A kind of hydrophilic two-component grouting plugging material
A plugging material and two-component technology, applied in the field of high-performance hydrophilic polyurethane/water glass two-component grouting plugging material and its preparation, can solve the problem of insufficient stability of curing time, poor stability of consolidated body, and adjustable Small range and other problems, to achieve high water plugging performance, fast gel speed, and improve water plugging efficiency
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Embodiment 1
[0038] (1) Weigh 95g of highly hydrophilic polyether polyol (functionality 3, molecular weight 6000, EO / PO=75:25), 5g of polyvinyl alcohol 2000, and 10g of DBP into the reaction kettle together, at a vacuum degree of -0.08MPa , vacuum dehydration at 115°C for 2 hours; after cooling down to 60°C, add 20g of toluene diisocyanate into the reaction kettle under nitrogen atmosphere, and react for 3h; Finally, add 60 g of propylene carbonate and 0.02 g of benzenesulfonyl chloride into the reaction kettle under a nitrogen atmosphere, stir for 20 minutes, and discharge to obtain Component A.
[0039] (2) Dissolve 0.5g of stannous octoate and 5g of diethylenetriamine in 100g of water glass solution (the mass fraction of sodium silicate is 30%, and the modulus of sodium silicate is 3.5) to obtain component B.
[0040] (3) Mix component A and component B at a volume ratio of 1:5 to prepare a hydrophilic polyurethane / water glass composite hydrogel sample.
[0041] Table 1 Main technical ...
Embodiment 2
[0046] (1) Weigh 80g of highly hydrophilic polyether polyol (functionality 3, molecular weight 8200, EO / PO=80:20), 20g of PTMEG1000, 50g of DOP and add them into the reaction kettle together, at a vacuum of -0.08MPa, 115℃ Under the condition of vacuum dehydration for 2h; after cooling down to 60°C, add 9g of toluene diisocyanate to the reactor under nitrogen atmosphere, and react for 3h; maintain 60°C, add 31g of liquefied diphenylmethane diisocyanate into the reactor under nitrogen atmosphere , continue to react for 1h; add 0.3g of dibutyltin dilaurate to the reactor to continue to react for 1h, after cooling down to 50°C, add 20g of mixed dibasic acid ester and 0.05g of anhydrous phosphoric acid into the reactor under nitrogen atmosphere, stir Discharge after 10~30min, and get component A.
[0047] (2) Dissolve 2g of triethylamine and 2g of triethanolamine in 100g of water glass solution (the mass fraction of sodium silicate is 30%, and the modulus of sodium silicate is 3.5)...
Embodiment 3
[0054] (1) Weigh 90g of highly hydrophilic polyether polyol (functionality 3, molecular weight 10000, EO / PO=95:5), 10g of polyvinyl alcohol 200, and 30g of DOP into the reaction kettle together. MPa, vacuum dehydration at 115°C for 2h; after cooling down to 60°C, add 27.6g of toluene diisocyanate to the reactor under nitrogen atmosphere, and react for 3h; keep at 60°C, add 33.4g more Phenyl polymethylene polyisocyanate, continue to react for 1h; add 0.23g 2,2-bismorpholinyl diethyl ether to the reaction kettle and continue to react for 1h, after cooling down to 50°C, put it into the reaction kettle under nitrogen atmosphere Add 40g of 1,2-propanediol carbonate and 0.03g of tartaric acid, stir for 10-30min, and discharge to obtain component A.
[0055] (2) Dissolve 1g of N,N-dimethylbenzylamine and 4g of m-phenylenediamine in 100g of water glass solution (the mass fraction of sodium silicate is 60%, and the modulus of sodium silicate is 1.5) to obtain the composition Point B. ...
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