CN219548133U - Graphene suspended ceiling module assembly - Google Patents

Graphene suspended ceiling module assembly Download PDF

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Publication number
CN219548133U
CN219548133U CN202320893892.7U CN202320893892U CN219548133U CN 219548133 U CN219548133 U CN 219548133U CN 202320893892 U CN202320893892 U CN 202320893892U CN 219548133 U CN219548133 U CN 219548133U
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graphene
module assembly
ceiling module
panel
supporting
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CN202320893892.7U
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Chinese (zh)
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沈伟洪
郭利明
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Ningbo High Core Thermal Technology Co ltd
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Ningbo High Core Thermal Technology Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B30/00Energy efficient heating, ventilation or air conditioning [HVAC]

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Abstract

The utility model provides a graphene suspended ceiling module assembly, which comprises a support frame, a graphene panel, a reinforcing plate and a cover plate, wherein the support frame is provided with a supporting part, the top surface of the supporting part forms a first supporting surface, and the outer side of the support frame forms a plug-in part; the graphene panel is installed in the installation area, and the first supporting surface is in contact with the lower surface of the edge of the graphene panel and supports the graphene panel; the reinforcing plate is mounted on the upper surface of the graphene panel in a bonding mode; the apron dress is in the installation zone, the border of apron is to forming second joint portion, and the bottom surface of second joint portion and the top surface contact of reinforcing plate realize compressing tightly. The graphene suspended ceiling module assembly has the effects of heat preservation and sound insulation, adopts an assembled module structure, and is low in production difficulty, convenient to assemble and good in use experience.

