High-Quality Silicon Carbide Products | Advanced Ceramic Solutions
PRODUCT PARAMETERS
Description
Overview of Silicon Carbide Ceramic
Silicon carbide (SiC) ceramic is a high-performance material known for its exceptional hardness, wear resistance, and thermal stability. It is widely used in cutting tools, abrasives, automotive components, and high-temperature applications due to its superior mechanical properties and chemical inertness.
Features of Silicon Carbide Ceramic
High Hardness: SiC ceramics are among the hardest known materials, making them ideal for abrasive and cutting applications.
Thermal Stability: They can withstand extreme temperatures without degrading, making them suitable for high-temperature environments.
Wear Resistance: Exceptional resistance to wear and abrasion ensures long-lasting performance.
Chemical Inertness: Resistant to most chemicals, including acids and alkalis, enhancing their durability in harsh conditions.
Low Thermal Expansion: Minimal expansion or contraction with temperature changes, ensuring dimensional stability.
Electrical Conductivity: Some forms of SiC ceramics exhibit semiconducting properties, useful in electronic devices.
(High temperature refractory products silicon carbide ceramic chest plate positive hexagon)
Specifications of High temperature refractory products silicon carbide ceramic chest plate positive hexagon
High-temperature refractory silicon carbide ceramic upper body plates with a positive hexagon layout are engineered for severe thermal and mechanical environments. These elements are crafted from premium-grade silicon carbide (SiC), an advanced ceramic material understood for outstanding durability, thermal security, and resistance to put on, deterioration, and oxidation. The hexagonal geometry makes certain uniform tons distribution, convenience of installment, and compatibility with commercial systems needing specific positioning.
** Material Composition **: The item comprises 99% pure silicon carbide, sintered under heats to accomplish a dense, non-porous framework. Trace ingredients improve sintering and mechanical residential properties without endangering thermal efficiency.
** Physical Properties **: Thickness arrays between 3.1– 3.2 g/cm ³, guaranteeing lightweight yet durable building and construction. The surface area is finely polished to lessen friction and wear. Dimensions are customizable, with conventional hexagonal side sizes of 50– 200 mm and densities of 10– 50 mm. Tight resistances ( ± 0.5 mm) ensure precision fitment.
** Thermal Performance **: Runs constantly at temperature levels up to 1650 ° C( 3002 ° F)in inert atmospheres and 1450 ° C( 2642 ° F)in oxidizing environments. Thermal conductivity is 120– 140 W/m · K, making it possible for reliable warmth dissipation. Low thermal expansion coefficient (4.0– 4.5 × 10 ⁻⁶/ ° C) lessens thermal tension, making certain split resistance during quick temperature variations.
** Mechanical Strength **: Flexural strength goes beyond 350 MPa, with a compressive stamina of 2200 MPa. Solidity gets to 9.5 on the Mohs scale, giving remarkable abrasion resistance. The hexagonal layout improves architectural integrity under mechanical tons.
** Chemical Resistance **: Withstands acids, antacid, molten steels (e.g., aluminum, copper), and slag disintegration. Suitable for extreme chemical environments in metallurgy, factories, and chemical processing.
** Applications **: Made use of in heater cellular linings, kiln furniture, warmth exchangers, and burner nozzles. Appropriate for aerospace, energy, and semiconductor sectors calling for high-temperature security and long life.
** Advantages **: Combines high thermal efficiency, mechanical strength, and rust resistance. Minimizes downtime and maintenance expenses in severe problems. Adjustable measurements and surfaces available for specialized demands.
This item is an important option for sectors demanding integrity in high-heat, high-stress applications, offering unequaled efficiency and lifespan compared to typical refractory products.
