Model: ndj-1s
Display mode: Digital
Rotor speed (R / min): 6, 12, 30, 60 (4 speeds)
Rotor (standard configuration): 1, 2, 3, 4 (a set of 4 kinds)
Measurement range (MPa. S): 0.1-100000 (100000), and optional 0# rotor is required below 10
Measurement error: ± 2% (Newtonian liquid)
Overall dimension: 300x300x450
- Product Details
- Product manual
Scope of application
It is widely used in ink, paint, coating, oil, grease, milk products, fruit juice, cream, starch slurry, chocolate, chemicals, cosmetics, adhesives, adhesives, biological liquids, latex, pharmaceuticals, photoresists, polymer solutions, rubber solutions, solvents, asphalt, ceramic slurry, pulp, plastic sol, surface coatings, etc.
With the advantages of accurate measurement, good repeatability, complete functions and simple use, the instrument has been selected by customers in various industries.
Product features
1. The optical liquid crystal display can display the rotor number, rotating speed, viscosity, torque percentage, sample temperature and other conventional information, as well as the shear rate and shear stress;
2. With automatic scanning function, it can automatically recommend the * combination of rotor and speed to ensure the high accuracy of the test;
3. Multiple rotors can be used for one machine: ordinary rotor (1#, 2#, 3#, 4#); High viscosity rotor (5#, 6#, 7#);
4. More advanced accuracy calibration technology is adopted. The accuracy and linearity of each gear are measured and corrected by external computer with standard silicone oil of different viscosity. Ensure the high precision and accuracy of the instrument;
5. It has out of range alarm function;
6. The temperature measuring probe can be selected to measure the temperature of the tested sample in real time. The temperature measurement range is 0 ~ 100 ℃, and the temperature measurement accuracy is 0.1 ℃;
7. It is equipped with RS232 (or USB2.0) interface to connect to the computer;
8. The standard data processing software can record the changes of viscosity with shear rate, time and temperature in real time, which provides a good method to understand the viscosity characteristics of non-Newtonian liquids.