Modified acrylic acid multifunctional coiled material floor

By adopting the structural design of modified acrylic multifunctional coil floor in the coil floor, including water-based topcoat layer, reinforced components, PVC bonding inlay layer, glass fiber mesh anti-shrink layer and PVC super-strong compressive layer, the problem of poor functionality of coil floor is solved, and the floor's wear resistance, compressive resistance and service life are improved.

CN223048371UActive Publication Date: 2025-07-01SHIJIAZHUANG CHUANGTIANCHI PLASTIC PROD CO LTD
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Patent Information

Application Number
CN202421727912.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-22
Publication Date
2025-07-01
Estimated Expiration
2034-07-22

AI Technical Summary

Technical Problem

The existing coil floors have poor functionality and are prone to cracking or separation, which affects their use.

Method used

Modified acrylic multi-functional coil flooring, including water-based topcoat layer, reinforced components, PVC bonding inlay layer, glass fiber mesh anti-shrink layer and PVC super-strong compressive layer, are used to enhance the wear resistance, adhesion and compressive resistance of the floor through the combination and distribution of these layers.

Benefits of technology

It improves the wear resistance and compressive resistance of the coiled floor, prevents cracking on the floor surface, enhances adhesion, reduces the thermal expansion and contraction rate, ensures the flatness and resilience of the floor, and avoids rainwater seepage, and extends the service life of the product.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a modified acrylic acid multifunctional coiled material floor, and relates to the technical field of coiled material floors, the modified acrylic acid multifunctional coiled material floor comprises a water-based finish paint layer and a reinforcing assembly, the upper surface of the water-based finish paint layer is connected with a first reinforcing layer, and the reinforcing assembly used for increasing the multifunctional effect of the coiled material floor is arranged at the lower end of the water-based finish paint layer. The reinforcing assembly comprises a modified acrylic acid reinforcing floating coat, a reinforcing mesh I, a reinforcing mesh II and a modified acrylic acid speed regulation floating coat, the upper surface of the modified acrylic acid reinforcing floating coat is connected with the reinforcing mesh I, and the lower surface of the modified acrylic acid reinforcing floating coat is connected with the modified acrylic acid speed regulation floating coat through the reinforcing mesh II. According to the modified acrylic acid multifunctional coiled material floor, the wear resistance of a pattern layer is improved through the modified acrylic acid speed-regulating middle coating, the rebound speed of a ball after falling to the ground is adjusted according to the size of quartz sand particles, and the wear resistance of the floor is improved while the adhesive force of the quartz sand particles is reinforced through the modified acrylic acid strengthening middle coating.
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Description

Technical Field

[0001] The utility model relates to the technical field of coiled material floors, in particular to a modified acrylic multifunctional coiled material floor. Background Art

[0002] Modified acrylic floor roll is a common building material. Modified acrylic floor roll is generally made of environmentally friendly materials, non-toxic and harmless, has no effect on human health, and is suitable for various occasions. It can be used in basketball courts, tennis courts, badminton courts and other sports venues. It can provide good cushioning and friction to protect athletes.

[0003] For example, the utility model with application number CN202322715457.8 discloses a PVC coil floor. The utility model drives the movement of block 2 by toggling a limit plate, thereby driving the entire rotating block to rotate. The rotating block rotates into the internal notch of the installation block and leaves the inside of the installation groove, which makes it convenient to separate the two floors. At the same time, it is also more convenient to install the floors after the subsequent replacement of the floors. The overall replacement cost is low, and there is no need to directly replace the entire large area of ​​the floor. However, the existing coil floor has poor functionality and is prone to cracking or separation during use, affecting its use.

[0004] Therefore, in view of this, the existing structure and defects are studied and improved, and a modified acrylic multifunctional coiled floor is provided. Utility Model Content

[0005] The utility model aims to provide a modified acrylic multifunctional coiled floor to solve the problems raised in the above background technology.

[0006] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a modified acrylic multifunctional coil floor, comprising a water-based topcoat layer and a reinforcement component, the upper surface of the water-based topcoat layer is connected to a reinforcement layer 1, the reinforcement component for increasing the multifunctional effect of the coil floor is arranged at the lower end of the water-based topcoat layer, and the reinforcement component comprises a modified acrylic reinforcing middle coating, a reinforcement mesh 1, a reinforcement mesh 2 and a modified acrylic speed regulating middle coating, the upper surface of the modified acrylic reinforcing middle coating is connected to a reinforcement mesh 1, and the lower surface of the modified acrylic reinforcing middle coating is connected to the modified acrylic speed regulating middle coating through the reinforcement mesh 2.

