Antibacterial and anticorrosive laminate floor
By using the superior arc-shaped protrusions and deformation groove design, as well as the multi-layer structure of the floor components, the problem of gaps in traditional wood flooring splicing has been solved, achieving improvements in antibacterial and anti-corrosion properties, stability, and aesthetics.
Patent Information
- Application Number
- CN202422886057.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-26
- Publication Date
- 2025-12-02
- Estimated Expiration
- 2034-11-26
AI Technical Summary
Traditional wood flooring is prone to gaps at the joints, which affects its appearance and easily accumulates dust, dirt and moisture, providing an ideal environment for bacterial growth.
The design incorporates arc-shaped protrusions and grooved splicing components with deformation channels, combined with an aluminum oxide wear-resistant layer, a stone-plastic material balancing layer, and a high-density fiberboard substrate layer, along with an antibacterial film and a moisture-proof paper waterproof layer, to enhance the stability and antibacterial properties of the flooring.
It improves the convenience and stability of floor installation, reduces gaps, enhances antibacterial and anti-corrosion properties, extends service life, and improves safety and aesthetics.
Smart Images

Figure CN223621189U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of engineered wood flooring technology, specifically to an antibacterial and anti-corrosion engineered wood flooring. Background Technology
[0002] As people's living standards continue to improve, wood flooring is becoming increasingly popular among consumers due to its natural texture, comfortable feel, and good decorative effect.
[0003] However, traditional wood flooring is usually installed by creating a groove on one side and a protrusion on the other, and then splicing them together. However, because the grooves and protrusions cannot be mutually restrained during the connection, the connection is relatively loose, and gaps are easily generated at the splicing points. These gaps not only affect the overall aesthetics of solid wood flooring, but also easily accumulate dust, dirt and moisture, providing an ideal environment for bacterial growth.
[0004] In view of the above, this application is hereby submitted. Utility Model Content
[0005] The purpose of this invention is to provide an antibacterial and anti-corrosion reinforced flooring to solve the problems mentioned in the background art.
[0006] To solve the above-mentioned technical problems, this utility model provides an antibacterial and anti-corrosion reinforced floor, including an antibacterial and anti-corrosion floor and a splicing component. The splicing component includes a protrusion protruding from one side of the antibacterial and anti-corrosion floor, the sidewall away from the antibacterial and anti-corrosion floor being arc-shaped; a groove formed on the other side of the antibacterial and anti-corrosion floor, adapted to the protrusion; and a deformation groove formed at the deepest part of the groove, communicating with the groove.
[0007] Furthermore, the top surface of the antibacterial and anti-corrosion floor is provided with a wear-resistant layer, which is composed of aluminum oxide.
[0008] Furthermore, a decorative layer is provided between the antibacterial and anti-corrosion flooring and the wear-resistant layer.
[0009] Furthermore, the antibacterial and anti-corrosion flooring includes a balancing layer and a substrate layer, wherein the balancing layer is made of stone-plastic material and the substrate layer is made of high-density fiberboard.
[0010] Furthermore, a waterproof layer is wrapped around the outside of the balancing layer and the substrate layer, and the waterproof layer consists of an antibacterial film and a moisture-proof paper from the inside out.
[0011] Furthermore, the top surface of the antibacterial and anti-corrosion floor is provided with anti-slip grooves, which are distributed in multiple intervals.
[0012] Compared with the prior art, the beneficial effects of this utility model are:
[0013] In this invention, the splicing components make floor installation more convenient and faster, eliminating the need for adhesives such as glue, reducing pollution and harm to the human body during installation. Furthermore, the arc-shaped protrusions and grooves with deformation channels improve the accuracy and stability of the splicing, reduce gaps between floorboards, and lower the possibility of dust and moisture entering, thereby improving the overall performance and service life of the floor. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the overall structure of an antibacterial and anti-corrosion reinforced flooring.
[0015] Figure 2 for Figure 1 Enlarged view of point A in the middle;
[0016] Figure 3 An exploded view of the structure of an antibacterial and anti-corrosion reinforced flooring.
[0017] Figure 4 This is a cross-sectional structural diagram of an antibacterial and anti-corrosion reinforced flooring.
