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Cryogenic Chamber CTC-05
Labotemp Cryogenic Chamber
Labotemp Cryogenic Chamber

Cryogenic Chamber CTC-05

Labotemp Cryogenic Test Chamber CTC-05 Low-Temperature Impact Testing Chamber is a precision liquid nitrogen–cooled test chamber designed for controlled low-temperature impact testing of materials in accordance with international standards. Operating over a wide temperature range from +30°C to –196°C, this system is widely used for specimen conditioning prior to pendulum impact tests such as Charpy where accurate temperature control is critical to reliable material performance evaluation. The chamber applies a heat-balance circulation principle combined with forced air convection to ensure uniform cooling and stable specimen temperature before testing.
Liquid nitrogen refrigeration enables rapid cooling, while digital temperature resolution of 0.1°C allows precise control during specimen conditioning. The chamber accommodates up to 60 specimens, supports independent sample loading without disturbing other specimens, and uses an imported cryogenic solenoid valve for stable cooling performance.

Why choose Labotemp Cryogenic Test Chamber CTC-05?

✓Ultra-low temperature range: Reliable conditioning down to –196°C

✓Uniform cooling: Circulating airflow ensures consistent specimen temperature

✓Standards compliant: Designed for international impact testing requirements

$7422
Model CTC-05
Temperature Range +30° C to -196° C
Temperature Control Accuracy ±2° C
Cold Room Volume (L × W × H) 275 × 160 × 120 mm
Overall Dimensions (L × W × H) 710 × 600 × 740 mm
Chamber Material Stainless Steel
Specimen Capacity More than 60 specimens
Digital Timer 1 min to 9999 min (Resolution: 1 min)
Refrigeration Method Liquid nitrogen refrigeration
Cooling Medium Liquid nitrogen
Power Consumption 100 W
Remarks Cold room volume can be customized according to customer requirements
  • ➤ Simple Operation
  • ➤ Uses liquid nitrogen refrigeration technology to achieve ultra-low temperatures down to -196° C
  • ➤ Designed in accordance with GB/T 229 Metal Charpy Pendulum Impact Test Method requirements
  • ➤ Applies the principle of heat balance and forced circulation to ensure uniform specimen cooling
  • ➤ Constructed entirely from stainless steel, providing durability, corrosion resistance, and long service life
  • ➤ Equipped with a circulating fan system to maintain consistent temperature distribution inside the chamber
  • ➤ Allows single-specimen sampling without affecting the temperature stability of other specimens
  • ➤ Integrates an imported cryogenic liquid nitrogen solenoid valve for reliable and controlled cooling
  • ➤ Features a high-performance temperature control system with simple operation and stable performance
  • ➤ This low-temperature impact testing chamber is used for specimen cooling and insulation in Charpy impact testing under ultra-low temperature conditions
  • ➤ It is suitable for metallurgical laboratories, materials testing centers, quality control departments, and research institutions, and can also be applied to other low-temperature detection and testing requirements

  • Simple Operation
  • Uses liquid nitrogen refrigeration technology to achieve ultra-low temperatures down to -196° C.
  • Designed in accordance with GB/T 229 Metal Charpy Pendulum Impact Test Method requirements.
  • Applies the principle of heat balance and forced circulation to ensure uniform specimen cooling.
  • Constructed entirely from stainless steel, providing durability, corrosion resistance, and long service life.
  • Equipped with a circulating fan system to maintain consistent temperature distribution inside the chamber.
  • Allows single-specimen sampling without affecting the temperature stability of other specimens.
  • Integrates an imported cryogenic liquid nitrogen solenoid valve for reliable and controlled cooling.
  • Features a high-performance temperature control system with simple operation and stable performance.

This low-temperature impact testing chamber is used for specimen cooling and insulation in Charpy impact testing under ultra-low temperature conditions. It is suitable for metallurgical laboratories, materials testing centers, quality control departments, and research institutions, and can also be applied to other low-temperature detection and testing requirements.

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