A phosphogypsum-based wall material for cast-in-place walls
A wall material and cast-in-place wall technology, which is applied in the field of building materials, can solve the problems of failure to reflect material properties, and achieve the effects of delaying hydration hardening time, enhancing bonding performance, and improving fluidity
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Embodiment 1
[0016] Embodiment 1: for the phosphogypsum-based wall material of cast-in-place wall, its raw material components are as follows by weight percentage:
[0017] β—phosphogypsum: 65%, fly ash: 10%, ordinary Portland cement: 24%, sodium citrate: 0.34%, naphthalene-based FDN water reducer: 0.5%, organic silicone oil: 0.08%, hydroxyethyl Cellulose (ether): 0.08%.
[0018] The β-phosphogypsum is a modified phosphogypsum prepared by mixing dihydrate phosphogypsum with 2% calcium carbide slag, grinding it in a ball mill for 15 minutes, and then calcining at 150° C. for 2 hours. Flexural strength ≥ 2.5MPa, compressive strength ≥ 5MPa, softening coefficient ≥ 0.35.
[0019] Take the above raw materials and mix them to obtain a phosphogypsum-based cast-in-situ wall material, add water according to the water-to-material ratio of 0.46 and mix well for construction. The basic properties of the phosphogypsum-based cast-in-place material obtained in the present invention are initial setting...
Embodiment 2
[0020] Embodiment 2: for the phosphogypsum-based wall material of cast-in-place wall, its raw material components are as follows by weight percentage:
[0021] β—phosphogypsum: 70%, fly ash: 12.5%, ordinary Portland cement: 16%, sodium citrate: 0.30%, naphthalene-based FDN water reducer: 1.0%, organic silicone oil: 0.1%, methyl cellulose Element (ether): 0.1%.
[0022] The β-phosphogypsum is a modified phosphogypsum prepared by mixing dihydrate phosphogypsum with 5% calcium carbide slag, grinding it in a ball mill for 15 minutes, and then calcining at 150° C. for 2 hours. Flexural strength ≥ 2.5MPa, compressive strength ≥ 5MPa, softening coefficient ≥ 0.35.
[0023] Take the above raw materials and mix them to obtain a phosphogypsum-based cast-in-situ wall material, add water according to the water-to-material ratio of 0.5 and mix well before construction. The basic properties of the phosphogypsum-based cast-in-place material obtained in the present invention are initial set...
Embodiment 3
[0024] Embodiment 3: for the phosphogypsum-based wall material of cast-in-situ wall, its raw material components are as follows by weight percentage:
[0025] β—phosphogypsum: 60.5%, fly ash: 18%, slag cement: 20%, citric acid: 0.5%, FDN water reducer: 0.75%, polyether defoamer: 0.15%, hydroxyethyl cellulose (Ether): 0.1%.
[0026] The β-phosphogypsum is a modified phosphogypsum prepared by mixing dihydrate phosphogypsum with 3% calcium carbide slag, grinding it in a ball mill for 15 minutes, and then calcining at 150° C. for 2 hours. Flexural strength ≥ 2.5MPa, compressive strength ≥ 5MPa, softening coefficient ≥ 0.35.
[0027] Take the above raw materials and mix them to obtain a phosphogypsum-based cast-in-situ wall material, add water according to the water-to-material ratio of 0.46 and mix well for construction. The basic properties of the phosphogypsum-based cast-in-place material obtained in the present invention are initial setting time ≥ 2.0h, final setting time ≤ 4...
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