CAS 12069-32-8
:Carburo de boro
Descripción:
Carburo de boro, con el número CAS 12069-32-8, es un compuesto covalente compuesto de boro y carbono, conocido por su excepcional dureza y propiedades ligeras. Es uno de los materiales más duros conocidos, ocupando un lugar justo debajo del diamante y el nitruro de boro cúbico en la escala de Mohs. Este compuesto generalmente aparece como un polvo negro o gris oscuro y tiene un alto punto de fusión, lo que lo hace adecuado para aplicaciones a altas temperaturas. Carburo de boro es químicamente inerte y resistente a la oxidación, lo que contribuye a su durabilidad en entornos hostiles. Se utiliza comúnmente en diversas aplicaciones, incluidos abrasivos, materiales de armadura y absorbentes de neutrones en reactores nucleares. Además, sus propiedades únicas lo hacen valioso en la producción de cerámicas avanzadas y materiales compuestos. La estructura de Carburo de boro es compleja, con una red tridimensional que contribuye a su resistencia mecánica y estabilidad. En general, Carburo de boro es un material versátil con aplicaciones industriales y tecnológicas significativas debido a su dureza, estabilidad térmica y resistencia química.
Fórmula:CB4
InChI:InChI=1/CB4/c2-1-3(2)5(1)4(1)2
SMILES:C123B4B1B3B24
Sinónimos:- 1500F
- B 4C-C1005
- Borcarbid
- Borcarbid HD 20
- Boron carbide (B0.8C0.2)
- Boron carbide (B12C3)
- Boron carbide (B4C)
- Boron carbide (B<sub>0.8</sub>C<sub>0.2</sub>)
- Boron carbide (B<sub>12</sub>C<sub>3</sub>)
- Boron carbide (B<sub>4</sub>C)
- Boron carbide (BC<sub>0.25</sub>)
- Carbure de bore
- Carburo De Boro
- Ceralloy 546-3E
- Db 1031J
- Denkaboron 1200
- Denkaboron 1500
- Denkaboron F 1
- Esk 1500
- F 1200
- F 1500
- F 220
- F 360
- F 60
- HS
- HS (carbide)
- Norbide
- Stark HS
- Tetrabor 1000
- Tetrabor 1500
- Tetrabor 500
- Tetraboron carbide
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Encontrado 13 productos.
Boron carbide
CAS:<p>Boron carbide is a hard boron-carbon ceramic material used in tank armor, bulletproof vests, engine sabotage powders, neutron absorber, cutting tools and dies and in brake linings of vehicles. It acts as an antioxidant additives in magnesia-carbon bricks. It is used as a precursor in the production </p>Fórmula:CB4Pureza:99+%Forma y color:Black, PowderPeso molecular:55.25Boron carbide, 90+%
CAS:<p>Boron carbide is a hard boron-carbon ceramic material used in tank armor, bulletproof vests, engine sabotage powders, neutron absorber, cutting tools and dies and in brake linings of vehicles. It acts as an antioxidant additives in magnesia-carbon bricks. It is used as a precursor in the production </p>Fórmula:CB4Pureza:90+%Peso molecular:55.25Boron carbide, 99+%
CAS:<p>This Thermo Scientific Chemicals brand product was originally part of the Alfa Aesar product portfolio. Some documentation and label information may refer to the legacy brand. The original Alfa Aesar product / item code or SKU reference has not changed as a part of the brand transition to Thermo Sci</p>Fórmula:CB4Pureza:99+%Forma y color:Dark grey or black, Powder, -325 meshPeso molecular:55.25Boron carbide
CAS:<p>This Thermo Scientific Chemicals brand product was originally part of the Alfa Aesar product portfolio. Some documentation and label information may refer to the legacy brand. The original Alfa Aesar product / item code or SKU reference has not changed as a part of the brand transition to Thermo Sci</p>Fórmula:CB4Forma y color:Powder, BlackPeso molecular:55.25Boron carbide
CAS:Fórmula:B4CPureza:≥ 99.0%Forma y color:Dark grey to black powderPeso molecular:55.26Boron carbide - 10um particle size
CAS:Producto controlado<p>Boron carbide is a hard, refractory material with high melting point. It is used in the production of ceramic and as a catalyst. Boron carbide has been shown to be effective in the treatment of wastewater due to its ability to adsorb organic matter and heavy metals. Boron carbide also has thermal expansion properties that make it suitable for use in various engineering applications. Boron carbide is composed of boron and carbon atoms, which interact through steric effects. The nitrogen atoms on the surface of boron carbide particles are responsible for its reactivity with other materials, such as silicon or zirconium oxide. The kinetic energy of the reaction mechanism can be determined by examining the surface methodology of boron carbide particles with a microscope.</p>Fórmula:B4CPureza:Min. 95%Peso molecular:55.25 g/molBoron carbide
CAS:Producto controlado<p>Boron carbide is a chemical compound that belongs to the group of borides. It is used as a solid catalyst in wastewater treatment, which can remove organic contaminants and heavy metals from water. Boron carbide has shown chemical stability when exposed to sodium citrate and it has a low thermal expansion coefficient. The surface properties of this material are characterized by high surface area and high reactivity, which make it suitable for sample preparation and transport. Boron carbide is also resistant to radiation and exhibits good structural stability in particle form. This material has been shown to catalyze reactions with zirconium oxide, but its reaction mechanism is not yet well understood.</p>Fórmula:B4CPureza:Min. 95%Peso molecular:55.25 g/molBoron carbide, powder, 99+%
CAS:Fórmula:B4CPureza:99+%Forma y color:-325 mesh gray to black pwdr.Peso molecular:55.26Boron carbide, 0.1-1.5 microns (99.9+%-B)
CAS:Fórmula:B4CPureza:(99.9+%-B)Forma y color:gray to black pwdr.Peso molecular:55.26







