Plastic instability studied experimentally on a semi-crystalline polymer through thermomechanical heat source identification: the flow stress concept revisited
Author:
Publisher
Springer Science and Business Media LLC
Subject
Condensed Matter Physics,General Materials Science
Link
http://link.springer.com/article/10.1007/s00397-018-1091-y/fulltext.html
Reference34 articles.
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2. Ahmad SH (1992) Flow stress of high density polyethylene and nylon 66 at high rates of strain. