High-toughness and high-cohesiveness C170-strength ultrahigh-strength fiber concrete and preparation method thereof
A technology of fiber concrete and high cohesion, which is applied in the field of building materials. It is a kind of mixed ramie fiber and basalt field. It can solve the problems of less active groups, affect the uniform dispersion of carbon nanotubes, and low relative solubility, and achieve increased Adhesiveness, cost reduction, and CO2 emission reduction effects
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Embodiment 1
[0100] 1) Add 15 parts by mass of water reducer and 32 parts by mass of hydroxyl-modified single-walled carbon nanotube dispersion into two-thirds of the total water, and record it as mixed solution 1; Add 13.5 parts of shrinkage reducing agent and 2.8 parts of antifoaming agent into the water of one-third of the total water volume, and record it as mixed solution 2. After preparing 18 parts of carboxy-modified polyvinyl alcohol polymer, it is ready for use, and the total water volume is 100 Wherein, the carboxy-modified polyvinyl alcohol polymer is prepared from raw materials according to mass percentage: carboxy-modified polyvinyl alcohol 37%, water 62%, polyacrylate defoamer 1%;
[0101] 2) Divide 5.8 parts of ramie fiber, 975 parts of gravel, 720 parts of sand, 490 parts of cement, 75 parts of fly ash, 73 parts of straw ash, 55 parts of silica fume, 4.4 parts of nano silicon, and 10.6 parts of basalt fiber into Three parts, then spread a part of ramie fiber and basalt fibe...
Embodiment 2
[0110] 1) Add 16 parts by mass of water reducer and 30 parts by mass of hydroxyl-modified single-walled carbon nanotube dispersion to two-thirds of the total water, and record it as mixed solution 1; Add 14 parts of shrinkage reducing agent and 2.4 parts of defoamer to one-third of the total water volume, and record it as mixed solution 2. After preparing 20 parts of carboxy-modified polyvinyl alcohol polymers, the total water volume is 100 Wherein, carboxy-modified polyvinyl alcohol polymer is prepared from raw materials according to mass percentage: carboxy-modified polyvinyl alcohol 38.7%, water 60.3%, polyacrylate defoamer 1%;
[0111] 2) Divide 5.9 parts of ramie fiber, 975 parts of gravel, 715 parts of sand, 485 parts of cement, 73 parts of fly ash, 70 parts of straw ash, 57 parts of silica fume, 4.4 parts of nano silicon, and 10.5 parts of basalt fiber into Three parts, then spread a part of ramie fiber and basalt fiber evenly in the disc mixer, and then place a part of...
Embodiment 3
[0119] 1) Add 16.6 parts by mass of water reducer and 30 parts by mass of hydroxyl-modified single-walled carbon nanotube dispersion into two-thirds of the total water, which is recorded as mixed solution 1; 14 parts of shrinkage reducing agent and 2.6 parts of antifoaming agent are added to one-third of the total water, which is recorded as mixed solution 2. After the preparation of 19 parts of carboxyl-modified polyvinyl alcohol polymer is completed, the total water is 95 Wherein, carboxy-modified polyvinyl alcohol polymer is prepared from raw materials according to mass percentage: carboxy-modified polyvinyl alcohol 38.9%, water 60%, polyacrylate defoamer 1.1%;
[0120] 2) Divide 5.9 parts of ramie fiber, 975 parts of gravel, 722 parts of sand, 480 parts of cement, 72 parts of fly ash, 74 parts of straw ash, 60 parts of silica fume, 4.2 parts of nano silicon, and 10.5 parts of basalt fiber into Three parts, then spread a part of ramie fiber and basalt fiber evenly in the di...
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