of the adapter hanger 6 by a nut 11. The first mounting opening 6.1 is located between the two nuts 11. The suspension rod 5 is provided with a thread that cooperates with the nuts 11. The connector body 7.1 is clamped to the second mounting opening 6.2 of the adapter hanger 6 through the flange 7.2. During installation, the suspension rod 5 is inserted into the first mounting opening 6.1, and the upper and lower nuts 11 fix the suspension rod 5 and the adapter hanger 6. The ceiling panel is fixed to the hanging mounting member 4 above with strong glue, and the ceiling panel is hung below the adapter hanger 6 through the rotatable connector 7, making installation very convenient.
[0058] As shown in the figure, adjacent ceiling panels are spliced together by connecting inserts 12. A splicing groove is provided on the splicing surface of two adjacent ceiling panels, and the connecting inserts 12 are located in the splicing groove.
[0059] As shown in the figure, an air conditioning fan coil unit 13 is suspended from the floor structure layer 14 and is located above the low ceiling 2. An air supply vent 13.1 is provided on the coaming panel 2, and an air return vent 13.2 is provided on the low ceiling 2. The air conditioning fan coil unit 13 is located above the low ceiling 2, concealing the air conditioning fan coil unit 13 and improving the aesthetics.
[0060] The low-level ceiling 2 is set at the edge of the high-level ceiling 1. One end of the low-level ceiling 2 is connected to the enclosure splicing plate 2 through a positive angle connector, and the other end of the low-level ceiling 2 is connected to the wall facade through a positive angle connector. The plug-in part of the positive angle connector is fixed to the wall facade by screws.
[0061] The above specific embodiments are only preferred embodiments of the present invention and are not intended to limit the specific implementation scope of the present invention. All equivalent changes made in accordance with the shape and structure of the present invention should be included in the protection scope of the present invention.
Claims
1. A room assembled integrated ceiling structure, characterized in that: include: Ceiling components, including high ceilings, low ceilings, and panel splicing components connecting the high ceilings and the low ceilings. The high ceiling is composed of several ceiling panels spliced together. The enclosure panel splicing assembly includes an enclosure panel splicing plate, a female corner connector connecting the high-position ceiling and the enclosure panel splicing plate, and a male corner connector connecting the low-position ceiling and the enclosure panel splicing plate; The hanging assembly includes a hanging mounting part arranged above the high-position ceiling panel, a hanger fixed on the floor structure layer, an adapter hanger arranged at the lower end of the hanger, and a rotatable connector connecting the adapter hanger and the hanging mounting part; the lower end surface of the adapter hanger is provided with a second mounting port for inserting the rotatable connector, the rotatable connector includes a cylindrical connector body, a clamping part arranged on the outer side wall of the lower end of the connector body, a second clamping hole is provided on the hanging mounting part, the clamping part is inserted into the second clamping hole, and the connector body is rotated, the clamping part rotates 90 degrees and is stuck below the second clamping hole.
2. The assembled integrated ceiling structure for a room according to claim 1, characterized in that: The enclosure splicing assembly also includes an anti-slip component, which includes a first anti-slip portion, a second anti-slip portion, and a connecting plate for connecting the first anti-slip portion and the second anti-slip portion. The outer side wall of the first anti-slip portion is provided with a first clip that is obliquely arranged in the opposite direction of the connecting plate, the outer side wall of the second anti-slip portion is provided with a second clip that is obliquely arranged in the opposite direction of the connecting plate, and the inner side wall of the second anti-slip portion is provided with a third clip that is obliquely arranged in the direction of the connecting plate.
3. A room assembled integrated ceiling structure according to claim 1 or 2, characterized in that: The internal corner connector and the external corner connector both include an inserting portion and an installation portion, and the upper and lower ends of the enclosure plug-in plate are both provided with inserting grooves that cooperate with the inserting portion.
4. The assembled integrated ceiling structure for a room according to claim 3 is characterized in that: The mounting portion includes a slot, the anti-dropping member is located in the slot, the edge of the high-position ceiling extends into the slot of the internal corner connector, and the edge of the low-position ceiling extends into the slot of the external corner connector.
5. The assembled integrated ceiling structure for a room according to claim 4 is characterized in that: A protrusion distributed along the length direction of the slot is provided on one side wall of the slot facing the plug-in part, and a clamping cavity for clamping a rotatable connecting part is formed between the protrusion and the bottom of the slot. A protrusion is provided on one side wall of the slot facing the plug-in part, and the protrusion limits the first clamping part in the slot, and the protrusion limits the first anti-slip part in the slot.
6. A room assembled integrated ceiling structure according to claim 4 or 5, characterized in that: The rotatable connecting member includes a flange which is arranged at the upper end of the connecting member body and extends outward in the axial direction, and the clamping members are symmetrically distributed according to the axis of the connecting member body.
7. The assembled integrated ceiling structure for a room according to claim 6, characterized in that: A first clamping hole is provided on the mounting portion of the internal angle connector, and the clamping hole passes through the outer wall of the internal angle connector and the inner wall of the clamping cavity; the first clamping hole cooperates with the clamping member.
8. The assembled integrated ceiling structure for a room according to claim 6, characterized in that: A first mounting opening for inserting a suspension rod is provided on the upper end surface of the adapter hanger. The suspension rod is limited in the first mounting opening of the adapter hanger by a nut. The first mounting opening is located between two nuts. The suspension rod is provided with a thread that cooperates with the nut. The connector body is clamped at the second mounting opening of the adapter hanger through a flange.
9. The assembled integrated ceiling structure for a room according to claim 1 or 2, characterized in that: Adjacent ceiling panels are spliced together by connecting inserts. Splicing grooves are provided on the splicing surfaces of two adjacent ceiling panels, and the connecting inserts are located in the splicing grooves.
10. The assembled integrated ceiling structure for a room according to claim 1 or 2, characterized in that: An air-conditioning fan coil is suspended on the floor structure layer, and the air-conditioning fan coil is located above the low-level suspended ceiling. An air supply port is provided on the enclosure splicing plate, and an air return port is provided at the low-level suspended ceiling.
Citation Information
Patent Citations
suspended ceiling
CN103397730B
Split-level ceiling installation structure
CN111411729A
Ceiling plate splicing design installation structure of fabricated ceiling
CN112064874A
Top keel mounting structure
CN210887737U