Full-Temperature-Range Crystallization Rates of Polyamides by Fast Scanning Calorimetry as Key to Processing

Author:

Vanden Poel Geert,Istrate Daniel,Mathot Vincent

Publisher

Springer International Publishing

Reference17 articles.

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2. Minakov AA, Adamovsky SA, Schick C (2005) Non adiabatic thin-film (chip) nanocalorimetry. Thermochim Acta 432:177–185; Adamovsky S, Schick C (2004) Ultra-fast isothermal calorimetry using thin film sensors. Thermochim Acta 415:1–7; Adamovsky A, Minakov AA, Schick C (2003) Scanning microcalorimetry at high cooling rate. Thermochim Acta 403:55–63; Minakov AA, Schick C (2007) Ultrafast thermal processing and nanocalorimetry at heating and cooling rates up to 1 MK/s. Rev Sci Instr 78:073902-073910; Zhuravlev E, Schick C (2010) Fast scanning power compensated differential scanning nano-calorimeter: 1. (2010) The device. Thermochim Acta 505:1–13; 2. (2010) Heat capacity analysis. Thermochim Acta 505:14–21

3. Mathot V, Pyda M, Pijpers T, Vanden Poel G, van de Kerkhof E, van Herwaarden S, van Herwaarden F, Leenaers A (2011) The Flash DSC 1, a power compensation twin-type, chip-based fast scanning calorimeter (FSC): First findings on polymers. Thermochim Acta 522:36–45

4. Mathot VBF, Vanden Poel G, Pijpers TFJ (2008) Chapter 8: benefits and potentials of high performance differential scanning calorimetry (HPer DSC). In: Brown ME, Gallagher PK (eds) Handbook of thermal analysis and calorimetry. Elsevier Science BV, Amsterdam, pp 269–297

5. www.mt .com/ta-flashdsc

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