An environmentally friendly floor made by dyeing and its preparation method
Through dyeing and multi-layer structural design, the problems of single color and high formaldehyde content of the floor are solved, and environmentally friendly and durable antique floors are achieved, with beautiful structure and low formaldehyde content.
Patent Information
- Application Number
- CN201910119809.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2019-02-18
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2039-02-18
AI Technical Summary
The existing floors have a single color and high formaldehyde content, especially in the face of decorating treatments.
The environmentally friendly floor made by dyeing is laid with multi-layer fiberglass mesh cloth and colloids interlaced, combined with wood powder penetration and discoloration reactions to form an aesthetic rendering layer and splicing it with a T-rail structure.
It realizes environmentally friendly and durable floors, with a dessert color, beautiful structure, and low formaldehyde content.
Smart Images

Figure CN109914740B_ABST
Abstract
Description
Technical Field
[0001] An environment-friendly floor made by dyeing and a preparation method thereof according to the present invention belong to the technical field of floors. Background Art
[0002] The existing floors have a single color and a high formaldehyde content. Especially in the aspect of making antique effects, there are very few. How to process an environment-friendly floor has always been a technical problem that needs to be solved urgently by those skilled in the art. Summary of the Invention
[0003] The present invention overcomes the deficiencies of the prior art and provides an environment-friendly floor made by dyeing and a preparation method thereof, which are environmentally friendly, durable, beautiful in structure and can be subjected to antique treatment.
[0004] To solve the above technical problems, the technical solution adopted by the present invention is: an environment-friendly floor made by dyeing, including a floor layer, a rendering layer, an anti-seepage layer and a floor base. The rendering layer is arranged on the upper side of the floor layer, the anti-seepage layer is arranged on the lower side of the floor layer, and the floor base is arranged on the lower side of the anti-seepage layer. The structure of the rendering layer is: including multiple layers of fiberglass mesh cloth, a fence, a first colloid, a second colloid and wood powder. The multiple layers of fiberglass mesh cloth are laid in a staggered and overlapping manner on the floor layer. A fence is arranged around the outer side of the fiberglass mesh cloth. The first colloid is filled onto the fiberglass mesh cloth within the fence. Wood powder is laid on the first colloid. The second colloid is filled on the upper side of the wood powder. The first colloid, the wood powder and the second colloid are compacted and fixed within the fence, and the first colloid and the second colloid can penetrate the wood powder and undergo a color change reaction.
[0005] The floor base includes an upper base and a lower base. The upper base is integrally and compositely extruded with the anti-seepage layer and the floor layer. The lower base is located on the lower side of the upper base, and a T-shaped guide rail is arranged on the upper side of the lower base. The T-shaped guide rail can be inserted into the T-shaped guide groove of the upper base in a matching manner.
[0006] One end of the floor layer is provided with a first plug connector, and the end of the floor base at the other end of the floor layer is provided with a second plug connector. The first plug connector and the second plug connector facilitate the splicing and laying of the floor.
[0007] A method for making an environment-friendly floor by dyeing according to the present invention is implemented according to the following steps:
[0008] The first step: composite and extrude the floor layer, the anti-seepage layer and the floor base together for standby;
[0009] The second step: stack and lay multiple layers of fiberglass mesh cloth in a staggered manner on the upper side of the floor layer, and then set a fence around the fiberglass mesh cloth;
[0010] Step 3: Lay the first colloid on the fiberglass mesh cloth inside the enclosure, and then sequentially lay wood powder and the second colloid on the upper side of the first colloid, and compact them;
[0011] Step 4: Place the floor with the rendering layer obtained in Step 3 in a shaded place and let it stand for hours. Both the first colloid and the second colloid can penetrate the wood powder and undergo a color change reaction with each other;
[0012] Step 5: Insert the upper base with the T-shaped guide groove in Step 4 correspondingly into the T-shaped guide rail of the lower base to complete the processing of the floor.
[0013] The beneficial effects of the present invention compared with the prior art are: The present invention uses the rendering layer on the upper side of the floor layer to render the color of the floor, especially in terms of antique imitation, which is not only environmentally friendly and durable, but also has a beautiful structure. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] The following further describes the present invention with reference to the accompanying drawings.
[0015] Figure 1 is a schematic structural diagram of the present invention.
[0016] Figure 2 is a cross-sectional view of the present invention.
[0017] In the figure: 1 is the floor layer, 2 is the rendering layer, 3 is the anti-seepage layer, 4 is the floor base, 41 is the upper base, 42 is the lower base, 43 is the T-shaped guide rail, 44 is the T-shaped guide groove, 5 is the first socket, and 6 is the second socket. DETAILED DESCRIPTION OF THE INVENTION
[0018] As Figure 1 , Figure 2 shown, an environment-friendly floor made by dyeing according to the present invention includes a floor layer 1, a rendering layer 2, an anti-seepage layer 3 and a floor base 4. The rendering layer 2 is arranged on the upper side of the floor layer 1, the anti-seepage layer 3 is arranged on the lower side of the floor layer 1, the floor base 4 is arranged on the lower side of the anti-seepage layer 3, and the structure of the rendering layer 2 is: including multiple layers of fiberglass mesh cloth, an enclosure, a first colloid, a second colloid and wood powder. Multiple layers of the fiberglass mesh cloth are laid in a staggered and overlapping manner on the floor layer 1. The outer periphery of the fiberglass mesh cloth is provided with an enclosure. The first colloid is filled into the fiberglass mesh cloth inside the enclosure. Wood powder is laid on the first colloid. The second colloid is filled on the upper side of the wood powder. The first colloid, the wood powder and the second colloid are compacted and fixed inside the enclosure, and both the first colloid and the second colloid can penetrate the wood powder and undergo a color change reaction.
