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High Pressure DSC Differential Scanning Calorimeter Oxygen Induction Time Oit

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High Pressure DSC Differential Scanning Calorimeter Oxygen Induction Time Oit

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Brand Name :JINHAIHU
Model Number :DSC-100A
Certification :ISO 9001
Place of Origin :BEIJING, CHINA
MOQ :1 set
Payment Terms :T/T,L/C,Western Union,MoneyGram,D/A,D/P
Supply Ability :20 sets per month
Delivery Time :7-15 working days
Packaging Details :Conventional export wooden crates
Product name :Differential Scanning calorimeter (DSC)Oxygen Induction Time (OIT)
Model :DSC-100A
Certificate :ISO, CE
DSC Range :0~±600mW
Temperature Range :Room temperature ~ 600℃ Air cooling
Heating Rate :0.1~100 ℃/min
Temperature Resolution :0.01℃
Temperature Fluctuation :±0.01℃
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Differential Scanning calorimeter (DSC)Oxygen Induction Time (OIT)


Brief introduction of the instrument:

Differential scanning calorimetry (DSC) technique is widely applied. The differential scanning calorimeter serves as both a routine quality testing tool and a research instrument, measuring the temperature and heat flow associated with internal thermal transitions in materials. Our instrument is a heat flow type differential scanning calorimeter, featuring good repeatability and high accuracy, which is particularly suitable for precise specific heat measurement. The equipment is easy to calibrate, uses low - melting - point materials, is fast and reliable, and has a very broad application range, especially in material research and development, performance testing, and quality control. Material properties such as glass transition temperature, cold crystallization, phase transition, melting, crystallization, product stability, curing/crosslinking, oxidation induction period, etc., fall within the research scope of differential scanning calorimetry. Different models should be selected according to experimental parameters and requirements.


Instrument use:

Measurement of curing reaction temperature and thermal effect in polymer materialsMeasurement of material phase transition temperature and thermal effectMeasurement of crystallization, melting temperature and thermal effect in polymer materialsGlass transition temperature testing of polymer materials, etc.


Reference standard:

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: Determination of oxidation induction time (isothermal OIT) and oxidation induction temperature (kinetic OIT).


Technical parameter:

DSCDSC-100A Differential scanning calorimeters
DSC range0~±600mW
Temperature rangeRoom temperature~600℃
Heat-up rate0.1~100℃/min
Temperature resolution0.01℃
Temperature fluctuations±0.01℃
Temperature reproducibility±0.1℃
DSC accuracy0.001mW
DSC sensitivity0.01uW
Temperature control methodHeating up and constant temperature (automatic control of the whole program)
Curve scanHeating up the scan
Air controlThe instrument switches automatically
Display modeThe 24bit color 7-inch LCD touchscreen display is shown
Data interfaceStandard USB interface
Instrument standardsEquipped with standard substances (tin), the user can correct the temperature and thermal enthalpy
NoteAll technical indicators can be adjusted according to the user needs


High Pressure DSC Differential Scanning Calorimeter Oxygen Induction Time Oit
High Pressure DSC Differential Scanning Calorimeter Oxygen Induction Time OitHigh Pressure DSC Differential Scanning Calorimeter Oxygen Induction Time OitHigh Pressure DSC Differential Scanning Calorimeter Oxygen Induction Time OitHigh Pressure DSC Differential Scanning Calorimeter Oxygen Induction Time Oit

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