Glass transition investigated by a combined protocol using thermostimulated depolarization currents and differential scanning calorimetry
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Publisher
Springer Science and Business Media LLC
Link
http://link.springer.com/content/pdf/10.1007/s10973-009-0060-1.pdf
Reference29 articles.
1. Struik LCE. Physical aging in amorphous polymers and other materials. Amsterdam: Elsevier; 1978.
2. Hutchinson JM. Physical aging of polymers. Prog Polym Sci. 1995;20:703–60.
3. Lunkenheimer P, Wehn R, Loidl A. In: Dielectric spectroscopy on aging glasses, 5th international discussion meeting on relaxations in complex systems, Lille, France, July 07–13. Lille, France: Elsevier Science; 2005. p. 4941–5.
4. Wehn R, Lunkenheimer P, Loidl A. In: Broadband dielectric spectroscopy and aging of glass formers, symposium held in honour of Kia L Ngai, Pisa, Italy, September 16. Pisa, Italy: Elsevier Science; 2006. p. 3862–70.
5. Saiter JM, Grenet J, Dargent E, Saiter A, Delbreilh L. Glass transition temperature and value of the relaxation time at T-g in vitreous polymers. Macromol Symp. 2007;258:152–1.
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