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Negative oxygen ion glass fiber board

A technology of negative oxygen ion and glass fiber board, applied in the direction of glass/slag layered products, applications, building components, etc., can solve problems such as broken, unsafe, low mechanical strength, etc., to avoid cracks and broken, air quality Effect of improving and increasing mechanical strength

Inactive Publication Date: 2020-08-07
慕林健康负氧离子医用建材(深圳)集团有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] Wall materials are an indispensable part of building materials, and have always been concerned by building materials workers. As a new building material, glass fiberboard has superior sound absorption, Sound insulation, heat insulation, environmental protection and flame retardant and other characteristics, glass fiber board, also known as glass fiber board, is widely used in ceilings and partition walls of industrial and commercial engineering buildings, home decoration, lining boards of furniture, lining boards of billboards, lining boards of ships, etc. Partition boards, warehouse shed boards, network floors, and wall boards for tunnels and other indoor projects have the advantages of reliability, safety, and environmental protection. They are widely used. The existing glass fiber boards are used in suspended ceilings, partition walls and home decoration Due to the insufficient flatness of the surface of the glass fiber board, when it is used for ceiling ceilings, partition walls and home decoration, the unevenness of the surface will affect the comfort of the user's daily life. Second, the mechanical strength is low, and the pressure Cracks or even breakage will occur if it is slightly larger, which is very unsafe

Method used

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  • Negative oxygen ion glass fiber board

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0022] A negative oxygen ion glass fiber board includes a layer of glass fiber layer 1 formed by cross-braiding a plurality of glass fibers 11 or arranged at intervals. The mesh 12, the thickness range of the glass fiber layer 1 is 500 microns, the diameter range of the glass fiber 11 is 50 microns, and the outside of the glass fiber layer 1 is wrapped with two layers of negative oxygen ion layer 2. The raw material of the negative oxygen ion layer 2 is as follows: The parts by weight include the following components, which are respectively 27 parts of tourmaline, 25 parts of rare earth compound salt, 15 parts of antibacterial agent, 29 parts of cement, 2 parts of diatomaceous earth, 2 parts of vinylon fiber, 5 parts of vermiculite and 2 parts of mica flakes, The material is mixed evenly with water, beaten and compressed into a plate-mounted embryo with a thickness of 300 microns, and then placed in a baking oven with a temperature of 200°C to bake it to shape it. Cut into the...

Embodiment 2

[0024] A negative oxygen ion glass fiber board includes a layer of glass fiber layer 1 formed by cross-braiding a plurality of glass fibers 11 or arranged at intervals. The mesh 12, the thickness range of the glass fiber layer 1 is 510 microns, the diameter range of the glass fiber 11 is 51 microns, and the outside of the glass fiber layer 1 is wrapped with two layers of negative oxygen ion layer 2. The raw material of the negative oxygen ion layer 2 is as follows: The parts by weight include the following components, which are respectively 28 parts of tourmaline, 25 parts of rare earth compound salt, 16 parts of antibacterial agent, 28 parts of cement, 1 part of diatomaceous earth, 2 parts of vinylon fiber, 3 parts of vermiculite and 2 parts of mica flakes, The material is mixed evenly with water, beaten and compressed into a plate-mounted embryo with a thickness of 310 microns, and then the embryo is placed in a baking oven with a temperature of 210°C to bake it to make it sh...

Embodiment 3

[0026] A negative oxygen ion glass fiber board includes a layer of glass fiber layer 1 formed by cross-braiding a plurality of glass fibers 11 or arranged at intervals. The mesh 12, the thickness range of the glass fiber layer 1 is 520 microns, the diameter range of the glass fiber 11 is 52 microns, and the outside of the glass fiber layer 1 is wrapped with two layers of negative oxygen ion layer 2. The raw material of the negative oxygen ion layer 2 is as follows: The parts by weight include the following components, which are respectively 27 parts of tourmaline, 24 parts of rare earth compound salt, 18 parts of antibacterial agent, 25 parts of cement, 2 parts of diatomaceous earth, 4 parts of vinylon fiber, 3 parts of vermiculite and 6 parts of mica flakes, The material is mixed evenly with water, beaten and compressed into a plate-mounted embryo with a thickness of 320 microns, and then placed in a baking oven at a temperature of 220°C for baking to set the shape. After the ...

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Abstract

The invention discloses a negative oxygen ion glass fiber board that includes a glass fiber layer formed by weaving a plurality of glass fibers in a crossed manner or arranging a plurality of glass fibers at intervals; a plurality of uniformly distributed meshes can be generated after the glass fiber layer is woven in a crossed manner; the glass fiber layer is wrapped with an upper negative oxygenion layer and a lower negative oxygen ion layer; the exterior of the negative oxygen ion layer is covered with a silica gel protective layer; the edge parts of the glass fiber layer, the negative oxygen ion layer and the silica gel protective layer are wrapped with a circle of fastening frame; the thickness of the glass fiber layer ranges from 500 microns to 650 microns; the diameter range of theglass fibers is 50 to 65 microns; the negative oxygen ion layer is prepared from the following raw materials in parts by weight: 25-30 parts of tourmaline, 20-25 parts of rare earth composite salt, 15-20 parts of an antibacterial agent, 25-30 parts of cement, 1-5 parts of diatomite, 1-5 parts of vinylon fibers, 1-5 parts of vermiculite and 2-8 parts of mica sheets; the surface is extremely smooth, the mechanical strength is extremely high, and a large number of negative oxygen ions can be generated.

Description

technical field [0001] The invention relates to the technical field of glass fiber boards, in particular to a glass fiber board with negative oxygen ions. Background technique [0002] Wall materials are an indispensable part of building materials, and have always been concerned by building materials workers. As a new building material, glass fiberboard has superior sound absorption, Sound insulation, heat insulation, environmental protection and flame retardant and other characteristics, glass fiber board, also known as glass fiber board, is widely used in ceilings and partition walls of industrial and commercial engineering buildings, home decoration, lining boards of furniture, lining boards of billboards, lining boards of ships, etc. Partition boards, warehouse shed boards, network floors, and wall boards for tunnels and other indoor projects have the advantages of reliability, safety, and environmental protection. They are widely used. The existing glass fiber boards ar...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B32B3/12B32B17/02B32B3/06B32B9/00B32B9/04B32B7/08C04B28/00
CPCB32B3/06B32B3/12B32B7/08B32B9/00B32B9/002B32B9/04B32B9/047B32B2262/101B32B2307/552B32B2307/7265B32B2419/06B32B2607/00C04B28/00C04B2111/00017C04B2111/00612C04B14/041C04B2103/67C04B14/08C04B14/202C04B14/20C04B16/0616C04B2103/0021
Inventor 王武成
Owner 慕林健康负氧离子医用建材(深圳)集团有限公司
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