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Research / Development, Academia

Research / Development, Academia

  • To what extent is the electrode material of the fuel cell changed by the occurring reactions?
  • How can thermal parameters for simulation calculations be precisely determined?
  • At what temperature is the secondary phase transition?
  • What crystal modifications occur with the material?
  • Are the individual components 100% compatible?

These or similar questions can be answered with our modern thermoanalytical measuring techniques. We have the ideal solution for your research activities, product development and process optimization.

Find out more about the versatile application possibilities of our thermoanalytical measuring systems, the extensive accessory options we offer and our user-friendly software.

Take advantage of all the information contained in your measurements by employing our Advanced Software Packages.



Our method recommendation for you:

Differential Scanning Calorimetry / Differential Thermal Analysis (DSC / DTA)Differential Scanning Calorimetry / Differential Thermal Analysis (DSC / DTA)
DSC and DTA quantitatively determine conversion temperatures and enthalpies for solids and liquids by measuring the heat flows to both the sample and to a reference as a function of temperature and time.
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Thermogravimetry (TGA, TG)Thermogravimetry (TGA, TG)
Thermogravimetry (TGA, TG) determines the temperature- and time-dependent changes in the mass of a sample that occur during a specific temperature program and in a defined atmosphere. The respective instrument is called a thermobalance.
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Simultaneous Thermogravimetry - Differential Scanning Calorimetry STA (TG-DSC)Simultaneous Thermogravimetry - Differential Scanning Calorimetry STA (TG-DSC)
STA denotes the concurrent application of two or more measuring methods to the same sample. The classic simultaneous method is the combination of thermogravimetry with DSC or DTA.
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Dilatometry / Thermomechanical Analysis / Dynamic-Mechanical Analysis (DIL / TMA / DMA / GST)Dilatometry / Thermomechanical Analysis / Dynamic-Mechanical Analysis (DIL / TMA / DMA / GST)
For precise measurements of dimensional changes on solids, dilatometry (DIL) is the method of choice. With thermomechanical analysis (TMA), the loading can additionally be adjusted. Dynamic-Mechanical Analysis (DMA) measures visco-elastic properties by applying an oscillating force to the sample.
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Dielectric Analysis (DEA)Dielectric Analysis (DEA)
Dielectric Analysis (DEA) measures changes in dipole orientation and ion mobility in polymers and cross-linked systems by stimulation with an alternating voltage via sensor electrodes. The DEA method can also be used for online-processes (e.g. cure monitoring) with a suitable sensor technique.
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Thermal Diffusivity / Thermal Conductivity (LFA / GHP / HFM / TCT)Thermal Diffusivity / Thermal Conductivity (LFA / GHP / HFM / TCT)
The Laser Flash Method (LFA) is a well established technique for the determination of thermal diffusivity, in which the increase in the sample’s temperature resulting from the absorption from a laser flash is measured. With HFM (Heat Flow Meter), GHPand TCT (Thermal Conductivity Tester), the thermal conductivity of insulating materials and refractories can be determined.
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Gas Analysis / Couplings (QMS, FTIR, SKIMMER)Gas Analysis / Couplings (QMS, FTIR, SKIMMER)
Mass- and Infrared spectrometry serve to detect and identify volatile emissions from a sample during a temperature treatment. We offer perfect solutions for coupling of QMS and FTIR with our thermal analyzers.
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