►Product introduction:
LY-DSC1000 is one of the most accurate DSC series products launched
by the company. The sensor is made of imported material E-pair,
which has high accuracy, high sensitivity and good repeatability.
The signal acquisition circuit has shielding protection, strong
anti-interference, and extremely high baseline stability and
repeatability.
LY-DSC1000 differential scanning calorimeter can be used to test
glass transition temperature, phase transition temperature, melting
point, enthalpy value, curing temperature, product stability,
oxidation induction period, etc. It is competent in the research of
pipes, polymers, chemicals, food, medical treatment and many other
fields, and its products serve universities, enterprises,
third-party measurement and quality inspection units, with a wide
range of applications to meet the testing needs of various
industries.
►Technical parameter:
1. Temperature range :Room temperature~1150℃
2. Temperature resolution: 0.001℃
3. Temperature fluctuation:±0.01℃
4. Temperature repeatability:±0.1℃
5. Heating rate: 0.1~100℃/min
6. Incubation time:Program setting≤300min
7. Temperature Control:Heating up, constant temperature, cooling
down(Full automatic program control)
8. DSC Range: 0~±600mW
9. DSC Resolution: 0.01uW
10. DSC Sensitivity: 0.001mW
11. Working Power Supply: AC220V/50Hz Or customized
12. Atmosphere Control Gas:Nitrogen, Oxygen(Program
setting/automatic switching)
13. Gas Flow:0-300mL/min
14. Gas Pressure:0.2MPa
15. Display Mode: 24bit color,7-inch LCD touch screen display
16. Data Interface:Standard USB interface
17. Parameter standard: Equipped with reference materials (indium,
tin),The user can correct the temperature by himself
18. The instrument has multiple sets of thermocouples,Temperature
of a group of measured samples,One group to measure furnace
temperature,One group measures the internal ambient temperature
19. Cooling device:Air cooling device(Optional
semiconductor<-40~550℃>,Liquid nitrogen
refrigeration<-150~550℃>)
►Technical characteristics:
- Industrial 7-inch touch screen with rich information.
- New furnace structure, better baseline and higher precision.
Heating by indirect conduction, high uniformity and stability,
reduced pulse radiation, better than traditional heating mode.
- USB communication interface, with strong universality, reliable
communication without interruption, and support for self recovery
connection function.
- Automatic switching of two atmospheric flows, fast switching speed
and short stabilization time. At the same time increase one way
protective gas input.
- The software is simple and easy to operate.
- Ultra high sensitivity,accuracy, 0.001mw,0.001℃
- Excellent technical indicators,Superior performance,High cost
performance,Widely used.
►Software introduction:
- Oxidation period test of PE, PPR and other pipes:
The oxidation induction time (OIT) was measured by DSC
(differential scanning calorimeter). The sample is usually heated
to the specified temperature and constant temperature under
nitrogen atmosphere, and then switched to oxygen atmosphere. After
a period of time, the material begins to oxidize and release heat.
The released heat is detected by the sensor, and the induced
oxidation time (OIT) is obtained through software analysis. The
length of the oxidation induction time is a parameter of the
oxidation decomposition resistance of the reaction material, which
is still very meaningful. Usually, the parameter must be detected
for buried plastic pipes.
- Glass transition test of resin and other materials:
For amorphous polymers, when the polymer changes from a high
elastic state to a glass state through cooling, or from a glass
state to a high elastic state through heating, the process is
called the glass transition, and the temperature at which the glass
transition occurs is called the glass transition temperature. For
crystalline polymers, the glass transition refers to the transition
of the amorphous part from the high elastic state to the glass
state (or the glass state to the high elastic state). Therefore,
glass transition is a common phenomenon in polymers. However, the
glass transition phenomenon is not limited to polymers, and some
small molecular compounds also have glass transition.
- Material melting point and enthalpy test (thermal stability test)
The melting point is the temperature at which a solid changes its
state of matter from solid to liquid, and the peaks of
multi-component mixtures are also multi-peaks; The measurement of
enthalpy value is also applicable to the measurement and analysis
of crystallinity.
- Curing test of glue and other materials
Refers to the process of material from low molecular weight to high
molecular weight, and the strength of solidified sample will be
higher;
Optional accessories:

