Modularized structure of gypsum board ceiling terminal equipment integration belt

The modular design of the gypsum board ceiling structure solves the problems of inconvenient on-site operation and difficult equipment installation in existing technologies, and realizes fast and low-cost ceiling construction and flexible adjustment of air outlet direction.

CN121024248APending Publication Date: 2025-11-28ZHEJIANG MUTU BUILDING DECORATION ENG
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Patent Information

Application Number
CN202511203274.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-26
Publication Date
2025-11-28

AI Technical Summary

Technical Problem

Existing gypsum board ceiling structures are inconvenient to operate on-site, slow to install, and costly. Furthermore, equipment installation requires drilling holes, which makes construction difficult.

Method used

The modular design divides the ceiling structure into ceiling modules, equipment belt modules, grid modules, and gypsum board modules. These modules are assembled on-site using the corresponding components, avoiding additional fixing and drilling. The gypsum board ceiling structure is achieved by using the main keel hooks and C-shaped keels. Simply place the gypsum board between the C-shaped keel and the support plate and insert it seamlessly to ensure the stability of the gypsum board after placement. This design is better suited for gypsum boards of standard thicknesses and sizes available on the market.

Benefits of technology

It enables quick on-site operation, reduces construction costs, and improves the ease of use and flexibility of the ceiling structure, allowing for adjustment of the airflow direction and adaptation to gypsum boards of different thicknesses.

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Abstract

The invention discloses a gypsum board ceiling terminal equipment integrated belt modular structure which comprises a ceiling module, an equipment belt module, a grating module and a gypsum board module. The ceiling module is installed on a roof and comprises a main keel and a ceiling hook, the equipment belt module comprises a left equipment belt side edge and a right equipment belt side edge, the left equipment belt side edge is hung on the main keel through the main keel hook, and the grating module is installed between the left equipment belt side edge and the right equipment belt side edge. According to the integrated belt modular structure of the gypsum board ceiling terminal equipment, a ceiling structure of a gypsum board is modularly designed, and the ceiling structure is divided into a ceiling module, an equipment belt module, a grating module and a gypsum board module; only corresponding components need to be used for splicing on site, bolts do not need to be additionally used for fixing, and on-site operation is convenient and rapid.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of suspended ceiling, in particular to a gypsum board suspended ceiling terminal device integrated with a modular structure. BACKGROUND

[0002] Gypsum board is a material made of building gypsum as the main raw material. It is a kind of building material with light weight, high strength, thin thickness, convenient processing, good sound insulation, heat insulation and fireproof performance, etc. Gypsum board is often used for suspended ceiling.

[0003] The patent announcement No. "CN112282174A" discloses a double-layer gypsum board suspended ceiling structure, which comprises a bottom plate, a connecting assembly, a connecting hook, a height adjusting assembly and a fixing assembly. The bottom plate is provided with a first gypsum board on the lower side, and the bottom plate and the first gypsum board are connected by evenly distributed screws. The lower side of the first gypsum board is fixed with a second gypsum board.

[0004] As described in the above technology, the gypsum board is operated by the suspended ceiling structure during the suspended ceiling operation. The existing gypsum board suspended ceiling structure is inconvenient to use and operate. The materials such as gypsum board are delivered to the construction site first, and then workers manually install these materials on site. Each area of construction requires workers to complete all installation details, such as nailing, cutting aluminum, cutting gypsum board, etc. These construction processes make the installation not fast, high in cost and high in material cost. After the suspended ceiling, equipment installation is required. The existing equipment installation method needs to make holes on the gypsum board. If the size of the hole is wrong, the whole needs to be replaced, which is difficult to operate on site. SUMMARY

[0005] In view of the deficiencies of the prior art, the present application provides a gypsum board suspended ceiling terminal device integrated with a modular structure, which solves the problem of inconvenient on-site operation of the existing gypsum board suspended ceiling.

[0006] To achieve the above purpose, the present application is implemented by the following technical scheme: a gypsum board suspended ceiling terminal device integrated with a modular structure comprises a suspended ceiling module, a device belt module, a grid module and a gypsum board module.

[0007] The suspended ceiling module is installed on the roof, the suspended ceiling module comprises a main ridge and a suspended ceiling hook, the device belt module comprises a left device belt side and a right device belt side, the left device belt side is hung on the main ridge through the main ridge hook, the right device belt side is hung on the main ridge through the moving hook, the grid module is installed between the left device belt side and the right device belt side, the gypsum board module comprises two C-shaped ridges and a plurality of gypsum boards, the two C-shaped ridges are also hung on the main ridge through the moving hook, and the gypsum board is installed between the left device belt side and the C-shaped ridge.

