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    The Applications of Titanium Boride

    What is it? Titanium Boride ? Titanium boride powder, gray or gray-black in color, has a hexagonal crystal structure. It has a high hardness and a melting point of 2980degC. Titanium diboride can withstand 1000°C of oxygen and is stable in HCl or HF acids. Titanium diboride can be used to make composite ceramics. Because it is resistant to corrosion of molten steel, titanium diboride can be used for the manufacturing of molten metallic crucibles as well as electrolytic cell electrodes.
    These are the main features of Titanium Boride
    Titanium boride, TiB 2 It is the most stable of all boron compounds and titanium. It has a C32 structure and is bound using valence bond. It is a metallicloid compound in the hexagonal system. Its structural parameters are: a = 0.3028nm, and C = 0.3228nm. The crystal structure is made up of the titanium and boron atomic plans. This creates a two-dimensional network structure in which B and three other Bs are combined by covalent bonds. An extra electron creates a large p bond. The TiB's good electrical conductivity, metallic luster and graphite-like structure of boron atomic layers and Ti outer electrons are due to this graphite-like structure. 2 This material has high hardness and brilliance because of the Ti-B bonds between the titanium atomic plan and the boron plane.
    Titanium Boride Properties
    Other Titles TiB2, TiB2 powder, titanium boride powder
    No. 12045-63-5
    Combination Formula TiB2
    Molecular Weight 69.489
    Appearance Gray Powder
    Melting Point 2980 degC
    Boiling Point N/A
    Density 4.52 g/cm3
    Solubility of H2O N/A
    Thermal Expansion Code 8.1x10-6m/m.k
    Thermal Conductivity 25J/m.s.k
    Electrical Resistivity 14.4mO.cm
    Exact 69.96656 D
    Titanium Diboride TTB2 Powder CAS 1245-63-5
    Titanium Boride's applications
    1. Conductive ceramic material. It is the most important raw material of vacuum coating conductive evaporation boats.
    2. Use ceramic cutting tools and molds. It can make finishing tools, wire drawing and extrusion dies as well as sealing elements.
    3. Composite ceramic materials. It can be used in multi-component materials to form composite materials. It is also an excellent material to make armor protection materials.
    4. Aluminum electrolytic cells cathode coating material. The good wettability of TiB2 and molten steel makes it possible to use TiB2 as the aluminum electrolytic's cathode material. This will reduce power consumption and increase the battery life.
    5. It is used to make PTC heating ceramic material as well as flexible PTC materials. These materials have the advantages of being safe, reliable, efficient, and simple to process and mold. It is an upgraded high-tech product from various electric heating material.
    6. Good strengthening agent for metals like Al, Fe, Cu.
    High-quality Titanium Boride Supplier
    Luoyang Tech Co., Ltd. is a professional Boride powder Over 12 years experience in the development and research of chemical products. 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.
    You can find high quality amorphous powder boron at a great price by contacting us. Please contact us Send an inquiry




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    What is Molybdenum Carbide Mo2C Powder?

    Introduction to Molybdenum Mo2C Powder The molecular formula molybdenum carbide Mo2C is a Molecular Weight of 203.88 with a Carbon Content of 5.89%. It is a dark gray metallic dust that crystallizes into dense hexagonal lattices. It is 9.18g/cm3 in density and has a melting point at 2690.
    This new material is a type of functional material with high melting points and hardness, good mechanical and thermal stability, and good resistance to corrosion. It has been extensively used in various areas such as high-temperature resistance, friction resistance and chemical resistance.
    With similar electronic structure and catalytic properties to noble metals, it can be widely used as catalysts for reactions involving hydrogens, such as isomerization of alkanes, hydrogenation of unsaturated hydrocarbons, hydrodesulfurization, and denitrification. It is hard, durable, and resistant to abrasion. It is an important component of molybdenum-molybdenum carbide hard coating and other cermet coatings, and can also be used as wear-resistance and scratch resistance coating.

    Structure of Molybdenum Carbide Mo2C
    The interstitial structure of metallic carbides is generally accepted. Normal gap alloys have metal atoms arranged in various forms, including face-centered cubics (FCC), hexagonal dense pile (HCP), and simple hexagonal atoms (HEX). The spaces between the metal atoms allow for nonmetallic atoms to enter. The most common gap between metal atoms is the triangular prism or octahedral. Both electronic and geometrical factors influence the crystal structure for metallic carbides. Hagg's empirical rule can be used to describe the geometrical factors. A simple crystal structure is created when the atomic proportion of nonmetal metal to metal is below 0.59. While metallic carbides may have simple crystal structures but few compounds have the exact same crystal structure as their parent metals, it is interesting. The molybdenum-molybdenum metal, for example, has a body-centered cubic structure. However, its stable carbides, which have a hexagonal compact piling structure, and carbon dioxides, which have a face center cube structure. The electron factor is another factor that affects the crystal structure in gap alloys. The cooperation between the SP-D orbital and the nonmetallic orbitals of the metal atoms results in bonding.
    Molybdenum Carbide Mo2C Powder Properties
    Other Names dimolybdenum carbide
    No. 12069-89-5
    Formula compound Mo2C
    Molecular Weight 203.89
    Appearance gray powder
    Melting Point 2690
    Boiling Point N/A
    Density 9.18g/cm3
    Solubility of H2O Insoluble
    Exact Mass N/A
    Molybdenum Molybdenum Carbide Mo2C powder CAS 12069-89-5

    Molybdenum carbide Mo2C Powder: Applications
    1. Nano molybdenum carbonide can be used as a coating or as an additive. Additionally, it is used in the manufacture of particle reinforced alloys.
    2. Molybdenum carbide has an electronic structure and catalytic property similar to precious metals. This includes the catalytic activity for hydrogen denitrification, hydrolysis and isomerization reactions.
    Molybdenum carbide is in phase in many ways with platinum-group noble metallics. Molybdenum carbide's hydrogenation activity, which is comparable to Pt, Pd and other precious materials, is expected to replace precious metals.
    4, can produce chromium free special alloys and engineering ceramics. Useful for hard tool materials, wear-resistant material and heating materials, as well as high-temperature structures material.
    5, used in the production of the semiconductor film and wear-resistant films. It can also be used to make molybdenum caride. It can be used in the manufacture of special alloys and engineering clays without chromium.

    Molybdenum Carbide Mo2C Pulver is Main Supplier
    Technology Co. Ltd. is a trusted global supplier of chemical material and manufacturer. They have over 12 years experience in producing super high-quality chemicals, Nanomaterials, such as silicon powder.
    High-quality products are what you want Molybdenum Carbide Mo2C Mo2C Powder Please feel free and contact us to send an inquiry. (brad@ihpa.net)

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