Standards:GB/T3810.8-2016 for the determination of linear thermal expansion of ceramic tiles, GB/T16920-2015 for the determination of average linear thermal expansion coefficient of glass, GB/T3074.4-2016 for the determination of thermal expansion coefficient (CTE) of graphite electrodes, GB/T 7320-2018 "Test Method for Thermal Expansion of Refractory Products", GB/T4339-2008 "Determination of Thermal Expansion Characteristic Parameters of Metal Materials", etc.
Main technical parameters
1. Maximum furnace temperature: ZRPY-V1000 1000 ℃, ZRPY-V1400 1400 ℃, ZRPY-V1600 1600 ℃, ZRPY-V1700 1700 ℃
2. Heating speed: adjustable from 0 to 20 degrees per minute, microcomputer program temperature control, temperature control accuracy ± 1 ℃;
3. Measurement of deformation range: ± 1.5mm;
4. The displacement sensor has a sensitivity of 0.1um and automatically calibrates the range;
5. The computer automatically calculates the coefficient of expansion, body expansion, and linear expansion.
6. Automatically calculate the compensation coefficient and automatically compensate, or manually correct it.
7. Sample size: Ф (6-10) × 50mm, (6-10) × (6-10) × 50mm, both square and circular samples are acceptable;
8. Power supply: 220V, 2KW
9. The ZRPY intelligent expansion instrument is connected to a computer to automatically control temperature, record, store, print data, and print temperature expansion coefficient curves. All experimental operations are completed through a computer interface, which is easy to learn and provides a complete set of software.
10. According to experimental requirements, atmosphere protection or vacuum pumping can be applied, with a vacuum degree of -0.09MPa.
Configurations
One ZRPY dilatometer host, one software set, one communication interface and data cable set, one quartz standard sample set, one vacuum seal set, one vacuum pump, and one desktop computer (available on demand).