Geopolymer-based concrete for block energy-storage tower, and preparation method thereof
A technology of geopolymer and concrete, which is applied in the direction of cement production, etc., can solve the problems of high strength of concrete block, strong impact resistance and weathering resistance, and good volume stability, so as to achieve the advantages of recycling, impact resistance and Strong weather resistance and good volume stability
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Embodiment 1
[0039] Example 1: A geopolymer-based concrete for block energy storage towers
[0040] (1) Components
[0041] In parts by weight, it is made of the following raw materials:
[0042] 250 parts of ultra-fine steel slag powder, 185 parts of ultra-fine granulated blast furnace slag powder, 65 parts of ultra-fine fly ash, 70 parts of cement clinker, 50 parts of desulfurized gypsum, 1026 parts of hematite fine aggregate, hematite coarse bone 1674 parts of materials, 10 parts of slow-release polycarboxylate high-performance water reducer, 5 parts of zinc nitrate, 160 parts of water, and 60 parts of special-shaped steel fiber.
[0043] Among them, ultra-fine steel slag powder has a specific surface area ≥ 850m 2 / kg, activity index ≥ 100%;
[0044] Superfine granulated blast furnace slag powder has a specific surface area ≥ 850m 2 / kg, activity index ≥ 110%;
[0045] Ultrafine fly ash has a specific surface area ≥ 850m 2 / kg, activity index ≥ 90%;
[0046] Cement clinker is ge...
Embodiment 2
[0060] Example 2: A geopolymer-based concrete for block energy storage towers
[0061] (1) Components
[0062] In parts by weight, it is made of the following raw materials:
[0063] 250 parts of ultra-fine steel slag powder, 200 parts of ultra-fine granulated blast furnace slag powder, 50 parts of silica fume, 160 parts of sodium silicate, 40 parts of sodium hydroxide, 988 parts of barite fine aggregate, 1612 parts of barite coarse aggregate 8 parts of slow-release polycarboxylate high-performance water reducer, 6 parts of zinc nitrate, 150 parts of water, and 55 parts of special-shaped steel fiber.
[0064] Wherein, the difference with embodiment 1 is:
[0065] The technical performance of silica fume meets the standard of GB / T 51003 "Technical Specifications for the Application of Mineral Admixtures";
[0066] Sodium silicate, the modulus is 1.5-2.5;
[0067] Barite fine aggregate is made by crushing barite, and its particle size is 0-5mm;
[0068] Barite coarse aggregat...
Embodiment 3
[0074] Example 3: A geopolymer-based concrete for block energy storage towers
[0075] (1) Components
[0076] In parts by weight, it is made of the following raw materials:
[0077] 250 parts of superfine steel slag powder, 200 parts of superfine granulated blast furnace slag powder, 50 parts of silica fume, 60 parts of cement clinker, 17 parts of anhydrous calcium chloride, 40 parts of desulfurized gypsum, 992 parts of limonite fine aggregate, 1667 parts of limonite coarse aggregate, 8 parts of slow-release polycarboxylate high-performance water reducer, 6 parts of barium chloride, 160 parts of water, and 70 parts of special-shaped steel fiber.
[0078] Wherein, the difference with embodiment 1 is:
[0079] The technical performance of silica fume meets the standard of GB / T 51003 "Technical Specifications for the Application of Mineral Admixtures";
[0080] Limonite fine aggregate is made by crushing limonite, and its particle size is 0-5mm;
[0081] Limonite coarse aggr...
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