Iron Disilicide FeSi2 Powder CAS 12022-99-0

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Description

Iron Disilicide Properties
Other Names Iron disilicon; iron silicide
CAS No. 12022-99-0
Compound Formula FeSi2
Molecular Weight 112.02
Appearance Gray Black Powder
Melting Point N/A
Boiling Point N/A
Density 4.75 g/cm3
Solubility in H2O N/A
Exact Mass 111.888795
Iron Disilicide Health & Safety Information
Signal Word N/A
Hazard Statements N/A
Hazard Codes N/A
Risk Codes N/A
Safety Statements N/A
Transport Information N/A


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(Iron Disilicide FeSi2 Powder CAS 12022-99-0)

Overview of Iron Disilicide FeSi2 Powder       

Iron Disilicide (FeSi2) Powder is an inorganic compound powder composed of iron and silicon elements in a specific stoichiometric ratio. It is a dark powder that typically presents a metallic luster. FeSi2 powder has unique physical and chemical properties, including high hardness, high thermal stability, good chemical stability, and high melting point. These characteristics make it have broad application potential in multiple industrial fields.

As an important material, Iron Disilicide FeSi2 Powder plays an important role in scientific research and industrial production. It can maintain stability in high temperature environments, so it is widely used in situations that need to withstand high temperatures. In addition, FeSi2 powder also has good conductivity, making it have potential application value in the electronics and semiconductor industries. Although the specific application depends on specific engineering requirements and process conditions, the excellent performance of FeSi2 powder makes it a focus of attention for researchers and engineers in multiple fields. With the continuous progress of science and technology, Iron Disilicide FeSi2 Powder may show more application prospects in the future.

Features of Iron Disilicide FeSi2 Powder       

High hardness: FeSi2 powder has extremely high hardness, making it an ideal wear-resistant material in many industrial applications.

High thermal stability: FeSi2 powder can maintain its structure and performance stability at high temperatures, making it suitable for high-temperature working environments.

Good chemical stability: FeSi2 powder exhibits good stability towards many chemical substances and is not prone to chemical reactions.

High melting point: FeSi2 powder has a very high melting point, making it excellent heat resistance in high-temperature applications.

Excellent electrical performance: FeSi2 powder has good conductivity and is suitable for the electronics and semiconductor industries.

Easy to process: FeSi2 powder can be formed and processed through various processes, making it easy to produce parts of various shapes and sizes.

Application of Iron Disilicide FeSi2 Powder              

Semiconductor industry: FeSi2 powder can be used to manufacture thin films and coatings in semiconductor devices, improving their performance and stability.

Electronics industry: Due to its good conductivity and stability, FeSi2 powder can be used to manufacture electronic components and connectors.

High temperature coating: FeSi2 powder can be used as a high-temperature coating material to improve the wear resistance and corrosion resistance of metal surfaces.

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Application of Iron Disilicide FeSi2 Powder 

Ceramic industry: FeSi2 powder can be used for the manufacturing of ceramic products, increasing the hardness and heat resistance of ceramics.

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Application of Iron Disilicide FeSi2 Powder 

Metallurgical industry: In the metallurgical industry, FeSi2 powder can be used as an alloy additive to improve the properties of metal materials.

Aerospace: Due to its excellent high-temperature performance and chemical stability, FeSi2 powder has potential application value in high-temperature components and coatings in the aerospace field.

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Application of Iron Disilicide FeSi2 Powder 

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Company Profile

NANOTRUN(www.rboschco.com) is a trusted global chemical material supplier & manufacturer with over 12-year-experience in providing super high-quality chemicals and nanomaterials, including boride powder, nitride powder, graphite powder, sulfide powder, 3D printing powder, etc.

The company has a professional technical department and Quality Supervision Department, a well-equipped laboratory, and equipped with advanced testing equipment and after-sales customer service center.

If you are looking for high-quality Iron Disilicide FeSi2 Powder, please feel free to contact us or click on the needed products to send an inquiry. 

Payment Term

L/C, T/T, Western Union, Paypal, Credit Card etc.

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Shipment Term

By sea, by air, by express, as customers request.

FAQ

Q1

What is the chemical formula of Iron Disilicide?

Answer : The chemical formula of Iron Disilicide is FeSi2. It represents a compound consisting of iron and silicon atoms in a specific stoichiometric ratio.

Q2

What are the primary properties of Iron Disilicide FeSi2 Powder?

Answer : Iron Disilicide FeSi2 Powder exhibits several key properties including high hardness, high thermal conductivity, and good chemical stability. It also has a high melting point, making it suitable for high-temperature applications.

Q3

How is Iron Disilicide FeSi2 Powder typically produced?

Answer : Iron Disilicide FeSi2 Powder is typically produced through a reaction between iron and silicon at high temperatures. This reaction can be achieved in a controlled environment, such as a furnace, to ensure the desired stoichiometric ratio and purity of the resulting powder.

Q4

In which industries is Iron Disilicide FeSi2 Powder commonly used?

Answer : Iron Disilicide FeSi2 Powder is commonly used in various industries such as electronics, semiconductors, and metallurgy. It is employed as a material for coatings, thin films, and high-temperature applications due to its unique physical and chemical properties.

Q5

What are the safety considerations when handling Iron Disilicide FeSi2 Powder?

Answer : When handling Iron Disilicide FeSi2 Powder, it is important to consider its potential hazards. The powder should be stored in a well-ventilated area, avoiding dust accumulation. Additionally, it should be handled with gloves and protective eyewear to prevent inhalation or contact with skin. Since it has a high melting point, it can pose a risk of thermal injury if exposed to excessive heat. Therefore, care should be taken when handling and disposing of this material.

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