Calcium sulfate antistatic floor base material
An anti-static floor, calcium sulfate technology, applied in the field of flooring, can solve the problems of poor flame retardant and waterproof performance, multiple defects, excessive formaldehyde concentration, etc., and achieve the effect of reducing the quality of the floor, long service life and low cost
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Embodiment 1
[0018] A calcium sulfate antistatic floor base material, which is prepared from the following raw materials:
[0019] Calcium sulfate, paper fiber, zeolite powder, perlite, sepiolite, lignocellulose, fly ash, peanut shell, soybean meal, brucite fiber, polypropylene fiber, carboxymethyl cellulose, diatomaceous earth, zinc borate ,water;
[0020] The preparation technology of above-mentioned floor substrate comprises the steps:
[0021] 1) Put calcium sulfate, paper fiber, lignocellulose and fly ash into the high-speed mixer according to the mass ratio of 10:3:1:1, stir at 1000rpm for 10-15min, and raise the temperature at 10℃ / min at the same time. When the temperature rises to 90°C, stop heating, and naturally cool to room temperature, which is the mixture A;
[0022] 2) Crush the perlite, sepiolite and brucite fibers with a crusher respectively, then mix them according to the mass ratio of 2:1:1, and then put them into the vibrating ball mill. After the ball milling until th...
Embodiment 2
[0028] A calcium sulfate antistatic floor base material, which is prepared from the following raw materials:
[0029] Calcium sulfate, paper fiber, zeolite powder, perlite, sepiolite, lignocellulose, fly ash, peanut shell, soybean meal, brucite fiber, polypropylene fiber, carboxymethyl cellulose, diatomaceous earth, zinc borate ,water;
[0030] The preparation technology of above-mentioned floor substrate comprises the steps:
[0031] 1) Put calcium sulfate, paper fiber, lignocellulose and fly ash into the high-speed mixer according to the mass ratio of 10:3:1:1, stir at 1000rpm for 10-15min, and raise the temperature at 10℃ / min at the same time. When the temperature rises to 90°C, stop heating, and naturally cool to room temperature, which is the mixture A;
[0032] 2) Crush the perlite, sepiolite and brucite fibers with a crusher respectively, then mix them according to the mass ratio of 2:1:1, and then put them into the vibrating ball mill. After the ball milling until th...
Embodiment 3
[0038] The performance test of the floor substrate prepared by the embodiment of the present invention 1-2:
[0039] group Example 1 Example 2 Flame retardant performance GB / T11020-2005 V-0 V-0 Water absorption GB / T1034-2008 0.017% 0.019% Impact strength GB / T1043-2008 2.3KJ / m 2 2.5KJ / m 2 Heat distortion temperature GB / T1634-2004 207℃ 211℃ Formaldehyde and benzene gases GB / T 18883-2002 not detected not detected Surface resistance GB / T 1410-2006 9.4×10 5 Ω / sq 9.3×10 5 Ω / sq
[0040] Conclusion: The floor of the present invention has good antistatic performance, good flame retardant, waterproof and mechanical properties, is environmentally friendly and pollution-free, has broad application prospects, and can be used instead of wooden floors in some places.
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