Description

Graphene suspended ceiling module assembly
Technical Field
The utility model relates to a suspended ceiling, in particular to a graphene suspended ceiling module assembly.
Background
The existing integrated suspended ceiling is generally composed of a keel bracket and a suspended ceiling panel arranged on the keel bracket, is commonly used in a kitchen and a toilet, and is generally endowed with certain practical functions for adapting to the multifunctional development of the integrated suspended ceiling industry, such as adding a heater such as a bathroom heater and a hot air blower in a bathroom suspended ceiling, but the traditional integrated suspended ceiling adopts a single metal plate structure, so that heat of the toilet (bathroom) can be dissipated through the suspended ceiling, and the integrated suspended ceiling has the advantages of no heat preservation effect, high heat loss, serious power consumption and unsatisfactory use experience.
Disclosure of Invention
【1】 Technical problem to be solved
The utility model aims to solve the technical problem of providing a graphene suspended ceiling module assembly with a heat preservation effect and convenient and quick installation.
【2】 Technical proposal for solving the problems
The utility model provides a graphene ceiling module assembly, which comprises:
the support frame 1 is used as a support and installation carrier, the support frame 1 is rectangular, a support part is arranged in the support frame, the top surface of the support part forms a first support surface, the outer side edge of the support frame 1 is bent upwards and forms an inserting part 11 used for being connected with a triangular keel, the inner wall of the inserting part 11 is provided with a first clamping part 13, and an installation area is formed between the inserting part 11 and the support part;
a graphene panel 21 mounted in the mounting area, wherein the first supporting surface is in contact with the lower surface of the edge of the graphene panel 21 and supports the graphene panel;
a reinforcing plate 22 attached to the upper surface of the graphene panel 21;
the cover plate 3 is installed in the installation area, the edge of the cover plate 3 is outwards bent and forms a second clamping part which can hold the first clamping part to clamp, and the bottom surface of the second clamping part is contacted with the top surface of the reinforcing plate 22 to realize compression.
Further, an elastic plate 23 made of a flexible material is attached to the top surface of the reinforcing plate 22, and the bottom surface of the second clamping portion contacts with the elastic plate 23.
Further, the inner edge of the support frame 1 is bent upwards to form a first connection portion 122, the end portion of the first connection portion 122 is bent upwards to form a second connection portion 123, the end portion of the second connection portion 123 is bent upwards to form a third connection portion 124, the end portion of the third connection portion 124 is bent upwards to form a supporting portion 125, and the end portion of the supporting portion 125 is bent upwards to form a first limiting portion 126.
Further, the cover plate 3 includes a cover plate body, a cavity with an open lower end is formed on the cover plate body, an open end edge of the cover plate body is bent radially outwards to form a first supporting portion 31, a pressing surface is formed on the bottom surface of the first supporting portion 31, an edge of the first supporting portion 31 is bent upwards to form a second limiting portion 32 for contacting with the inner wall of the installation area, an end portion of the second limiting portion 32 is bent inwards to form a second supporting portion 33 parallel to the first supporting portion 31 and for contacting with the first clamping portion 13, and a gap is formed between the second supporting portion 33 and the first supporting portion 31.
Further, the gap is 1mm or more and 3mm or less.
Further, the cavity is filled with soundproof cotton 24.
Further, the plugging portion 11 is provided with a U-shaped hole body and forms a clamping piece, and the clamping piece is bent inwards by 5 ° -15 ° and forms the first clamping portion 13.
Further, the reinforcing plate is made of PVC.
Further, the thickness of the reinforcing plate, the elastic plate and the graphene plate is sequentially reduced.
【3】 Advantageous effects
According to the graphene suspended ceiling module assembly, the graphene panel is arranged, so that the graphene suspended ceiling module assembly can reflect heat radiation and has a heat preservation effect, and meanwhile, the graphene suspended ceiling module assembly is small in thickness and small in installation space; the reinforcing plate is arranged, so that the graphene panel can be reinforced and protected, the overall structural strength is improved, and the service life is prolonged; the elastic plate is arranged to compensate the gap between the cover body and the reinforcing plate, so that soft contact is realized, rigid contact is avoided, the compactness of the whole structure is improved, and impact noise caused by the gap is avoided; the soundproof cotton is arranged to play a soundproof role, so that the use experience is good, and meanwhile, the soundproof cotton has a fireproof function; the bracket frame structure is designed, so that the structural strength is high, the rigidity is good, a certain three-dimensional sense is achieved, and the attractiveness is good; the graphene suspended ceiling module assembly has the effects of heat preservation and sound insulation, adopts an assembled module structure, and is low in production difficulty, convenient to assemble and good in use experience.
Drawings
FIG. 1 is a schematic structural view of a graphene suspended ceiling module assembly of the present utility model;
FIG. 2 is a schematic view of another angular structure of a graphene ceiling module assembly of the present utility model;
FIG. 3 is a schematic diagram of an exploded structure of a graphene ceiling module assembly of the present utility model;
FIG. 4 is a schematic view of another angular exploded view of a graphene ceiling module assembly of the present utility model;
FIG. 5 is a cross-sectional view of a graphene ceiling module assembly of the present utility model;
fig. 6 is an enlarged view of a portion a in fig. 5.
Detailed Description
Embodiments of the present utility model will be described in detail below with reference to the accompanying drawings.
Referring to fig. 1-6, the utility model provides a graphene suspended ceiling module assembly, which comprises a bracket frame 1, a graphene panel 21, a reinforcing plate 22 and a cover plate 3.
