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Pressureless Sintered Silicon Carbide (PLSIC) Flanged Tubes with Extreme Corrosion Resistance and 1600 °C Max Service Temperature for High Purity Applications

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
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, ...

Product Details

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Extreme Corrosion Resistance PLSIC Flanged Tubes

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1600 °C Max Service Temperature Silicon Carbide Tubes

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High Purity Ceramic Flanged Tubes

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%
Material: Silicon Carbide Ceramic
Acid Alkaline Proof: Excellent
Solubility: Insoluble
Open Porosity: <0.1%
Flexural Strength: 350-550 MPa
Product Description
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 external pressure, it achieves a denser, more uniform structure than reaction-bonded SiC, delivering unmatched performance where it matters most.

Key Properties & Benefits
  • Extreme Corrosion Resistance & High Purity - Withstands nearly all aggressive chemicals, ensuring fluid purity—critical for ultra-pure water (UPW) systems and high-purity chemical transport.
  • Superior Thermal Performance - Stable in air up to 1600 °C with excellent thermal shock resistance (ΔT>350°C), perfect for high-temperature processes.
  • Exceptional Mechanical Strength & Wear Resistance - High hardness (2350 HV) and flexural strength (up to 400 MPa) ensure long service life under abrasive and high-pressure conditions, reducing downtime.
  • Optimized for Efficiency - Smooth inner surface and high thermal conductivity (196 W/(m*K)) minimize flow resistance and energy consumption.
Technical Specifications
Property Unit Typical Value
Composition: SiC Vol% ≥ 98
Density g/cm³ ≥ 3.06
Flexural Strength (20 °C) MPa 320 - 400
Vickers Hardness (HV1) kg/mm² 2350
Max. Service Temp (air) °C 1600
Thermal Conductivity (20 °C) W/(m*K) 196

Contact us for full technical data sheets and custom specifications.

Ideal Applications
  • Semiconductor Manufacturing: CMP slurry, etchants, UPW systems
  • Chemical & Pharmaceutical: Corrosive and high-purity fluid transfer
  • New Energy: Battery electrode slurry, high-temperature exhaust
  • Industrial & R&D: Wear parts, burner nozzles, lab reactors
Your Trusted PLSIC Partner

At Shaanxi Kegu New Materials, we control the entire manufacturing process—from powder to precision-machined component—ensuring quality, consistency, and the ability to fully customize solutions for your specific pressure, connection, and dimensional requirements.

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