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Thermal Protection Fabric Heat Radiation Tester GT-C96 1
Thermal Protection Fabric Heat Radiation Tester GT-C96 1

Thermal Protection Fabric Heat Radiation Tester GT-C96

5.0
Model:
GT-C96
MOQ:
1 Piece
Place of Origin:
Quanzhou,China(Mainland)
Brand:
GESTER
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    Thermal Protection Heat Radiation Tester GT-C96

    Conforms to ISO 6942-2002 (EN366) standards

    It is used for the Radiant Heat Level C Classification Test of heat-resistant gloves, heat-resistant clothing and protective boots.


    Standards 

    ISO 6942-2002 Test A+Test B, EN 366, EN 407, ISO 11611, ISO 11612


    Model: GT-C96

    Power Supply: 1∮ AC 220V 50Hz 10KW

    Machine Dimensions: 130X63X135cm (LXWXH)

    Weights: 110kg

    Test Environment: 10°C~35°C

    Air Compressed: ≥0.3 MPa (Customer-Supplied)

    Tap Water: Suitable for water supply, drainage, or chiller unit

    Installation: Floor-standing

    Heat Radiation (Thermal Protection) Tester GT-C96 (2)

    Product Details

    • 1.The test device consists of a radiant heat source, a sample holder, a dedicated copper calorimeter conforming to ISO 6942, and a data acquisition & computer software system.
    • 2.The radiant heat source adopts PID temperature control with a temperature control accuracy of ±1℃.
    • 3.The water-cooled plate of the sample holder adopts tap water circulation (water cooling device or tap water is optional).
    • 4.The heat source is equipped with a pneumatic automatic axial displacement control system, which protects operators from high-temperature hazards.
    • 5.Operators only need to load the sample without manually moving it to the designated position.
    • 6.An integrated computer stand is installed on the right side of the instrument, eliminating the need for an additional computer desk and facilitating user operation.
    • 7.Two dedicated copper calorimeters shall be provided: one for testing and one for calibration. The calibration calorimeter can be accompanied by a metrological verification certificate issued by an authorized institute.
    • 8.The copper disc calorimeter is made of imported oxygen-free superconducting copper, ensuring stable specific heat capacity of the copper sheet.
    • 9.Equipped with an air-cooled heat dissipation device for the calorimeter, enabling rapid cooling of the calorimeter to proceed to the next test quickly.
    • 10.Equipped with a professional data acquisition card with a sampling frequency of up to 20Hz.
    Heat Radiation (Thermal Protection) Tester GT-C96 (2)

    Key Specification

    Radiant Heat Source: 

    Composed of 6 groups of SiC heating elements;

    Total length: 356mm±2mm;

    Heating section length: 178mm±2mm;

    Diameter: 7.9mm±0.1mm

    Radiant Source Heating Capacity: Max. 1100℃±10%, with PID regulating controller.

    Radiant Source Flux: 10, 20, 40kW/m² stepless adjustable (max. 80kW/m²)

    Specimen Clamp: Specimen Clamp (Method A) &Specimen Clamp (Method B)

    Copper Calorimeter for ISO 6942: ±3% F.S. calorimeter accuracy 

    (measures sample backside temperature rise)

    Blackbody Coating Absorptivity (Calorimeter Surface) : ≥ 0.9

    Faqs

    The Radiant Protective Performance Tester meets ISO 6942 requirements and can perform Method A & Method B tests.

    1
    What temperature is generated by the radiant heat source in ISO 6942 Method B?
    The radiant heat source in ISO 6942 Method B delivers a radiant flux density of 80 kW/m² (corresponding to high-temperature radiant exposure conditions).
    2
    What are the different classifications for protective clothing under ISO 6942?
    Protective clothing is classified into 4 classes (Class 1–Class 4) based on the Critical Radiant Flux (CRF) value. Higher classes indicate stronger resistance to radiant heat.
    3
    What other standards test heat-resistant fabrics?
    EN 366, EN 407, ISO 11611, ISO 11612
    4
    Why is radiant heat protection testing important?
    It evaluates if fabrics can shield wearers from high radiant heat (e.g., in fire, welding, or furnace work), ensures PPE meets safety requirements, guides product design/selection, and reduces burn risks in hazardous environments.
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