An early-strength polycarboxylate high-performance water reducer and its preparation method
A polycarboxylic acid and early-strength technology, which is used in the field of early-strength polycarboxylate high-performance water reducer and its preparation, can solve the problem of early-strength effect and material environmental adaptability, which cannot meet the market application of early-strength super-early-strength concrete needs and other issues to achieve the effect of simple steps
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Embodiment 1
[0053] An early-strength polycarboxylate high-performance water reducer, the synthetic raw material contains a large molecular weight isopentenyl polyoxyethylene ether macromonomer and a dendritic macromolecular comonomer with methacrylic acid-terminated butylenediamine as the core .
[0054] The synthetic raw material also contains unsaturated sodium sulfonate comonomer, unsaturated carboxylic acid comonomer, initiator, reducing agent, chain transfer agent, liquid caustic soda and water.
[0055] The molecular weight of the isopentenyl polyoxyethylene ether macromonomer with large molecular weight is 4000-6000.
[0056] The butanediamine of methacrylic acid end-capping is the chemical formula of the dendritic macromolecule comonomer of nucleus as follows:
[0057]
[0058]In parts by mass, the ratio of synthetic raw materials is,
[0059] Large molecular weight isopentenyl polyoxyethylene ether macromonomer: 350-400 parts;
[0060] Dendritic macromolecular comonomer wit...
Embodiment 2
[0094] A preparation method of an early-strength polycarboxylate high-performance water reducer, comprising the following steps,
[0095] (1) Preparation of methacrylic acid-terminated butanediamine as a core dendritic macromolecular comonomer: add 25 parts of methanol A and 6.5 parts of butanediamine A to the reactor, and stir at 50°C until butanediamine A was completely dissolved, and 36 parts of methyl methacrylate was added dropwise for 0.5 h, and the reaction was carried out at 50°C for 10 h, and the intermediate I was obtained by distillation under reduced pressure.
[0096] Add a solution prepared by adding 32 parts of butanediamine B and 30 parts of methanol B to intermediate I, react at 90°C for 10 hours, and distill under reduced pressure to obtain intermediate II;
[0097] Add 6 parts of methacrylic acid and 0.2 parts of inhibitor hydroquinone to intermediate II, N 2 Under the atmosphere, stirred at 70°C for 3h, and distilled under reduced pressure to obtain a dend...
Embodiment 3
[0100] A preparation method of an early-strength polycarboxylate high-performance water reducer, comprising the following steps,
[0101] (1) Preparation of methacrylic acid-terminated butanediamine as a core dendritic macromolecular comonomer: add 20 parts of methanol A and 8 parts of butanediamine A to the reactor, stir until butanediamine is stirred at 55°C A was completely dissolved, and 35 parts of methyl methacrylate was added dropwise for 0.5 h, and the reaction was carried out at 55°C for 12 h, and intermediate I was obtained by distillation under reduced pressure.
[0102] Add a solution prepared by adding 35 parts of butanediamine B and 25 parts of methanol B to intermediate I, react at 100°C for 12 hours, and distill under reduced pressure to obtain intermediate II;
[0103] Add 7 parts of methacrylic acid and 0.3 parts of inhibitor hydroquinone to intermediate II, N 2 Stirring at 80° C. for 4 h under the atmosphere, and distilling under reduced pressure to obtain ...
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