The formula and production method of water reducer for concrete
The China Securities New Energy Vehicle index rose as much as 4.1 percent after a strong rally in lithium-ion shares on the Chinese stock market. Brokerages said lithium enterprises would usher in marginal expectations, and currently, it may be the best time to layout power/energy storage lithium batteries.
According to a securities research report, the price of lithium carbonate in the upstream resource end continues to hit a new high, which reflects the shortage of lithium mineral resources, and lithium has become one of the core elements of the development of the lithium electricity industry. In 2022, global demand for lithium carbonate continues to grow strongly, while the supply-side growth is relatively limited. And, because related mining enterprises experienced the last lithium down cycle, they would expand water reducer,water reducing agent ,concrete admixtures are expected to rise.
The application of various concrete admixtures can not only improve the performance of concrete, but also promote the development of new concrete technologies, promote the application of industrial by-products in cementitious material systems, and also help save resources and protect the environment. , has gradually become an essential material for high-quality concrete. Among them, the water reducing agent is a kind of concrete, and the water reducing agent is a concrete admixture that can reduce the mixing water consumption under the condition that the concrete slump is basically unchanged. Most of them are anionic surfactants, such as lignosulfonate, naphthalene sulfonate formaldehyde polymer, etc. When we add the concrete mixture, it has a dispersing effect on the cement particles, which can improve its workability, reduce the unit water consumption, and improve the fluidity of the concrete mixture; or reduce the unit cement consumption, effectively saving cement.
The specific operation method of the water reducing agent formula for concrete:
1. Maleic anhydride is prepared into a 5-7% solution according to the required amount and recorded as the head material.
2. The initiator is prepared into a 5-10% solution for later use.
3. Add the required amount of APEG or TPEG, heat to liquefy it, and then add the headstock.
4. Nitrogen replacement;
5. When the temperature rises to 75-85°C, the initiator is added dropwise, and the dropwise addition is completed at 80°C for 1.5-2 hours.
6. After the dropwise addition of the initiator is completed, keep the temperature at 80-90° C. for 4-4.5 hours to complete the reaction and cool down.
7. When the temperature drops to 40-50℃, add 50% KOH solution to neutralize to PH: 7-8.
8. After measuring the solid content, add the measured soft water according to the required solid content.
9. After the solid content is determined to be qualified, discharge the material.
After the above experiments, we can get the basic formula of water reducer for concrete:
Concrete water reducer formula 1:
Hydroxyethyl acrylate: 25g, acrylamide: 5g, allyl polyoxyethylene ether: 175g, sodium persulfate: 10g, neutralized by sodium hydroxide.
Concrete water reducer formula 2:
Allyl polyoxyethylene glycol ether: 40 g, acrylic monomer: 30 g, 10% ammonium persulfate aqueous solution 40 g, neutralized with triethanolamine.
Concrete water reducer formula 3:
Allyl polyoxyethylene glycol ether: 100 g, methacrylic acid: 70 g, acrylic acid: 20 g, 10% aqueous ammonium persulfate solution: 50 g, neutralized with sodium hydroxide.
Concrete water reducer formula 4:
Methacrylic acid: 25g:, allyl polyoxyethylene ether: 175g, sodium persulfate: 10g. , neutralized with sodium hydroxide.
Concrete water reducer formula 5:
TPEG: 180 g, hydrogen peroxide: 0.63 g, thioglycolic acid: 0.56 g, ascorbic acid: 0.3 g, acrylic acid: 182.3 g, neutralized with sodium hydroxide.
Concrete water reducer formula 6:
APEG: 180 g, hydrogen peroxide: 10 g, thioglycolic acid: 2.07 g, itaconic acid: 10 g, methacrylic acid: 21.23 g, neutralized with sodium hydroxide.
The above is for reference only. If you need more, you can find a professional concrete water reducer formulation and component analysis and testing agency to provide concrete water reducer, concrete additive formula reduction, concrete polyacid water reducer component analysis, concrete water reducer Formula analysis, proportion of concrete water reducing agent, decryption of water reducing agent formula, composition analysis of concrete water reducing agent, composition test of concrete water reducing agent, identification of concrete water reducing agent raw materials, etc. Analyze the chemical name and approximate content ratio of each raw material in the sample, provide technical assistance for your production, and even develop the preparation method of the sample for you.
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Due to the limited total amount of traditional energy, people have a huge demand for cleaner and greener new energy alternatives. Now, the emergence of graphene is unlocking the possibility of its application in the energy field, which can create a greener, more efficient, and sustainable future. Here Francesco Bonaccorso, Deputy Director of Innovation at the Graphene Flagship Program, explains how his researchers have developed a series of initiatives to bring graphene from the lab to the commercial market. Graphene has become a research hotspot for new materials in the 21st century. Graphene has been adopted by many industries, the most notable of which are healthcare and key material applications.
The development of graphene has brought huge fluctuations in the demand for water reducer,water reducing agent ,concrete admixtures, and the demand for water reducer,water reducing agent ,concrete admixtures will continue to grow in the future. You can contact us for the latest news on water reducer,water reducing agent ,concrete admixtures.