The Applications of AlMgB14 Powder
Overview of AlMgB14 Pulver
Aluminum Boride or Al3Mg3B56
The compound of aluminum magnesium and boron, also known as BAM is commonly called. Its nominal molecular formula of AlMgB14 is not correct. However, it is close to Al0.75Mg0.75B14 in chemical composition. The ceramic alloy has an extremely high wear resistance and low sliding friction. This record-breaking value was 0.04 for the AlMgB14–TiB2 unlubricated composite material, and 0.02 with the AlMgB14–TiB2 lubricated composite material. In 1970, BAM reported the discovery. The orthogonal structure of the material is four-icosahedral, B12 unit cells. It has the same coefficient of thermal extension as other commonly used materials like concrete and steel.
AlMgB14, an aluminum-magnesium bore material with better abrasion resistance that diamond, is a brand new anti-degradation product. AlMgB14's density is 2.66g/cm3, which makes it much more dense than superhard materials like diamond and cubic-boron nitride. Also, the material will not react at high temperatures (up to 1300degC) with carbon steel, stainless and titanium alloys.
Aluminum Magnesium Boride BAM AlMgB14 Powder
What applications can AlMgB14 Powder be used for?
BAM can be purchased commercially and further research is underway to find potential applications. You can use BAM, or BAM+ TiB2 to improve wear resistance and reduce friction on the pumps' pistons, seals, and vanes. Energy consumption will be reduced by reducing friction. You can apply BAM to your cutting tools. Reducing friction reduces the amount of force necessary to cut objects, increases the speed and extends the life span of tools. A 2-to-3 micron thickness coating can improve efficiency and decrease tool wear.
The research area of superhard material is dominated by Ternary Boride AlMgB14 powder. This material has received a lot of attention in recent years from researchers both here and abroad. AlMgB14 superhard metal is an alternative to traditional metastable materials like diamond or cubic boron, nitride. It has a high hardness, low density, low friction coefficient and excellent thermoelectric properties.
AlMgB14, an aluminum-magnesium bore material with better abrasion resistance that diamond, is a brand new anti-degradation product. AlMgB14's density is 2.66g/cm3. This is lower than most superhard materials, such as diamond and cubic-boron nitride. Also, it will not react at high temperatures (up to 1300degC) with carbon steel, stainless and titanium alloys.
AlMgB14 aluminum–magnesium boreide has a higher electrical conductivity that other superhard materials. It is almost equivalent to polysilicon. AlMgB14 has a low price that is between 5 and 10 times those of cubic boron nuitride or diamond. AlMgB14's excellent properties are not just wearable.
You can use traditional skills, such as cutting and protective coating manufacturing, in more advanced fields like thermoelectric equipment and photodetectors.
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