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ZH-1000 integrated thermal analyzer for Plastic material analysis

Product ID:WLtb005

Price: Please inquire PDF Format
Supply Ability:40SETS/MON
Port:SHENZHEN
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  • Product Introduction
  • Consulting
  • Model NumberZH-1000
    Brand NameYIMA
    Payment TermsT/T, paypal
    Introduction:
    The integrated thermal analysis combines thermal TG with differential thermal analysis (DTA) or differential scanning calorimetry (DSC), and uses the same sample to simultaneously obtain TG and DTA or DSC information in the same measurement. The comprehensive thermal analysis mainly measures the physical and chemical changes related to the heat such as the melting point of the material, the heat of fusion, the heat of crystallization and crystallization, the reaction heat of phase change, the thermal stability (oxidation induction period), the glass transition temperature, the adsorption and desorption, Analysis of the content of ingredients, decomposition, compound, dehydration, additives and other changes were studied. Flexible design with a wealth of options is the ideal tool in your lab. Instruments are widely used in most materials, including plastics, rubber, synthetic resins, fibers, coatings, fats, ceramics, cement, glass, refractories, fuels, pharmaceuticals, food, refractories and more.
    Features:
    1. 7-inch touch screen display rich information, including the set temperature, sample temperature, DTA signal, thermogravimetric signal, nitrogen flow, oxygen flow, a variety of switch status and other information.
    2. Network port communication interface, versatility, reliable communication without interruption, support for self-recovery connection.
    3. Furnace body structure, lifting temperature rate can be adjusted.
    4. Improve the installation process, all using mechanical fixation, completely avoid the body of the colloid to the poor heat, hot signal pollution.
    5. Dual temperature probe, to ensure high temperature measurement sample repeatability. All the way temperature probe installed in the furnace wall for PID control the temperature of the entire furnace, but because of the thermal inertia of the temperature, conduction to the sample on the temperature there is a certain deviation, and spring, summer, autumn and winter deviations are not the same, so the use of single temperature Probe temperature and temperature control, either differential heat signal or temperature signal, the error is relatively large; the instrument at the bottom of the sample to install a more temperature probe for measuring the true temperature of the sample, and the use of our special temperature control technology, Control the furnace wall temperature so that the sample temperature reaches the set temperature.
    6. Optional gas mass flow meter automatically switches network atmosphere flow, switching speed, short stabilization time.
    7. Standard standard sample to facilitate customers to correct the temperature coefficient.
    Technical Parameters:
    DSC measurement range: ± 500mW
    DSC resolution: ± 0.01μW
    Balance measurement range: 1mg-1000mg (can be customized, up to 50g)
    Weight sensitivity: 0.1μg
    Temperature range: room temperature -1000 ℃
    Temperature accuracy: ± 0.1 ℃
    Temperature resolution: 0.1 ℃
    Heating rate: 0.1 ℃ / mln-100 ℃ / mln adjustable
    Temperature control method: PID temperature control
    Display: 7-inch touch screen
    Atmosphere Control System: Glass Rotameter or Digital Mass Flow Controller, Two-Way Gas Control
    Working power: AC 220V 50HZ or custom (such as 110V 60HZ)

  • Introduction:
    The integrated thermal analysis combines thermal TG with differential thermal analysis (DTA) or differential scanning calorimetry (DSC), and uses the same sample to simultaneously obtain TG and DTA or DSC information in the same measurement. The comprehensive thermal analysis mainly measures the physical and chemical changes related to the heat such as the melting point of the material, the heat of fusion, the heat of crystallization and crystallization, the reaction heat of phase change, the thermal stability (oxidation induction period), the glass transition temperature, the adsorption and desorption, Analysis of the content of ingredients, decomposition, compound, dehydration, additives and other changes were studied. Flexible design with a wealth of options is the ideal tool in your lab. Instruments are widely used in most materials, including plastics, rubber, synthetic resins, fibers, coatings, fats, ceramics, cement, glass, refractories, fuels, pharmaceuticals, food, refractories and more.
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