[0008] Preferably, the left device belt side body is H-shaped and internally divided into upper and lower storage cavities. The opening of the upper storage cavity is bent inward to form a U-shaped hanging groove for cooperating with the movable hook. The left side of the left device belt side is fixedly connected to two upper and lower first L-shaped plates. The lower left side of the left device belt side is fixedly connected to a support plate. The top of the support plate is bent to form a slot, and a seamless insert is inserted into the slot. The top of the lower storage cavity is fixedly connected to two left and right second L-shaped plates, and the two second L-shaped plates are used to install the light strip.

[0009] Preferably, the main body of the right device belt side is L-shaped, and the left device belt side and the side opposite to the right device belt side are both fixedly connected with a third L-shaped plate. The right side of the right device belt side is also provided with a support plate, a slot and a seamless insert, and the right side of the right device belt side is also provided with two upper and lower first L-shaped plates.

[0010] Preferably, the third L-shaped plate is divided into a horizontal part and a vertical part, and an insertion cavity is formed between the vertical part of the third L-shaped plate and the side of the left equipment belt.

[0011] Preferably, the grille module includes grille clips and a cover plate. The top of the grille clip has two clip slots, and the grille clip is secured to the vertical parts of the two third L-shaped plates by two grille rods. The bottom of the grille clip is fixedly connected with multiple circular clips at equal intervals, and each circular clip is secured with a grille rod. The cover plate is inverted U-shaped and is inserted into the insertion cavity.

[0012] Preferably, the grid bar is composed of two upper and lower circular tubes connected together, and after the grid bar is snapped into the circular buckle, it can swing left and right through the circular structure to adjust the wind direction. The grid bar can be spliced ​​front and back, and the splicing is connected by a connecting buckle. The connecting buckle is composed of two upper and lower cylinders, with the bottom open. The dimensions of the upper and lower cylinders of the connecting buckle match the dimensions of the upper and lower circular tubes of the grid bar.

[0013] Preferably, the main keel hook comprises an L-shaped hanging plate portion and two hook portions on the left and right. The L-shaped hanging plate portion is divided into a horizontal portion and a vertical portion. The horizontal portion of the L-shaped hanging plate portion can be bent and hung on the main keel. The two hook portions are located on the left and right sides of the vertical portion of the L-shaped hanging plate portion.

[0014] Preferably, the movable hook includes a foldable plate and a fourth L-shaped plate. The foldable plate and the fourth L-shaped plate are fixedly connected on the left side and are perpendicular to each other. An insert plate is fixedly connected to the other end of the fourth L-shaped plate and is inserted between the upper and lower first L-shaped plates on the right side of the right equipment belt.

[0015] Preferably, the C-shaped keel includes a main body, which is U-shaped, with the U-shaped opening bent inward to form two on the left and right, and the two second U-shaped hanging grooves cooperate with the hook part.

[0016] Beneficial effects

[0017] This invention provides an integrated modular structure for gypsum board ceiling terminal equipment. Compared with the prior art, it has the following advantages:

[0018] 1. This gypsum board ceiling terminal equipment integrates a modular structure. By modularizing the gypsum board ceiling structure, the ceiling structure is divided into ceiling modules, equipment modules, grid modules, and gypsum board modules. On-site assembly only requires splicing with the corresponding components, without the need for additional bolts for fixing. On-site operation is convenient and quick. Furthermore, the equipment modules can be equipped with lighting equipment without the need for additional drilling, and the grid modules can be equipped with ventilation equipment, further improving convenience.

[0019] 2. This gypsum board ceiling terminal equipment integrates a modular structure, which is connected to the ventilation equipment through a grille module. The grille railings are snapped onto circular buckles, allowing the angle of the grille railings to be rotated and adjusted, thereby adjusting the air outlet direction and further improving the ease of use of the ceiling structure.