[0007] Furthermore, the modified acrylic reinforcing middle coating and the reinforcing mesh are an integrated structure, and the modified acrylic reinforcing middle coating and the modified acrylic speed regulating middle coating are distributed in parallel.

[0008] Furthermore, the lower end of the modified acrylic acid speed regulating middle coating is connected with a PVC bonding inlay layer, and the lower surface of the PVC bonding inlay layer is connected with a second reinforcement layer.

[0009] Furthermore, the lower end of the second reinforcing layer is connected to a fiberglass mesh anti-shrinkage layer, and the lower end of the fiberglass mesh anti-shrinkage layer is connected to a PVC super-strong compression layer.

[0010] Furthermore, the lower end of the PVC super-strong compression layer is connected to a bottom waterproof and moisture-proof treatment layer, and a scribing component for marking is arranged at the lower end of the bottom waterproof and moisture-proof treatment layer.

[0011] Furthermore, the PVC super-strong compression layer and the bottom waterproof and moisture-proof treatment layer are arranged in parallel and are closely attached to each other.

[0012] Furthermore, the scribing component includes an aqueous molecular material scribing layer and an adhesive, and the adhesive is arranged on the surface of the aqueous molecular material scribing layer.

[0013] Furthermore, the aqueous molecular material scribing layer and the adhesive are adhesively connected, and the aqueous molecular material scribing layer is closely attached to the aqueous topcoat layer.

[0014] The utility model provides a modified acrylic multi-functional roll floor, which has the following beneficial effects:

[0015] 1. In the utility model, the wear resistance of the coating is increased through the modified acrylic speed-adjusting intermediate coating, and the rebound speed after the ball lands is adjusted by the particle size of the quartz sand. While strengthening the adhesion of the quartz sand particles by the modified acrylic strengthening intermediate coating, the wear resistance of the floor is increased, and the surface cracking of the floor can be prevented. The first reinforcing mesh and the second reinforcing mesh increase the tightness of the connection between the coatings.

[0016] 2. In the utility model, the bite force and bonding force with the modified acrylic are increased through the PVC bonding and inlaying layer, so that the bonding force between the two layers is not easy to fall off, and the particles can be evenly and densely coated. The fiberglass mesh anti-shrinkage layer reduces the thermal expansion and contraction rate of the floor. The PVC super-strong compression layer plays a role in bearing the weight of the floor, ensuring the resilience of the ball and the flatness of the floor. The bottom waterproof and moisture-proof treatment layer prevents liquids such as rainwater from penetrating into the floor interior, so as to ensure the stable quality of the product and avoid the floor from breaking during winding. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 is an overall structural schematic diagram of a modified acrylic multi-functional roll floor of the utility model;

[0018] Figure 2 is a structural schematic diagram of the PVC bonding and inlaying layer - bottom waterproof and moisture-proof treatment layer of a modified acrylic multi-functional roll floor of the utility model;

[0019] Figure 3 is a structural schematic diagram of the scribing component of a modified acrylic multi-functional roll floor of the utility model.

[0020] In the figure: 1. Water-based topcoat layer; 2. First reinforcement layer; 3. Reinforcement assembly; 301. Modified acrylic reinforcement intermediate coating; 302. First reinforcement mesh; 303. Second reinforcement mesh; 304. Modified acrylic speed-adjusting intermediate coating; 4. PVC bonding and inlaying layer; 5. Second reinforcement layer; 6. Glass fiber mesh shrinkage prevention layer; 7. PVC super compressive layer; 8. Bottom waterproof and moisture-proof treatment layer; 9. Marking assembly; 901. Water-based molecular material marking layer; 902. Adhesive tape. Specific embodiments

[0021] The following further describes in detail the embodiments of the present utility model in conjunction with the accompanying drawings and embodiments. The following embodiments are used to illustrate the present utility model, but cannot be used to limit the scope of the present utility model.