[0019] The floor base 4 includes an upper base 41 and a lower base 42. The upper base 41 is integrally formed by composite extrusion with the anti-seepage layer 3 and the floor layer 1. The lower base 42 is located on the lower side of the upper base 41, and a T-shaped guide rail 43 is provided on the upper side of the lower base 42. The T-shaped guide rail 43 can be inserted into the T-shaped guide groove 44 of the upper base 41 in a matching manner.
[0020] One end of the floor layer 1 is provided with a first plug connector 5, and the end of the floor base 4 at the other end of the floor layer 1 is provided with a second plug connector 6. The first plug connector 5 and the second plug connector 6 facilitate the splicing and laying of the floor.
[0021] A method for making an environmentally friendly floor by dyeing according to the present invention is implemented according to the following steps:
[0022] The first step: Composite and extrude the floor layer 1, the anti-seepage layer 3 and the floor base 4 together for standby;
[0023] The second step: Stack and stagger multiple layers of fiberglass mesh cloth on the upper side of the floor layer 1, and then set up enclosures around the fiberglass mesh cloth;
[0024] The third step: Lay the first colloid on the fiberglass mesh cloth within the enclosure, and then sequentially lay wood powder and the second colloid on the upper side of the first colloid, and compact them;
[0025] The fourth step: Place the floor with the rendering layer 2 obtained in the third step in a cool place and let it stand for 24 hours. Both the first colloid and the second colloid can penetrate the wood powder and undergo a color change reaction with each other;
[0026] The fifth step: Insert the upper base 41 with the T-shaped guide groove 44 corresponding to the T-shaped guide rail 43 of the lower base 42 in the fourth step to complete the processing of the floor.
[0027] The present invention makes the original natural-colored floor into a gray old floor, and uses the rendering layer on the upper side of the floor layer to render the color of the floor. Especially in terms of antique imitation, it is not only environmentally friendly and durable, but also has a beautiful structure.
[0028] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those of ordinary skill in the art, various changes can be made without departing from the gist of the present invention.
Claims
1. An environmentally friendly floor made by dyeing, characterized in that, It includes a floor layer (1), a rendering layer (2), a waterproof layer (3) and a floor base (4). The rendering layer (2) is disposed on the upper side of the floor layer (1), the waterproof layer (3) is disposed on the lower side of the floor layer (1), and the floor base (4) is disposed on the lower side of the waterproof layer (3). The structure of the rendering layer (2) is as follows: it includes multiple layers of fiberglass mesh cloth, a fence, a first colloid, a second colloid and wood powder. The multiple layers of fiberglass mesh cloth are laid overlapping and staggered on the floor layer (1). A fence is disposed around the outer side of the fiberglass mesh cloth. The first colloid is filled onto the fiberglass mesh cloth within the fence. Wood powder is laid on the first colloid. The second colloid is filled on the upper side of the wood powder. The first colloid, the wood powder and the second colloid are compacted and fixed within the fence, and the first colloid and the second colloid can penetrate the wood powder and undergo a color change reaction; The floor base (4) includes an upper base (41) and a lower base (42). The upper base (41) is integrally and compound-extruded with the waterproof layer (3) and the floor layer (1). The lower base (42) is located on the lower side of the upper base (41), and a T-shaped guide rail (43) is disposed on the upper side of the lower base (42), and the T-shaped guide rail (43) can be inserted into the T-shaped guide groove (44) of the upper base (41) in a matching manner; One end of the floor layer (1) is provided with a first socket (5), and the end of the floor base (4) at the other end of the floor layer (1) is provided with a second socket (6). The first socket (5) and the second socket (6) facilitate the splicing and laying of the floor.
2. A method for making an environmentally friendly floor by dyeing according to claim 1, characterized in that, It is implemented according to the following steps: The first step: The floor layer (1), the waterproof layer (3) and the floor base (4) are compound-extruded together and reserved; The second step: Multiple layers of fiberglass mesh cloth are laid overlapping and staggered on the upper side of the floor layer (1), and then a fence is disposed around the fiberglass mesh cloth; The third step: The first colloid is laid on the fiberglass mesh cloth within the fence, and then wood powder and the second colloid are sequentially laid on the upper side of the first colloid and compacted; The fourth step: The floor with the rendering layer (2) obtained in the third step is placed in a cool place and left static for 24 hours. Both the first colloid and the second colloid can penetrate the wood powder and react with each other to undergo a color change reaction; The fifth step: The upper base (41) with the T-shaped guide groove (44) in the fourth step is correspondingly inserted into the T-shaped guide rail (43) of the lower base (42) to complete the processing of the floor.
Citation Information
Patent Citations
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