Antiskid pure solid wood heating floor and processing technology thereof
By mixing wear-resistant paint and scratch-resistant paint on the surface of pure solid wood floor heating floors to form an anti-slip paint layer, and forming a rough surface on the surface, the problem of poor anti-slip effect is solved and high anti-slip stability is achieved.
Patent Information
- Application Number
- CN202510638434.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-19
- Publication Date
- 2025-07-11
AI Technical Summary
The existing pure solid wood floor heating floor has poor anti-slip effect and low anti-slip stability, making it difficult to meet the very safe standard.
The anti-slip paint layer is mixed with wear-resistant paint and scratch-resistant paint in proportion, and a rough surface is formed on the surface, with a coating amount of 5 to 20 g/m2, and a mixed paint layer containing particulate matter is applied to the surface of the floor substrate.
The dry and wet static friction coefficient of the floor is improved, reaching the very safety level specified in the national standard GB/T35913, ensuring anti-slip effect and stability.
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Figure CN120291678A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a non-slip floor, in particular to a non-slip solid wood floor heating floor and its processing technology. Background Art
[0002] For conventional solid wood floor heating floors to achieve protection of the floor substrate, wear-resistant paint or scratch-resistant paint is generally coated on the surface of the floor substrate and then processed through a smooth surface process to make the floor surface flat and smooth; and the dry static friction coefficient of the floor surface after the smooth surface process is generally between 0.55 and 0.65, and the wet static friction coefficient is between 0.70 and 0.75. If the skin-friendly surface process is used to process the floor surface, the dry static friction coefficient of the floor after processing is between 0.62 and 0.70, and the wet static friction coefficient is between 0.65 and 0.7. Although both can meet the safety use standard of 0.5 - 0.79 in JC / T 1050 "Classification and Test Methods for Anti-Slip Performance of Floor Stones", they cannot reach the very safe level of ≥0.8.
[0003] Therefore, the existing solid wood floor heating floors have problems of poor anti-slip effect and low anti-slip stability. Summary of the Invention
[0004] The purpose of the present invention is to provide a non-slip solid wood floor heating floor and its processing technology. It has the characteristics of good anti-slip effect and high anti-slip stability.
[0005] The technical solution of the present invention: A non-slip solid wood floor heating floor includes a floor substrate, and a non-slip paint layer coated with non-slip paint is provided on the surface of the floor substrate. The non-slip paint is formed by mixing wear-resistant paint and scratch-resistant paint in proportion, and a rough surface is formed on the surface of the non-slip paint layer.
[0006] In the foregoing non-slip solid wood floor heating floor, the non-slip paint layer is formed by mixing wear-resistant paint and scratch-resistant paint in a mass ratio of 1:0.4 - 4.
[0007] In the foregoing non-slip solid wood floor heating floor, the coating amount of the non-slip paint layer is 5 - 20 g / m 2 。
[0008] In the foregoing non-slip solid wood floor heating floor, the non-slip paint contains a number of particulate matters, and the particulate matters are irregularly arranged on the surface of the non-slip paint layer to form a rough surface.
[0009] Based on the foregoing processing technology of the non-slip solid wood floor heating floor, it includes the following steps:
[0010] A. Mix the wear-resistant paint and the scratch-resistant paint in proportion to obtain non-slip paint;
[0011] B. Uniformly apply the anti-slip paint on the surface of the floor substrate and cure it to obtain the finished floor.
[0012] Compared with the prior art, in the present invention, the wear-resistant paint and scratch-resistant paint mixed with particulate matter are mixed in proportion and then applied as the anti-slip paint on the surface of the floor substrate, so that it can effectively improve the anti-slip performance while ensuring the physical and chemical properties of the paint film compared with the single wear-resistant paint and scratch-resistant paint on the market; the final dry static friction coefficient of the paint film reaches 0.83, and the wet static friction coefficient reaches 0.92, that is, it reaches the very safe level specified in the national standard GB / T35913. Therefore, the present invention has the characteristics of good anti-slip effect and high anti-slip stability. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 is a schematic structural diagram of the present invention.
[0014] The reference signs in the drawings are: 1 - floor substrate, 2 - anti-slip paint layer. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0015] The present invention will be further described below with reference to the drawings and embodiments, but it shall not be used as the basis for limiting the present invention.
[0016] Example 1. An anti-slip solid wood floor heating floor, the structure is as Figure 1 shown, including a floor substrate 1, and an anti-slip paint layer 2 formed by coating anti-slip paint is provided on the surface of the floor substrate 1. The anti-slip paint is formed by mixing wear-resistant paint and scratch-resistant paint in proportion, and a rough surface is formed on the surface of the anti-slip paint layer 2.
[0017] The anti-slip paint layer 2 is formed by mixing wear-resistant paint and scratch-resistant paint in a mass ratio of 1:0.4 - 4.
[0018] The coating amount of the anti-slip paint layer 2 is 5 - 20 g / m 2 .
[0019] Both the wear-resistant paint and the scratch-resistant paint are conventional wear-resistant topcoats and scratch-resistant topcoats on the market. Particulate matter is mixed in the wear-resistant topcoat and / or the scratch-resistant topcoat. After being coated with the anti-slip paint, the particulate matter will be irregularly arranged on the surface of the anti-slip paint layer 2 and form a rough surface.
[0020] In this embodiment, the wear-resistant paint and scratch-resistant paint with particulate matter are mixed in proportion and then applied as the anti-slip paint to the floor substrate 1, so that it can have better physical and chemical properties compared with these two individual topcoat materials, thereby improving the anti-slip effect of the floor.