[0018] In the diagram: 1. Antibacterial and anti-corrosion flooring; 101. Balancing layer; 102. Substrate layer; 103. Decorative layer; 104. Wear-resistant layer; 105. Waterproof layer; 2. Raised surface; 201. Groove; 202. Deformation groove; 3. Anti-slip groove. Detailed Implementation
[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0020] Please see Figure 1-4 This utility model provides a technical solution:
[0021] An antibacterial and anti-corrosion reinforced flooring includes an antibacterial and anti-corrosion flooring 1 and a splicing assembly. The splicing assembly includes a protrusion 2, which protrudes from one side of the antibacterial and anti-corrosion flooring 1 and has an arc-shaped sidewall away from the antibacterial and anti-corrosion flooring 1; a groove 201, which is formed on the other side of the antibacterial and anti-corrosion flooring 1 and is adapted to the protrusion 2; and a deformation groove 202, which is formed at the deepest part of the groove 201 and communicates with the groove 201.
[0022] The design of the protrusion 2 and the groove 201 allows multiple antibacterial and anti-corrosion flooring 1 to be spliced by inserting the protrusion 2 into the groove 201 during installation. The side wall of the protrusion 2 away from the antibacterial and anti-corrosion flooring 1 is curved, which makes it easy to insert into the groove 201 and provides a certain degree of stability after splicing.
[0023] The deformation groove 202 is located at the deepest part of the groove 201 and is connected to the groove 201. When the protrusion 2 is inserted into the groove 201, if there is a dimensional error or slight deformation during the installation process, the deformation groove 202 can provide a certain amount of space to accommodate the protrusion 2, making the splicing smoother.
[0024] Interlocking components make floor installation more convenient and faster, eliminating the need for adhesives such as glue, thus reducing pollution and harm to the human body during the installation process.
[0025] The design of the arc-shaped protrusion 2 and the groove 201 with deformation groove 202 improves the accuracy and stability of splicing, reduces gaps between floorboards, and reduces the possibility of dust, moisture and other substances entering, thereby improving the overall performance and service life of the floor.
[0026] Furthermore, the top surface of the antibacterial and anti-corrosion floor 1 is provided with a wear-resistant layer 104, which is made of aluminum oxide.
[0027] The wear-resistant layer 104 is made of aluminum oxide and is located on the top surface of the antibacterial and anti-corrosion floor 1. Aluminum oxide has high hardness and stability, which can balance the stress of the floor under different environments and prevent the floor from deforming due to changes in humidity, temperature and other factors.
[0028] Aluminum oxide has a high hardness, which can enhance the wear resistance of the floor, protect the floor surface from damage, improve the stability of the floor, reduce problems such as deformation and warping caused by environmental factors, and extend the service life of the floor.
[0029] Furthermore, a decorative layer 103 is provided between the antibacterial and anti-corrosion flooring 1 and the wear-resistant layer 104.
[0030] The decorative layer 103, located between the antibacterial and anti-corrosion flooring 1 and the wear-resistant layer 104, can be customized by printing the user's preferred patterns or textures to serve a decorative purpose, adding aesthetic appeal to the floor and meeting the decorative needs of different users.
[0031] Furthermore, the antibacterial and anti-corrosion floor 1 includes a balancing layer 101 and a substrate layer 102. The balancing layer 101 is made of stone-plastic material, and the substrate layer 102 is made of high-density fiberboard.
[0032] The balancing layer 101 is made of stone-plastic composite material. Stone-plastic composite material has good stability and is not easily affected by environmental factors, so that the floor can maintain a relatively flat state during long-term use, reducing the inconvenience and safety hazards caused by uneven ground.
[0033] The stone-plastic material in the balancing layer 101 mainly serves to balance the internal stress of the floor. Under different environmental conditions, such as changes in temperature and humidity, the floor will expand or contract to different degrees. The balancing layer 101 can adjust and balance the stress caused by these changes through its own characteristics, preventing the floor from deforming or warping due to uneven stress.
[0034] Furthermore, stone-plastic composite materials can effectively block moisture from penetrating upwards from the ground, protecting the substrate layer 102 and other upper structures from moisture damage. This is crucial for extending the service life of the floor, especially in humid environments, as it can prevent the floor from swelling, deforming, or becoming moldy due to moisture.
[0035] The substrate layer 102 is made of high-density fiberboard. High-density fiberboard has high strength and can withstand greater pressure and impact. In daily use, whether it is the placement of furniture, people walking around, or the placement of other heavy objects, the substrate layer 102 can provide stable support and is not prone to collapse or damage.
[0036] In the structure of the floor, the substrate layer 102 serves as the main load-bearing component, bearing the pressure from above and various loads during daily use. High-density fiberboard has high density and strength, providing stable support.
