High-Quality Potassium Silicate, Sodium Silicate, Lithium Silicate for Global Markets
PRODUCT PARAMETERS
Description
Overview of Sodium Silicate Liquid
Sodium silicate liquid, also known as water glass, is a versatile inorganic compound comprising sodium oxide (Na₂O) and silica (SiO₂) in aqueous solution. It is widely used across industries such as construction, detergent manufacturing, foundry, and drilling fluids due to its unique properties including adhesive strength, heat resistance, and chemical stability.
Features of Sodium Silicate Liquid
Adhesive Strength: Provides excellent bonding capabilities, making it ideal for foundry work and abrasive wheels.
Heat Resistance: Effective in high-temperature applications like refractory materials and cement production.
Chemical Stability: Resistant to many chemicals, ensuring durability in harsh environments.
Versatility: Used in detergents, fireproofing, and as a sealant in various industrial processes.
Water Solubility: Easily mixes with water, facilitating its use in multiple applications.

(Solid Sodium Silicate Liquid Sodium Silicate Sodium Silicate for High Temperature Resistant Materials)
Specifications of Solid Sodium Silicate Liquid Sodium Silicate Sodium Silicate for High Temperature Resistant Materials
Solid sodium silicate appears as glassy lumps or powder. It contains sodium oxide and silicon dioxide. The ratio varies between 1:2 to 1:3.3. It dissolves in water. The solution has a high pH. It works as a binder in detergents. It stabilizes industrial processes. It resists moisture. Store it in dry conditions. Keep it away from acids.
Liquid sodium silicate comes as a thick, clear solution. The concentration ranges from 35% to 50%. The viscosity adjusts based on the silicate ratio. It sticks well to surfaces. It hardens when exposed to carbon dioxide. It bonds materials in construction. It coats metals for protection. It seals porous surfaces. Use it at room temperature. Avoid freezing or overheating.
Sodium silicate for high-temperature resistant materials handles heat up to 1000°C. It mixes with fillers like ceramic fibers. It forms strong bonds under heat. It prevents cracking in furnace linings. It insulates industrial equipment. It withstands sudden temperature changes. It resists chemical corrosion. Apply it as a paste or coating. Cure it gradually to avoid stress.
Solid sodium silicate has a melting point around 1088°C. It reacts with acids to form silica gel. It absorbs water in humid environments. Use gloves when handling. It irritates skin and eyes.
Liquid sodium silicate dries quickly. It bonds wood, paper, or glass. It works as a cement additive. It improves fire resistance in textiles. Dilute it for spraying or brushing. Clean tools with water before drying.
High-temperature sodium silicate retains strength under thermal stress. It adheres to metals, ceramics, and refractories. It reduces energy loss in kilns. It minimizes wear in high-heat machinery. Test compatibility with substrates first. Follow safety guidelines for ventilation.

(Solid Sodium Silicate Liquid Sodium Silicate Sodium Silicate for High Temperature Resistant Materials)
Applications of Solid Sodium Silicate Liquid Sodium Silicate Sodium Silicate for High Temperature Resistant Materials
Solid sodium silicate and liquid sodium silicate are versatile materials used in many industries. Solid sodium silicate is a glassy substance made from silicon dioxide and sodium oxide. It dissolves in water to form liquid sodium silicate. Both forms have unique properties. They are heat-resistant, adhesive, and chemically stable. These qualities make them valuable for high-temperature applications.
Solid sodium silicate is commonly used in detergents and cleaning products. It softens water and helps remove grease. It acts as a binder in ceramics and refractory materials. When mixed with other materials, it forms strong bonds that withstand extreme heat. This makes it ideal for furnace linings and kiln components. Workers use it in foundries to create molds for metal casting. The molds hold their shape under high temperatures.
Liquid sodium silicate serves as an adhesive in industries like paper manufacturing and construction. It binds materials like cardboard, wood, and concrete. It is added to coatings and sealants to improve fire resistance. When exposed to heat, it forms a protective layer that prevents damage. It is also used in wastewater treatment. It clumps impurities together for easy removal.
Sodium silicate is critical for producing high-temperature-resistant materials. It is mixed with silica or alumina to create ceramics that endure over 1000°C. These ceramics are used in aerospace components, industrial furnaces, and fireproof insulation. The material’s low thermal expansion reduces cracking under heat stress. In the automotive sector, sodium silicate-based coatings protect engine parts from extreme temperatures. Fireproof safes and doors use sodium silicate to block heat transfer during fires.
The chemical stability of sodium silicate prevents reactions with acids or alkalis in harsh environments. This makes it suitable for chemical storage containers and pipelines. Its versatility and durability ensure widespread use across manufacturing, construction, and safety applications.
Company Introduction
Welcome to Iberocruceros, a leading supplier in the international market for high-quality potassium silicate, sodium silicate, and lithium silicate.
Our products are meticulously crafted to meet the diverse needs of various industries, including construction, agriculture, and manufacturing. With state-of-the-art production facilities and a commitment to excellence, we ensure superior product quality and customer satisfaction.
We pride ourselves on our innovative solutions, competitive pricing, and reliable delivery services. Partner with us for your silicate needs and experience the difference that expertise and dedication can make. Let’s build a sustainable future together.
If you have any questions, please feel free to contact us(nanotrun@yahoo.com).
Payment Methods
T/T, Western Union, Paypal, Credit Card etc.
Shipment Methods
By air, by sea, by express, as customers request.
5 FAQs of Solid Sodium Silicate Liquid Sodium Silicate Sodium Silicate for High Temperature Resistant Materials
Solid sodium silicate and liquid sodium silicate are key materials for high-temperature applications. Below are answers to common questions. What is solid sodium silicate? Solid sodium silicate is a compound made from silicon dioxide and sodium oxide. It appears as a glassy solid or white powder. It acts as a binder in materials needing heat resistance. It binds particles tightly, creating strong structures stable under extreme heat.
How is liquid sodium silicate different? Liquid sodium silicate is the solid form dissolved in water. It works like the solid version but is easier to apply. It spreads evenly on surfaces or mixes into materials. Once water evaporates, it hardens, forming a heat-resistant layer. This makes it useful for coatings or adhesives in high-temperature settings.
Why does sodium silicate resist high temperatures? Sodium silicate has a high melting point, around 1,000°C. When heated, it forms a stable silicate layer. This layer blocks oxygen and heat from damaging the material underneath. It slows down breakdown processes, making it reliable for prolonged high-heat use.
Where is sodium silicate used for heat resistance? It is common in industrial linings, like furnace walls or kiln insulation. It strengthens ceramic molds in metal casting. It coats metal parts to prevent corrosion from heat. It seals joints in engines or pipes exposed to hot gases or fluids.
Is sodium silicate safe for high-temperature materials? Sodium silicate is non-toxic but requires careful handling. The solid form can irritate skin or eyes. Wear gloves and goggles. The liquid form is less risky but still needs ventilation during application. Store solid sodium silicate in dry areas to prevent clumping. Avoid mixing liquid sodium silicate with acids unless specified.

(Solid Sodium Silicate Liquid Sodium Silicate Sodium Silicate for High Temperature Resistant Materials)
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