A concrete retarding water reducer
A technology of retarding water reducing agent and concrete, applied in the field of concrete retarding water reducing agent, can solve the problem that the effect of retarding water reducing agent is difficult to be fully utilized and continuously exerted, the use effect of cement is large, and the retarding water reducing agent is hindered. Solve the problems of agent development, etc., to achieve the effect of strong water reduction effect, enhanced continuous effect and good compatibility.
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Embodiment 1
[0034] This example provides a concrete retarding water reducer, including A component and B component, the A component includes 10 parts of polycarboxylic acid type water reducer powder, 3 parts of calcium sugar, 1 part of sodium tripolyphosphate 1 part, 1 part of borax, and 6 parts of ceramsite. The B component is formed by reacting glucose, vinyl alcohol, and sodium methacrylate.
[0035] The mass ratio of the A component and the B component is 1:2, and the mass ratio of glucose, vinyl alcohol and sodium methacrylate is 1:1.1:0.95.
[0036] The preparation method of the A component comprises the following steps:
[0037] S1. Clean the ceramsite ultrasonically for 10 minutes, then dry it in a vacuum drying oven at 70°C for 30 minutes, then divide it into the first ceramsite and the second ceramsite, and store it in vacuum for later use;
[0038] S2. Mix the first ceramsite with sodium tripolyphosphate and borax evenly, and disperse in a high-speed disperser at 1000r / min for...
Embodiment 2
[0053] This example provides a concrete retarding water reducer, including A component and B component, the A component includes 15 parts of polycarboxylic acid type water reducer powder, 4 parts of sugar calcium, 1.5 parts of sodium tripolyphosphate 1.5 parts, 1.5 parts of borax, and 7 parts of ceramsite. The B component is formed by reacting glucose, vinyl alcohol, and sodium methacrylate.
[0054] The mass ratio of the A component and the B component is 1:2.5, and the mass ratio of the glucose, vinyl alcohol and sodium methacrylate is 1:1.15:0.97.
[0055] The preparation method of the A component comprises the following steps:
[0056] S1. Clean the ceramsite ultrasonically for 12 minutes, then dry it in a vacuum oven at 75°C for 35 minutes, then divide it into the first ceramsite and the second ceramsite, and store it in vacuum for later use;
[0057] S2. Mix the first ceramsite with sodium tripolyphosphate and borax evenly, and disperse in a high-speed disperser at 1100...
Embodiment 3
[0071] This example provides a concrete retarding water reducer, including A component and B component, the A component includes 20 parts of polycarboxylic acid type water reducer powder, 5 parts of sugar calcium, 2 parts of sodium tripolyphosphate 2 parts, 2 parts of borax, and 8 parts of ceramsite. The B component is formed by reacting glucose, vinyl alcohol, and sodium methacrylate as raw materials.
[0072] The mass ratio of the A component and the B component is 1:3, and the mass ratio of glucose, vinyl alcohol, and sodium methacrylate is 1:1.2:1.
[0073] The preparation method of the A component comprises the following steps:
[0074] S1. Ultrasonic cleaning of ceramsite for 15 minutes, and then drying in a vacuum oven at 80°C for 40 minutes, and then divided into the first part of ceramsite and the second part of ceramsite, and stored in vacuum for later use;
[0075] S2. Mix the first ceramsite with sodium tripolyphosphate and borax evenly, and disperse in a high-spe...
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