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PRODUCT PARAMETERS
Description
Overview of Silicon Carbide Ceramics
Silicon Carbide (SiC) ceramics are renowned for their outstanding mechanical properties, including high hardness, strength at elevated temperatures, and excellent thermal shock resistance. These materials are pivotal in cutting-edge industrial applications, from abrasives to aerospace components, due to their unique combination of properties.
Features of Silicon Carbide Ceramics
High Hardness: Exceptional wear resistance.
Thermal Shock Resistance: Can withstand rapid temperature changes.
Chemical Stability: Resistant to most chemicals.
High Thermal Conductivity: Efficient heat dissipation.
Low Density: Lightweight for its strength.
(Whole Refractory Silicon Carbide Ceramic Thin Plate and High Hardness SIC Slab Plate)
Specification of Whole Refractory Silicon Carbide Ceramic Thin Plate and High Hardness SIC Slab Plate
The entire refractory silicon carbide ceramic thin plate is created for high-temperature environments. This product features a density ranging from 1mm to 5mm, making it suitable for applications needing lightweight yet durable materials. It is made up of 99% pure silicon carbide, guaranteeing exceptional thermal security. The material withstands oxidation at temperature levels approximately 1600 ° C. Its reduced thermal development coefficient minimizes breaking under fast temperature adjustments. The thin plate is suitable for heater linings, heat exchangers, and safety guards in industrial setups. Surface surfaces are adjustable, with options for refined or coarse structures based on individual needs.
The high solidity SIC piece plate offers premium mechanical stamina. This variant is thicker, normally in between 10mm and 50mm, to take care of heavy-duty usage. Its Vickers firmness goes beyond 2800 HV, offering resistance to abrasion and wear. The slab plate maintains architectural stability under severe stress, making it ideal for grinding devices, wear-resistant cellular linings, and cutting devices. Both plates are chemically inert, withstanding deterioration from acids, alkalis, and molten steels.
Manufacturing entails innovative sintering techniques to attain high thickness and uniformity. Accurate machining ensures tight dimensional tolerances, with monotony deviations below 0.02 mm per 100mm. Customized sizes and shapes are readily available for specialized commercial needs. Testing consists of thermal shock resistance assessments and hardness confirmation to fulfill market requirements.
These silicon carbide plates are commonly made use of in aerospace, power, and semiconductor manufacturing. Their non-reactive nature makes them safe for contact with sensitive products. Electric conductivity alternatives are available for applications needing static dissipation. Product packaging is durable to avoid damages throughout shipping. Storage space referrals consist of keeping the plates completely dry and without mechanical tension.
The combination of high-temperature strength, mechanical sturdiness, and chemical resistance settings these products as reputable solutions for requiring atmospheres. Individuals gain from extended life span and minimized maintenance prices. Technical assistance is offered to aid with combination into existing systems.
(Whole Refractory Silicon Carbide Ceramic Thin Plate and High Hardness SIC Slab Plate)
Applications of Whole Refractory Silicon Carbide Ceramic Thin Plate and High Hardness SIC Slab Plate
Whole refractory silicon carbide ceramic slim plates and high-hardness SiC piece plates serve crucial duties across multiple markets. These materials deal with severe warm, withstand wear, and keep stability under severe conditions. Their distinct buildings make them suitable for demanding applications.
In metallurgy, whole refractory silicon carbide ceramic slim plates line high-temperature furnaces. They safeguard devices from liquified metals and slag. Their thermal shock resistance avoids splitting during quick temperature level changes. These plates additionally operate as safety layers in metal smelting processes. They decrease downtime by lasting longer than typical products.
High-hardness SiC slab layers master rough environments. Mining and machinery markets utilize them for wear-resistant components like crusher liners and grinding parts. Their sturdiness cuts replacement expenses. They preserve performance under hefty loads and friction.
Electronics manufacturing relies upon silicon carbide ceramics for semiconductor processing. Slim plates act as substratums or warmth sinks in high-power gadgets. They dissipate warm successfully, making certain stable operation. Their electric insulation properties stop short circuits.
Chemical handling plants make use of both slim plates and piece plates. They line activators, pumps, and shutoffs exposed to corrosive acids or antacid. Silicon carbide withstands chemical erosion, reducing leakages and failures. This improves security and lowers maintenance demands.
Aerospace applications consist of components for rocket nozzles and thermal defense systems. The product’s lightweight nature and warmth resistance match high-speed settings. Automotive industries use these ceramics in brake discs and engine components. They hold up against extreme friction and temperatures.
Power industries take advantage of silicon carbide in photovoltaic panel manufacturing and atomic power plants. Slim plates aid in wafer handling throughout solar battery manufacturing. Piece plates act as securing in activator cores. Their radiation resistance boosts safety and security.
These ceramic services boost effectiveness throughout industries. They prolong devices life, reduce power usage, and improve procedure dependability. Their versatility to extreme problems makes them crucial in advanced manufacturing and technology.
Company Introduction
Advanced Ceramics founded on October 17, 2014, is a high-tech enterprise committed to the research and development, production, processing, sales and technical services of ceramic relative materials and products.. Since its establishment in 2014, the company has been committed to providing customers with the best products and services, and has become a leader in the industry through continuous technological innovation and strict quality management.
Our products includes but not limited to Silicon carbide ceramic products, Boron Carbide Ceramic Products, Boron Nitride Ceramic Products, Silicon Carbide Ceramic Products, Silicon Nitride Ceramic Products, Zirconium Dioxide Ceramic Products, Quartz Products, etc. 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 Whole Refractory Silicon Carbide Ceramic Thin Plate and High Hardness SIC Slab Plate
What is a whole refractory silicon carbide ceramic thin plate?
This plate is made from silicon carbide. It resists high temperatures, chemicals, and wear. People use it in places that need heat resistance, like furnaces or industrial heaters. The thin design saves space but stays strong.
Why pick a high-hardness SIC slab plate?
This slab plate is harder than steel. It lasts longer under heavy use. Factories use it for grinding, cutting, or parts needing toughness. It handles pressure without breaking.
Where are these plates commonly used?
Both plates work in tough environments. Examples include metal processing, power plants, or semiconductor tools. They protect machines from heat or corrosion.
How do I maintain silicon carbide plates?
Clean them with non-abrasive materials. Avoid sudden temperature changes. Check for cracks or wear regularly. Proper care keeps them working longer.
What’s the difference between thin plates and slab plates?
Thin plates are lighter and fit tight spaces. Slab plates are thicker and handle heavier loads. Both share high hardness and heat resistance. Choose based on thickness needs.
(Whole Refractory Silicon Carbide Ceramic Thin Plate and High Hardness SIC Slab Plate)
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