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Specific parameters of differential scanning calorimeter
Date: 2022-05-19Read: 33
Differential scanning calorimeterIt measures the relationship between temperature and heat flux related to the internal thermal transformation of materials, and has a wide range of applications, especially in material research and development, performance testing, and quality control. Characteristics of materials, such as glass transition temperatureCold crystallization, phase transition, melting, crystallization, product stability, solidification/crosslinking, oxidation induction periodThese are all research fields in differential scanning calorimetry. Let's take a look belowSpecific technical parameters of differential scanning calorimeter.

1. DSC range: 0~±500mW
2. Temperature range: Room temperature~800 ℃, air-cooled
-50 ℃~800 ℃ semiconductor refrigeration*
-100 ℃~800 ℃ liquid nitrogenRefrigeration*
3. Heating rate: 1~80 ℃/min
4. Cooling rate *: 1-20 ℃/min
5. Temperature resolution: 0.1 ℃
6. Temperature fluctuation: ± 0.1 ℃
7. Temperature repeatability: ± 0.1 ℃
8. DSC noise: 0.01 μ W
9. DSC resolution: 0.01μW
10. DSCaccurateDegree: 0.1 μ W
11. DSC sensitivity: 0.1 μ W
12. Temperature control method: heating, constant temperature, cooling (fully programmed automatic control)
13. Curve scanning: heating scan, * cooling scan
14. Atmosphere control: Built in digital mass flow meter*Software control
15. Display mode: Chinese character large screen LCD display
16. Data interface: Rs232 flowmeter
17. Parameter standards: Equipped with standard substances (indium, tin, lead), users can calibrate temperature and thermal conductivity by themselves
18. Warranty period: Five years for the entire machine
19. Note: * is an optional item, and all technical indicators can be adjusted according to user needs
Because differential scanning calorimetry has a wide range of applications, including the determination of curing reaction temperature and thermal effects of polymer materials, phase transition temperature and thermal effects of substances, crystallization and melting temperature and thermal effects of polymer materials, and glass transition temperature of polymer materials, it is necessary to understand its parameters.