[0020] 3. This gypsum board ceiling terminal equipment integrates a modular structure. It suspends the gypsum board ceiling by cooperating with the main keel hook and the C-shaped keel. Simply place the gypsum board between the C-shaped keel and the support plate. Seamless inserts ensure the stability of the gypsum board after placement. It can better adapt to gypsum boards of standard thickness and size on the market. Attached Figure Description

[0021] Figure 1 This is a schematic diagram of the appearance of the present invention;

[0022] Figure 2 This is a partial schematic diagram of the present invention;

[0023] Figure 3 This is a schematic diagram of the grille module and device of the present invention with sides;

[0024] Figure 4 This is a schematic diagram of the device of the present invention with its sides;

[0025] Figure 5 This is a schematic diagram of the main keel hook of the present invention;

[0026] Figure 6 This is a partial schematic diagram of the grille module of the present invention;

[0027] Figure 7This is a schematic diagram of the grid module splicing component of the present invention;

[0028] Figure 8 This is a schematic diagram of the right device of the present invention with side mounting.

[0029] Figure 9 This is a schematic diagram of the movable hook of the present invention.

[0030] In the diagram: 1. Main keel; 2. Ceiling hook; 3. Left equipment belt side; 31. Storage cavity; 32. First U-shaped hanging groove; 33. First L-shaped plate; 34. Support plate; 35. Slot; 36. Seamless insert; 37. Second L-shaped plate; 38. Third L-shaped plate; 4. Right equipment belt side; 5. Grille module; 51. Grille buckle; 52. Grille rod; 53. Circular buckle; 54. Buckle groove; 55. Connecting buckle; 56. Cover plate; 6. Main keel hook; 61. L-shaped hanging plate part; 62. Hook part; 7. C-shaped keel; 71. Main body; 72. Second U-shaped hanging groove; 8. Movable hook; 81. Foldable plate; 82. Fourth L-shaped plate; 83. Insert plate; 9. Gypsum board. Detailed Implementation

[0031] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0032] Please see Figures 1-9 The gypsum board ceiling terminal equipment integrates a modular structure and offers three technical solutions:

[0033] The first implementation method includes a ceiling module, an equipment belt module, a grid module, and a gypsum board module;

[0034] The ceiling module is installed on the roof. The ceiling module includes a main keel 1 and a ceiling hook 2. The equipment belt module includes a left equipment belt side 3 and a right equipment belt side 4. The left equipment belt side 3 is hung on the main keel 1 through the main keel hook 6, and the right equipment belt side 4 is hung on the main keel 1 through the movable hook 8. The grid module 5 is installed between the left equipment belt side 3 and the right equipment belt side 4. The gypsum board module includes two left and right C-shaped keels 7 and multiple gypsum boards 9. The two C-shaped keels 7 are also hung on the main keel 1 through the movable hook 8, and the gypsum boards 9 are installed between the left equipment belt side 3 and the C-shaped keels 7.

[0035] The left device side 3 is H-shaped and internally divided into upper and lower storage cavities 31. The opening of the upper storage cavity 31 is bent inward to form a U-shaped hanging groove 32 for engaging with the movable hook 8. Two first L-shaped plates 33 are fixedly connected to the left side of the left device side 3. A support plate 34 is fixedly connected to the lower left of the left device side 3. The top of the support plate 34 is bent to form a slot 35, and a seamless insert 36 is inserted into the slot 35. Two second L-shaped plates 3 are fixedly connected to the top of the lower storage cavity 31. 7. Two second L-shaped plates 37 are used for installing the light strip. The main body of the right equipment strip side 4 is L-shaped. The left equipment strip side 3 and the right equipment strip side 4 are fixedly connected to the opposite side of the right equipment strip side 4. The right side of the right equipment strip side 4 is also provided with a support plate 34, a slot 35 and a seamless insert 36. The right side of the right equipment strip side 4 is also provided with two upper and lower first L-shaped plates 33. The third L-shaped plate 38 is divided into a horizontal part and a vertical part. The vertical part of the third L-shaped plate 38 and the left equipment strip side 3 form an insertion cavity.

[0036] The movable hook 8 includes a foldable plate 81 and a fourth L-shaped plate 82. The foldable plate 81 and the fourth L-shaped plate 82 are fixedly connected on the left side and are perpendicular to each other. The other end of the fourth L-shaped plate 82 is fixedly connected to an insert plate 83, which is inserted between the upper and lower first L-shaped plates 33 on the right side of the right equipment belt side 4.

