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Substrats céramiques à haute performance: Alumine (Al2O3), Nitrure d'aluminium (AlN) et Nitrure de silicium (Si3N4) pour la gestion thermique et l'isolation électrique
High-Performance Ceramic Substrates: Alumina (Al2O3), Aluminum Nitride (AlN), & Silicon Nitride (Si3N4) Ceramic substrates are critical components in modern electronics, providing the essential foundation for circuits while managing heat and ensuring electrical insulation. Among the most widely used materials are Alumina (Al2O3), Aluminum Nitride (AlN), and Silicon Nitride (Si3N4), each offering a unique set of properties for demanding applications. Ceramic Substrates
Buse en spirale anti-colmatage avec résistance extrême à l'usure et haut rendement à basse pression pour la désulfuration
Spiral Nozzles – The Durable & Efficient Core Component for Desulfurization & Dust Removal In large-scale industrial flue gas treatment systems, nozzle performance directly dictates the efficiency and operational cost of desulfurization and dust removal. The spiral nozzle, renowned for its unique design and superior material, has become the preferred solution for harsh operating conditions. Core Technical Advantages: Clog-Free & Extreme Wear Resistance The spiral nozzle gets
Anneaux d'étanchéité au carbure de silicium à température maximale de service de 1650 °C, résistance à la flexion de 380 MPa et résistance à la corrosion
Silicon Carbide (SiC) Sealing Rings Advanced Performance for Demanding Applications Product Overview Our Pressureless Sintered Silicon Carbide Sealing Rings represent the pinnacle of sealing technology, engineered to deliver unmatched performance in extreme operating conditions. Utilizing advanced manufacturing processes including dry pressing for small-volume rings and isostatic pressing for large-size components, we provide precision-crafted sealing solutions tailored to
Faisceaux de carbure de silicium sintré de qualité supérieure 30 mm × 40 mm × 900 mm.
Premium-Grade Sintered Silicon Carbide (SSiC) Structural Beams Engineered for extreme‑temperature and high‑load environments, these anti‑creep structural beams are manufactured by extrusion and pressureless sintering at 2100-2200 °C. The resulting SSiC components offer unmatched mechanical strength, near‑zero thermal expansion, and exceptional resistance to creep under sustained thermal and mechanical stress. Key Features & Engineering Advantages High‑Temperature Structural
Boussole vortex au carbure de silicium pour une atomisation de précision et une efficacité de transfert de masse élevée avec pulvérisation de cône creux
Vortex Nozzles – Precision Atomization for High-Efficiency Flue Gas Desulfurization Within flue gas desulfurization systems, alongside durable spiral nozzles, vortex nozzles represent another essential category of atomization components. Their unique internal structure delivers finer atomization and superior mass transfer efficiency, playing an irreplaceable role in specific process stages. Working Principle & Design Features A vortex nozzle typically consists of a nozzle
Bras de manipulation en carbure de silicium électriquement conducteur avec température de service maximale de 1650°C et résistance à la flexion de 380 MPa
Electrically Conductive Ceramics Handling Arm: Precision for Extreme Environments Pressureless Sintered Silicon Carbide (SiC) Manipulator Arm represents a breakthrough in high-performance material handling solutions. Manufactured using advanced pressureless sintering technology with high-purity silicon carbide, this handling arm delivers exceptional performance where conventional materials fail. Key Advantages Exceptional Mechanical Properties Superior strength and extreme
Tubes en flancs de carbure de silicium sintré sans pression (PLSIC) avec une résistance extrême à la corrosion et une température de service maximale de 1600 °C pour des applications de haute pureté
Pressureless Sintered Silicon Carbide (PLSIC) Flanged Tubes In industries where failure is not an option—semiconductor fabrication, chemical processing, and new energy—fluid handling systems face extreme challenges. Pressureless Sintered Silicon Carbide (PLSIC) Flanged Tubes offer a revolutionary, reliable solution that outperforms metals and other ceramics in the most demanding environments. Why Choose PLSIC Flanged Tubes? PLSIC is a superior advanced ceramic. Made without
Composants céramiques HBN à haute conductivité thermique de nitrure de bore pour une résistance à des températures exceptionnelles et une grande capacité de composant
Hexagonal Boron Nitride (HBN) Ceramics for Semiconductor Applications Hexagonal Boron Nitride (HBN) ceramics deliver exceptional thermal management and electrical insulation for demanding semiconductor manufacturing processes. With graphite-like structure but superior performance, our "white graphite" components maintain structural integrity in extreme temperatures while providing excellent heat dissipation - making them ideal for critical semiconductor equipment applications
Céramique d'oxyde d'aluminium à haute pureté à 99,9% avec une résistance à la traction de 260 MPa et une résistance à l'usure supérieure
High Purity 99.9% Aluminum Oxide Ceramic | 260MPa Tensile Strength Product Overview 99.9% Al₂O₃ ceramic with 260MPa tensile strength. Excellent wear & corrosion resistance for seals, bearings & industrial applications. Custom machining available. As a premier advanced technical ceramic, our 99.9% high-purity Aluminum Oxide (Al₂O₃) delivers exceptional mechanical strength and durability for demanding industrial applications. With a tensile strength of 260MPa and superior