High-Quality Silicon Carbide Products | Advanced Ceramic Solutions
PRODUCT PARAMETERS
Description
Overview of Silicon Carbide Powder
Silicon carbide (SiC) powder is a high-performance ceramic material composed of silicon and carbon. Known for its exceptional hardness, thermal stability, and wear resistance, SiC powder is widely used in abrasives, cutting tools, refractory materials, and advanced technological applications like semiconductors and electric vehicle components.
Features of Silicon Carbide Powder
Exceptional Hardness: One of the hardest known materials, second only to diamond, making it ideal for abrasive and cutting applications.
Thermal Stability: High resistance to thermal shock and can withstand extreme temperatures, enhancing its utility in refractory and high-temperature environments.
Chemical Inertness: Resistant to most chemicals, including acids and alkalis, ensuring durability in harsh conditions.
Wear Resistance: Excellent wear resistance properties make it suitable for demanding mechanical applications.
Electrical Conductivity: Depending on the purity and doping levels, SiC can exhibit varying degrees of electrical conductivity, useful in electronics.

Specifications of professional Titanium silicon carbide powder Ti3SiC2 CAS 12202-82-3
Item Specifications: Titanium Silicon Carbide Powder (Ti Four SiC ₂)
Standard Information
CAS Number: 12202-82-3
Chemical Formula: Ti Three SiC TWO.
Molecular Weight: 365.7 g/mol.
Pureness: ≥ 99% (regular).
Look: Gray to black fine powder.
Physical Qualities
This material reveals a layered hexagonal crystal structure. It combines features of both ceramics and steels. The powder has high thermal conductivity and good electrical conductivity. Its thickness has to do with 4.53 g/cm FOUR. The melting point exceeds 3000 ° C, that makes it stable under extreme warmth.
Bit Size and Morphology
Offered fragment sizes include:.
– D50 = 1– 2 µm (micrometers) for conventional grade.
– D50 = 0.5– 1 µm for fine quality.
Particles are primarily angular with some flake-like forms. Area ranges from 2 to 5 m TWO/ g, depending upon the quality.
Key Includes
Ti six SiC ₂ belongs to limit phase family. It uses outstanding machinability compared to standard porcelains. It stands up to thermal shock well. It also shows excellent oxidation resistance as much as 1400 ° C in air. The product preserves stamina at heats and does not come to be fragile quickly.
Common Applications
This powder is made use of to make high-performance composites, coverings, and architectural components. Industries consist of aerospace, nuclear energy, automotive brakes, and high-temperature heaters. It likewise offers in study for establishing new conductive porcelains and wear-resistant parts.
Storage space and Handling
Shop in a completely dry, amazing place away from wetness and strong oxidizers. Maintain container firmly shut. Usage standard commercial health practices when taking care of great powders. Avoid breathing and skin contact.
Quality control
Each set undertakes strict testing by XRD (X-ray diffraction), SEM (scanning electron microscopy), and chemical analysis. Certificates of Evaluation (CoA) are offered with every delivery.

Applications of professional Titanium silicon carbide powder Ti3SiC2 CAS 12202-82-3
Applications of Titanium Silicon Carbide Powder (Ti Four SiC ₂)
High-Performance Structural Elements
Titanium silicon carbide powder (Ti ₃ SiC ₂), with CAS number 12202-82-3, is widely used to make components that should work under extreme warm and tension. Its one-of-a-kind mix of ceramic and metal homes gives it solid resistance to wear, good thermal shock tolerance, and secure performance at heats. Designers utilize it in aerospace engines, generator blades, and brake systems where dependability matters most.
Electrical and Thermal Monitoring
This material carries out electricity well– unlike most ceramics. That makes it useful in electrical contacts, heating elements, and elements for high-temperature sensors. It additionally spreads warm rapidly and uniformly, so it aids handle thermal tons in digital packaging and power components. Designers pick Ti six SiC two when they need both electrical function and mechanical strength in one material.
Wear-Resistant Coatings and Composites
Makers apply Ti three SiC ₂ as a covering on devices and device parts to minimize rubbing and prolong life span. It bonds well with steels and various other ceramics, making it perfect for strengthening composites. These composites show far better strength and less breaking than conventional porcelains, which is why they show up in cutting tools, seals, and industrial linings.
Arising Uses in Energy and Research
Researchers are checking Ti five SiC two in nuclear reactors since it stands up under radiation and resists deterioration from coolants. It also shows pledge in strong oxide fuel cells and as an assistance structure in high-efficiency power systems. Labs use the powder to create brand-new materials that integrate light weight with high longevity.
This powder remains steady in air up to 1,400 ° C and keeps its shape under hefty tons. Its split crystal structure allows some plastic deformation, which protects against abrupt failure– an uncommon trait amongst porcelains. These features make Ti ₃ SiC TWO a smart selection any place basic products fail.
Company Introduction
Welcome to It-Chuiko, a premier international supplier of high-quality silicon carbide powder and silicon carbide ceramics. Our products are renowned for their exceptional hardness, thermal stability, and wear resistance, making them ideal for abrasives, cutting tools, refractory materials, and advanced semiconductor applications. We serve a diverse range of industries, including automotive, aerospace, and electronics, with a commitment to quality and innovation. With state-of-the-art production facilities and rigorous quality control, we ensure that our customers receive superior products tailored to their specific needs. Partner with us for reliable, high-performance materials that drive your business forward.
If you have any questions, please feel free to contact us(nanotrun@yahoo.com).
Payment Methods
T/T, Western Union, Paypal, Credit Card etc.
Shipment Methods
By air, by sea, by express, as customers request.

5 FAQs of professional Titanium silicon carbide powder Ti3SiC2 CAS 12202-82-3
Frequently Asked Questions About Titanium Silicon Carbide Powder (Ti₃SiC₂)
What is Ti₃SiC₂ powder?
Ti₃SiC₂ is a special ceramic material. It combines properties of both metals and ceramics. This powder is made of titanium, silicon, and carbon. Its CAS number is 12202-82-3. People call it a MAX phase material. It stays strong at high temperatures but can still be shaped like metal.
Why choose Ti₃SiC₂ over other ceramics?
Most ceramics break easily. Ti₃SiC₂ does not. It resists thermal shock well. It also conducts electricity and heat better than regular ceramics. You can machine it without special tools. These features make it useful in tough environments where normal ceramics fail.
What are common uses for this powder?
This powder is used to make parts for aerospace and energy systems. It works well in high-heat areas like jet engines or nuclear reactors. Researchers also use it to create wear-resistant coatings. Some mix it into composites to improve strength and durability.
How should I store Ti₃SiC₂ powder?
Keep the powder in a dry, sealed container. Store it away from moisture and direct sunlight. Make sure the area has stable room temperature. Avoid contact with strong acids or oxidizers. Proper storage keeps the powder pure and ready for use.
Is Ti₃SiC₂ safe to handle?
The powder is not highly toxic, but treat it with care. Always wear gloves, safety glasses, and a mask when handling fine powders. Work in a well-ventilated space. Follow standard lab safety rules. If inhaled or ingested, seek medical advice right away. Keep it away from children and pets.
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