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Corrosion Resistant Silicon Carbide Heat Exchanger Block with 1650°C Max Service Temp and Cross-Bore Configuration

Basic Properties
Place of Origin: China
Brand Name: KEGU
Model Number: Customizable
Trading Properties
Minimum Order Quantity: Negotiable
Price: Negotiable
Payment Terms: L/C,D/A,D/P,T/T,Western Union,MoneyGram
Product Summary
Silicon Carbide (SiC) Heat Exchanger Blocks Advanced cross-bore heat transfer solutions for corrosive industrial environments Product Overview Our Silicon Carbide (SiC) Heat Exchanger Blocks represent a breakthrough in thermal management for highly corrosive environments. Manufactured via direct ...

Product Details

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Sic Heat Exchanger Block Hole

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Silicon Carbide Heat Exchanger Block Hole

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Horizontal Hole Sic Heat Exchanger Block

Material: Silicon Carbide Ceramic
Composition:SiC: >98%
Color: Black
Density: >3.05g/cm3
Max. Service Temp: 1650°C
Flexural Strength: 350-550 MPa
Usage: Industry Usage
Chemical Composition: Al2O3, SiO2
Sic Content: 85%
Maximum Temperature: 1600℃
Characteristics: High Wear Resistance
Thermal Expansion Coefficient: 4.0-4.5 × 10^-6 /K
Material Composition: 4%Si >96%Sic
Working Temperature: 1650
Advantage: Wear And Abrasion Resistance
Purity: 98%
Acid Alkaline Proof: Excellent
Solubility: Insoluble
Open Porosity: <0.1%
Product Description
Silicon Carbide (SiC) Heat Exchanger Blocks
Advanced cross-bore heat transfer solutions for corrosive industrial environments
Product Overview
Our Silicon Carbide (SiC) Heat Exchanger Blocks represent a breakthrough in thermal management for highly corrosive environments. Manufactured via direct isostatic pressing and pressure-free sintering, these blocks feature an innovative design of interconnected vertical and horizontal holes. This unique cross-bore configuration enables efficient heat transfer between two separate media while maintaining complete separation, making them ideal for the most demanding industrial applications.
Key Features & Advantages
  • Superior Thermal Performance: Achieve exceptional heat transfer efficiency with a thermal conductivity rating of up to 140 W/m·K, ensuring optimal process temperature control.
  • Unmatched Corrosion Resistance: Engineered to withstand the harshest conditions, including exposure to sulfuric acid, hydrochloric acid, nitric acid, hydrofluoric acid, and various mixed acids, significantly outperforming graphite and metal alternatives.
  • Precision Engineering: Standard dimensional accuracy of ±1.0mm for hole size and ±0.1mm for wall thickness, with capability for custom finishing to meet even tighter tolerances per customer specifications.
  • Robust & Reliable Design: Features integrated sealing waterlines for effective pressure sealing with compatible, corrosion-resistant materials. Each unit undergoes rigorous factory testing for guaranteed performance.
  • Extended Service Life: The inherent material properties of Silicon Carbide provide exceptional durability, leading to a much longer operational lifespan and reduced total cost of ownership compared to traditional materials.
Technical Specifications
Maximum Block Dimensions (Current) Outer Diameter up to 300mm | Height up to 300mm
Maximum Block Dimensions (Future) Outer Diameter up to 600mm | Height up to 400mm (Post-2021)
Hole Configuration Aperture Range: 6mm to 30mm
Wall Thickness Range: 2.5mm to 5mm
Minimum Aperture: 6mm | Minimum Wall Thickness: 2.5mm
Quality Assurance & Testing Dimensional Verification
Water Pressure Resistance: 40 BAR
Air Pressure Resistance: 15 BAR
Surface Fluorescence Penetration Inspection
Typical Applications
Chemical Processing: Ideal for block heat exchangers operating in strong acid and strong alkali corrosion environments.
Pharmaceutical Industry: Suitable for critical heat transfer steps in API and fine chemical synthesis.
Environmental Engineering: Used in waste acid recovery, exhaust gas treatment, and other severe-duty pollution control systems.
Customization Options
We specialize in providing tailored solutions. The shape, hole pattern, and sealing method of the heat exchange block can be fully customized according to your specific design drawings and application requirements.
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