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.

(Superfine silicon carbide SiC powder with micron and nano size)
Specifications of Superfine silicon carbide SiC powder with micron and nano size
Superfine silicon carbide (SiC) powder supplies high-performance product solutions for commercial applications. The powder comes in micron and nano sizes. Micron-sized fragments vary from 1 to 50 micrometers. Nano-sized bits action in between 50 and 500 nanometers. Both grades ensure uniform fragment circulation. This uniformity enhances material efficiency in output. The pureness level exceeds 99.9%. Minimal contaminations like iron or light weight aluminum exist. This pureness matches requiring atmospheres calling for chemical security.
The crystal structure of SiC powder is alpha-phase. This framework gives high thermal conductivity and mechanical strength. The material carries out warm well. It withstands thermal shock also under severe temperature modifications. The Mohs hardness is 9.5. This makes it more challenging than most metals and porcelains. It functions as an abrasive or coating product.
Area ranges from 10 to 200 m ²/ g. Greater surface in nano powders enhances reactivity. This benefits applications in drivers or composite materials. Mass thickness remains between 0.5 and 1.5 g/cm FIVE. Low density permits simple blending in polymers or metals.
The powder works in high-temperature settings. It remains secure approximately 1600 ° C in inert atmospheres. Oxidation resistance stays strong as much as 1200 ° C in air. Chemical inertness avoids reactions with acids or alkalis. This makes sure longevity in harsh conditions.
Applications cover numerous markets. In metallurgy, it fine-tunes grain structures in alloys. Electronics utilize it for semiconductor substratums and warmth sinks. Ceramics incorporate it for wear-resistant components. Coatings gain firmness and thermal defense. Energy industries use it in solar batteries and nuclear gas pellets.
Customized fragment size distributions are readily available. Surface area therapies like silane covering boost compatibility with materials or polymers. Packaging options include moisture-proof bags or vacuum-sealed containers. Storage referrals emphasize cool, completely dry problems to stop clumping. Technical support helps with combination into specific procedures.

(Superfine silicon carbide SiC powder with micron and nano size)
Applications of Superfine silicon carbide SiC powder with micron and nano size
Superfine silicon carbide (SiC) powder can be found in micron and nano sizes. It functions well in several markets. Its hardness and warm resistance make it useful. The product takes care of high temperatures and rough chemicals.
In electronic devices, SiC powder boosts semiconductor devices. It makes parts like diodes and transistors a lot more effective. These parts last longer under high voltage or heat. Nano-sized SiC increases performance in circuits. It helps gadgets like LED lights and power systems work much better.
Aerospace and auto industries use SiC powder for strong parts. It reinforces ceramics and metals. Engine parts and turbine blades last longer. In vehicles, SiC-based brakes take care of extreme warmth. This improves safety in high-speed automobiles.
Energy storage benefits from SiC powder. It makes lithium-ion batteries charge quicker. Solar panels with SiC layers convert sunshine more effectively. Wind wind turbines make use of SiC coatings to withstand wear. This reduces maintenance prices.
Coatings and porcelains gain from including SiC. Surface areas come to be scratch-resistant and resilient. Devices covered with SiC last longer in factories. Nano-SiC makes paints and films tougher. It secures products in severe settings.
Optics and defense make use of SiC powder for clear lenses and home windows. Its hardness avoids scratches. Armed forces gear remains reliable in hard conditions. SiC shields safeguard tools from warm and impact.
Medical fields use nano-SiC in implants. It resists body fluids and wear. Implants remain secure and practical much longer. Study checks out SiC in medicine shipment for better accuracy.
The material’s versatility maintains increasing. Brand-new usages arise in technology and sector. Its residential properties solve challenges in design and layout.
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 Superfine silicon carbide SiC powder with micron and nano size
Superfine silicon carbide SiC powder comes in micron and nano sizes. People often ask questions about its uses, handling, and benefits. Here are five common questions and answers. What is the difference between micron and nano-sized SiC powder? Micron-sized particles range from 1 to 100 micrometers. Nano-sized particles are smaller, under 100 nanometers. Smaller particles improve material strength in composites. Larger particles work better for grinding or polishing. What industries use SiC powder? It is used in metallurgy, electronics, and aerospace. It strengthens ceramics and metals. It serves as an abrasive in cutting tools. Nano-sized powder improves coatings and sensors. How is SiC powder handled safely? Wear gloves and masks. Avoid breathing dust. Store in sealed containers. Work in ventilated areas. Clean spills quickly. Follow safety guidelines for non-toxic materials. Does particle size affect performance? Yes. Smaller particles spread more evenly in materials. This increases hardness and heat resistance. Larger particles remove material faster in grinding. Choose size based on the task. Can SiC powder be customized? Suppliers adjust particle size, purity, and surface treatments. High-purity powder suits electronics. Coatings improve compatibility with polymers or metals. Custom orders depend on production methods.

(Superfine silicon carbide SiC powder with micron and nano size)
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