Low-cost concrete material special for flood fighting, rescue and relief and preparation method thereof
A flood-fighting and disaster-relief, low-cost technology, applied in the field of flood-fighting and disaster-relief materials, can solve the problems of cumbersome preparation process, scattered rescue materials, delay time, etc., and achieve the effect of shortening rescue time, convenient and simple operation, and saving labor costs.
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Embodiment 1
[0023] See figure 1 , A low-cost anti-flood relief rescue special concrete material, including Group A raw materials, B components, and C components, the A group of raw materials, according to the components of the following materials; ordinary silicate cement The content of 450 parts was 450, and the content of the mechanism was 300, and the content of fine stone was 300; Group B was in accordance with the components of the following materials: 30 parts of aluminum acid, and calcium oxide content. 20 copies; C group raw materials According to the components of the following materials: the expansion agent accounted for 5 parts of the gelling material, and the content of mixed water was 25 parts.
Embodiment 2
[0025] A low-cost anti-flood relief rescue special concrete material, including Group A raw materials, B-component raw materials and C components, the A group of raw materials, according to the components of the following materials; ordinary silicate cement The content of 500 parts is 602, and the content of the fine stone was 360 parts; Group B is divided into parts according to the components of the following materials: 35 aluminum acid content, the content of calcium oxide is 25 copies; C group raw materials According to the components of the following materials: the expansion agent accounted for 6 parts of the gelation, and the content of mixed water was 21 parts.
Embodiment 3
[0027] A low-cost anti-flood relief rescue special concrete material, including Group A raw materials, B-component raw materials and C components, the A group of raw materials, according to the components of the following materials; ordinary silicate cement The content is 490, the content of the mechanism sand is 620 parts, and the content of fine stone is 390; Group B, according to the components of the following materials: 23 parts of aluminum acid, the content of calcium oxide is 19 servings; C group raw materials According to the components of the following materials: the expansion agent accounted for 8 parts of the gelling material, and the content of mixed water was 23 parts.
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