Ceramic Tower Aluminum Oxide Al2O3 Porcelain Ball Inert Ceramic Ball

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Overview of Ceramic Tower Aluminum Oxide Al2O3 Porcelain Ball Inert Ceramic Ball

Ceramic Tower Aluminum Oxide Al2O3 Porcelain Ball Inert Ceramic Ball are one of the most widely used and versatile technical ceramics, prized for their excellent combination of properties. Composed primarily of aluminum oxide (Al₂O₃), they offer outstanding hardness, wear resistance, and electrical insulation, even at high temperatures. From low-purity grades for general industrial use to high-purity compositions for demanding applications, alumina ceramics provide a cost-effective and reliable solution across a vast range of industries.

Features of Ceramic Tower Aluminum Oxide Al2O3 Porcelain Ball Inert Ceramic Ball

  • High Hardness & Wear Resistance: Excellent resistance to abrasive wear, making it ideal for liners, nozzles, and guides.

  • Superior Electrical Insulation: Maintains high electrical resistivity and dielectric strength, even at elevated temperatures.

  • Excellent Thermal Stability: Withstands high operating temperatures and exhibits good thermal conductivity.

  • High Mechanical Strength: Possesses good compressive strength and stiffness.

  • Chemical Inertness: Resists corrosion from a wide range of acids, alkalis, and other harsh chemicals.

  • Cost-Effectiveness: A highly versatile and economically efficient ceramic material for numerous applications.

Specification of Ceramic Tower Aluminum Oxide Al2O3 Porcelain Ball Inert Ceramic Ball

Ceramic tower balls are necessary packaging products. They are made from state-of-the-art aluminum oxide, Al2O3. This product is likewise called alumina porcelain. These spheres are inert ceramic spheres. They chemically withstand most substances. They manage high temperatures quite possibly. They are very difficult and durable. Their primary task is supporting stimulant particles inside towers. They avoid smaller driver pellets from clogging or relocating. They assist spread out liquids and gases equally across the tower. This improves get in touch with effectiveness. Better call means much better chemical reactions or splitting up procedures.

These Al2O3 porcelain rounds come in different sizes. Typical sizes are 3mm, 6mm, 10mm, 13mm, 16mm, 20mm, 25mm, 30mm, 40mm, and 50mm. Dimension option depends on the tower style and driver size. They have high crush stamina. This means they stand up to breaking under heavy loads inside high towers. They have a really smooth surface area. This minimizes rubbing and dust generation. Low dirt maintains your procedure clean and efficient.

Trick requirements issue for performance. The alumina material is normally high, often 90% or more. This ensures chemical inertness and thermal stability. Bulk density is typically around 1.3 to 1.6 g/cm THREE. Water absorption is really reduced, normally less than 2%. This reveals their dense framework. They stand up to thermal shock effectively. They operate continuously at temperature levels exceeding 1000 ° C. Their high melting factor mores than 1700 ° C. Acid and alkali resistance is exceptional. This fits harsh chemical settings.

You find these balls in numerous industries. They are crucial in petroleum refining towers. They are critical in chemical handling plants. They function well in natural gas treatment systems. They are utilized in environmental management scrubbers. They function successfully in plant food production. They are reliable packing for purification columns. They act as support media in reactor beds. They are cost-efficient and resilient. They lower stress drop in towers. They boost overall process throughput and integrity.

Applications of Ceramic Tower Aluminum Oxide Al2O3 Porcelain Ball Inert Ceramic Ball

Ceramic tower rounds made from aluminum oxide (Al2O3) are essential packing product. These inert porcelain rounds go into chemical handling towers. They create a big surface inside the tower. This surface is essential completely get in touch with in between gases and liquids. The spheres aid separate different compounds efficiently.

These Al2O3 ceramic rounds take care of challenging problems. They resist strong acids and bases quite possibly. Heats don’t damage them. This makes them best for chemical plants and refineries. They function accurately in purification columns and absorption towers. The spheres make certain processes run smoothly.

The balls function as assistance media for stimulants. Drivers accelerate chemical reactions. The ceramic spheres hold the driver bits securely. They spread out the catalyst equally inside the activator. This even spread out makes reactions happen better. The rounds also quit driver pellets from damaging down. They safeguard the important driver material.

These ceramic balls separate liquids and gases properly. Their sizes and shape develop paths for fluids to stream. This circulation enhances blending. Better mixing indicates the process works more effectively. The rounds take care of liquid circulation well. They protect against transporting. Channeling decreases tower efficiency.

The rounds are extremely strong. They resist crushing under stress. They last a long time even in rough settings. This toughness saves money. Plants require less replacements. Downtime is reduced. The balls are a cost-efficient remedy. They preserve tower performance over years.

These Al2O3 spheres are utilized widely. Oil refineries require them for refining petroleum. Chemical factories use them to make plastics and plant foods. Ecological scrubbers utilize them to tidy exhaust gases. Water treatment plants use them as well. They are a vital component in several sectors. Their reliability is proven.

Company Profile

Tanki New Materials Co.Ltd. focus on the research and development, production and sales of ceramic products, serving the electronics, ceramics, chemical and other industries. Since its establishment in 2015, the company has been committed to providing customers with the best products and services, and has become a leader in the industry through continuous technological innovation and strict quality management.


Our products includes but not limited to Aerogel, Aluminum Nitride, Aluminum Oxide, Boron Carbide, Boron Nitride, Ceramic Crucible, Ceramic Fiber, Quartz Product, Refractory Material, Silicon Carbide, Silicon Nitride, ect. please feel free to contact us.

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T/T, Western Union, Paypal, Credit Card etc.

Shipment Methods

By air, by sea, by express, as customers request.

5 FAQs of Ceramic Tower Aluminum Oxide Al2O3 Porcelain Ball Inert Ceramic Ball

What are ceramic tower aluminum oxide porcelain balls?
These balls are small, hard spheres made from aluminum oxide. People call them inert ceramic balls. They do not react with most chemicals. Their main job is to support catalyst pellets inside big towers. They keep the catalyst from moving around too much or breaking.

What are these balls used for?
They go into chemical reactors and towers. They sit at the bottom and top of the catalyst bed. This creates a solid base. It spreads gases or liquids evenly across the catalyst. This makes the chemical reaction work better. They also stop smaller catalyst pieces from clogging the tower.

Why is aluminum oxide used?
Aluminum oxide is very strong. It can handle high heat and pressure inside reactors. It does not wear down easily. It stays stable even with harsh chemicals. This means the balls last a long time. They do not contaminate the process.

How are these balls made?
Manufacturers press very fine aluminum oxide powder into shapes. Then they fire it at very high temperatures. This process is called sintering. It makes the balls incredibly hard and dense. The surface becomes smooth. This smoothness helps liquids and gases flow past easily.

How do I choose the right size ball?
The size depends on your tower and catalyst. You need balls bigger than your catalyst pellets. This stops the catalyst from falling through. Look at the tower’s internal parts too. The balls must be larger than any holes or grids. Common sizes are 3mm, 6mm, 10mm, 13mm, or 20mm. Pick the size that fits your equipment best.

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