[0021] Example 2. An anti-slip solid wood floor heating floor, the structure is as Figure 1As shown in the figure, it includes a floor substrate 1, and a non-slip paint layer 2 made of non-slip paint is provided on the surface of the floor substrate 1. The non-slip paint is formed by mixing wear-resistant paint and scratch-resistant paint in proportion, and a rough surface is formed on the surface of the non-slip paint layer 2.
[0022] The non-slip paint layer 2 is formed by mixing wear-resistant paint and scratch-resistant paint in a mass ratio of 3:7.
[0023] The coating amount of the non-slip paint layer 2 is 10 g / m 2 .
[0024] Both the wear-resistant paint and the scratch-resistant paint are conventional wear-resistant topcoats and scratch-resistant topcoats on the market. At least one of the wear-resistant topcoat and the scratch-resistant topcoat is mixed with particulate matter, and the particulate matter is irregularly arranged on the surface of the non-slip paint layer 2 after being coated with the non-slip paint to form a rough surface.
[0025] Compared with Example 1, this example further limits the mixing ratio and coating amount of the non-slip paint, so that its non-slip performance and wear resistance can reach the best. After testing, the dry static friction coefficient of this example is 0.83, and the wet static friction coefficient is 0.92, reaching the very safe level of GB / T35913.
[0026] Example 3. A processing technology for a non-slip solid wood floor heating floor, which is used to process the non-slip solid wood floor heating floor in Example 2, specifically including the following steps:
[0027] A. Mix the wear-resistant paint and the scratch-resistant paint in proportion. At least one of the wear-resistant paint and the scratch-resistant paint contains rough particulate matter to obtain non-slip paint;
[0028] B. Uniformly coat the non-slip paint on the surface of the floor substrate and cure it to obtain a finished floor.
[0029] Experimental Example 1: In this experimental example, conventional wear-resistant paint and scratch-resistant paint containing particulate matter on the market are selected as raw materials, and different specifications of non-slip paint are obtained by mixing the two according to the paint ratio in Table 1. Then, each non-slip paint is respectively coated on the surface of the same specification of wood substrate, and the coating amount is 10 g / m 2 ; Then, the non-slip performance of each floor sample is tested, and the test results are shown in Table 1:
[0030] Table 1 Anti-slip coefficients of floors under different paint ratios
[0031]
[0032] It can be known from experiments that when the ratio of wear-resistant paint to scratch-resistant paint is 1:9, the number of wear-resistant rotations of the paint film does not meet the standard (the national standard for first-class products requires ≤ 0.08 g / 100 r and the paint film is not worn through, but in actual situation, it is worn through after 60 rotations). When the ratio of wear-resistant paint to scratch-resistant paint is 8:2, the abrasion value does not meet the standard (the requirement for first-class products is ≤ 0.08 g / 100 r and the paint film is not worn through, but in actual situation, it is 0.13 g / 100 r). Under the remaining mixing ratios, the physical and chemical properties of the anti-slip paint can meet the requirements, and both the dry static friction coefficient and the wet static friction coefficient on the surface of the paint film are improved. When the ratio of wear-resistant paint to scratch-resistant paint is 3:7, the comprehensive anti-slip performance of the anti-slip paint is the best.
[0033] Experimental Example 2: On the basis of Experimental Example 1, wear-resistant paint and scratch-resistant paint were mixed at a mass ratio of 3:7 to obtain anti-slip paint, and then the anti-slip paint was respectively coated on the surface of wooden substrates of the same specification according to the coating amounts in Table 2; then the anti-slip performance of each floor sample was tested, and the test results are shown in Table 2:
[0034] Table 2 Anti-slip coefficients of floors under different coating amounts
[0035]
[0036] It can be known from experiments that when the coating amount ≤ 6 g, the number of wear-resistant rotations of the paint film is less than 100 r, which does not meet the national standard of GB / T 35913. When the coating amount ≥ 14 g, the abrasion value is 0.12 g / 100 r, which does not meet the first-class product standard of GB / T 35913 (0.08 g / 100 r). When the coating amount is 10 g / m 2 the comprehensive anti-slip performance of the paint film reaches the best.
Claims
1. A non-slip pure solid wood floor heating floor, characterized in that: It includes a floor substrate (1), and a non-slip paint layer (2) formed by coating a non-slip paint is provided on the surface of the floor substrate (1). The non-slip paint is formed by mixing wear-resistant paint and scratch-resistant paint in proportion, and a rough surface is formed on the surface of the non-slip paint layer (2).
2. The anti-slip solid wood floor heating floor according to claim 1, characterized in that: The non-slip paint layer (2) is formed by mixing wear-resistant paint and scratch-resistant paint in a mass ratio of 1:0.4 to 4.
3. A non-slip solid wood floor heating floor according to claim 1, characterized in that: The coating amount of the anti-slip paint layer (2) is 5 to 20 g / m 2 .
4. A non-slip solid wood floor heating floor according to claim 1, characterized in that: The non-slip paint contains a number of particulate matters, and the particulate matters are irregularly arranged on the surface of the non-slip paint layer (2) to form a rough surface.
5. The processing technology of a non-slip solid wood floor heating floor according to any one of claims 1-4, characterized in that, It includes the following steps: A. Mix the wear-resistant paint and the scratch-resistant paint in proportion to obtain the non-slip paint; B. Uniformly coat the non-slip paint on the surface of the floor substrate and cure it to obtain the finished floor.