CN214302494U - Furred ceiling tip binding off connected node structure - Google Patents

Furred ceiling tip binding off connected node structure Download PDF

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Publication number
CN214302494U
CN214302494U CN202023003646.5U CN202023003646U CN214302494U CN 214302494 U CN214302494 U CN 214302494U CN 202023003646 U CN202023003646 U CN 202023003646U CN 214302494 U CN214302494 U CN 214302494U
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layer
gypsum board
square
surface layer
net rack
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CN202023003646.5U
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李广梅
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Wuhan Construction Engineering Group Decoration Engineering Co ltd
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Wuhan Construction Engineering Group Decoration Engineering Co ltd
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Abstract

The utility model provides a ceiling end closing-in connection node structure, which comprises a main keel, a light steel keel net rack, a double-layer gypsum board surface layer, a first square steel, a second square steel, a square pipe net rack, a closing edge piece, a single-layer gypsum board surface layer, a groove, toughened glass and a stone surface layer; a blockboard base layer is attached to the second square steel bottom surface and the square pipe net rack below the second square steel, and a single-layer gypsum board surface layer is attached to the blockboard base layer; the groove is a stainless steel groove shaped like a Chinese character 'ji', and the top of the toughened glass is clamped in the groove; a stone surface layer is fixedly bonded on the surface of the first square steel below the light steel keel net rack by adopting a bonding adhesive layer, the stone surface layers on the two sides are obliquely spliced with the end part of the horizontal stone surface layer by 45 degrees, and a through long right-angle groove is arranged on the outer side of the splicing position; the double-layer gypsum board surface layer comprises an outer layer gypsum board and an inner layer gypsum board, an elongated slot is formed between the end part of the outer layer gypsum board and the stone surface layer, and a side-folding piece is fixedly bonded at the elongated slot.