[0022] As Figure 1 shown, a modified acrylic multi-functional roll floor includes a water-based topcoat layer 1 and a reinforcement assembly 3. The upper surface of the water-based topcoat layer 1 is connected to a first reinforcement layer 2. The water-based topcoat layer 1 is used to adjust the color of the venue to meet the needs of different customers and different application scenarios, and can also enhance the wear resistance of the floor surface. The reinforcement assembly 3 for increasing the multi-functional effect of the roll floor is arranged at the lower end of the water-based topcoat layer 1, and the reinforcement assembly 3 includes a modified acrylic reinforcement intermediate coating 301, a first reinforcement mesh 302, a second reinforcement mesh 303, and a modified acrylic speed-adjusting intermediate coating 304. The upper surface of the modified acrylic reinforcement intermediate coating 301 is connected to the first reinforcement mesh 302. The modified acrylic reinforcement intermediate coating 301 enhances the adhesion of quartz sand particles and increases the wear resistance of the floor, and can also prevent the floor surface from cracking. The lower surface of the modified acrylic reinforcement intermediate coating 301 is connected to the modified acrylic speed-adjusting intermediate coating 304 through the second reinforcement mesh 303. The modified acrylic speed-adjusting intermediate coating 304 increases the wear resistance of the coating and adjusts the rebound speed of the ball after landing by the size of the quartz sand particles. The modified acrylic reinforcement intermediate coating 301 and the first reinforcement mesh 302 are an integrated structure. The first reinforcement mesh 302 and the second reinforcement mesh 303 increase the tightness of the connection between the coatings, and the modified acrylic reinforcement intermediate coating 301 and the modified acrylic speed-adjusting intermediate coating 304 are arranged in parallel.

[0023] As Figure 2As shown in the figure, a PVC bonding and inlaying layer 4 is connected to the lower end of the modified acrylic speed-regulating intermediate coating 304. The PVC bonding and inlaying layer 4 increases the biting force and bonding force with the modified acrylic, making the bonding force between the two layers not easy to fall off. It can also make the particles evenly coated and dense. And a second reinforcing layer 5 is connected to the lower surface of the PVC bonding and inlaying layer 4. A fiberglass mesh shrinkage-proof layer 6 is connected to the lower end of the second reinforcing layer 5. The fiberglass mesh shrinkage-proof layer 6 reduces the thermal expansion and contraction rate of the floor. And a PVC super-compressive layer 7 is connected to the lower end of the fiberglass mesh shrinkage-proof layer 6. The PVC super-compressive layer 7 plays a role in bearing the weight of the floor, ensuring the resilience of the ball and the flatness of the floor. A bottom waterproof and moisture-proof treatment layer 8 is connected to the lower end of the PVC super-compressive layer 7. The PVC super-compressive layer 7 and the bottom waterproof and moisture-proof treatment layer 8 are distributed in parallel and are closely attached. The bottom waterproof and moisture-proof treatment layer 8 prevents liquids such as rainwater from penetrating into the interior of the floor to ensure the stable quality of the product and avoid the floor from breaking during winding.

[0024] As Figure 3 shown, a marking component 9 is provided at the lower end of the bottom waterproof and moisture-proof treatment layer 8. The marking component 9 includes an aqueous molecular material painting layer 901 and an adhesive 902. And the adhesive 902 is arranged on the surface of the aqueous molecular material painting layer 901. The aqueous molecular material painting layer 901 and the adhesive 902 are adhesively connected. The material of the aqueous molecular material painting layer 901 is acrylic white paint. The adhesive 902 is used for the positioning of the marking to avoid deviation of the marking. And the aqueous molecular material painting layer 901 is closely attached to the aqueous topcoat layer 1. The aqueous molecular material painting layer 901 is used for the marking of lines in different sports fields. It can be used for marking the lines of various courts according to the international standard measurement in cooperation with the adhesive 902 for marking treatment.

