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.
(Silicon Carbide Nanopowder Silicon Carbide Micron Powder)
Specifications of Silicon Carbide Nanopowder Silicon Carbide Micron Powder
Silicon Carbide (SiC) Nanopowder and Micron Powder are advanced ceramic products renowned for their exceptional firmness, thermal security, and chemical resistance. These powders are artificially created and readily available in 2 distinct particle dimension ranges: nanopowder (ultrafine particles) and micron powder (coarser bits). Below are the in-depth requirements and attributes of both forms.
** Silicon Carbide Nanopowder Specs **.
– ** Chemical Composition **: Mostly silicon carbide (SiC) with purity levels usually ≥ 99%, relying on quality. Micronutrient might include oxygen, iron, or free carbon.
– ** Particle Dimension **: Average bit size ranges from 20 nm to 100 nm, with details surface areas of 50– 200 m ²/ g.
– ** Crystal Structure **: Offered in alpha-phase (hexagonal) or beta-phase (cubic). Beta-phase prevails for high-performance composites and coverings.
– ** Color **: Dark gray to black.
– ** Thickness **: ~ 3.21 g/cm ³
. -** Thawing Factor **: About 2,730 ° C.- ** Thermal Conductivity **: High, up to 120 W/m · K.- ** Applications **: Utilized in advanced ceramics, nanocomposites, wear-resistant finishings, semiconductor parts, stimulant supports, and aerospace materials.
** Silicon Carbide Micron Powder Specifications **.
– ** Chemical Make-up **: SiC web content ≥ 98%, with somewhat higher pollutant degrees contrasted to nanopowder.
– ** Bit Size **: Ranges from 1 micron to 50 microns, customizable based upon grit requirements.
– ** Crystal Framework **: Predominantly alpha-phase for rough and refractory applications.
– ** Shade **: Black or dark environment-friendly.
– ** Density **: ~ 3.21 g/cm ³.
– ** Thawing Point **: ~ 2,730 ° C.
– ** Thermal Conductivity **: Approximately 100 W/m · K.
– ** Applications **: Perfect for rough blasting, grinding wheels, refractory linings, cutting tools, and metallurgical additives.
** General Residences **.
– ** Solidities **: Extreme solidity (~ 9.5 Mohs), 2nd only to diamond.
– ** Thermal Shock Resistance **: Outstanding due to reduced thermal growth coefficient.
– ** Chemical Inertness **: Withstands acids, antacid, and oxidation at heats.
– ** Electrical Qualities **: Semiconducting behavior, flexible via doping.
** Product packaging & Safety and security **.
Both powders are provided in moisture-resistant, vacuum-sealed bags or containers. Standard product packaging consists of 100g, 500g, 1kg, and mass orders. Take care of using PPE (handwear covers, masks) to prevent inhalation or skin contact. Store in completely dry, trendy settings far from incompatible substances.
These powders are vital in industries needing high-performance products, including electronic devices, automobile, aerospace, and commercial manufacturing. Personalized qualities (e.g., customized particle dimension, pureness) are offered upon request. CAS Number: 409-21-2. Compliance with ISO 9001 and MSDS offered.
(Silicon Carbide Nanopowder Silicon Carbide Micron Powder)
Applications of Silicon Carbide Nanopowder Silicon Carbide Micron Powder
Silicon Carbide (SiC) nanopowder and micron powder are innovative ceramic materials with extraordinary residential properties, consisting of high thermal conductivity, severe hardness, chemical inertness, and resistance to thermal shock. These features make them important throughout diverse markets, making it possible for development and efficiency enhancements in demanding atmospheres.
In ** electronic devices and semiconductors **, SiC nanopowder is vital for producing high-power, high-frequency tools. Its broad bandgap permits efficient procedure at raised temperature levels and voltages, making it excellent for power electronic devices, LED illumination, and RF parts. Micron-sized SiC powder is used in substrates and wafer sprucing up slurries, guaranteeing ultra-smooth surface areas for semiconductor manufacturing.
The ** auto industry ** leverages SiC powders for sophisticated braking systems and clutch products, where their wear resistance and thermal security boost sturdiness. In electrical cars (EVs), SiC-based semiconductors boost power effectiveness in inverters and onboard battery chargers, expanding battery life and lowering warm generation.
In ** aerospace and defense **, SiC nanopowder reinforces composites for lightweight, high-strength parts in generators, heat shields, and armor systems. Its capacity to stand up to extreme temperatures and harsh environments makes sure dependability in jet engines and hypersonic lorries. Micron-grade SiC is made use of in rough finishings for cutting devices and wear-resistant components.
** Industrial applications ** consist of refractory products for heating systems and kilns, where SiC micron powder’s thermal conductivity and resistance to thermal expansion lengthen tools life expectancy. Nanopowder-enhanced porcelains and finishes enhance rust resistance in chemical handling tools.
The ** energy field ** gain from SiC’s duty in solar inverters and wind turbine components, maximizing energy conversion efficiency. SiC nanopowder is also explored in next-generation batteries and supercapacitors for faster charging and greater energy density.
In ** optics and wearables **, SiC nanopowder’s firmness and optical properties add to scratch-resistant layers for lenses and display screens. Its biocompatibility better enables use in medical devices and implants.
Lastly, SiC powders are critical in ** ecological technologies **, such as catalytic assistances for toxin deterioration and filters for high-temperature gas filtration.
By combining adaptability with unparalleled performance under stress and anxiety, silicon carbide nanopowder and micron powder continue to drive improvements across state-of-the-art markets, pressing the limits of material science and design.
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 Silicon Carbide Nanopowder Silicon Carbide Micron Powder
Silicon Carbide Nanopowder and Micron Powder are advanced materials with distinct properties and applications. Below are five frequently asked questions about these products, answered concisely:
**1. What is the difference between Silicon Carbide Nanopowder and Micron Powder?**
The primary difference lies in particle size. Nanopowder consists of ultrafine particles typically ranging from 10 to 100 nanometers (nm), offering high surface area and reactivity. Micron Powder has larger particles, usually between 1 to 50 micrometers (µm), providing better flowability and bulk density. The choice depends on application requirements, such as precision in composites (nano) or abrasive efficiency (micron).
**2. What are the key applications of these powders?**
Silicon Carbide Nanopowder is used in high-performance ceramics, semiconductor components, coatings, and advanced composites due to its thermal conductivity and hardness. Micron Powder is ideal for abrasive blasting, refractory materials, polishing, and wear-resistant coatings, where larger particles enhance durability and grinding efficiency.
**3. Are there safety precautions for handling these powders?**
Yes. Nanopowder requires careful handling to avoid inhalation; use PPE like masks, gloves, and goggles. Micron Powder poses less inhalation risk but still demands protective gear due to abrasive properties. Both should be stored in sealed containers, away from moisture and ignition sources.
**4. How does particle size affect performance?**
Smaller nanoparticles improve sintering in ceramics, enhance mechanical strength in composites, and enable uniform dispersion in coatings. Micron-sized particles are better for applications requiring controlled abrasion, thermal stability in refractories, or cost-effective bulk material processing.
**5. Can these powders be customized for specific uses?**
Yes. Suppliers often tailor particle size distribution, purity levels (e.g., 99% or higher), and surface treatments (like hydrophobic coatings) to meet industry needs. Customization ensures compatibility with specialized processes in aerospace, electronics, or energy sectors.
Both Silicon Carbide Nanopowder and Micron Powder are versatile, but selecting the right grade depends on balancing particle size, application goals, and safety requirements. Always consult technical datasheets for optimal usage.
(Silicon Carbide Nanopowder Silicon Carbide Micron Powder)
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