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Application and preparation of boron carbide B4C powder

2021-11-19 09:16:12  News

Boron carbide properties

Boron carbide is a non-metallic material with important physical and chemical properties. After boron nitride, it is the hardest boron compound. Its high melting point, large neutron capture surface, low density, chemical inertness, and excellent thermal and electrical properties This makes boron carbide a new high-tech material. Boron carbide can also be added to alumina and silicon carbide ceramics, which can improve the fracture toughness of the material and increase its strength relatively; because boron carbide can also absorb a large amount of neutrons, so The application of boron carbide is more extensive.

Boron carbide is a high-temperature P-type semiconductor material. It has excellent properties such as strong hardness, low density, and high chemical inertness. At a high temperature of 1000C, it can react with metals such as Fe, Ni, Ti, and zr. In addition, due to the atomic It has a strong ability to absorb neutrons, so boron carbide has good applications in atomic physics and medicine. In addition, due to these properties, boron carbide has a wide range of applications in microelectronics, nuclear physics, military and space technology. application.

Application and preparation of boron carbide B4C powder

Boron carbide preparation

Boron carbide was first reported in the Journal of the American Chemical Society. It was obtained through the reaction of coke and boron oxide in an electric furnace. This preparation method is also the method currently used in industrial production.

2B2O3+7C=B4C+6CO

Overview of boron carbide B4C powder

Boron carbide has the characteristics of low density, high strength, good high temperature stability, and good chemical stability. Therefore, it is widely used in wear-resistant materials, ceramic reinforcement phases, especially lightweight armor, reactor neutron absorbers, etc. In addition, compared with diamond and cubic boron nitride, boron carbide is easy to manufacture and low in cost, so it is more widely used. In some places, it can replace expensive diamonds, usually used for grinding, grinding, drilling, etc.

B4C powder has the characteristics of high purity, small particle size distribution, and large specific surface area. B4C powder is a synthetic superhard material with a hardness of 9.46; a microhardness of 56-6200Kg/mm2, a ratio of 252g/cm3, and a melting point of 2250 degrees Celsius.

Application of boron carbide B4C powder

Control nuclear fission

Boron carbide can absorb a large number of neutrons without forming any radioactive isotopes. It is an ideal neutron absorber for nuclear power plants. The neutron absorber mainly controls the rate of nuclear fission. Boron carbide is mainly made into controllable rods in the field of nuclear reactors, but sometimes it is made into powder due to the increase in surface area.

During the Chernobyl nuclear accident in 1986, Russia dropped nearly 2,000 tons of boron carbide and sand, which ultimately prevented the chain reaction in the reactor.

Abrasive

Because boron carbide has long been used as a coarse abrasive. Because of its high melting point, it is not easy to cast into artificial products, but it can be processed into simple shapes by smelting the powder at high temperature. Used for grinding, grinding, drilling and polishing hard materials such as cemented carbide and gemstones.

coating

Boron carbide can also be used as a ceramic coating for warships and helicopters. It is light in weight and has the ability to resist the penetration of the hot press coating by the armor-piercing projectile, forming a complete defense layer.

nozzle

In the munitions industry, it can be used to make gun nozzles. Boron carbide, extremely hard and wear-resistant, does not react with acid and alkali, high and low temperature resistance, high pressure resistance, density ≥2.46g/cm3; microhardness ≥3500kgf/mm2, bending strength ≥400MPa, melting point 2450℃.

Because the boron carbide nozzle has the above-mentioned characteristics of wear resistance and high hardness, the boron carbide sandblasting nozzle will gradually replace the known sandblasting nozzles such as cemented carbide/tungsten steel and silicon carbide, silicon nitride, alumina, and zirconia.

other

Boron carbide is also used in the manufacture of metal borides, smelting sodium boron, boron alloys and special welding.

Price of boron carbide B4C powder

The price of boron carbide B4C powder will vary randomly with factors such as production costs, transportation costs, international conditions, exchange rates, and market supply and demand of boron carbide B4C powder. Tanki New Materials Co., Ltd. aims to help various industries and chemical wholesalers find high-quality, low-cost nanomaterials and chemicals by providing a full set of customized services. If you are looking for boron carbide B4C powder, please feel free to send an inquiry to get the latest price of boron carbide B4C powder.

Supplier of Boron Carbide B4C Powder

As a global boron carbide B4C powder supplier, Tanki New Materials Co., Ltd. has extensive experience in the performance, application and cost-effective manufacturing of advanced engineering materials. The company has successfully developed a series of powder materials (titanium diboride, silicon hexaboride, molybdenum boride, iron boride), high-purity targets, functional ceramics and structural devices, and provides OEM services.

Boron Carbide Properties
Other NamesB4C, B4C powder, black diamond, boron carbide powder,
boron-carbon refractory ceramic
CAS No.12069-32-8
Compound FormulaB4C
Molecular Weight55.26
AppearanceGray to Black Powder
Melting Point2763 °C
Boiling Point3500 °C
Density2.52 g/cm3
Solubility in H2OInsoluble
Electrical Resistivity0 to 11 10x Ω-m
Poisson's Ratio0.17-0.18
Tensile Strength350 MPa (Ultimate)
Thermal Conductivity31 to 90 W/m-K
Thermal Expansion4.5 to 5.6 µm/m-K
Vickers Hardness26 Mpa
Young's Modulus240 to 460 Gpa
Exact Mass56.037222
Boron Carbide Health & Safety Information
Signal WordWarning
Hazard StatementsH332
Hazard CodesXi
Risk Codes20
Safety Statements22-39
RTECS NumberN/A
Transport InformationN/A
WGK Germany3



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