Dampproof putty powder
A technology of putty powder and raw materials, which is applied in the field of moisture-proof putty powder, can solve the problem that the putty powder has no moisture-proof function, and achieve the effects of natural environmental protection hygroscopicity and adhesion, strong hygroscopicity and adhesion, and increased crack resistance
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Embodiment 1
[0017] This moisture-proof putty powder is made of raw materials with the following weights:
[0018] White cement: 25 kg; palygorskite clay: 10 kg; bagasse fiber: 3 kg; hydroxypropyl methylcellulose: 0.5 kg; super absorbent resin: 5 kg; bentonite: 2.5 kg; sodium chloride: 0.5 kg ;
[0019] Including the following steps:
[0020] A. Put the palygorskite clay in an earth kiln for burning for 2 hours at a temperature of 280°C to 300°C, set aside;
[0021] B. Put the palygorskite clay prepared in step A into a pulverizer for pulverization to obtain pulverized material;
[0022] C. Put the pulverized material prepared in step B, super absorbent resin, hydroxypropyl methylcellulose, bentonite, and bagasse fiber into a mixer, and stir at a speed of 5000 rpm for 2 minutes to obtain a mixture;
[0023] D. Put the mixture prepared in step C into a grinder to grind, and the fineness is 500 meshes.
Embodiment 2
[0025] This moisture-proof putty powder is made of raw materials with the following weights:
[0026] White cement: 40 kg; palygorskite clay: 15 kg; bagasse fiber: 8 kg; hydroxypropyl methylcellulose: 1 kg; super absorbent resin: 10 kg; bentonite: 3.5 kg; sodium chloride: 1 kg ; The rest are the same as the first embodiment.
Embodiment 3
[0028] This moisture-proof putty powder is made of raw materials with the following weights:
[0029] White cement: 29 kg; palygorskite clay: 12 kg; bagasse fiber: 5 kg; hydroxypropyl methylcellulose: 0.6 kg; super absorbent resin: 6 kg; bentonite: 2.7 kg; sodium chloride: 0.6 kg ; Sodium chloride: 0.6 kg; the rest are the same as in Example 1.
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