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HCR-2 High Temperature Differential Thermal Analyzer

Product ID:WLcs057

Price: Please inquire PDF Format
Supply Ability:50 SETS/MON
Port:SHENZHEN
  • Product Introduction
  • Other information
  • Model NumberHCR-2
    Brand NameBJHENGJIU
    Payment TermsTT,PAYPAL,Alibaba.com Pay
    HCR-2 High Temperature Differential Thermal Analyzer 
    Introduction:
    The main purpose of a high-temperature differential thermal analyzer is to measure physical and chemical changes related to heat, such as the melting point, melting heat, crystallization and crystallization heat, phase transition reaction heat, thermal stability (oxidation induction period), and glass transition temperature of a substance. Mainly measures physical and chemical changes related to heat, such as the melting point, melting heat, crystallization and crystallization heat, phase transition reaction heat, thermal stability (oxidation induction period), and glass transition temperature of substances.
    characteristic:
    1.Instrument temperature control system, PID temperature control program, high temperature control accuracy. During the process of collecting samples, the system automatically changes the range based on the output signal size.
    2.A complete two-way stable voltage and stable flow atmosphere control system adopts mass flow meter control, which can change the type of gas in the experiment.
    3.The entire measurement process is automatically completed and plotted, and DTA conventional data processing can be completed using software functions; Special data processing (DTA peak area, enthalpy calculation, kinetic parameter calculation, data comparison, multiple algorithm calculation of activation energy, glass transition temperature, comparative method measurement of specific heat, etc.).
    4.Users can use samples such as indium, tin, lead, etc. to calibrate the accuracy of the instrument's temperature, differential heat, and energy.
    5.The automated temperature control software has powerful and flexible functions, a user-friendly interface, rich data analysis functions, and the ability to flexibly set temperature control programs.
    6.Large screen LCD display, real-time display of instrument status and data, two sets of temperature measuring thermocouples, one set of thermocouples displays furnace temperature in real time (regardless of whether the heating furnace is working or not), and the other set of thermocouples displays sample temperature during operation.
    7.Independently developed gas chromatography, mass spectrometry constant temperature connectors, constant temperature belts, and constant temperature controllers: can fully ensure the secondary detection of tar and various reaction gases.
    Technical parameters:
    DSC data
    DSC measurement range ±1mW ~ ±500mW
    DSC accuracy ±0.1μW
    temperature data
    temperature range HCR-1/HQR-1 at room temperature to 1150 ℃
    HCR-2/HQR-2 at room temperature to 1250 ℃
    HCR-3/HQR-3 room temperature~1450 ℃
    HCR-4/HQR-4 at room temperature to 1550 ℃
    Temperature accuracy ±0.1℃
    heating rate 0.1℃/min ~ 100℃/min
    vacuum degree 2.5×10-2pa
    Atmosphere system Adopting a mass flow controller, (can customize an atmosphere system resistant to various corrosive gases)
    Thermostatic controller; Gas chromatography and mass spectrometry connectors; Thermostatic belt (optional)  
    Constant temperature range: room temperature to 400 ℃
     
    Differential Thermal Analysis (DTA)
    measuring range ±10μv ~ ±2000μv
    DTA resolution 0.01μv
    DTA noise <0.01μv
    Crucible Standard configuration: Ceramic crucible 0.06ml or 0.12ml
    Select configuration: aluminum crucible, graphite crucible, quartz crucible, platinum crucible
  • Introduction:
    The main purpose of a high-temperature differential thermal analyzer is to measure physical and chemical changes related to heat, such as the melting point, melting heat, crystallization and crystallization heat, phase transition reaction heat, thermal stability (oxidation induction period), and glass transition temperature of a substance. Mainly measures physical and chemical changes related to heat, such as the melting point, melting heat, crystallization and crystallization heat, phase transition reaction heat, thermal stability (oxidation induction period), and glass transition temperature of substances.
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