The support frame 1 is a rectangular frame which is used as a supporting and mounting carrier, a supporting part is arranged in the support frame, the top surface of the supporting part forms a first supporting surface, the outer side edge of the support frame 1 is bent upwards to form a plug-in part 11, the plug-in part 11 is sheet-shaped and is used for being inserted into a triangular keel on a suspended ceiling bracket so as to be connected with the triangular keel, a first clamping part 13 is arranged on the inner wall of the plug-in part 11, in the embodiment, a U-shaped hole body is arranged on the plug-in part 11, a clamping piece is formed, the clamping piece is bent inwards for 5-15 degrees, and then a first clamping part 13 is formed, and a mounting area is formed between the plug-in part 11 and the supporting part; specifically, the inner edge of the support frame 1 is bent upwards by 90 degrees to form a first connecting part 122, the width of the first connecting part 122 is 1mm-5mm, the upper end edge of the first connecting part 122 is bent inwards by 90 degrees in a reverse direction to form a second connecting part 123, the width of the second connecting part is 2mm-5mm, the edge end part of the second connecting part 123 is bent upwards by 90 degrees to form a third connecting part 124, the width of the third connecting part 124 is 2mm-5mm, and the first connecting part, the second connecting part and the third connecting part can improve the integral structural strength and rigidity, have high bending strength and good rigidity, are not easy to deform during disassembly, and simultaneously improve the stereoscopic impression and the attractive appearance of the integral structure; the edge end of the third connecting portion 124 is reversely bent outwards by 90 degrees, and forms a supporting portion 125, and the third connecting portions on two adjacent edges are not connected, so that the supporting portion has certain elasticity, the top surface of the supporting portion forms a first supporting surface, and the first supporting surfaces on the supporting portions are positioned in the same plane and are used for supporting a panel, a reinforcing plate and the like; the end of the supporting portion 125 is bent upwards by 90 degrees to form a first limiting portion 126, and the height of the first limiting portion is smaller than the sum of the thicknesses of the plate bodies and is used for mounting and limiting the plate bodies to avoid horizontal sliding.
In this embodiment, the bottom 121 of the support frame 1 is provided with the indentation 121a along the contour direction, and the indentation 121a is a concave strip-shaped groove, and the whole is formed by stamping, so that the structural strength of the support frame 1 can be improved, and the stereoscopic impression and the aesthetic feeling can be improved.
The graphene panel 21 is installed in the installation area, the graphene panel 21 is rectangular, the graphene panel comprises a substrate and a graphene layer arranged on the lower bottom surface of the substrate, or the whole graphene panel is made of graphene, the first supporting surface is in contact with the lower surface of the edge of the graphene panel 21, so that the graphene panel is attached and supported, the graphene panel can reflect heat radiation below, and the effect of heat preservation is achieved.
The reinforcing plate 22 is attached to the upper surface of the graphene panel 21 and is used for protecting the graphene panel, and in this embodiment, the reinforcing plate is made of PVC and can be composited with the graphene panel.
The apron 3 is installed in the installation zone, and the border of apron 3 outwards bends 90 degrees to form second joint portion, this second joint portion can hold first joint portion chucking, realizes fixed connection, and the bottom surface of second joint portion and the top surface contact of reinforcing plate 22, and then can compress tightly reinforcing plate and graphite alkene panel 21 on first holding surface, realizes whole assembly.
In the utility model, the cover plate 3 comprises a cover plate body, a cavity with an open lower end is formed on the cover plate body, the height of the cavity is 5mm-10mm, the edge of the open end of the cover plate body is bent outwards by 90 degrees in a radial direction, a first supporting part 31 is formed, the bottom surface of the first supporting part 31 forms a compression surface, the edge of the first supporting part 31 is bent upwards in an arc shape, a second limiting part 32 is formed, the second limiting part 32 is used for being contacted with the inner wall of an installation area, the end part of the second limiting part 32 is bent inwards by 90 degrees, a second supporting part 33 is formed, the second supporting part 33 is parallel to the first supporting part 31 and is used for being contacted with the first clamping part 13, so that the fixed connection between the second supporting part 33 and the first supporting part 31 is realized, a gap is formed between the second supporting part 33 and the first supporting part 31, the gap is more than or equal to 1mm and less than or equal to 3mm, the thickness is properly increased, and the reliability of supporting and connecting is improved.
In this embodiment, there is soundproof cotton 24 at the cavity intussuseption, and this soundproof cotton is fire-proof material, is located between lid and the reinforcing plate, plays the effect of giving sound insulation, and the sewer pipe's at isolated bathroom top is downthehole, reduces the noise that the pipeline produced, and it is good to use and experience.
In order to avoid rigid contact and improve the bonding degree, in this embodiment, the top surface of the reinforcing plate 22 is bonded with the elastic plate 23, the bottom surface of the second clamping portion is in contact with the elastic plate 23, the elastic plate 23 is made of a flexible material, and the gap between the cover plate and the reinforcing plate can be compensated, so that the impact caused by the gap is avoided, and the overall compactness is improved.
According to the graphene suspended ceiling module assembly, the graphene panel is arranged, so that the graphene suspended ceiling module assembly can reflect heat radiation and has a heat preservation effect, and meanwhile, the graphene suspended ceiling module assembly is small in thickness and small in installation space; the reinforcing plate is arranged, so that the graphene panel can be reinforced and protected, the overall structural strength is improved, and the service life is prolonged; the elastic plate is arranged to compensate the gap between the cover body and the reinforcing plate, so that soft contact is realized, rigid contact is avoided, the compactness of the whole structure is improved, and impact noise caused by the gap is avoided; the soundproof cotton is arranged to play a soundproof role, so that the use experience is good, and meanwhile, the soundproof cotton has a fireproof function; the bracket frame structure is designed, so that the structural strength is high, the rigidity is good, a certain three-dimensional sense is achieved, and the attractiveness is good; the graphene suspended ceiling module assembly has the effects of heat preservation and sound insulation, adopts an assembled module structure, and is low in production difficulty, convenient to assemble and good in use experience.
The foregoing is merely a preferred embodiment of the present utility model, and it should be noted that it will be apparent to those skilled in the art that several modifications and variations can be made without departing from the technical principle of the present utility model, and these modifications and variations should also be regarded as the scope of the utility model.