Description

Furred ceiling tip binding off connected node structure
Technical Field
The utility model relates to an architectural decoration field especially relates to a furred ceiling tip binding off connected node structure.
Background
With the rapid development of the architectural decoration industry, the decoration level reaches a considerable level, the decoration styles are various, and the decoration styles are greatly enriched from the most common latex paint decorative surface to various decorative materials such as stone, ceramic tiles, wood decorative surfaces, metal plates, wallpaper and cloth, glass silver mirrors and the like; among the prior art plasterboard suspended ceiling tip binding off handle relatively poorly, when plasterboard suspended ceiling tip does not with wall connection, generally directly adopt the direct shutoff tip of carpenter's board, decorative effect is poor, and it is crude to decorate the thin portion node, has influenced whole decorative effect.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to prior art's defect and not enough, provide a furred ceiling tip binding off connected node structure, adopt the utility model discloses a structure is provided with convex stone material surface course and toughened glass at the furred ceiling tip, forms the recess at toughened glass and stone material surface course support, at the fixed receipts strake of outer gypsum board tip bonding, forms the elongated slot between receipts strake and the stone material surface course top, avoids producing the gap, has noticed architectural decoration's thin portion node treatment, has strengthened the effect of decorating.
In order to achieve the above object, the utility model adopts the following technical scheme: a suspended ceiling end closing-up connecting node structure comprises a main keel, a light steel keel net rack, a double-layer gypsum board surface layer, first square steel, second square steel, a square pipe net rack, a closing piece, a single-layer gypsum board surface layer, a groove, toughened glass and a stone surface layer; the main keel is a stressed structure of a suspended ceiling, the main keel is fixedly connected with the top plate through a hanging component, and a light steel keel net rack is hung on the main keel through a hanging part; the light steel keel net rack is attached and covered with a double-layer gypsum board surface layer, the end part of the light steel keel net rack is uniformly welded with vertically arranged first square steel, the bottom of the first square steel is 200mm lower than that of the light steel keel net rack, the top of the first square steel is fixedly connected with the top plate, the other side of each first square steel is uniformly, horizontally and vertically welded with second square steel, and the row of second square steel at the bottom is horizontal to the light steel keel net rack; a square pipe net rack is vertically welded at the end part of the second square steel, and the bottom of the square pipe net rack is 100mm lower than that of the second square steel; a single-layer gypsum board surface layer is connected to the square pipe net rack in a covering manner, and a woodworking base plate is arranged between the end part of the single-layer gypsum board surface layer and the square pipe net rack; a blockboard base layer is attached to the bottom surface of the second square steel and the square pipe net rack below the second square steel, a single-layer gypsum board surface layer is attached to the blockboard base layer, and a through-long groove is formed in the blockboard base layer corresponding to the bottom of the square pipe net rack; the groove is a stainless steel groove shaped like a Chinese character 'ji', and the top of the toughened glass is clamped in the groove; a stone surface layer is fixedly bonded on the surface of the first square steel below the light steel keel net rack by adopting a bonding adhesive layer, the stone surface layers on the two sides are obliquely spliced with the end part of the horizontal stone surface layer by 45 degrees, and a through long right-angle groove is arranged on the outer side of the splicing position; the double-layer gypsum board surface layer comprises an outer layer gypsum board and an inner layer gypsum board, an elongated slot is formed between the end part of the outer layer gypsum board and the stone surface layer, and a side-folding piece is fixedly bonded at the elongated slot.
Preferably, the edge-closing piece is an inverted T-shaped stainless steel strip.
Preferably, white latex paint layers are arranged on the surface layers of the double-layer gypsum board and the single-layer gypsum board.
Preferably, the first square steel and the second square steel are galvanized square steels, the distance between every two adjacent first square steels is 400mm, and the distance between every two adjacent second square steels is 400 mm.
Preferably, the wood board base layer is a wood board with the thickness of 18mm, and the fire retardant coating layer is coated on the wood board base layer.
The utility model has the advantages that: adopt the utility model discloses a structure is provided with convex stone surface course and toughened glass at the furred ceiling tip, forms the recess at toughened glass and stone surface course support, at the fixed receipts strake of outer gypsum board tip bonding, forms the elongated slot between receipts strake and the stone surface course top, avoids producing the gap, has noted architectural decoration's thin and detailed nodal processing, has strengthened decorative effect.
Drawings
The accompanying drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this application, illustrate embodiment(s) of the invention and together with the description serve to explain the principles of the invention.
Fig. 1 is a schematic structural diagram of a ceiling end closing-up connecting node.
Wherein: the wall-mounted type light steel wall hanging plate is characterized in that 1 is a main keel, 2 is a light steel keel net rack, 3 is a double-layer gypsum board surface layer, 4 is first square steel, 5 is second square steel, 6 is a square pipe net rack, 7 is a trimming piece, 8 is a single-layer gypsum board surface layer, 9 is a groove, 10 is toughened glass, 11 is a wood board base layer, 12 is an elongated groove, 13 is a stone surface layer, 1-1 is a hanging component, 8-1 is a wood base plate, 13-1 is a bonding adhesive layer, and 13-2 is a right-angle groove.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
As shown in the figure, the ceiling end closing-up connecting node structure comprises a main keel 1, a light steel keel net rack 2, a double-layer gypsum board surface layer 3, first square steel 4, second square steel 5, a square pipe net rack 6, a trimming piece 7, a single-layer gypsum board surface layer 8, a groove 9, toughened glass 10 and a stone surface layer 13; the main keel 1 is a stressed structure of a suspended ceiling, the main keel 1 is fixedly connected with a top plate by adopting a hanging component 1-1, and the main keel 1 is hung with a light steel keel net rack 2 by adopting a hanging piece; the light steel keel net rack 2 is covered with a double-layer gypsum board surface layer 3 in a fitting mode, the end portion of the light steel keel net rack 2 is uniformly welded with vertically arranged first square steel 4, the bottom of the first square steel 4 is 200mm lower than the light steel keel net rack 2, the top of the first square steel 4 is fixedly connected with a top plate, the other side of each first square steel 4 is uniformly, horizontally and vertically welded with second square steel 5, and the row of second square steel 5 at the lowest position is horizontal to the light steel keel net rack 2; a square pipe net rack 6 is vertically welded at the end part of the second square steel 5, and the bottom of the square pipe net rack 6 is 100mm lower than the second square steel 5; a single-layer gypsum board surface layer 8 is covered and connected on the square pipe net rack 6, and a woodworking backing plate 8-1 is arranged between the end part of the single-layer gypsum board surface layer 8 and the square pipe net rack 6; a blockboard base layer 11 is attached to the bottom surface of the second square steel 5 and the square pipe net rack 6 below the second square steel 5, a single-layer gypsum board surface layer 8 is attached to the blockboard base layer 11, and a through-long groove 9 is formed in the blockboard base layer 11 corresponding to the bottom of the square pipe net rack 6; the groove 9 is a stainless steel groove shaped like a Chinese character 'ji', and the top of the toughened glass 10 is clamped in the groove 9; a stone surface layer 13 is fixedly bonded on the surface of the first square steel 4 below the light steel keel net rack 2 by a bonding adhesive layer 13-1, the stone surface layers 13 on the two sides are spliced with the end part of the horizontal stone surface layer 13 at an angle of 45 degrees, and a through long right-angle groove 13-2 is arranged outside the splicing position; the double-layer gypsum board surface layer 3 comprises an outer layer gypsum board and an inner layer gypsum board, an elongated slot 12 is formed between the end part of the outer layer gypsum board and the stone surface layer, and the edge-closing piece 7 is fixedly bonded at the elongated slot 12.
In specific implementation, the edge-closing member 7 is an inverted T-shaped stainless steel strip.
In specific implementation, white latex paint layers are arranged on the double-layer gypsum board surface layer 3 and the single-layer gypsum board surface layer 8.
In specific implementation, the first square steel 4 and the second square steel 5 are both galvanized square steel, the distance between every two adjacent first square steel 4 is 400mm, and the distance between every two adjacent second square steel 5 is 400 mm.
In specific implementation, the blockboard base layer 11 is a blockboard with the thickness of 18mm, and the fireproof coating layer is coated on the blockboard base layer 11.

