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Today’s
concrete superplasticizers
These are composed of various compounds such as polycarboxylate water–reducing mother liquor and/or polycarboxylate shrink-preserving mother liquor. It is the most important role for water-reducing mothers in superplasticizer. Although it is possible that the quantity of the mother solution may change with the changes in concrete, I’ve never seen water-reducing mothers added to superplasticizer. Perhaps because the sand quality is too high.
The absolute main substance in the water-reducing liquid is the water-reducing mom liquid. This is because it reduces the concrete water cement ratio and, at the same, ensures fluidity and the workability of the concrete combination and increases concrete strength. The water-reducing mother liquid also makes it easier to work in the construction area.
As we know, cement has water content in concrete. This means that superplasticizer molecules can also be affected by other materials. Water reducing agents are primarily directed at cement. First, we will discuss the cement hydration process.
Three stages are involved in the general portland cement hydration process:
(1) The Dissolution Stage: After cement has been in contact water for a while, its surface begins to hydrate. A small quantity of hydration product are produced, which can be immediately dissolved into water. Hydration can continue on the exposed surface until there is a saturated solution.
(2) Gelation stage. Because of the saturation of the solution the product can’t be dissolved and becomes colloidal particles. As the amount of hydration products increases, the cement slurry loses its plasticity and causes it to coagulate.
(3) Crystallization stage. A colloid made of microscopic crystallines is not stable and can slowly recrystallize to become macroscopic crystals. This increases the cement slurry’s strength, which eventually results in a cement stone.
The main role for steric hindrance is played by the superplasticizers made of polycarboxylic alcohol based superplasticizers in the cement slurry. Complexation of calcium ions, lubrication for hydration film play important roles. important role.
1. Steric hindrance:
Cement molecules are attracted to each other during cement hydration. This results in a flocculation system.
The flocculation structure will form when the cement molecules encapsulate some of the water molecules. It accounts for approximately 10%-30% (this could explain why the water reducer has a maximum water reducing rate). Since it is enclosed by cement molecules it can’t participate in free flow and lubrication of cement molecules. It will affect concrete mix fluidity. Once the concrete particles come in contact with the polycarboxylate concrete cement admixture molecules, the main chain is negatively charged. concrete admixture It is possible for molecules to be adsorbed on surfaces of negatively charged cement particles. Conformation. The cement particles moving towards each other will cause the adsorption layers to overlap. A larger overlapping area means that there is more repulsion among the cement particles. This improves the dispersibility. The cement particles must be destroyed from their flocculation. You can understand how cement flocculation causes water to escape. Water reducing molecules are able to increase the lubricating efficiency of water molecules and reduce the amount of water molecules in thin air.
2. Electrostatic repulsion theory:
The superplasticizer polycarboxylic acids COO2- is an anionic group in molecules. The cement particle’s surface contains positive charges (Ca2+) during early hydration. Anionic Polycarboxylic Acid superplasticizer molecules can adsorb these positively charged particles. You can make the cement particles into a hedgehog with a negative charge. It is possible to improve the dispersibility among cement particles by having them have the same negative charge. In the cement paste, both the negatively charged carboxyl group and the positively charged calcium are responsible for the formation of unstable complexes. Once the calciumions that have been dissolved in concrete are captured, their concentrations decrease significantly. The system then has fewer calcium ions. The formation of gel particles can be slowed down, the cement hydration process is inhibited, and the cement particle dispersion performances improved. A higher level of Polycarboxylic acids superplasticizers with carboxylate-ions, that is, a greater anion charge density, will lead to a better dispersion performance (acid/ether ratio) for cement particles. Inhibiting the cement’s initial hydrolysis can be caused by a decrease in the calcium ion content. As the cement hydrates, it becomes more complex. The superplasticizer Polycarboxylic Acid has an effect that slows down but does not affect the strength.
3. Lubrication
The hydrophilic group is found in the branched chains of polycarboxylic acid supraplasticizer molecule. They form a water film over the cement particles, by reacting with water molecules. This decreases their surface energy. The cement particles slip easily. Combining the two causes separation of cement particles. This concrete mixture is more fluid.
