The oxidation induction tester 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. Cold crystallization, phase transition, melting, crystallization, thermal stability, solidification/crosslinking, oxidation induction period, etc. are all research and development areas of DSC. For some research institutions, polymer materials, chemical, food, and pharmaceutical industries, they often use oxidation induction testers to measure the properties of materials and analyze experimental data. In fact, oxidation induction time (OIT) is the time it takes for a sample to undergo automatic catalytic oxidation reaction under high temperature (200 ℃) oxygen conditions. It is an indicator of the material's ability to withstand heat degradation during molding, storage, welding, and use.
The oxidation induction tester 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. Cold crystallization, phase transition, melting, crystallization, thermal stability, solidification/crosslinking, oxidation induction period, etc. are all research and development areas of DSC. For some research institutions, polymer materials, chemical, food, and pharmaceutical industries, they often use oxidation induction testers to measure the properties of materials and analyze experimental data. In fact, oxidation induction time (OIT) is the time it takes for a sample to undergo automatic catalytic oxidation reaction under high temperature (200 ℃) oxygen conditions. It is an indicator of the material's ability to withstand heat degradation during molding, storage, welding, and use.
Technical features:
1. Adopting a microcomputer widescreen touch structure, the display information is rich, including set temperature, sample temperature, oxygen flow rate, nitrogen flow rate, differential thermal signal, and various switch states.
2. Network communication interface, strong universality, reliable and uninterrupted signal, supports self recovery connection function.
3. The furnace structure is compact, and the heating and cooling rate can be adjusted arbitrarily.
4. Improved installation process, all using mechanical fixation method to avoid contamination of differential thermal signals by colloids inside the furnace body.
5. Dual temperature probes ensure high repeatability of sample temperature measurement.
6. The digital gas quality flowmeter automatically switches between two gas flow rates, with fast switching speed and short stability time.
7. Standard samples as standard, with automatic temperature calibration function.
8. Embedded industrial control computer, no need to connect to the computer, directly test the oxidation induction period time, and automatically print the test results.
9. The oxidation induction period test chart can be exported using a USB drive.
10. PC software adapts to various resolutions of computer screens; Supports laptops, desktops, and operating systems such as WIN2000, XP, WIN7, WIN8, WIN10, etc.
11. Support testing of parameters such as oxidation induction period, melting point, glass transition temperature, and specific heat, with one click operation by customers and fully automatic software operation.
12. Easy to operate, no testing experience required, only a small amount of training is needed.
13. The software is suitable for computer screens of various resolutions.
14. Dual temperature probes ensure high precision and repeatability
15. The experimental process does not require personnel supervision
16. Digital gas mass flowmeter automatically switches between two gas flow rates
17. Software can be upgraded online for free
18. Seven inch large screen LCD display, with clear graphs and curves at a glance