Claims (5)

1. The utility model provides a furred ceiling tip binding off connected node structure which characterized in that: the light steel keel frame comprises a main keel, a light steel keel net frame, a double-layer gypsum board surface layer, first square steel, second square steel, a square pipe net frame, a edging piece, a single-layer gypsum board surface layer, a groove, toughened glass and a stone surface layer; the main keel is a stressed structure of a suspended ceiling, the main keel is fixedly connected with the top plate through a hanging component, and a light steel keel net rack is hung on the main keel through a hanging part; the light steel keel net rack is attached and covered with a double-layer gypsum board surface layer, the end part of the light steel keel net rack is uniformly welded with vertically arranged first square steel, the bottom of the first square steel is 200mm lower than that of the light steel keel net rack, the top of the first square steel is fixedly connected with the top plate, the other side of each first square steel is uniformly, horizontally and vertically welded with second square steel, and the row of second square steel at the bottom is horizontal to the light steel keel net rack; a square pipe net rack is vertically welded at the end part of the second square steel, and the bottom of the square pipe net rack is 100mm lower than that of the second square steel; a single-layer gypsum board surface layer is connected to the square pipe net rack in a covering manner, and a woodworking base plate is arranged between the end part of the single-layer gypsum board surface layer and the square pipe net rack; a blockboard base layer is attached to the bottom surface of the second square steel and the square pipe net rack below the second square steel, a single-layer gypsum board surface layer is attached to the blockboard base layer, and a through-long groove is formed in the blockboard base layer corresponding to the bottom of the square pipe net rack; the groove is a stainless steel groove shaped like a Chinese character 'ji', and the top of the toughened glass is clamped in the groove; a stone surface layer is fixedly bonded on the surface of the first square steel below the light steel keel net rack by adopting a bonding adhesive layer, the stone surface layers on the two sides are obliquely spliced with the end part of the horizontal stone surface layer by 45 degrees, and a through long right-angle groove is arranged on the outer side of the splicing position; the double-layer gypsum board surface layer comprises an outer layer gypsum board and an inner layer gypsum board, an elongated slot is formed between the end part of the outer layer gypsum board and the stone surface layer, and a side-folding piece is fixedly bonded at the elongated slot.
2. A ceiling end shell nosing connection node structure as claimed in claim 1, wherein: the edge-closing piece is an inverted T-shaped stainless steel strip.
3. A ceiling end shell nosing connection node structure as claimed in claim 1, wherein: and white latex paint layers are arranged on the double-layer gypsum board surface layer and the single-layer gypsum board surface layer.
4. A ceiling end shell nosing connection node structure as claimed in claim 1, wherein: the first square steel and the second square steel are galvanized square steel, the distance between every two adjacent first square steels is 400mm, and the distance between every two adjacent second square steels is 400 mm.
5. A ceiling end shell nosing connection node structure as claimed in claim 1, wherein: the wood board base layer is a wood board with the thickness of 18mm, and a fireproof coating layer is coated on the wood board base layer.
CN202023003646.5U 2020-12-11 2020-12-11 Furred ceiling tip binding off connected node structure Active CN214302494U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023003646.5U CN214302494U (en) 2020-12-11 2020-12-11 Furred ceiling tip binding off connected node structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023003646.5U CN214302494U (en) 2020-12-11 2020-12-11 Furred ceiling tip binding off connected node structure

Publications (1)

Publication Number Publication Date
CN214302494U true CN214302494U (en) 2021-09-28

Family

ID=77854122

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202023003646.5U Active CN214302494U (en) 2020-12-11 2020-12-11 Furred ceiling tip binding off connected node structure

Country Status (1)

Country Link
CN (1) CN214302494U (en)

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