High Purity Molybdenum Silicide MoSi2 Powder CAS 12136-78-6, 99.5%
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After Russia pledged to scale back its military operations around Kyiv and in northern Ukraine, the prices of most industrial metals fell, led by aluminum, showing people's concerns for supply shortage eased.
At an earlier time, the West imposed sweeping sanctions on Russia for its invasion of Ukraine, which aroused concerns about the supply problem because Russia is a major producer of nickel, aluminum, and copper.
Russia is also a major gas supplier to Europe, where potential supply disruptions are seen as hitting power-intensive aluminum and zinc MoSi2 Powder are still very uncertain.
About Molybdenum Silicide MoSi2 Powder:
MoSi2 is an intermetallic compound, molybdenum silicide is a refractory ceramic, mainly used for heating elements. It has a medium-density, a melting point of 2030 ° C, which is electrically conductive. At high temperatures, it forms a passivation layer of silica to protect it from further oxidation. The thermal stability of MoSi2 and the thermal stability of its high radiation make such materials and high radiation coatings in thermal shields from the atmosphere as they are used next to WSI2. MoSi2 is a material with a four-square crystal structure (α-modified) gray metal; its β-modification is hexagonal and unstable. It is insoluble in most acids but is dissolved in nitric acid and hydrofluoric acid.
Although MoSi2 has excellent oxidation and high Young's modulus at temperatures above 1000 ° C, it is brittle at lower temperatures. Moreover, at 1200 ° C or more, it will lose creep resistance. These properties are limited to their structural materials but can be shifted by using it as a composite with another material.
Molybdenum disilicide (MoSi2) is a promising candidate material for high-temperature structural applications. It is a high melting point (2030 C) material with excellent oxidation resistance and a moderate density (6.24 g/cm3). However, low toughness at low temperatures and high creep rates at elevated temperatures have hindered its commercialization in structural applications. Much effort has been invested in MoSi2 composites as alternatives to pure molybdenum disilicide for oxidizing and aggressive environments. Molybdenum disilicide-based heating elements have been used extensively in high-temperature furnaces. The low electrical resistance of silicides in combination with high thermal stability, electron-migration resistance, and excellent diffusion-barrier characteristics is important for microelectronic applications. Feel free to send an inquiry to get the latest price if you would like to buy Molybdenum Silicide MoSi2 Powder in bulk.
Characteristics of Molybdenum Silicide MoSi2 Powder:
Molybdenum silicide MoSi2 powder (CAS 12136-78-6) has high melting point, high corrosion resistance, high oxidation resistance, good electrical conductivity, high temperature ductility, a binary alloy system the intermediate phase, dual characteristics of metals and ceramics.
Technical Parameter of Molybdenum Silicide MoSi2 Powder:
Product Name |
MF |
Purity |
Particle Size |
Melting Point |
Density |
Color |
molybdenum silicide |
MoSi2 |
99% |
5-10um |
2030℃ |
6.24g/cm3 |
dark gray |
Chemical Composition of Molybdenum Silicide MoSi2 Powder:
MoSi2 |
Mo |
Si |
C |
S |
Fe |
S |
Ni |
>99% |
>60% |
balance |
0.2% |
0.02% |
0.19% |
0.015% |
0.05% |
How is Molybdenum Silicide MoSi2 Powder produced?
Molybdenum disilicide and MoSi2-based materials are usually made by sintering. Plasma spraying can be used to produce dense monoliths and composite forms. The material produced by this method may contain a certain proportion of β-MoSi2 due to its rapid cooling.
Applications of Molybdenum Silicide MoSi2 Powder:
Molybdenum disilicide heating elements can be used for temperatures up to 1800 ° C, in electric furnaces used in laboratory and production environment in the production of glass, steel, electronics, ceramics, and in heat treatment of materials. Molybdenum disilicide is used in microelectronics as A Contact Material.
Heating element
MoSi2 is a conductive silicide that has an oxidation property due to a stable silica layer on its surface at a high temperature.
Although the top MoSi2 element can operate at temperatures up to 1800 ° C, the material is very brittle, which may suffer serious creep during use. However, they have process advantages because they can work under high electrical loads without aging, and will not exhibit increased resistivity during use. They have antioxidant properties in air, oxygen and oxygen-rich atmosphere.
Moreover, they can be used with ammonia, nitrogen, hydrogen, a rare gas, and limited vacuum, but due to the failure of the protective oxide layer, the operating temperature and life can be reduced.
MoSi2 elements are ready-made elements and can be made into a bending or straight form of a variety of sizes. These elements are mainly used in production furnaces and laboratory furnaces in ceramics, glass, steel, electronics and heat treatment industries.
High-temperature structure
Amazingness and high-temperature elasticity make MoSi2 a very promising material for high-temperature applications such as gas turbine engines. Many researchers strive to improve high temperature creep resistance and low-temperature ductility. However, there are no commercially available composites with all preferred features.
SEM of Molybdenum Silicide MoSi2 Powder:
XRD of Molybdenum Silicide MoSi2 Powder:
Packing & Shipping of Molybdenum Silicide MoSi2 Powder :
We have many different kinds of packing which depends on the molybdenum silicide MoSi2 powder quantity.
Molybdenum silicide MoSi2 powder packing: vacuum packing, 100g, 500g or 1kg/bag, 25kg/barrel, or as your request.
Molybdenum silicide MoSi2 powder shipping: could be shipped out by sea , by air, by express as soon as possible once payment receipt.
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If you are looking for high-quality MoSi2 powder, please feel free to contact us and send an inquiry. ([email protected])
Molybdenum Silicide Properties
|
Other Names |
molybdenum disilicide, MoSi2 powder |
CAS No. |
12136-78-6 |
Compound Formula |
MoSi2 |
Molecular Weight |
152.11 |
Appearance |
Gray to Black Powder |
Melting Point |
1900-2050 °C |
Boiling Point |
N/A |
Density |
6.23-6.31 g/cm3 |
Solubility in H2O |
N/A |
Electrical Resistivity |
0.0000270 - 0.0000370 ohm-cm |
Specific Heat |
0.437 J/g-°C (23 °C) |
Tensile Strength |
185 MPa (Ultimate) |
Thermal Conductivity |
66.2 W/m-K (23 °C) |
Thermal Expansion |
N/A |
Vickers Hardness |
900-1200 |
Young's Modulus |
N/A |
Exact Mass |
153.859261 |
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Molybdenum Silicide Health & Safety Information
|
Signal Word |
Warning |
Hazard Statements |
H302-H312-H332 |
Hazard Codes |
Xn |
Risk Codes |
20/21/22 |
Safety Statements |
36 |
RTECS Number |
N/A |
Transport Information |
N/A |
WGK Germany |
3 |
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