Claims (9)

1. A graphene ceiling module assembly, comprising:
the support frame is rectangular and is used as a support and installation carrier, a support part is arranged in the support frame, the top surface of the support part forms a first support surface, the outer side edge of the support frame is bent upwards and forms an inserting part used for being connected with the triangular keel, the inner wall of the inserting part is provided with a first clamping part, and an installation area is formed between the inserting part and the support part;
the graphene panel is installed in the installation area, and the first supporting surface is in contact with the lower surface of the edge of the graphene panel and supports the graphene panel;
the reinforcing plate is mounted on the upper surface of the graphene panel in a bonding mode;
the cover plate is installed in the installation area, the border of cover plate outwards bends and forms and can hold the second joint portion of first joint portion chucking, the bottom surface of second joint portion with the top surface contact of reinforcing plate realizes compressing tightly.
2. The graphene ceiling module assembly of claim 1, wherein: the top surface laminating of reinforcing plate is installed and is made by flexible material's elastic plate, the bottom surface of second joint portion with the elastic plate contact.
3. The graphene ceiling module assembly of claim 1, wherein: the inner side edge of the support frame is bent upwards to form a first connecting portion, the end portion of the first connecting portion is bent reversely to form a second connecting portion, the end portion of the second connecting portion is bent upwards to form a third connecting portion, the end portion of the third connecting portion is bent reversely to form the supporting portion, and the end portion of the supporting portion is bent upwards to form a first limiting portion.
4. The graphene ceiling module assembly of claim 1, wherein: the cover plate comprises a cover plate body, a cavity with an open lower end is formed in the cover plate body, the edge of the open end of the cover plate body is bent outwards in the radial direction to form a first supporting portion, the bottom surface of the first supporting portion forms a compression surface, the edge of the first supporting portion is bent upwards to form a second limiting portion used for being in contact with the inner wall of the installation area, the end portion of the second limiting portion is bent inwards to form a second supporting portion which is parallel to the first supporting portion and used for being in contact with the first clamping portion, and a gap is formed between the second supporting portion and the first supporting portion.
5. The graphene ceiling module assembly of claim 4, wherein: the gap is greater than or equal to 1mm and less than or equal to 3mm.
6. The graphene ceiling module assembly of claim 4, wherein: and sound insulation cotton is filled in the cavity.
7. The graphene ceiling module assembly of claim 1, wherein: the plug-in part is provided with a U-shaped hole body and forms a clamping piece, and the clamping piece is inwards bent for 5-15 degrees and forms the first clamping part.
8. The graphene ceiling module assembly of claim 1, wherein: the reinforcing plate is made of PVC.
9. The graphene ceiling module assembly of claim 2, wherein: the thickness of the reinforcing plate, the thickness of the elastic plate and the thickness of the graphene panel are sequentially reduced.
CN202320893892.7U 2023-04-20 2023-04-20 Graphene suspended ceiling module assembly Active CN219548133U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320893892.7U CN219548133U (en) 2023-04-20 2023-04-20 Graphene suspended ceiling module assembly

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320893892.7U CN219548133U (en) 2023-04-20 2023-04-20 Graphene suspended ceiling module assembly

Publications (1)

Publication Number Publication Date
CN219548133U true CN219548133U (en) 2023-08-18

Family

ID=87705035

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320893892.7U Active CN219548133U (en) 2023-04-20 2023-04-20 Graphene suspended ceiling module assembly

Country Status (1)

Country Link
CN (1) CN219548133U (en)

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