High-quality products are what you want concrete concrete additives Send us an inquiry and get in touch with us.
You can contact me if you’re looking for a superplasticizer with high quality polycarboxylic Acid. Get in touch You can also send us an enquiry
As we know, cement has water content in concrete. This means that superplasticizer molecules can also be affected by other materials. Water reducing agents are primarily directed at cement. First, we will discuss the cement hydration process.
Three stages are involved in the general portland cement hydration process:
(1) The Dissolution Stage: After cement has been in contact water for a while, its surface begins to hydrate. A small quantity of hydration product are produced, which can be immediately dissolved into water. Hydration can continue on the exposed surface until there is a saturated solution.
(2) Gelation stage. Because of the saturation of the solution the product can’t be dissolved and becomes colloidal particles. As the amount of hydration products increases, the cement slurry loses its plasticity and causes it to coagulate.
(3) Crystallization stage. A colloid made of microscopic crystallines is not stable and can slowly recrystallize to become macroscopic crystals. This increases the cement slurry’s strength, which eventually results in a cement stone.
The main role for steric hindrance is played by the superplasticizers made of polycarboxylic alcohol based superplasticizers in the cement slurry. Complexation of calcium ions, lubrication for hydration film play important roles. important role.
1. Steric hindrance:
Cement molecules are attracted to each other during cement hydration. This results in a flocculation system.
The flocculation structure will form when the cement molecules encapsulate some of the water molecules. It accounts for approximately 10%-30% (this could explain why the water reducer has a maximum water reducing rate). Since it is enclosed by cement molecules it can’t participate in free flow and lubrication of cement molecules. It will affect concrete mix fluidity. Once the concrete particles come in contact with the polycarboxylate concrete cement admixture molecules, the main chain is negatively charged. concrete admixture It is possible for molecules to be adsorbed on surfaces of negatively charged cement particles. Conformation. The cement particles moving towards each other will cause the adsorption layers to overlap. A larger overlapping area means that there is more repulsion among the cement particles. This improves the dispersibility. The cement particles must be destroyed from their flocculation. You can understand how cement flocculation causes water to escape. Water reducing molecules are able to increase the lubricating efficiency of water molecules and reduce the amount of water molecules in thin air.
2. Electrostatic repulsion theory:
The superplasticizer polycarboxylic acids COO2- is an anionic group in molecules. The cement particle’s surface contains positive charges (Ca2+) during early hydration. Anionic Polycarboxylic Acid superplasticizer molecules can adsorb these positively charged particles. You can make the cement particles into a hedgehog with a negative charge. It is possible to improve the dispersibility among cement particles by having them have the same negative charge. In the cement paste, both the negatively charged carboxyl group and the positively charged calcium are responsible for the formation of unstable complexes. Once the calciumions that have been dissolved in concrete are captured, their concentrations decrease significantly. The system then has fewer calcium ions. The formation of gel particles can be slowed down, the cement hydration process is inhibited, and the cement particle dispersion performances improved. A higher level of Polycarboxylic acids superplasticizers with carboxylate-ions, that is, a greater anion charge density, will lead to a better dispersion performance (acid/ether ratio) for cement particles. Inhibiting the cement’s initial hydrolysis can be caused by a decrease in the calcium ion content. As the cement hydrates, it becomes more complex. The superplasticizer Polycarboxylic Acid has an effect that slows down but does not affect the strength.
3. Lubrication
The hydrophilic group is found in the branched chains of polycarboxylic acid supraplasticizer molecule. They form a water film over the cement particles, by reacting with water molecules. This decreases their surface energy. The cement particles slip easily. Combining the two causes separation of cement particles. This concrete mixture is more fluid.
Supplier of superplasticizer polycarboxylic acids
We are a trusted supplier of concrete additives with over 12 years experience in both nano-building energy conservation as well as nanotechnology development.High-quality products are what you want concrete concrete additives Send us an inquiry and get in touch with us.
You can contact me if you’re looking for a superplasticizer with high quality polycarboxylic Acid. Get in touch You can also send us an enquiry