Mettler Toledo HP DSC 2+Thermal Analysis System

The low-inertia, quick heating/cooling DSC furnace is built into a pressure vessel that is water-cooled in the Mettler Toledo HP DSC 2+.

SKU: 27124

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Mettler Toledo HP DSC 2+Thermal Analysis System

Increased pressure is a factor that influences all physical changes and chemical reactions in which a change in volume occurs. For material testing, process development, or quality control there is often no alternative to DSC measurements under pressure. Measurements performed under pressure expand the scope of thermal analysis.

The low-inertia, quick heating/cooling DSC furnace is built into a pressure vessel that is water-cooled in the Mettler Toledo HP DSC 2+. Special insulation has been installed in the furnace to prevent temperature gradients. This ensures a consistent baseline, even under more intense pressure.

Mettler Toledo HP DSC 2+ Features

  • Shorter analysis times – higher pressure and temperature accelerate reactions
  • Measurements under process conditions – simulation of practical reaction environments
  • Better interpretation – effects can be separated by suppressing vaporization
  • Higher gas concentrations – reaction rate of heterogeneous reactions with gases is increased
  • Measurements under special atmospheres – oxidative, oxygen-free conditions or measurements with toxic or combustible gases are possible
  • Robust sensor with high resolution and outstanding sensitivity – measurement of very weak effects as well as excellent temperature resolution of close-lying effects 

Mettler Toledo HP DSC 2+ Specifications

Technique High-Pressure Differential Scanning Calorimetry
Differential Scanning Calorimetry (DSC)
Applications Glass Transition
Heat Capacity (cp)
Crystallization
Kinetics
Oxidation Induction Time (OIT)
Temperature Modulated DSC
Data Sampling Max. 50 data pts/sec
Sensor Types FRS 6+
HSS 9+
Temperature Range 22 °C – 700 °C
Options Microscopy
Photocalorimetry
Signal Time Constant 1.8 s (FRS)
3.1 s (HSS)
Sensor Output Heat Flow
Pressure Range 0 MPa – 10 MPa
Heating Rate (/min) 0.1 K – 50 K
Temperature Range 22 °C – 700 °C

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