[0025] In summary, for this modified acrylic multi-functional roll floor, first according to Figures 1-3For the structure shown in the figure, during use, the roll floor is laid on the ground. The water-based topcoat layer 1 on the surface of the roll floor can be adjusted and made according to different application scenarios and different needs of customers. The water-based topcoat layer 1 can increase the wear resistance of the floor surface. Measure the snap lines of various courts according to international standards, stick the adhesive tape 902 paper tightly along the lines on the water-based topcoat layer 1, and directly apply a layer of acrylic white paint for line marking treatment. When carrying out ball sports, the modified acrylic speed-regulating intermediate coating 304 in the floor increases the wear resistance of the coating layer and adjusts the rebound speed of the ball after landing through the particle size of the quartz sand. At the same time, the modified acrylic strengthening intermediate coating 301 strengthens the adhesion of the quartz sand particles and increases the wear resistance of the floor, and can also prevent the floor surface from cracking. At the same time, the PVC super-compressive layer 7 in the floor plays a role in bearing the weight of the floor, ensuring the resilience of the ball and the flatness of the floor. With the change of the scene temperature, the fiberglass mesh anti-shrinkage layer 6 reduces the thermal expansion and contraction rate of the floor. In the face of rainy days, the waterproof and moisture-proof treatment layer 8 at the bottom of the floor prevents rainwater and other liquids from penetrating into the floor interior to ensure the quality stability of the product and avoid the floor from breaking during winding.

[0026] The embodiments of the present invention are given for purposes of illustration and description, and are not exhaustive or limit the present invention to the disclosed form. Many modifications and variations are obvious to those of ordinary skill in the art. The embodiments are chosen and described in order to better illustrate the principles and practical applications of the present invention, and to enable those of ordinary skill in the art to understand the present invention and design various embodiments with various modifications suitable for specific purposes.

Claims

1. A modified acrylic multifunctional coiled floor, comprising a water-based topcoat layer (1) and a reinforcement component (3), characterized in that: The upper surface of the water-based topcoat layer (1) is connected to a reinforcement layer 1 (2); the reinforcement component (3) for increasing the multifunctional effect of the coiled floor is arranged at the lower end of the water-based topcoat layer (1); and the reinforcement component (3) comprises a modified acrylic reinforcing middle coating (301), a reinforcement mesh 1 (302), a reinforcement mesh 2 (303) and a modified acrylic speed regulating middle coating (304); the upper surface of the modified acrylic reinforcing middle coating (301) is connected to the reinforcement mesh 1 (302), and the lower surface of the modified acrylic reinforcing middle coating (301) is connected to the modified acrylic speed regulating middle coating (304) via the reinforcement mesh 2 (303).

2. The modified acrylic multifunctional coiled floor according to claim 1, characterized in that: The modified acrylic acid reinforcing middle coating (301) and the reinforcing mesh sheet 1 (302) are an integrated structure, and the modified acrylic acid reinforcing middle coating (301) and the modified acrylic acid speed regulating middle coating (304) are distributed in parallel.

3. The modified acrylic multifunctional coiled floor according to claim 1, characterized in that: The lower end of the modified acrylic acid speed regulating middle coating (304) is connected to a PVC bonding and inlaying layer (4), and the lower surface of the PVC bonding and inlaying layer (4) is connected to a second reinforcement layer (5).

4. The modified acrylic multifunctional coiled floor according to claim 3, characterized in that: The lower end of the second reinforcement layer (5) is connected to a glass fiber mesh anti-shrinkage layer (6), and the lower end of the glass fiber mesh anti-shrinkage layer (6) is connected to a PVC super-strong pressure-resistant layer (7).

5. The modified acrylic multifunctional coiled floor according to claim 4, characterized in that: The lower end of the PVC super-strong pressure-resistant layer (7) is connected to a bottom waterproof and moisture-proof treatment layer (8), and the lower end of the bottom waterproof and moisture-proof treatment layer (8) is provided with a marking component (9).

6. The modified acrylic multifunctional coiled floor according to claim 5, characterized in that: The PVC super-strong pressure-resistant layer (7) and the bottom waterproof and moisture-proof treatment layer (8) are distributed in parallel, and the PVC super-strong pressure-resistant layer (7) and the bottom waterproof and moisture-proof treatment layer (8) are tightly fitted.

7. The modified acrylic multifunctional coiled floor according to claim 5, characterized in that: The marking assembly (9) comprises a water-based molecular material marking layer (901) and a glue (902), and the surface of the water-based molecular material marking layer (901) is provided with the glue (902).

8. The modified acrylic multifunctional coiled floor according to claim 7, characterized in that: The water-based molecular material line drawing layer (901) and the adhesive (902) are bonded and connected, and the water-based molecular material line drawing layer (901) and the water-based topcoat layer (1) are tightly attached.

Citation Information

Patent Citations

  • PVC (polyvinyl chloride) coiled material floor

    CN220868695U