[0037] By modularizing the gypsum board ceiling structure, the structure is divided into ceiling modules, equipment belt modules, grid modules, and gypsum board modules. On-site assembly only requires the use of corresponding components, eliminating the need for additional bolts for fixing. This makes on-site operation convenient and quick. Furthermore, lighting equipment can be installed in the equipment belt modules without the need for additional drilling, and ventilation equipment can be installed on the grid modules, further enhancing convenience.

[0038] The second implementation differs from the first implementation in that: the grid module 5 includes a grid buckle 51 and a cover plate 56. The top of the grid buckle 51 has two buckle slots 54 on the left and right. The grid buckle 51 is secured to the vertical parts of the two third L-shaped plates 38 on the left and right by two grid rods 52. Multiple circular buckles 53 are fixedly connected at equal intervals at the bottom of the grid buckle 51. Each circular buckle 53 is secured with a grid rod 52. The cover plate 56 is inverted U-shaped and is inserted into the insertion cavity. The grid rod 52 is composed of two upper and lower circular tubes connected together. After the grid rod 52 is secured in the circular buckle 53, it can swing left and right through the circular structure to adjust the wind direction. The grid rod 52 can be spliced ​​front and back, and is connected by a connecting buckle 55. The connecting buckle 55 is composed of two upper and lower cylinders, and the bottom is open. The dimensions of the upper and lower cylinders of the connecting buckle 55 match the dimensions of the upper and lower circular tubes of the grid rod 52.

[0039] The third implementation differs from the second implementation in that the main keel hook 6 consists of an L-shaped hanging plate portion 61 and two hook portions 62 on the left and right. The L-shaped hanging plate portion 61 is divided into a horizontal portion and a vertical portion. The horizontal portion of the L-shaped hanging plate portion 61 can be bent and hung on the main keel 1. The two hook portions 62 are located on the left and right sides of the vertical portion of the L-shaped hanging plate portion 61. The C-shaped keel 7 includes a main body 71, which is U-shaped. The U-shaped opening is bent inward to form two hook portions 72 on the left and right. The two second U-shaped hanging grooves 72 cooperate with the hook portions 62.

[0040] The grille module is connected to the ventilation equipment, and the grille railing is snapped onto the circular buckle, allowing the angle of the grille railing to be rotated and adjusted, thereby adjusting the air outlet direction and further improving the ease of use of the ceiling structure.

[0041] The gypsum board ceiling is installed by using the main keel hook and the C-shaped keel. Simply place the gypsum board between the C-shaped keel and the support plate. Seamless inserts ensure the stability of the gypsum board after placement, which can better accommodate gypsum boards of standard thickness in the market.

[0042] During ceiling installation, fix the ceiling hook 2 to the roof and hang the main keel 1 on the ceiling hook 2. Hang the main keel hook 6 on the main keel 1 at a suitable position. When hanging, place the horizontal part of the L-shaped hanging plate 61 flat on top of the main keel 1 and bend the protruding part to complete the hanging of the main keel hook 6. Next, hang the movable hook 8 on the right side of the main keel 1. Then, align and insert the two U-shaped hanging slots 32 on the left equipment belt side 3 with the two hook parts 62. Simultaneously, insert the insert plate 83 between the upper and lower first L-shaped plates 33 on the right side of the right equipment belt side 4. This completes the installation of the left and right equipment belt sides 3 and 4. After splicing 4, align and insert the grid rods 52 on the grid buckle 51 with the vertical parts of the two third L-shaped plates 38 on the left and right. Then, snap multiple grid rods 52 onto the circular buckles 53 in sequence, and insert the cover plate 56 into the insertion cavity. At this time, the grid module is assembled. In addition, when front and rear splicing is required, the opposite ends of the front and rear grid rods 52 are spliced ​​by the connecting buckle 55. Then, hang two movable hooks 8 on the left and right on the main keel 1, and hang the C-shaped keel 7 on the main keel hook 6. At this time, insert the plasterboard 9 between the C-shaped keel 7 and the support plate 34, and insert the seamless insert 36 into the slot 35 to tighten the plasterboard.

[0043] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0044] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A modular structure integrated terminal equipment for gypsum board ceilings, characterized in that: Includes ceiling modules, equipment belt modules, grille modules, and gypsum board modules; The ceiling module is installed on the roof. The ceiling module includes a main keel (1) and a ceiling hook (2). The equipment belt module includes a left equipment belt side (3) and a right equipment belt side (4). The left equipment belt side (3) is hung on the main keel (1) through the main keel hook (6). The right equipment belt side (4) is hung on the main keel (1) through the movable hook (8). The grid module (5) is installed between the left equipment belt side (3) and the right equipment belt side (4). The gypsum board module includes two left and right C-shaped keels (7) and multiple gypsum boards (9). The two C-shaped keels (7) are also hung on the main keel (1) through the movable hook (8). The gypsum boards (9) are installed between the left equipment belt side (3) and the C-shaped keel (7).

