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Assembly structure and method for laminated variable steel frame of GRG suspended ceiling

An assembly structure and variable technology, applied in the direction of ceiling, building components, building structure, etc., can solve the problems of difficult control of flatness, easy deformation of construction, low efficiency, etc., and achieve the effect of improving construction efficiency and flexibility

Pending Publication Date: 2020-07-03
SUZHOU MEIRUIDE BUILDING DECORATION CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The construction of this traditional stainless steel ceiling is easy to deform, and the flatness is difficult to control. The base layer of the stainless steel finish is made on site. After the stainless steel surface layer is installed, holes are made at points such as lamps and tuyeres. There are hole deviations or high-temperature burns, which will damage the stainless steel. Suspended ceiling, the construction method is inflexible and inefficient

Method used

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  • Assembly structure and method for laminated variable steel frame of GRG suspended ceiling
  • Assembly structure and method for laminated variable steel frame of GRG suspended ceiling
  • Assembly structure and method for laminated variable steel frame of GRG suspended ceiling

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Experimental program
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Effect test

Embodiment 1

[0031] see figure 1 , this embodiment provides a laminated variable steel frame assembly structure for a GRG suspended ceiling. First, a steel frame body 1 and a gypsum board body 2 are provided. The steel frame body 1 is fixedly installed on the ceiling, and the gypsum board body 2 is hoisted on the ceiling. On the steel frame body 1, the steel frame body 1 includes at least two steel frame layers, the first end of the hanging rod 3 is fixedly connected to the steel frame layer, and the second end of the hanging rod 3 is fixedly connected to the gypsum board body 2 , or the second end of the hanging rod 3 is detachably connected to the gypsum board body 2 .

[0032] continue to participate figure 1 , the steel frame body 1 includes a first steel frame layer 11 and a second steel frame layer 12, the first steel frame layer 11 is screwed to the second steel frame layer 12, and the first end of the hanging rod 3 is screwed to the first steel frame layer On the frame layer 11 o...

Embodiment 2

[0040] see Figure 1 to Figure 4 , the figure shows a stacked variable steel frame assembly structure of a GRG suspended ceiling provided by Embodiment 2 of the present invention. On the basis of the above-mentioned embodiments, this embodiment further makes the following technologies as improvements Solution: The structure of the steel frame body 1 in Embodiment 1 is quite satisfactory, and the two adjacent steel columns adopt a cross connection structure. In fact, the two adjacent steel columns can form any angle to meet the installation requirements of the GRG ceiling. At the same time, it is necessary to ensure that the strength of the steel frame body 1 can support the installation of the suspended ceiling.

Embodiment 3

[0042] see Figure 4 to Figure 5, the figure shows a stacked variable steel frame assembly structure of a GRG suspended ceiling provided by Embodiment 3 of the present invention. On the basis of the above-mentioned embodiments, this embodiment further makes the following improved technologies Solution: The steel frame body 1 in Embodiment 1 is a regular cubic structure. In fact, the structure of the steel frame body 1 can be various, such as Figure 5 , wherein the steel frame body 1 is composed of three steel frame layers, and the first and second floors are composed of three steel columns, the third layer is composed of two steel columns, and so on, the arrangement of steel columns on each layer And the quantity selection can be adjusted at any time according to needs.

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Abstract

The invention provides a laminated variable steel frame assembly structure of a GRG suspended ceiling. The assembly structure is provided with a steel frame body and a gypsum board body, the steel frame body is fixedly mounted on a ceiling, the gypsum board body is hoisted on the steel frame body, the steel frame body comprises at least two steel frame layers, a first end part of each hanging rodis fixedly connected to the steel frame layers, and a second end part of each hanging rod is fixedly connected to the gypsum board body, or the second end part of each hanging rod is detachably connected to the gypsum board body. The invention also provides a laminated variable steel frame mounting method of the gypsum board suspended ceiling. Compared with the prior art, the construction efficiency and flexibility of the suspended ceiling are improved, and the variable installation and effect embodiment of gypsum boards are realized.

Description

technical field [0001] The invention relates to a gypsum board suspended ceiling, in particular to a laminated variable steel frame assembly structure and method for a GRG suspended ceiling. Background technique [0002] GRG is an improved precast high-strength fiber gypsum decorative material. It is a new decorative material made of high-quality natural gypsum as the base material, high-strength alkaline glass fiber and a small amount of environmental protection additives. The randomness of the shape makes it suitable for ceiling molding It is widely used, such as Canton Tower (Xiaoman Yao), Taikoo Hui, etc. [0003] The traditional stainless steel ceiling is basically a flat top, and the construction is relatively simple: keel production - sealing plate - smearing glue - stainless steel installation - card edge. The construction of this traditional stainless steel ceiling is easy to deform, and the flatness is difficult to control. The base layer of the stainless steel fi...

Claims

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Application Information

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IPC IPC(8): E04B9/06E04B9/10E04B9/16E04B9/18E04B9/22
CPCE04B9/06E04B9/10E04B9/16E04B9/18E04B9/225
Inventor 周一兵赵春杨天武凌晓芳曾慕鲁曹俊张慎军管晶林王昌兰孙玉高李春松路桃红周雪清王敏张卫东陈玲
Owner SUZHOU MEIRUIDE BUILDING DECORATION CO LTD