Composite gelate material and method of producing the same
A technology of composite cementitious materials and composite admixtures, applied in cement production, sustainable waste treatment, solid waste management, etc., can solve the problems of large-scale application without breakthrough, affect the quality of construction projects, and high production costs, and achieve improvement Fluidity and water retention, early strength antifreeze performance, fast response effect
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Embodiment 1
[0022] The formula used is calculated by weight percentage: 30% of 52.5 grade Portland cement, 55% of fly ash, 3.09% of gypsum, 9.6% of lime, 0.5% of calcium chloride, 0.5% of triethanolamine, 1% of sodium nitrite, lignosulfur Calcium acid 0.3%, dodecylsulfonate 0.01%, wherein the abrasive needs to be ground to a sieve of 45um and is not more than 10%, and is processed according to the production method of the present invention to obtain a type A composite gelling material; its strength index is detected Reached the 32.5R level.
Embodiment 2
[0024] The formula used is calculated by weight percentage: 52.5 grade Portland cement 20%, fly ash 10%, granulated blast furnace slag 65%, gypsum 1.9%, water glass 1%, calcium sulfate 1.5%, triethanolamine 0.05%, fatty alcohol Polyoxyethylene ether sodium sulfate 0.545%, sodium dodecylsulfonate 0.005%, wherein the abrasive needs to be ground to a 45um sieve residue of not more than 15%, and processed according to the production method of the present invention to obtain the B-type composite gelling material; Its strength index is detected to reach 42.5R level.
Embodiment 3
[0026] The formula used is calculated by weight percentage: 42.5 grade Portland cement 50%, fly ash 10%, steel slag powder 10%, granulated blast furnace slag 15%, pozzolanic mixture 8%, silica fume 2%, gypsum 2.25%, 1.5% of lime, 0.5% of calcium chloride, 0.05% of triethanolamine, 0.5% of calcium nitrate, 0.2% of calcium lignosulfonate, wherein the abrasive needs to be ground to a 45um sieve residue of not more than 12%, and is processed according to the production method of the present invention. A B-type composite gel material was obtained; its strength index reached 32.5R level after testing.
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