2. The gypsum board ceiling terminal equipment integrated modular structure according to claim 1, characterized in that: The main body of the left device belt side (3) is H-shaped and divided into upper and lower storage cavities (31). The opening of the upper storage cavity (31) is bent inward to form a U-shaped hanging groove (32) for cooperating with the movable hook (8). The left side of the left device belt side (3) is fixedly connected to two upper and lower first L-shaped plates (33). The lower left side of the left device belt side (3) is fixedly connected to a support plate (34). The top of the support plate (34) is bent to form a slot (35), and a seamless insert (36) is inserted into the slot (35). The top of the lower storage cavity (31) is fixedly connected to two left and right second L-shaped plates (37), and the two second L-shaped plates (37) are used to install the light strip.

3. The gypsum board ceiling terminal equipment integrated modular structure according to claim 1, characterized in that: The main body of the right equipment belt side (4) is L-shaped. The left equipment belt side (3) and the right equipment belt side (4) are fixedly connected to a third L-shaped plate (38). The right side of the right equipment belt side (4) is also provided with a support plate (34), a slot (35) and a seamless insert (36). The right side of the right equipment belt side (4) is also provided with two first L-shaped plates (33) on the upper and lower sides. The third L-shaped plate (38) is divided into a horizontal part and a vertical part. The vertical part of the third L-shaped plate (38) and the left equipment belt side (3) form an insertion cavity.

4. The gypsum board ceiling terminal equipment integrated modular structure according to claim 3, characterized in that: The grid module (5) includes a grid buckle (51) and a cover plate (56). The top of the grid buckle (51) is provided with two buckle slots (54) on the left and right. The grid buckle (51) is clamped on the vertical part of the two third L-shaped plates (38) on the left and right by two grid rods (52). The bottom of the grid buckle (51) is fixedly connected with multiple circular buckles (53) at equal distances. Each circular buckle (53) is clamped with a grid rod (52). The cover plate (56) is inverted U-shaped and is inserted into the insertion cavity.

5. The gypsum board ceiling terminal equipment integrated modular structure according to claim 4, characterized in that: The grid bar (52) is composed of two upper and lower round tubes connected together. After the grid bar (52) is locked in the round buckle (53), it can swing left and right through the round structure to adjust the wind direction. The grid bar (52) can be spliced ​​front and back, and the splicing is connected by a connecting buckle (55). The connecting buckle (55) is composed of two upper and lower cylinders, and the bottom is open. The size of the upper and lower cylinders of the connecting buckle (55) matches the size of the upper and lower round tubes of the grid bar (52).

6. The gypsum board ceiling terminal equipment integrated modular structure according to claim 1, characterized in that: The main keel hook (6) consists of an L-shaped hanging plate part (61) and two hook parts (62) on the left and right. The L-shaped hanging plate part (61) is divided into a horizontal part and a vertical part. The horizontal part of the L-shaped hanging plate part (61) can be bent and hung on the main keel (1). The two hook parts (62) on the left and right sides of the vertical part of the L-shaped hanging plate part (61) are located on the left and right sides.

7. The gypsum board ceiling terminal equipment integrated modular structure according to claim 1, characterized in that: The movable hook (8) includes a foldable plate (81) and a fourth L-shaped plate (82). The foldable plate (81) and the fourth L-shaped plate (82) are fixedly connected on the left side and are perpendicular to each other. The other end of the fourth L-shaped plate (82) is fixedly connected to an insert plate (83), which is inserted between the upper and lower first L-shaped plates (33) on the right side of the right equipment belt side (4).

8. The gypsum board ceiling terminal equipment integrated modular structure according to claim 6, characterized in that: The C-shaped keel (7) includes a main body (71), which is U-shaped, and the U-shaped opening is bent inward to form two (72) on the left and right sides, and the two second U-shaped hanging grooves (72) cooperate with the hook part (62).

Citation Information

Patent Citations

  • Double-layer gypsum board suspended ceiling structure

    CN112282174A