CN215331096U - Flame-retardant wear-resistant antibacterial fiber rock composite board - Google Patents

Flame-retardant wear-resistant antibacterial fiber rock composite board Download PDF

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Publication number
CN215331096U
CN215331096U CN202120318444.5U CN202120318444U CN215331096U CN 215331096 U CN215331096 U CN 215331096U CN 202120318444 U CN202120318444 U CN 202120318444U CN 215331096 U CN215331096 U CN 215331096U
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paper
composite board
wear
board
negative ion
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CN202120318444.5U
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Chinese (zh)
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张焕兵
叶昌海
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Chengdu Meikang Sanson Wood Industry Co ltd
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Chengdu Meikang Sanson Wood Industry Co ltd
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Abstract

The utility model discloses a flame-retardant wear-resistant antibacterial fiber rock composite board which is of a layered stacked structure, wherein a substrate layer of the composite board is a fiber rock board, and negative ion wear-resistant paper and negative ion decorative paper are hot-pressed on the upper surface of the fiber rock board. The utility model replaces the wooden core layer (wooden base material) of the traditional composite board with the fiber rock board, and the anion wear-resistant paper and the anion decorative paper are hot pressed on the surface of the composite board, so that the obtained composite board has the characteristics of flame retardance, wear resistance, sterilization, virus resistance, moisture resistance, zero formaldehyde in the core layer, difficult deformation and the like, is suitable for various places, and is a novel composite board with excellent performance for indoor decoration.

Description

Flame-retardant wear-resistant antibacterial fiber rock composite board
Technical Field
The utility model relates to the technical field of artificial boards, in particular to a flame-retardant wear-resistant antibacterial fiber rock composite board.
Background
At present, wood floors, wallboards, furniture boards and the like with wear-resistant surfaces are sold in the market, and core layers (base materials) of the wood floors, the wallboards, the multi-layer plywood, the three-layer plywood and the like are generally made of wood materials. The wood material is a porous three-dimensional structure organic material, so that the problems of wet expansion and dry shrinkage, thermal expansion and cold shrinkage, bending or distortion and the like are easily caused by the influence of environmental temperature and humidity, and the problem of overproof formaldehyde release amount is faced by the hot-press adhesion of the wood material layer. And the use place of the wood substrate veneer can only be limited to dry places such as a living room, a bedroom, a study and the like, and cannot be extended to a bathroom, a kitchen, a balcony and the like, so that the overall decoration style and the aesthetic feeling are influenced finally.
SUMMERY OF THE UTILITY MODEL
In view of the above, the utility model aims to provide a flame-retardant, wear-resistant and antibacterial fiber rock composite board, which overcomes the defects of wood base material composite boards and has the characteristics of flame retardance, wear resistance, sterilization, virus resistance, moisture resistance, zero formaldehyde in a core layer, difficult deformation and the like.
In order to achieve the purpose, the utility model provides the following technical scheme:
the composite board is of a layered stacking structure, a base material layer of the composite board is a fiber rock board, and negative ion wear-resistant paper and negative ion decorative paper are hot-pressed on the upper surface of the fiber rock board.
According to the preferable technical scheme, the composite board is of a layered stacking structure and sequentially comprises negative ion wear-resistant paper, negative ion decorative paper, moisture-proof covering paper, a fiber rock board, balance paper and negative ion bottom layer paper from top to bottom.
As a preferred technical scheme, the fiber rock plate is a plate pressed by cement and plant fiber.
As a preferable technical scheme, the thickness of the fibrolite plate is 8-18 mm.
As a preferred technical scheme, the anion wear-resistant paper is transparent paper impregnated with anion wear-resistant glue solution.
As a preferable technical scheme, the negative ion decorative paper is the decorative paper impregnated with the negative ion glue solution.
Preferably, the moisture-proof covering paper is kapok pulp paper impregnated with resin.
Preferably, the balance paper is kraft paper impregnated with resin.
As a preferred technical scheme, the negative ion bottom paper is titanium white paper impregnated with negative ion glue solution.
The utility model has the beneficial effects that:
the utility model replaces the wooden core layer (wooden base material) of the traditional composite board with the fiber rock board, and the anion wear-resistant paper and the anion decorative paper are hot pressed on the surface of the composite board, so that the obtained composite board has the characteristics of flame retardance, wear resistance, sterilization, virus resistance, moisture resistance, zero formaldehyde in the core layer, difficult deformation and the like, is suitable for various places, and is a novel composite board with excellent performance for indoor decoration.
Drawings
In order to make the object, technical scheme and beneficial effect of the utility model more clear, the utility model provides the following drawings for explanation:
fig. 1 is a schematic view of a layered stacking structure of a flame-retardant, wear-resistant and antibacterial fiber rock composite board.
Detailed Description
The present invention is further described with reference to the following drawings and specific examples so that those skilled in the art can better understand the present invention and can practice the present invention, but the examples are not intended to limit the present invention.
The composite board is of a layered stacking structure, the base material layer of the composite board is a fiber rock board 4, and the composite board sequentially comprises negative ion wear-resistant paper 1, negative ion decorative paper 2, moisture-proof covering paper 3, a fiber rock board 4, balance paper 5 and negative ion bottom paper 6 from top to bottom.
The fiber rock plate 4 is formed by pressing cement, plant fiber and a small amount of glue, has the thickness of 8-18mm, and has the advantages of flame retardance, moisture resistance, no formaldehyde, difficult deformation and the like.
The anion wear-resistant paper 1 is transparent paper impregnated with anion wear-resistant glue solution. The negative ion wear-resistant paper is mainly used for protecting patterns of decorative paper from mechanical wear and chemical corrosion, improving the color tone of the patterns and preventing the plate surface from being polluted. The method comprises the steps of adopting completely transparent 40 g/square meter refined bleached wood pulp, dipping melamine glue solution containing aluminum oxide, drying, dipping melamine glue solution containing negative ion liquid, and drying to obtain the negative ion wear-resistant paper.
The negative ion decorative paper 2 is a decorative paper impregnated with a negative ion glue solution. Adopting pattern decorative paper with the weight of 150 g/square meter of 120-.
The moisture-proof covering paper 3 is kapok pulp paper impregnated with resin. 80-90g of kapok pulp paper per square meter, less than 7 percent of water, more than 2500 percent of dry fracture degree per m, 50-80 percent of melamine modified urea-formaldehyde resin is impregnated, and the moisture-proof covering paper is obtained after drying.
The balance paper 5 is kraft paper impregnated with resin. The balance paper is kraft paper (kraft paper made of sulfate pulp and without waterproof agent) with high tensile strength (dry breaking degree/m is larger than 5500) of 130 g/square meter, the water content is less than 7%, the PH value is 7-8, the balance paper is obtained by impregnating phenolic resin or melamine modified urea-formaldehyde resin with the impregnation amount of 35-50% and drying.
The negative ion bottom paper 6 is titanium white paper impregnated with negative ion glue solution. And dipping the titanium white paper into melamine glue solution containing the anion liquid, and drying to obtain the anion bottom paper.
The pressing process of the flame-retardant wear-resistant antibacterial fiber rock composite board comprises the following steps:
1. putting the moisture-proof covering paper 3, the fiber rock plate 4, the balance paper 5 and the negative ion bottom paper 6 into a hot press, and hot-pressing for 20 seconds +/-5 seconds at the temperature of 180 +/-5 ℃ and under the pressure of 60-80 MPa;
2. and loosening the steel die, putting the negative ion wear-resistant paper 1 and the negative ion decorative paper 2, and hot-pressing for 30 seconds +/-5 seconds at the temperature of 180 +/-5 ℃ under the pressure of 60-80MPa to obtain the flame-retardant wear-resistant antibacterial fiber rock composite board.
3. The flame-retardant wear-resistant antibacterial fiber rock composite board is processed for 1.5 hours +/-10 minutes at 110 +/-5 ℃ through a high-temperature purification cabin, processed for 1 hour +/-10 minutes through a constant-temperature constant-humidity cabin/balance conditioning (the temperature is 60-70 ℃ and the humidity is 70-90%), and then stacked and maintained for 3-5 days in an environment with the temperature being 25 +/-5 ℃ and the humidity being 55-85%.
4. The flame-retardant, wear-resistant and antibacterial fiber rock composite board is subjected to platelet forming and tongue and groove forming to form the wood floor or the wallboard.
The above-mentioned embodiments are merely preferred embodiments for fully illustrating the present invention, and the scope of the present invention is not limited thereto. The equivalent substitution or change made by the technical personnel in the technical field on the basis of the utility model is all within the protection scope of the utility model. The protection scope of the utility model is subject to the claims.

