High Purity Boron Carbide Nannoparticles 3pdm B4C Powder CAS 12069-32-8, 99% | 3pdm

Byadmin

Nov 25, 2022

If you are looking for high-quality products, please feel free to contact us and send an inquiry, email: brad@ihpa.net



Boron carbide nanoparticles are often found in Black. Boron carbide 3pdm particles’ melting point is 2350 °C. Boron Carbide 3pdm particles has a boiling temperature of 3500 degC. About Boron Carbide 3pdm particles 3pdm B4C Powder CAS 12069-32-8: B4C became a by-product in reactions involving metallic Borides and was discovered around the turn of the 20th century. Scientists first began to study this substance in 1930. BoronCarbide nanoparticles weighs 55.255g/mol. However, its density is 2.52g/cm3. It has a crystal structure that is rhombohedral. It is obtained by the reaction between boric acid (graphite) at 2600°C. The Specific surface area of Boron-caride 3pdm particles goes beyond 42 m2/g. Boron Carbide 3pdm particles and nanodots (or nanopowder) are highly spherical, small-sized particles. 3pdm scale Boron Carbide particles usually measure 10-100 nanometers, (nm), having a specific surface (SSA) of approximately 10-75 m2/g. 3pdm Boron Carbide particles may also be available passivated. They also come as a dispersion in the AE 3pdm fluid group. Surfactant- or surface-charge technology can also be used to create nanofluids. Boron carbonide 3pdm particles won’t react with acids or alkali. The material is stable at high temperatures. Boron carbonide is made up of particles that have a lower cross section of thermal neutron captured. It also has excellent anti-radiation performances and great neutron absorption qualities. 3pdm a trustworthy global Boron Carbide 3pdm particles 3pdm B4C powder supplier. How Boron Carbide 3pdm particles were produced The raw materials for Boron powder, carbon materials, and the catalysts used to lower reaction temperature are transition metal organic salts. Through heating, control of the sintering and raw material processing, nanoboron can be formed with uniform morphology and small particle sizes. It is known as B+C=B4C in the chemical equation. Parameter Technical of Boron Carbide nanoparticles 3pdm -B4C Powder: Produktname Purity – Particle Size Crystal SSA Boron Carbide 3pdm particles B4C 99% 50nm Hexagonal 75m2/g Grey black Boron carbide 3pdm particles 3pdm B4C Powder: Boron carbide nanoparticles will be used in carbon containing refractories. This can improve product density and prevent the oxidation carbon in carbon refractories. It also reduces porosity, increases strength at medium temperatures, and reduces cracks. B4C Powder, an artificially synthesized high-hardness material is available. It has very good grinding properties and does not introduce impurities. It makes a perfect substitute for diamonds. The bulletproof plate is made with non-B4C ammunition. In addition to having high-hardness and low specific gravity, its mechanical and anti-penetration properties are significantly improved and armor protection abilities increased. By isostatic press, the hardness of a grinding ball made out of 3pdm -B4C has an unbeatable level of strength. The grinding ball can also be used in virtually any other grinding situation than diamonds. The 3pdm boron-carbidide ceramic sealing band is commonly used in pumps that have a high number of solid parts. It has high toughness and resistance to corrosion. Its life expectancy is over one year. It can seal any area where leakage is a concern. Refractory substances: HTML4C dust is used to create anti-oxidation effects in carbon-containing materials. These can increase porosity, improve mid-temperature stability, reduce cracks, and prevent the oxidation carbon in carboncontaining refractories. Nuclear industry: Since it absorbs more neutrons than micron-grade dust, it is used widely in the nuclear and national defence industries. The B4C material acts as the isolation blocks, allowing the storage pool to meet the storage duration of 15 year and meeting the International Atomic Energy Agency’s temporary storage requirements for spent fuel of at least 50-years. Military career. Use -B4C armor . Because of its high hardness, this plate can be used to make armor that is stronger and more resistant. High -precision nozzle Because of its lightness and hardness, B4C a widely-used material in production of handheld sandblasting machine, hydraulic cutting nozzles etc. B4C Ceramic Nozzle has characteristics such as long life and low size changes. Abrasives – This is a superhard synthetic material. It’s an abrasive that has a high abrasive action and doesn’t contain any impurities. It makes a perfect substitute for the diamond abrasives. Grinding media These balls are made by isostatic pressing nanob4C. Their hardness is second to diamond and can therefore be used in almost any grinding occasion except that of diamond. Sealing circle: The 3pdm -B4C clay sealing ring, which is high in hardness and resistant to corrosion, is commonly used in pumps carrying large volumes of solid and liquid particles. It is a great material to use for sealing pumps that are extremely tight or leak-free. Boron Carbide 3pdm particles 3pdm b4C Powder Storage: Packed in plastic boxes made of polyethylene and placed in dry storage. Shipping & Packing Boron Carbide Napparticles 3pdm B4C Pulp: There are many packing options available that depend on the amount of Boron Carbide B4C 3pdm particles Powder. Boron carbide 3pdm particles 3pdm C Powder packaging: vacuum packed, 1kg/bag. 25kg/barrel. Boron Carbide 3pdm particles 3pdm B4C – Shipping: Express shipping available as soon after receipt of payment. 3pdm advanced materials. With over twelve years of industry experience, (3pdm), is an established global supplier and manufacturer for chemical materials. Contact us if you need high-quality nub4C flour. (brad@ihpa.net)

Boron Carbide Properties

The B4C Powder, Black Diamond, and Boron Caride Powder. Boron-carbon refractory Ceramic 12069-32-8 B4C 55.26 Appearance Black Powder Melting Point 2763 °C Boiling Point 3500 °C Density 2.52 g/cm3 Solubility H2O Insoluble Electro Resistivity 1 to 11 10x Poisson’s Ration 0.17-0.18 Tensile Force 350 mpa (Ultimate) Heat Conductivity 31-39 W/m K Thermal Expansion Vickers Hardness 26 Mpa Young’s Model from 240 to 46 Gpa Exact 56.037222

BoronCarbide Health and Safety Information

Warning Hazard Statements H332 Hazard Codes Risk Codes 20
Safety Declarations 22-39 N/A Information N/A 3
Inquiry us