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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.
(Factory Whole New Ceramic Metal Silicon Carbide DOC/DPF/SIC Catalyst in Various Material Types)
Specification of Factory Whole New Ceramic Metal Silicon Carbide DOC/DPF/SIC Catalyst in Various Material Types
This factory-made ceramic steel silicon carbide DOC/DPF/SIC catalyst uses high-performance solutions for exhaust therapy systems. It combines silicon carbide with stainless-steel or cordierite products. These alternatives make certain flexibility across different commercial demands. The silicon carbide base supplies exceptional thermal security. It endures temperatures up to 1000 ° C without breaking down. This makes it perfect for severe operating atmospheres. The product stands up to chemical corrosion. It manages direct exposure to acids, alkalis, and abrasive particles successfully.
The catalyst framework features a honeycomb design. This layout maximizes surface area for reliable gas call. It enhances pollutant conversion prices. The item minimizes harmful exhausts like nitrogen oxides and particulate issue. Stress decline stays reduced during procedure. This reduces power loss in exhaust systems. Compatibility with diesel and gas engines is guaranteed.
Numerous product types are available. Stainless-steel variants fit high-moisture or high-salinity conditions. Cordierite-based variations excel in quick thermal cycling circumstances. Customizable cell thickness and pore sizes satisfy certain filtration needs. The item incorporates seamlessly right into existing DOC or DPF systems. Setup needs no major adjustments.
Applications include auto exhaust systems, commercial generators, and marine engines. Hefty equipment and power plants likewise gain from its sturdiness. Upkeep requirements are minimal. The driver preserves performance over prolonged service durations. It prevents constant replacements or cleaning.
Personalized remedies are available for distinct functional needs. Engineers change measurements, worldly ratios, and catalytic finishings as needed. The product fulfills Euro 6 and EPA Rate 4 discharge criteria. It sustains international environmental guidelines.
Production uses sophisticated sintering modern technology. This makes sure uniform material thickness and structural stability. Quality checks validate efficiency consistency. Each system undertakes rigorous screening prior to distribution. The emphasis continues to be on integrity and cost-effectiveness. Long-term usage reduces total ownership expenses. Environmental impact stays low throughout the item lifecycle.
(Factory Whole New Ceramic Metal Silicon Carbide DOC/DPF/SIC Catalyst in Various Material Types)
Applications of Factory Whole New Ceramic Metal Silicon Carbide DOC/DPF/SIC Catalyst in Various Material Types
The factory entire new ceramic steel silicon carbide DOC/DPF/SIC stimulant serves a vast array of product types. It works well in metal-based systems. These consist of exhaust parts in auto and industrial equipment. The catalyst deals with high heat and extreme chemicals. This makes it durable in environments where metals deal with quick wear. It additionally reduces dangerous exhausts by breaking down toxins effectively.
The ceramic style fits smoothly into existing ceramic filters or substrates. This compatibility makes sure steady efficiency in diesel particulate filters (DPF) and oxidation catalysts (DOC). Its framework resists thermal shock. This indicates it lasts longer under abrupt temperature level changes. The material does not break or degrade easily. This dependability is critical for systems calling for reduced upkeep.
Polymers and plastics benefit from this stimulant also. These products typically fight with high-temperature procedures. The silicon carbide core handles heat without losing effectiveness. It supports catalytic responses in polymer manufacturing or recycling. This boosts item quality while reducing power usage. The catalyst’s chemical security protects against unwanted reactions with polymer substances.
Compound materials gain advantages as well. These blends of steels, porcelains, or polymers require solutions that adapt to blended properties. The catalyst’s hybrid ceramic-metal structure bridges spaces between various materials. It makes certain uniform performance in complicated configurations like crossbreed exhaust systems. Its resistance to rust and abrasion suits composite-heavy applications.
The driver works in chemical processing devices. Tanks, pipelines, or activators made from stainless steel or alloys depend on it for cleaner outputs. It speeds up chain reactions without including added actions. This saves time and expenses in sectors like petrochemicals or pharmaceuticals.
Silicon carbide’s low thermal growth makes it optimal for precision tools. Grinding wheels or reducing inserts covered with the driver last much longer. They keep sharpness and precision even under hefty use. This minimizes downtime in manufacturing.
The product’s flexibility comes from its well balanced buildings. It combines the strength of steels with the heat resistance of porcelains. This balance fulfills demands across vehicle, industrial, chemical, and making industries. Its style concentrates on real-world demands like toughness, performance, and expense financial savings.
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 Factory Whole New Ceramic Metal Silicon Carbide DOC/DPF/SIC Catalyst in Various Material Types
What is the ceramic metal silicon carbide catalyst used for? This product is designed for diesel oxidation catalysts (DOC), diesel particulate filters (DPF), and other exhaust treatment systems. It helps reduce harmful emissions like carbon monoxide and particulate matter. The silicon carbide material provides high heat resistance and structural stability.
Why choose this catalyst over traditional options? Traditional catalysts often use cordierite or metals. These materials crack under extreme heat or pressure. Silicon carbide handles higher temperatures without damage. It lasts longer in harsh conditions. Maintenance costs drop because replacements happen less often.
What material types are available? The catalyst comes in stainless steel, aluminum, titanium, and ceramic-composite housings. Each material suits different environments. Stainless steel works for heavy-duty industrial use. Aluminum is lighter for automotive applications. Titanium offers corrosion resistance. Ceramic composites balance cost and performance.
Is this product compatible with existing exhaust systems? Yes. The catalyst fits standard DOC and DPF setups. Custom sizes and shapes are available. Connection types match common exhaust pipes. No major modifications are needed. Users replace old catalysts directly with this unit.
How often does the catalyst need maintenance? Silicon carbide requires minimal upkeep. Inspect it every 6-12 months for blockages or physical damage. Clean the surface if ash builds up. No regular chemical treatments or part replacements are necessary. Proper use ensures consistent performance for years.
(Factory Whole New Ceramic Metal Silicon Carbide DOC/DPF/SIC Catalyst in Various Material Types)
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