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Introduction to Premium 95% High-Purity Alumina Aluminum Oxide Ingot for Industrial Use
Alumina ceramics are known for their high hardness, wear resistance, corrosion resistance, good electrical insulation and high temperature stability. According to the different alumina content, it can be divided into different grades, such as 95 porcelain, 99 porcelain, etc., among which 99 porcelain refers to ceramic materials with an alumina content of 99%. As the alumina content increases, its mechanical strength and electrical insulation properties will also increase accordingly.
Characteristics of Premium 95% High-Purity Alumina Aluminum Oxide Ingot for Industrial Use
High Hardness: Alumina ceramics have extremely high hardness, which makes it very wear-resistant and suitable for manufacturing abrasive tools and parts that require wear resistance.
Wear resistance: Due to its high hardness, alumina ceramics show excellent wear resistance and are suitable for manufacturing parts for long-term use.
Corrosion resistance: Alumina ceramics have good resistance to most acids and alkalis, making them widely used in the chemical industry.
Good electrical insulation: As an excellent electrical insulating material, alumina ceramics are widely used in electronic and electrical products.
High temperature stability: Ability to withstand extremely high temperatures without significant physical or chemical changes, which makes it an ideal choice for applications in high temperature environments.
Biocompatibility: In the medical field, certain grades of alumina ceramics are used to make medical devices such as artificial joints due to their good biocompatibility.

(Premium 95% High-Purity Alumina Aluminum Oxide Ingot for Industrial Use)
Specifications of Premium 95% High-Purity Alumina Aluminum Oxide Ingot for Industrial Use
This Premium 95% High-Purity Alumina Aluminum Oxide Ingot offers industrial users a reliable, high-performance material. It is primarily aluminum oxide (Al₂O₃) with a guaranteed minimum purity of 95%. This high purity level is crucial for demanding applications. The ingot form makes it easy to handle and process.
The material possesses excellent physical properties. Its density is high, around 3.95 g/cm³. This contributes to its strength and durability. The melting point is extremely high, above 2050°C. This allows the ingot to withstand intense heat without degrading. It is also very hard, similar to sapphire. This hardness provides great wear resistance.
Chemically, this alumina ingot is highly stable. It resists attack from most acids and alkalis very well. This stability ensures long service life in corrosive environments. Thermal conductivity is moderate. Electrical insulation properties are outstanding. It acts as an excellent barrier against electric current.
People use this premium alumina ingot for many critical industrial jobs. It is perfect for making wear-resistant parts like liners and seals. It serves as feed stock for producing high-performance ceramics. It is essential in manufacturing refractory products for furnaces and kilns. The electronics industry uses it for insulating components. It is also vital in creating specialized abrasives and grinding media.
The ingots are supplied ready for industrial use. They come packed securely in robust containers. This packaging protects the material during transport and storage. Each ingot meets strict quality control standards. This ensures consistent performance batch after batch.

(Premium 95% High-Purity Alumina Aluminum Oxide Ingot for Industrial Use)
Applications of Premium 95% High-Purity Alumina Aluminum Oxide Ingot for Industrial Use
Premium 95% high-purity alumina aluminum oxide ingots serve vital roles across many industries. Factories rely on this material because it is incredibly hard. Grinding wheels and cutting tools use it as abrasive grains. These tools shape metal, stone, and other tough materials effectively. Its hardness ensures long-lasting performance.
This alumina also handles extreme heat extremely well. It forms essential parts inside furnaces and kilns. Crucibles hold molten metal without melting. Thermocouple tubes protect sensors in hot environments. Kiln furniture supports items during high-temperature firing. These parts last longer under intense heat.
The electronics industry needs this high-purity alumina. It acts as an insulator in critical components. Substrates provide a stable base for microchips. Insulating housings protect sensitive electronic parts. Its electrical resistance and thermal stability are perfect for circuits.
Ceramic manufacturing benefits greatly too. Producers add this alumina to advanced ceramics. It boosts strength and wear resistance significantly. Technical ceramics become much tougher for demanding jobs. Wear-resistant liners in machinery use it. Cutting tools gain enhanced durability. High-performance seals and bearings incorporate it.
Chemical processing plants use alumina components. Its resistance to strong chemicals prevents corrosion. Pump parts, valve seats, and reactor linings withstand harsh acids and bases. This reduces downtime and maintenance costs.
The material supports thermal management systems. Its low thermal conductivity makes excellent insulators. Heat sinks and insulating components control temperature in equipment. This ensures stable operation.
Factories choose premium 95% alumina ingots for reliable performance. They offer consistent quality crucial for industrial processes. Manufacturers trust this material for critical applications demanding hardness, heat resistance, and chemical stability.
Company Introduction
Advanced Ceramics founded on October 17, 2014, is a high-tech enterprise committed to the research and development, production, processing, sales and technical services of ceramic relative materials and products.. Since its establishment in 2014, 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 Silicon carbide ceramic products, Boron Carbide Ceramic Products, Boron Nitride Ceramic Products, Silicon Carbide Ceramic Products, Silicon Nitride Ceramic Products, Zirconium Dioxide Ceramic Products, Quartz Products, etc. Please feel free to contact us.

Payment Methods
T/T, Western Union, Paypal, Credit Card etc.
Shipment Methods
By air, by sea, by express, as customers request.

5 FAQs of Premium 95% High-Purity Alumina Aluminum Oxide Ingot for Industrial Use
What makes 95% purity important?
High purity matters most. It ensures consistent performance. Impurities can cause problems. They weaken the material. They make it less reliable under stress. 95% purity offers excellent strength. It provides very good chemical resistance. This is vital for tough industrial jobs.
How well does it handle heat?
This alumina ingot handles extreme heat superbly. It withstands temperatures over 1700°C easily. It keeps its shape and strength. It doesn’t soften or melt. This makes it perfect for furnace parts. Kiln linings need this. Crucibles for melting metals use it too. It handles sudden temperature changes well.
What sizes and shapes are available?
Standard ingots are common. They look like thick blocks or rods. Typical sizes exist. Widths are often 50mm to 100mm. Lengths are usually 100mm to 300mm. Thickness varies too. Custom sizes are possible. Manufacturers can make specific shapes for your machines.
Is it safe to handle?
Yes, it is generally safe. It’s chemically stable. It doesn’t react easily with most things. It’s non-toxic under normal use. Wear gloves when handling rough pieces. Wear a dust mask if cutting or grinding it. Fine dust isn’t good to breathe. Store it securely. Keep it away from strong acids or alkalis.
Why choose your supplier?
We focus on reliable quality. Every batch meets the strict 95% purity standard. We test rigorously. We supply consistent dimensions. Our production process is controlled tightly. We understand industrial needs. We offer dependable delivery. We provide proof of our material specs.

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