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Pressureless Sintered Silicon Carbide (SSiC) Thermocouple Protection Tubes

Categories Silicon Carbide Ceramic
Brand Name: KeGu
Model Number: Customizable
Place of Origin: China
Price: 200-500 yuan/kg
Payment Terms: L/C,D/A,D/P,T/T,Western Union,MoneyGram
Supply Ability: 2,000 pcs/month
Packaging Details: Strong wooden box for Global shipping
Density: >3.06g/cm3
Flexural Strength: 380MPa
Material: SiC
Composition:SiC: >98%
Color: Black
Max. Service Temp: 1650°C
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Pressureless Sintered Silicon Carbide (SSiC) Thermocouple Protection Tubes

​Pressureless Sintered Silicon Carbide (SSiC) Thermocouple Protection Tubes


Description:

Pressureless sintered silicon carbide (SiC) thermocouple protection tubes are high-performance ceramic tubes fabricated from high-purity SiC using a pressureless sintering process. Their key advantages include high strength, exceptional high-temperature resistance, superior corrosion resistance, and excellent thermal shock resistance, making them ideal for temperature measurement in extreme industrial environments. They provide long-term, stable protection for thermocouples against physical and chemical degradation.


Typical application:

  1. Metallurgy
    • Temperature measurement in molten steel, iron, copper, and aluminum, replacing traditional metal tubes to reduce replacement costs.
  2. Chemical and Energy Industries
    • High-temperature gas turbines, waste incinerators, and sulfur incinerators operating in corrosive gas environments.
  3. Ceramics and Glass Manufacturing
    • Internal temperature monitoring in glass furnaces and ceramic kilns to ensure process stability.
  4. Semiconductors and New Energy
    • Temperature control in high-temperature reactors and salt bath furnaces used in lithium-ion battery and photovoltaic production.


Feature:

  1. High-Temperature Resistance
    • Maximum operating temperature: Up to 1,650°C in air and 1,900°C in inert gases, significantly exceeding traditional metal protection tubes (e.g., stainless steel, which withstands only 600–800°C).
    • Thermal stability: Maintains a flexural strength of 380 MPa, preventing deformation or fracture under high temperatures.
  2. Corrosion and Oxidation Resistance
    • Chemical stability: Resistant to strong acids (e.g., hydrochloric, nitric, sulfuric acid) and molten metals (e.g., Zn, Sn, Pb) without corrosion, with oxidation resistance surpassing that of alumina ceramics (7× stronger at 1,300°C).
    • Erosion resistance: Suitable for environments containing oxygen, sulfur, tar, and other corrosive media, such as high-temperature combustion gases and fuel oils.
  3. Thermal Shock and Wear Resistance
    • Coefficient of thermal expansion: 4.85 × 10⁻⁶/°C, closely matching metal thermocouples to minimize cracking risks caused by thermal expansion mismatches.
    • Wear resistance: Vickers hardness of 2350 kg/mm2, enabling resistance to high-velocity fluid or particle erosion for extended service life.
  4. Thermal Conductivity
    • Thermal conductivity: 160 W/(m·K), ensuring rapid heat transfer to the thermocouple for short response times and high measurement accuracy.


The physical properties of pressureless sintered silicon carbide ceramics products:


Physical propertiesUnitSSiC
Composition:SiCVol%≥98
Density 20 ℃g/cm3≥3.06
Open PorosityVol%≈0
HardnessRockwell Hardness 45NR45N93
Vickers Hardness HV1kg/mm22350
Flexural Strength20°CMPa320-400
1300°CMPa300-400
Coficient of Thermal Expansion10-6K-14.0
hermal Conductivity20°CWm-1K-1196
1200°CWm-1K-160
Modulus of Elasticity @ RTGPa410
Thermal shock resistance>350
Max. Service Temp (air)1650


Available product sizes:

Maximum operating temperature: 1,650°C.

Maximum length: 3 meters.

Maximum outer diameter: 190 mm.

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