OIT-600 Oxidation Induction Period Tester Introduction: 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, curing/crosslinking, oxidation induction period, etc. characteristic: 1. The new fully enclosed metal furnace body design structure greatly improves sensitivity and resolution, as well as better baseline stability. 2. Imported alloy sensors are used, which are more corrosion-resistant, anti-oxidation, and have high sensor sensitivity. 3. Adopting Cortex-M3 core ARM controller, the processing speed is faster and the temperature control is more precise. 4. Adopting USB bidirectional communication, fully realizing intelligent operation. 5. Adopt a 7-inch 24 bit full-color LCD touch screen to display the status and data of the instrument in real time. 6. Intelligent software design, instrument automatic drawing throughout the process, software can achieve various data processing, such as enthalpy calculation, glass transition temperature, oxidation induction period, melting point and crystallization of substances, etc. Technical parameters: DSC range: 0 to ± 2000mW Temperature range: Room temperature~600 ℃ Heating rate: 0.1~100 ℃/min Temperature resolution: 0.01 ℃ Temperature repeatability: ± 0.01 ℃ DSC noise: 0.01 μ W DSC resolution: 0.01 μ W DSC accuracy: 0.001mW DSC sensitivity: 0.001mW Temperature control method: heating, constant temperature, cooling (fully automatic program control) Curve scanning: heating scan, cooling scan Atmosphere control: automatic switching of instruments Gas flow rate: 0-200mL/min Gas pressure: 0.2MPa Display mode: 24 bit color 7-inch LCD touch screen display Data interface: Standard USB interface Parameter standard: equipped with standard substances, with one click calibration function, users can calibrate temperature and enthalpy by themselves Working power supply: AC 220V 50Hz or customized Power: 600W
Introduction: 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, curing/crosslinking, oxidation induction period, etc.