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Instructions and application notes

  • Heating microscope in general
  • Heating microscope EM201
  • Heating microscope EM301

Exchange and adjustment of the specimen holderGermanEnglish
Exchange of the working tubeGermanEnglish
Exchange of the halogen bulbGermanEnglish
Correct position of a specimen in the heating microscopeGermanEnglish
Specimen preparationGermanEnglish
Operation of the furnace control EPAGermanEnglish
Calibration of the temperature measurement chain of the specimen thermocouple with goldGermanEnglish
Exchange and Adjustment of the quartz glass disc 30/2GermanEnglish
Operation of the image analysis software EMI 2GermanEnglish
Installation of the image analysis software EMI 2GermanEnglish
Archiving and restoring measurementsGermanEnglish
Calibration of the temperature measurement chain of the specimen thermocouple with goldGermanEnglish
Exchange and Adjustment of the quartz glass disc 30/2GermanEnglish
Shock heatingGermanEnglish
Adjustment of the heating microscope EM301GermanEnglish
Operation of the heating microscope software EMI III for version 3.0.6GermanEnglish
Operation of the heating microscope software EMI III as of version 3.0.7GermanEnglish
Operation of the heating microscope software EMI III as of version 3.1.3GermanEnglish
Installation of the heating microscope software EMI IIIGermanEnglish

Application reports

Data sheets

Three models EM301-…GermanEnglish
Heating microscope software EMI IIIGermanEnglish
Furnace control EPAGermanEnglish
Tube furnace M16 & M17GermanEnglish
Optical benchGermanEnglish

Product information and safety instructions

Installation of the EMI III upgradeGermanEnglish
Heating microscope with software EMI IIIGermanEnglish
Heating microscope EM301GermanEnglish
Heating microscope EM201GermanEnglish

Brochures and catalogue

Heating microscope EM301GermanEnglish
Complete catalogueGermanEnglish
Comparison of EMI 2 and EMI IIIGermanEnglish
Upgrade EMI IIIGermanEnglish
Comparison of Hesse Instruments SubstratesGermanEnglish
Vecstaudza, Jana et al. (2018): Amorphous calcium phosphate materials: Formation, structure and thermal behaviour. In: J. Eur. Ceram. Soc 39 (4), pp. 1642-1649
Tonnesen, Thorsten et al. (2014): Influence of microstructural elements of refractory castables on the infiltration and corrosion by molten aluminum alloys. In: Proceedings on 57th International Colloquium on Refractories
Vecstaudza, Jana et al. (2018): Amorphous calcium phosphate materials: Formation, structure and thermal behaviour. In: J. Eur. Ceram. Soc 39 (4), pp. 1642-1649
Kirsten, Armin (2015): Oberflächenfunktionalisierung dentaler Zirkonoxid-Implantate mittels bioaktiver Glasbeschichtungen aus dem System SiO2-Na2O-K2O-CaO-MgO-P2O5. Dissertation. RWTH Aachen, Aachen. Lehrstuhl für Keramik und feuerfeste Werkstoffe und Institut für Gesteinshüttenkunde.
Song, Wenjia et al. (2014): Fusion characteristics of volcanic ash relevant to aviation hazards. In: Geophys. Res. Lett. 41 (7), pp. 2326–2333
Wadsworth, Fabian et al. (2016): Sintering of viscous droplets under surface tension. In: Proc. R. Soc. A 472
Wadsworth, Fabian et al. (2014): Nonisothermal viscous sintering of volcanic ash, J. Geophys. Res. Solid Earth, 119, pp. 8792– 8804
Song, Wenjia et al. (2017): Wetting and Spreading of Molten Volcanic Ash in Jet Engines, J. Phys. Chem. Lett. 8 (8), p. 1878-1884
Wadsworth, Fabian et al. (2017): Sintering of polydisperse viscous droplets, Phys. Rev. E 95
Alkan, Gözde et al. (2022): Assessment of Metallurgical Slags as Solar Heat Absorber Particles, Minerals, 12(2), p. 121
Alkan, Gözde et al. (2024): LiDonit®—A Potential Secondary Raw Material for Ceramic Applications in Concentrated Solar Energy. Minerals, 14(8), p. 752