Overview of 1800 grade 1700 grade Silicon carbide heating element
Silicon Carbide (SiC), also known as carborundum, is a synthetic ceramic compound made up of silicon and carbon atoms. Known for its exceptional hardness, thermal conductivity, and resistance to chemical reactions and wear, SiC is a versatile material widely used in high-performance applications that demand superior physical and electronic properties. Its unique crystal structure, which can exist in several polytypes, contributes to its multifaceted utility across various industries.
Features of 1800 grade 1700 grade Silicon carbide heating element
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Exceptional Hardness: Silicon carbide ranks just below diamond and boron carbide in hardness, making it an ideal abrasive material.
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High Thermal Conductivity: It is an excellent heat conductor, capable of dissipating heat rapidly, which is crucial for high-power electronic and semiconductor devices.
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Chemical Stability: Resistant to most acids, alkalis, and salt solutions, SiC maintains its properties even under harsh chemical environments.
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Wide Bandgap Semiconducting Material: As a wide bandgap semiconductor, it operates at higher temperatures and frequencies than conventional semiconductors like silicon.
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Mechanical Strength and Wear Resistance: Offers high mechanical strength and excellent wear resistance, suitable for mechanical seals, bearings, and pump components.
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Thermal Shock Resistance: Can withstand rapid temperature changes without cracking or degrading, important for applications involving cyclic heating and cooling.
(1800 grade 1700 grade Silicon carbide heating element)
Parameters of 1800 grade 1700 grade Silicon carbide heating element
The temperature coefficient of the silicon carbide heating element (SHEE) is typically measured in degrees Celsius per degree Celsius of change in temperature, denoted by T°C/W°C. The typical value for a silicon carbide HEA is around 435°C/W°C.
It’s important to note that the actual temperature coefficient may vary depending on factors such as humidity and the presence of impurities in the material. Additionally, someHEAs may have different specifications or performance characteristics based on their intended use in a particular application.
If you have specific questions about a particular SHEE or need information on its characteristics, I recommend consulting the manufacturer’s documentation or speaking with a professional who has experience working with similar HEAs.
(1800 grade 1700 grade Silicon carbide heating element)
Applications of 1800 grade 1700 grade Silicon carbide heating element
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Semiconductor Devices: Used in high-voltage, high-frequency, and high-temperature power electronics, such as MOSFETs, Schottky diodes, and power modules.
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Abrasive Materials: As an abrasive grain in grinding wheels, sandpapers, and cutting tools due to its hardness and wear resistance.
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Refractories and Furnace Linings: In high-temperature furnaces and kilns because of its outstanding thermal stability and resistance to corrosion.
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Ceramic Armor: In lightweight armor systems due to its combination of hardness, toughness, and low density.
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Chemical Process Equipment: For pumps, valves, and seals in corrosive chemical environments where metals would corrode.
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Wire Sawing: As the abrasive medium in wire saws for slicing silicon wafers in the semiconductor industry and gemstones.
Company Profile
MyCarbides is a trusted global chemical material supplier & manufacturer with over 12-year-experience in providing super high-quality carbides and relative products.
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 carbide materials and relative products, please feel free to contact us or click on the needed products to send an inquiry.
Payment Methods
L/C, T/T, Western Union, Paypal, Credit Card etc.
Shipment
It could be shipped by sea, by air, or by reveal ASAP as soon as repayment receipt.
FAQs of 1800 grade 1700 grade Silicon carbide heating element
Q: How is 1800 grade 1700 grade Silicon carbide heating element produced?
A: 1800 grade 1700 grade Silicon carbide heating element is primarily synthesized through the Acheson process, which involves heating a mixture of silica sand and carbon (usually in the form of coke) in an electric furnace at high temperatures.
Q: Is 1800 grade 1700 grade Silicon carbide heating element conductive?
A: Yes, 1800 grade 1700 grade Silicon carbide heating element is a semiconductor material with unique electronic properties, including high breakdown voltage and thermal conductivity, making it suitable for power electronics.
Q: Can 1800 grade 1700 grade Silicon carbide heating element be used in extreme environments?
A: Absolutely, SiC’s high temperature stability, resistance to radiation damage, and ability to withstand thermal shocks make it ideal for applications in space, nuclear reactors, and deep-well drilling.
Q: What gives 1800 grade 1700 grade Silicon carbide heating element its unique properties?
A: The covalent bond structure of 1800 grade 1700 grade Silicon carbide heating element, along with its tight crystal lattice, contributes to its hardness, high melting point, and resistance to wear and corrosion.
Q: Is 1800 grade 1700 grade Silicon carbide heating element biocompatible?
A: S1800 grade 1700 grade Silicon carbide heating element has been investigated for biomedical applications due to its biocompatibility, inertness, and durability, with potential uses in orthopedic implants and surgical instruments.
(1800 grade 1700 grade Silicon carbide heating element)