Tag: Boron Carbide Powde

The Applications of Boron Carbide Powder

Overview of Boron Carbide powder Boron carbide It is low in density and strong, has good high temperature stability, chemical stability, as well as good strength. It is therefore widely used in wear-resistant material, ceramic reinforcement phases and lightweight armor. Boron carbide has a lower cost of production than diamond and cubic-boron nitride. This makes it more popular. It is sometimes used in place of expensive diamonds for polishing and grinding, drilling, etc.
B4C powder features high purity, low particle size distribution and a large specific surface area. B4C powder can be described as a synthetic superhard materials with a hardness level of 9.46, a microhardness range of 56-6200Kg/mm2, an average of 252g/cm3, a melting point at 2250 degrees Celsius and a ratio of 2.52g/cm3.
Chemical properties, non-magnetic. High temperature and low temperature resistance. Strong acid. Strong alkali. Boron carbide has the ability to absorb neutrons, emits no harmful radiation and is not subject to secondary radiation pollution. It is less hard than diamond. Boron carbide, one of the most stable acids, is stable in all concentrated and dilute acid solutions. Boron carbonide is stable at 800 degrees Celsius in an ambient air temperature. The boron dioxide, which is the result of oxidation at high temperatures, is lost in gas phase. This makes it unstable and oxidizes to carbon dioxide and/or boron trioxide.
Boron carbide absorbs a large amount of neutrons and does not form radioactive isotopes. It is a great neutron absorber for nuclear power stations. It is used to control nuclear fission’s rate. Nuclear reactors use Boron carbide. It is made into controllable rods but can also be powdered because of its larger surface area.
Boron Carbide B4C Powder Cas 12069-32-8
What are the potential applications Boron Carbide powder?
Control nuclear fission. It can absorb a large amount of neutrons without creating radioactive isotopes. It is a good neutron absorber to nuclear power plants. It is primarily used to control the rate at which nuclear fission takes place. The majority of Boron is made into controllable rods for nuclear reactors. However, the surface area increases can sometimes make it into powder.
Abrasive: Boron Carbide has been used for many years as a coarse abrasive. The powder is hard to use in artificial products because of its high melting points, but it can be melted into simple shapes. It can withstand high temperatures. Useful for polishing, grinding, drilling, drilling, and grinding hard materials, such as gems and cemented carbide.
Boron carbide is also a coating paint that can be used on warships and helicopters. The coating forms an overall defense layer and is light in weight.
Nozzle: Boron carbide can be used to make a spray gun nozzle for the ordnance business. Boron carbide is very hard and wear-resistant. It does not react to acid or alkali and can withstand high temperature/low temperatures and high pressure. Boron carbide is used to make metalborides and to smelt boron, sodium-boron and boron alloys.
Boron Carbide powder supplier
Tech Co., Ltd. () is a professional carbide powder Over 12 years’ experience in chemical products development and research. We accept credit cards, T/T and West Union payments. We will ship goods overseas via FedEx, DHL and by air or sea to our customers.
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Overview of Boron Carbide powder Boron carbide It is low in density and strong, has good high temperature stability, chemical stability, as well as good […]

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Industrial Preparation Method of Boron Carbide Powder

What is boron caride?

Boron carbide, also called black diamond, an inorganic substance has a chemical composition of B4C. It is typically gray-black micropowder. It is second only behind diamond and cubicboron nitride as the third hardest material known. It is used for bulletproof vests, tank armour, and many other industrial applications. Its Mohs hardness (about 9.5) is approximately. Boron carbide, an important engineering ceramic material, is also available. It is the third-hardest material, second only to cubic boron nutride and diamond. Boron carbide has excellent neutron absorption and high wear resistance. It also has chemical stability. These properties play an important part in the military, civil, and aerospace fields.

These are the most common industrial preparation methods for boron caride

Special ceramics have been the focus of major industrial nations in recent years. They have created a worldwide “ceramic fever” by investing a lot of time and effort into their development and research. Based on the reaction principles, raw material and equipment used in synthesis of Boron Carbide Powder, the industrial preparation methods include high-temperature self propagating synthesis, electric arc furnace carothermic reduction, chemical gasphase reaction method, gel carbothermic decrease method, and others.


Boron carbide is commonly produced in industrial settings using the carbothermal reduction melting method, which uses boric acid and carbon for raw materials. This method uses a lot of boric acids and is susceptible to impurities and high energy consumption. A low-energy version of this method has been developed. The synthesized method for boron carbide has a simple control of the particle size.


Tech Co., Ltd. is a Boron Carbide supplier. We have over 12 years of combined experience in chemical products development and research. We accept credit cards, T/T and Paypal payments. We will ship goods overseas via FedEx, DHL and by air or sea to our customers.

Send us an inquiry if you’re looking for B4C powder of high quality.

What is boron caride? Boron carbide, also called black diamond, an inorganic substance has a chemical composition of B4C. It is typically gray-black micropowder. It […]

Continue reading