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BAXIT DSC Differential Scanning Calorimeter BXT-DSC

Categories DSC Differential Scanning Calorimeter
Brand Name: BAXIT
Model Number: BXT-DSC
Certification: CE
Place of Origin: China
MOQ: 1unit
Payment Terms: L/C, D/A, D/P, T/T, Western Union, MoneyGram
Supply Ability: 10000units
Delivery Time: 1-3 working days
Packaging Details: wooden package
DSC range: 0~±500mW
Temperature range: Room temperature~600℃
Heating rate: 0.1~80℃/min
Temperature resolution: 0.01℃
Temperature repeatability: ±0.1℃
DSC noise: 0.001mW
DSC resolution: 0.001mW
DSC accuracy: 0.001mW
DSC sensitivity: 0.001mW
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    BAXIT DSC Differential Scanning Calorimeter BXT-DSC

    BAXIT Differential scanning calorimeter BXT-DSC Oxidation induction period, Glass transition temperature experiment


    Instrument introduction:

    Differential scanning calorimeter (heat flow DSC) is a classic thermal analysis method of thermal effects under controllable program temperature. It is used in the research and development, process optimization, quality control and failure analysis of various materials and chemistry fields. It has been widely used in various occasions. Using the DSC method, we can study the phase transition of inorganic materials, the melting of polymer materials, the crystallization process, the polymorphism of drugs, the solid/liquid ratio of foods such as oils and fats.

    Instrument use:

    Measure physical and chemical changes related to heat, such as glass transition temperature, melting point, melting temperature, crystallization and crystallization heat, phase transition reaction heat, product thermal stability, solidification/crosslinking, oxidation induction period, etc. To

    Technical parameters:

    DSC range0~±500mW
    Temperature rangeRoom temperature~600℃
    Heating rate0.1~80℃/min
    Temperature resolution0.01℃
    Temperature repeatability±0.1℃
    DSC noise0.001mW
    DSC resolution0.001mW
    DSC accuracy0.001mW
    DSC sensitivity0.001mW
    Temperature control methodheating, constant temperature (full program automatic control)
    Curve scanheating scan
    Atmosphere controlautomatic instrument switching
    Gas flow rate0-200mL/min
    Gas pressure0.2MPa
    Display mode24bit color 7-inch LCD touch screen display
    Data interfacestandard USB interface
    Parameter standardEquipped with standard materials, with one-key calibration function, users can calibrate temperature and enthalpy by themselves
    Power supplyAC 220V 50Hz or customized
    Power600W

    Main features:

    1. The new fully enclosed metal furnace body design structure greatly improves the resolution and resolution and better baseline stability. To

    2. Using professional alloy sensor, it is more resistant to corrosion and oxidation, and the sensor has high sensitivity.

    3. Perfect two-way atmosphere control system, precise control of purge gas flow, automatic switching of software settings, and data directly recorded in the database.

    4. Using Cortex-M3 core ARM controller, the calculation processing speed is faster, and the temperature control is more accurate.

    5. Using USB two-way communication, the operation is more convenient and supports self-recovery connection function.

    6. Using 7-inch 24bit color full-color LCD touch screen, real-time display of the status and data of the instrument.

    7. The instrument is equipped with standard materials, and users can calibrate each temperature section by themselves to reduce the error of the instrument.

    8. Intelligent software design, automatic drawing of the instrument in the whole process, the software can realize various data processing, such as the calculation of enthalpy, glass transition temperature, oxidation induction period, melting point and crystallization of substances, etc.


    Guideline:

    GB/T 19466.2-2004 / ISO 11357-2: 1999 Part 2: Determination of glass transition temperature;

    GB/T 19466.3-2004 / ISO 11357-3: 1999 Part 3: Determination of melting and crystallization temperature and enthalpy;

    GB/T 19466.6-2009/ISO 11357-3:1999 Part 6 Oxidation induction period Determination of oxidation induction time (isothermal OIT) and oxidation induction temperature (dynamic OIT).


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