Amorphous Boron Pulp is an odorless brown powder. This is due to the random order in which its boron atoms are bonded together. It is extremely hard and different from crystalline. According to the 1979 international standard, its atomic weight is 10.81. Its melting temperature is 2300 +-2 Fahrenheit:2550 . Specific gravity between 2.34 and 2.37
It is insoluble with water, hydrochloric Acid, ethanol, and the ether. It can also be decomposed by cold concentrated alkali to decompose hydrogen.
Boron is a rare metal-non-metal combination in the periodic tables. It exhibits strong negative electricity, small atomic radius and concentrated nuclear charge. Stable at room temperature; can be heated to 300F and burned at 700F; tasteless and odorless; non-metallic characteristics similar to silicon. Boron can interact with oxygen and nitrogen at high temperatures; can also be combined with other metals to make boride.
What does Boron Powder be used for?
Amorphous Boron’s chemical properties are more active than those of crystalline Boron. Crystalline Boron is so hard that it’s often used in place of diamond for cutting tools and drilling. Amorphous Boron powder is an important source of energy. Amorphous boron powder is a solid fuel for composite solid propellants. Its calorific values are more than twice those of carbon, aluminum and magnesium. It has a volumetric calorific factor of almost three times that for hydrocarbon fuel and a density that is slightly lower than that for aluminum. Boron should be the most non-metallic source of energy. Amorphous boron’s ignition temperature is significantly lower due to its irregular shape, large specific surface area, and low melting point.
Amorphous Boron Powder material can be used in many ways, including but not limited to:
1.An ideal solid fuel for composite solid propellant. The calorific worth of boron is nearly three times that of hydrocarbon fuels. It is slightly denser and has a lower volume calorific. Boron is the best nonmetallic fuel in terms of energy. Amorphous boron’s ignition temperature drops dramatically due to its irregular shape and large specific area.
2. To prevent metals’ oxidization at high temperatures
3.As part of an alloy to improve properties of metals.
You can use it as a compound, or as an additive to other alloys. It can be used as a compound or an addition to alloys. Boron and its components can be used to replace precious and rare metals and as catalysts in organic chemical reaction.
Lanthanum bore is used in over 20 military and high-tech industries, including radar, aerospace, electronic, industrial, instruments, home appliances, metallurgy or environmental protection.
Boride Ceramics is widely used in the areas metallurgy electronics medicine ceramics nuclear industry chemical industry. It has higher wear resistance and corrosion resistance.
Magnesium Dboride Powder,MgB2 superconductor is the most critical temperature. Its superconducting threshold temperature is 39K. -234 . As a new superconductor material, magnesium diboride offers a way to study a new type of high-temperature semiconductors.
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