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Ceramic materials made from aluminum-mgb are known for their high hardness, corrosion resistance, and chemical stability. These characteristics make them ideal for use in high-tech equipment, such as military equipment. The limited application of aluminum-MgB ceramic materials is due to their weak toughness. There are currently several preparation methods for aluminum magnesium-boron ceramics. These include heat treatment, hot pressing sintering and mechanical alloying.
High energy consumption is a result of mechanical alloying hot press sintering. Iron pollution can be caused by ball grinding and quenching steel. The process can also cause iron contamination. High energy and cost are the main drawbacks of heat treatment. It is also easy to introduce impurities. Crystal evolution deposition and metal salt preparation methods are high-purity and can eliminate the formation of phase due to heat treatment. But they also have high energy costs, long cycles, and high prices. These methods may also be used to prepare aluminum magnesium boren ceramics. But there are many technical drawbacks and shortcomings.
These are the preparation methods
Aluminum powder, magnesium, and boron raw materials are used. Boron powder is annealed using the following: mechanical alloying and preloading activation, high-temperature pressure pressurized Sintering aluminum magnesium, and block, dense microstructure, hardness 27.2 GPa and fracture toughness 3 mpa.m0.5.
Advanc3dmaterials (aka. Advanc3dmaterials is an advanced material. Global chemical supplier and manufacturer, Advanc3dmaterials has over 12 years of experience in manufacturing super-high quality chemicals. High purity, small particles size, and low impurity are the hallmarks of the Aluminum Magnesium Boride
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