Claims (2)

1. The utility model provides a fire-retardant wear-resisting antibiotic fiber rock composite sheet which characterized in that: the composite board is of a layered stacking structure, the base material layer of the composite board is a fiber rock board, and negative ion wear-resistant paper and negative ion decorative paper are hot-pressed on the upper surface of the fiber rock board; the composite board sequentially comprises negative ion wear-resistant paper, negative ion decorative paper, moisture-proof covering paper, a fiber rock board, balance paper and negative ion bottom layer paper from top to bottom.
2. The flame-retardant, abrasion-resistant and antibacterial fibrorock composite panel according to claim 1, characterized in that: the thickness of the fibrolite plate is 8-18 mm.
CN202120318444.5U 2021-02-04 2021-02-04 Flame-retardant wear-resistant antibacterial fiber rock composite board Active CN215331096U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120318444.5U CN215331096U (en) 2021-02-04 2021-02-04 Flame-retardant wear-resistant antibacterial fiber rock composite board

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120318444.5U CN215331096U (en) 2021-02-04 2021-02-04 Flame-retardant wear-resistant antibacterial fiber rock composite board

Publications (1)

Publication Number Publication Date
CN215331096U true CN215331096U (en) 2021-12-28

Family

ID=79580837

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120318444.5U Active CN215331096U (en) 2021-02-04 2021-02-04 Flame-retardant wear-resistant antibacterial fiber rock composite board

Country Status (1)

Country Link
CN (1) CN215331096U (en)

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