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These nanoparticles of silicon carbide are high in purity, have small particles sizes and an extremely specific surface area. It is very thermally conductive and resistant to oxidation even at extreme temperatures. Purity: 99% Particle size: 60nm and 500nm About Silicon Carbide Nanoparticles Nano SiC Powder: Silicon Carbide( SiC), Nanopowder, A gray-white powder with silicon carbide particles of average 40nm in diameter. It is well-known for its durability, refractory qualities, wear resistance and small thermal expansion coefficient. Its versatility makes it suitable for a broad range of applications, which is why engineers and academics continue to discover more. nanoSiC has an important role as a refractory material. It is both inert and chemically stable at elevated temperatures. The research on the topic showed that SiC micro paper can be heated using an alcohol lamp to make it very stable. SiC Nano paper exhibits excellent fire and non-combustibility properties due to its SiC material. This feature is independent and can be used to improve the ablation resistant of high temperature ceramic composites, high-temperature exhaust-gas filtration, and dust filters.
Silicon Carbide Powder
Silicon carbide powder can be described as one of most difficult materials. You can use it in various applications such as abrasive cutting. Also, it is used in high-temperature ceramic kilns as support or shelving material. Available in green or black, it is also available.
It’s the product of a chemical reaction between silicon and carbon. It’s a tough substance with comparable properties to diamond. It’s also extremely resistant to acids, and it has great thermal conductivity. Silicon carbide can also resist erosion and abrasion making it a useful ceramic material in a variety of uses.
Silicium carbide has a hardness that is not only impressive, but it’s also extremely strong. Because of its thermal conductivity, low thermal expansion and high thermal conductivity, silicon carbide makes a solid material for engineering. It’s particularly helpful in composite materials. Additionally, it has the ability to improve corrosion resistance. This can be used to make medical devices. The strength and durability of silicon carbide powder are exceptional. Silicon carbide powder is hard and can withstand extreme temperatures. It’s very hardy and does not crack.
You can find silicon carbide powder in many different sizes. Although the most popular form of silicon carbide powder is that in its powdered form, crystals, plates and wafers are also options. You can find a range of size options, including coarse grits (about one and a quarter inches) to nanometer particles (about 20-100 nanometers).
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Product Performance of Silicon Carbide Nanoparticles Nano SiC Powder:
Nanoparticles of silicon carbide (CAS 409-21-2) have high purity, small particles, uniform distributions, large specific surfaces area and low bulk densities. The material exhibits excellent chemical, mechanical, thermal, and electrical properties. It exhibits high hardness, wear resistance and excellent Self-lubricating.
How is Silicon Carbide Nanoparticles Nano SiC powder manufactured? A organic-inorganic precursor is made from silica sol in industry and water-soluble, phenolic resin for the preparation of silicon carbide powder. A carbothermic reduction reaction is performed to produce silicon carbide nupowder following high-temperature heat treating. An analysis of the preparation and thermal decomposition processes is done. Due to its smaller size, Silicon carbide Nanopowder can be used in more areas. Research has shown that it’s easy to prepare the product. The mixture is composed of silicon carbide whiskers and high-purity, nano silicon carbide. Northwestern Polytechnical University researchers discovered that NANOSiC powder can be made using the CARBOTHERMAL reduction technique. Its dielectric parameters were also measured in the frequency range 8.2 to 12.4GHz. The aluminum content, reaction atmosphere and resulting silicon carbide powders,12H and 21R can be changed. While the SiC-powder resistance will be broken down by the solid Al/N solution, its relative dielectric constant ’r=30-50 is higher than the SiC powder’s, while the dielectric loss tangent =0.7 is lower. Polyacrylate/nano-SiO2 composite material has excellent film-forming properties, weather resistance, adhesion and high hardness, abrasion resistance and ultraviolet resistance of inorganic nanopowder.
Technical Parameter Silicon Carbide Nanoparticles Nano SiC powder:
Silicon Carbide Nanoparticles Nano SiC powder: In structural ceramics, silicon carbide has been the most popular material. This material is a great alternative to thermal expansion. It has a higher strength percentage, harderness and wear resistance than traditional ceramics, and, most importantly, it can be used at high temperatures (up to 1650°C). 1.Ceramics This nanopowder is extensively used to produce high-frequency ceramics and ceramic parts with heat resistance. Other ceramic materials. 2.Abrasives The material is versatile and can be used for a wide variety of abrasive surfaces, such as polishing abrasives and the surface of grinding tools. 3.Heat-resistant devices It is used as a construction material for high-temperature spray cannons. These include those that are used in aeronautics. Heating elements. Sealing valves. 4.Rubber production The properties of this nanoparticle are advantageous for rubber tires and all other rubbers subject to high temperatures, wear and extreme temperature. 5.Specialty coatings As with many nanomaterials silicon carbide is capable of producing a variety specialty coatings. These can impart some, or all, of the material’s characteristics to the coated surface. These include mirror coatings to resist ultraviolet radiation, abrasive surfaces, and others. Their operations can be used for lower temperatures and are therefore more suitable to high-temperature wear. SiC can be used for sandblasting, injection pumps, seals on automotive water pumps, bearings, components, and extrusion tools. Because of their wear resistance and high hardness, these dies are silicon-based. 7. The structure uses high temperatures from the throats of rocket jets to the furnace rolls. Components of the exchange tube are made out of silicon carbide, which has a combination high strain rate, high hardness, high-temperature stability, and high strength. 8. This heat-resistant ceramic can withstand thermal shock and is suitable for making furnace accessories and linings. You can use it to make ceramics, pencils, and sandpaper. It also serves as an abrasive when cutting or polishing. The production of aerial mirrors is made possible by using 10.silicon carbide nanopowder. Because it’s very tough and can withstand thermal shock, this material is popular. Silicon carbide has the ability to absorb water, prevent mechanical fatigue, and create space radiation. Because it is light and strong. This reduces the effects of armor weight on user performance, mobility and fuel consumption. 12.Silicone carbide nanopowder has a number of unique properties that make it an excellent alternative in many electronic applications. These include chemical inertia, at all temperatures and thermal shock resistance. It also exhibits hardness and abrasion. The main use of this material in this sector is the manufacturing of process components for the semiconductor industry, as well as electric field classification or surge protection.
Packing & Shipping of Silicon Carbide Nanoparticles Nano SiC Powder: We offer many packing options, which depend on the number of silicon carbide particles. Silicon carbide nanoparticles packaging: vacuum Packing, 1kg/bag 25kg/barrel or as per your request Shipment of silicon carbide nanoparticles: Available by Sea, Air, or Express as soon as payment receipt is received Lempotee Nano Technology Co. Ltd. Send us an enquiry if you’re looking for high quality nano SiC . (firstname.lastname@example.org)
Silicon Carbide pure Properties
Carborundum, alpha sintered SiC, Hexoloy, methanidylidynesilicon, moissanite, SiC powder
From Green to Black, or Gray Powder
4.0 – 4.5
Silicon Carbide Safety & Health Information