Reinforced corrosion-resistant floor
By introducing a multi-layered structural design and incorporating gravel and edge-sealing fabric into the floor, the problem of easy damage to the floor edges was solved, achieving reinforcement and corrosion resistance of the floor, and improving the stability of the structure and the protective capabilities of the main body.
Patent Information
- Application Number
- CN202520130208.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-20
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-01-20
AI Technical Summary
The existing floor structure is prone to damage and cracks at the edges, which can lead to damage to the main structure, and there is a lack of effective reinforcement measures.
A multi-layer structural design is introduced into the floor structure, including a base layer, an adhesive layer, a heat insulation layer, a leveling layer, a mesh layer, a rubber layer, a buffer layer, and an epoxy resin layer. The bonding strength and stability between the layers are enhanced by the use of crushed stone blocks and edge binding fabric.
It improves the stability and corrosion resistance of the floor edges, prevents cracks from extending to the main structure, and enhances the overall structural strength and construction stability of the floor.
Smart Images

Figure CN223738906U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to floor structure technical field, especially a kind of reinforced corrosion-resistant floor. BACKGROUND
[0002] Floor refers to the original ground using specific material and process and presents certain decorative and functional ground after construction processing.For example, epoxy self-leveling floor, corundum wear-resistant floor, epoxy terrazzo floor, cement-based terrazzo, epoxy color sand floor, epoxy anti-static floor, epoxy anti-skid floor, polyurea anticorrosion floor, polyurethane floor, silicon PU floor, concrete sealing curing agent floor and so on.
[0003] The existing floor structure is usually designed only for the main part, and the main structure has been improved well, but there are boundary parts in the floor laying process, and the existing floor usually has no good reinforcement measures for the boundary parts, so that the floor at the edge position is easy to produce damage cracks, and when the edge floor is damaged seriously, the cracks may extend to the main body and cause damage to the main structure. SUMMARY
[0004] The utility model is to solve the problem of reinforcing the edge structure of floor, and provide a reinforced corrosion-resistant floor.
[0005] A reinforced corrosion-resistant floor, comprising a main body; the main body comprises
[0006] a base layer; the upper part of the base layer is provided with a bonding layer; the upper part of the bonding layer is provided with a heat insulation layer; the upper part of the heat insulation layer is provided with a leveling layer; the upper part of the leveling layer is provided with a mesh cloth; the upper part of the mesh cloth is provided with a rubber layer; the upper part of the rubber layer is provided with a buffer layer; the upper part of the buffer layer is provided with an epoxy resin layer;
[0007] The main body is divided into a plane part and a side edge part.
[0008] Further, the base layer is provided as a cement layer; the bonding layer is provided as a curing agent.
[0009] Further, a first crushed stone block is arranged between the base layer and the bonding layer; the first crushed stone block is arranged at the junction between the base layer and the bonding layer.
[0010] Further, a second crushed stone block is arranged between the buffer layer and the epoxy resin layer; the second crushed stone block is located at the junction between the buffer layer and the epoxy resin layer, and the top of the second crushed stone block is polished flat with the epoxy resin layer.
[0011] Further, the buffer layer is provided as an acrylic particle.
[0012] Further, the side part is provided with a cloth edge; the cloth edge is located between the rubber layer and the buffer layer.
[0013] Further, the front end of the cloth edge is located in the plane part; the rear end of the cloth edge is folded and located at the bottom of the rubber layer.
[0014] Further, the rear end of the cloth edge extends to contact the mesh cloth, so as to surround the rubber layer in the side part.
[0015] The utility model discloses the beneficial effect is:
[0016] Through the setting of the cloth edge, the structure in the rubber layer is wrapped, the material in the interior is prevented from flowing out in construction, and the stability of the structure is improved through the bonding property between the cloth edge and the buffer layer.
[0017] Through the setting of the first gravel block and the second gravel block, the upper and lower two layers of structures after solidification are bonded through the gravel blocks, the lateral stability is increased, the bonding strength between the layers is further increased due to the difference between the materials of different levels and the adhesion of the gravel blocks and the two layers of structures. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is the structural schematic diagram of the utility model.
[0019] In the drawing, 1, main body;11, plane part;12, side part;121, cloth edge;13, first gravel block;14, second gravel block;2, base layer;3, bonding layer;4, heat insulation layer;5, leveling layer;6, mesh cloth;7, rubber layer;8, buffer layer;9, epoxy resin layer. DETAILED DESCRIPTION
[0020] The embodiments of the utility model will be described below through specific examples, and the person skilled in the art can easily understand other advantages and effects of the utility model from the content disclosed in the specification. The utility model can also be implemented or applied through different specific embodiments, and the details in the specification can be modified or changed based on different viewpoints and applications without departing from the spirit of the utility model. It should be noted that the following examples and features in the examples can be combined with each other without conflict.