[0037] Furthermore, the uniform structure of high-density fiberboard makes the overall performance of the flooring more stable, and it is also easier to process and handle during the production process, ensuring the quality and consistency of the flooring.
[0038] Furthermore, compared to some traditional wood-based materials, high-density fiberboard can be made from wood scraps and other fiber materials, which improves the utilization rate of wood, reduces dependence on natural wood, and has certain environmental benefits.
[0039] Furthermore, a waterproof layer 105 is wrapped around the outside of the balancing layer 101 and the substrate layer 102, and the waterproof layer 105 consists of an antibacterial film and a moisture-proof paper from the inside to the outside.
[0040] The waterproof layer 105 consists of an antibacterial film and a moisture-proof paper from the inside out. The antibacterial film can inhibit the growth of bacteria and prevent the floor from being damaged by bacterial growth. The presence of the antibacterial film effectively prevents bacterial growth and keeps the floor hygienic and clean, making it especially suitable for places with high hygiene requirements.
[0041] Moisture-proof paper can prevent moisture penetration, protecting the internal structure of the floor from moisture. It can also prevent moisture from entering the floor, avoiding problems such as deformation and rot caused by dampness, and improving the durability of the floor.
[0042] Furthermore, the top surface of the antibacterial and anti-corrosion floor 1 is provided with anti-slip grooves 3, which are distributed in multiple intervals.
[0043] Anti-slip grooves 3 are installed on the top surface of the antibacterial and anti-corrosion flooring 1, with multiple anti-slip grooves 3 spaced apart. During use, the anti-slip grooves 3 increase the friction of the floor surface, preventing people from slipping while walking, thus improving the safety of the floor and reducing the occurrence of slip accidents. It is especially suitable for places with frequent personnel activity, such as homes and public places.
[0044] Working principle:
[0045] When using it, first pick up one antibacterial and anti-corrosion flooring 1 and align the protrusion 2 on one side of it with the groove 201 of another flooring.
[0046] Since the side wall of the protrusion 2 is far from the antibacterial and anti-corrosion floor 1 is curved, it is easier to insert into the groove 201. During the insertion process, if there is a size error or slight deformation during the installation process, the deformation groove 202 at the deepest part of the groove 201 can provide a certain space for the protrusion 2 to accommodate it, making the splicing smoother.
[0047] Repeat the above steps to splice multiple pieces of antibacterial and anti-corrosion flooring 1 in sequence until the entire floor is laid. No glue or other adhesives are needed, reducing pollution and harm to the human body during the installation process. The arc-shaped protrusions 2 and the grooves 201 with deformation grooves 202 improve the splicing accuracy and stability, reduce gaps between floorboards, and reduce the possibility of dust and moisture entering, thereby improving the overall performance and service life of the flooring.
Claims
1. An antibacterial and anti-corrosion reinforced flooring, comprising antibacterial and anti-corrosion flooring (1) and splicing components, Its features are: The splicing components include, The protrusion (2) protrudes from one side of the antibacterial and anti-corrosion floor (1), and its sidewall away from the antibacterial and anti-corrosion floor (1) is arc-shaped. A groove (201) is formed on the other side of the antibacterial and anti-corrosion floor (1) and is adapted to the protrusion (2); The deformation groove (202) is formed at the deepest part of the groove (201) and communicates with the groove (201).
2. The antibacterial and antiseptic reinforced flooring as described in claim 1, characterized in that: The top surface of the antibacterial and anti-corrosion floor (1) is provided with a wear-resistant layer (104), which is made of aluminum oxide.
3. The antibacterial and anti-corrosion reinforced flooring as described in claim 2, characterized in that: A decorative layer (103) is provided between the antibacterial and anti-corrosion flooring (1) and the wear-resistant layer (104).
4. The antibacterial and anti-corrosion reinforced flooring as described in claim 3, characterized in that: The antibacterial and anti-corrosion flooring (1) includes a balancing layer (101) and a substrate layer (102). The balancing layer (101) is made of stone-plastic material, and the substrate layer (102) is made of high-density fiberboard.
5. The antibacterial and anti-corrosion reinforced flooring as described in claim 4, characterized in that: The outer sides of the balancing layer (101) and the substrate layer (102) are wrapped with a waterproof layer (105), which consists of an antibacterial film and a moisture-proof paper from the inside to the outside.
6. The antibacterial and anti-corrosion reinforced flooring as described in claim 5, characterized in that: The top surface of the antibacterial and anti-corrosion floor (1) is provided with anti-slip grooves (3), and the anti-slip grooves (3) are distributed in multiple intervals.