(High temperature refractory products silicon carbide ceramic chest plate positive hexagon)
Applications of High temperature refractory products silicon carbide ceramic chest plate positive hexagon
High-temperature refractory products, such as silicon carbide ceramic chest plates with a favorable hexagon design, are engineered to stand up to extreme thermal, mechanical, and chemical anxieties popular industrial environments. Silicon carbide (SiC) porcelains are renowned for their extraordinary buildings, including high thermal conductivity, premium resistance to thermal shock, severe hardness, and deterioration resistance. The favorable hexagon form enhances architectural stability and convenience of integration into complex systems. Below are crucial applications of this sophisticated product:
** Industrial Furnaces & Kilns: ** Silicon carbide ceramic chest plates are widely utilized in heating system linings, kiln furnishings, and heat exchangers. Their ability to sustain temperatures surpassing 1600 ° C makes them perfect for metallurgical processes, ceramic sintering, and glass production. The hexagonal form makes sure consistent warmth circulation and decreases thermal stress.
** Aerospace & Protection: ** In aerospace, these plates act as thermal obstacles in rocket nozzles, re-entry lorry components, and jet engine parts. Their high melting point and low thermal growth avoid contortion under rapid temperature level fluctuations.
** Power Field: ** In solar thermal plants and nuclear reactors, SiC breast plates work as insulators and protective guards. They resist radiation damage and preserve stability in high-heat zones, enhancing energy efficiency and security.
** Chemical Handling: ** Their rust resistance makes them appropriate for activators, pumps, and shutoffs taking care of hostile chemicals. The hexagonal design streamlines assembly in modular systems, reducing downtime.
** Automotive & Electronics: ** Utilized in brake systems and exhaust parts, they boost heat dissipation in high-performance cars. In electronics, they act as warm sinks for power devices, leveraging SiC’s thermal conductivity.
** Steel & Foundry: ** As ladle liners or tundish plates, they expand equipment life expectancy in liquified steel handling. The favorable hexagon framework makes sure tight securing and load distribution in refractory assemblies.
The silicon carbide ceramic breast plate’s combination of geometric precision and product excellence addresses tests throughout sectors, providing resilience, effectiveness, and expense savings. Its versatility to extreme conditions emphasizes its role as a crucial part beforehand high-temperature modern technologies.
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 High temperature refractory products silicon carbide ceramic chest plate positive hexagon
What makes silicon carbide ceramic chest plates ideal for high-temperature applications? Silicon carbide (SiC) ceramics excel in extreme heat due to their exceptional thermal conductivity, low thermal expansion, and resistance to thermal shock. These properties prevent cracking or warping under rapid temperature changes, making them suitable for environments where metals or other ceramics fail. Their inherent hardness and chemical inertness also add durability and corrosion resistance in harsh conditions.
Why is the positive hexagon shape used in these chest plates? The positive hexagon design ensures uniform stress distribution across the plate, minimizing weak points. Its geometric symmetry allows seamless interlocking with adjacent components, creating a stable, gap-free barrier in high-temperature setups. This shape also enhances load-bearing capacity and simplifies installation in complex refractory assemblies.
What maximum temperature can these chest plates withstand? Silicon carbide ceramic chest plates operate reliably in continuous temperatures up to 1650°C (3000°F) in oxidizing atmospheres. In inert or reducing environments, they withstand even higher temperatures—up to 1750°C (3182°F). Their stability stems from SiC’s high melting point (~2700°C) and oxidation-resistant surface layer that forms under heat.
Where are these chest plates commonly used? They are widely used in industrial furnaces, kilns, incinerators, and metallurgical processing equipment. Industries like steelmaking, glass manufacturing, aerospace, and energy rely on them to line combustion chambers, protect structural components, or shield sensitive parts from radiant heat. Their robustness also suits applications in chemical reactors and nuclear systems.
How durable are these plates under thermal cycling or prolonged heat exposure? Silicon carbide chest plates maintain structural integrity over thousands of thermal cycles due to low thermal expansion and superior thermal shock resistance. They exhibit minimal wear, even after prolonged exposure to extreme heat, abrasion, or corrosive gases. With proper installation, their service life significantly outperforms traditional refractory materials like alumina or fireclay.
(High temperature refractory products silicon carbide ceramic chest plate positive hexagon)
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