[0021] It should be noted that the drawings provided in the following examples only illustrate the basic concept of the utility model in a schematic manner, and the drawings only show the components related to the utility model without drawing the number, shape and size of the components in actual implementation. The shape, number and proportion of each component in actual implementation can be changed arbitrarily, and the component layout pattern can be more complex. EMBODIMENT
[0022] As shown in Figure 1
[0023] A reinforced corrosion-resistant floor, comprising a main body 1; the main body 1 is divided into a flat part 11 and a side part 12.
[0024] The main body 1 comprises a base layer 2; the upper part of the base layer 2 is provided with a bonding layer 3; the upper part of the bonding layer 3 is provided with a heat insulation layer 4; the upper part of the heat insulation layer 4 is provided with a leveling layer 5; the upper part of the leveling layer 5 is provided with a mesh cloth 6; the upper part of the mesh cloth 6 is provided with a rubber layer 7; the upper part of the rubber layer 7 is provided with a buffer layer 8; the upper part of the buffer layer 8 is provided with an epoxy resin layer 9; the base layer 2 is provided as a cement layer; the bonding layer 3 is provided as a curing agent. The first rubble 13 is arranged between the base layer and the bonding layer 3. By arranging the first rubble 13 and the second rubble 14, the upper and lower two layers of structure after solidification are bonded by the rubble, and the lateral stability is increased. Due to the difference between different levels of materials, the adhesion between the rubble and the two layers of structure further increases the bonding strength between the layers.
[0025] The second rubble 14 is arranged between the buffer layer 8 and the epoxy resin layer 9; the second rubble 14 is located at the junction of the buffer layer 8 and the epoxy resin layer 9, and the top of the second rubble 14 is polished flat with the epoxy resin layer 9. The buffer layer 8 is provided as acrylic particles. In this embodiment, the acrylic particles can improve the rebound performance of the floor and improve the comfort when walking. Acrylic acid and its polymers have excellent properties such as oxidation resistance and aging resistance, and are used in synthetic rubber, synthetic fiber, high water absorption resin, etc. At the same time, acrylic acid and its esters are used as components of adhesives, which have high strength and good adhesion performance.
[0026] The side part 12 is also provided with a wrapped cloth 121; the wrapped cloth 121 is located between the rubber layer 7 and the buffer layer 8. The front end of the wrapped cloth 121 is located in the flat part 11; the rear end of the wrapped cloth 121 is folded and located at the bottom of the rubber layer 7. The rear end of the wrapped cloth 121 extends to contact the mesh cloth 6, which surrounds the rubber layer 7 in the side part 12. By arranging the wrapped cloth 121, the structure inside the rubber layer 7 is wrapped, which prevents the internal materials from flowing out during construction, and at the same time, the adhesion between the wrapped cloth 121 and the buffer layer 8 improves the stability of the structure.
[0027] The above-described embodiments only express the specific implementation manners of the present application, and the description is relatively specific and detailed, but it should not be understood as a limitation on the patent scope of the present application. It should be noted that for ordinary skilled persons in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which are all within the protection scope of the present application.
Claims
1. A reinforced corrosion-resistant floor, characterized by: Including the main body (1); the main body (1) comprises The base layer (2) is provided with an adhesive layer (3) on the upper portion; the adhesive layer (3) is provided with a heat insulation layer (4) on the upper portion; the heat insulation layer (4) is provided with a leveling layer (5) on the upper portion; the leveling layer (5) is provided with a mesh cloth (6) on the upper portion; the mesh cloth (6) is provided with a rubber layer (7) on the upper portion; the rubber layer (7) is provided with a buffer layer (8) on the upper portion; the buffer layer (8) is provided with an epoxy resin layer (9) on the upper portion; The main body (1) is divided into a flat portion (11) and a side edge portion (12).
2. A reinforced corrosion resistant flooring as claimed in claim 1, wherein: The base layer (2) is provided as a cement layer; the adhesive layer (3) is provided as a curing agent.
3. A reinforced corrosion resistant flooring as claimed in claim 1, wherein: The first rubble (13) is provided between the base layer (2) and the adhesive layer (3); the first rubble (13) is provided at the interface between the base layer and the adhesive layer (3).
4. A reinforced corrosion resistant flooring according to claim 3, wherein: The second rubble (14) is provided between the buffer layer (8) and the epoxy resin layer (9); the second rubble (14) is located at the interface between the buffer layer (8) and the epoxy resin layer (9), and the top of the second rubble (14) is polished flat with the epoxy resin layer (9).
5. The reinforced corrosion-resistant mat according to claim 1, wherein: The buffer layer (8) is provided as an acrylic particle.
6. A reinforced corrosion resistant flooring as defined in claim 1, wherein: The side edge portion (12) is further provided with a wrapped cloth (121); the wrapped cloth (121) is located between the rubber layer (7) and the buffer layer (8).
7. A reinforced corrosion resistant flooring according to claim 6, wherein: The front end portion of the wrapped cloth (121) is located in the flat portion (11); the rear end of the wrapped cloth (121) is folded and provided, and located at the bottom of the rubber layer (7).
8. A reinforced corrosion resistant flooring according to claim 7, wherein: The rear end of the wrapped cloth (121) extends to contact the mesh cloth (6), surrounding the rubber layer (7) located in the side edge portion (12).