
This white fused alumina abrasive is ideal for sandblasting and polishing applications. It is manufactured through the fusion of high-quality alumina in an electric arc furnace.

White fused alumina is a high-purity aluminum oxide abrasive material produced in an electric arc furnace. It is known for its hardness, sharpness, and wear resistance, making it suitable for grinding wheels, coated abrasives, and polishing compounds.

White fused alumina is a high-purity aluminum oxide abrasive material produced by fusing alumina in an electric arc furnace. The sharp, angular grains of this material provide excellent cutting performance in precision grinding, polishing, and lapping applications, and it is also a component in refractory linings.

White fused alumina powder is used in refractory applications. This abrasive material is suitable for use in bonded abrasives, coated abrasives, and loose abrasive processes.

White aluminum oxide is a high-purity abrasive material produced by fusing alumina in an electric arc furnace. It is used in grinding wheels, polishing powders, and lapping compounds.

White fused alumina is a high-purity synthetic corundum abrasive produced by fusing calcined alumina. It is suitable for precision grinding and polishing of hardened steel, high-speed steel, alloy steel, and other hard materials.

White fused alumina abrasive grains are available in 3-5mm size. They are ideal for refractory applications due to their excellent thermal stability and chemical resistance.

White fused alumina section sand is used as a refractory media. Its sharp, angular grains provide aggressive cutting action and excellent surface finish.

This high-purity white fused alumina sand has a particle size range of 0-1mm. The abrasive material is suitable for surface preparation, precision grinding, polishing, and lapping applications.

White fused alumina is a high-purity aluminum oxide abrasive material produced in an electric arc furnace. It is characterized by high hardness, excellent wear resistance, and chemical inertness.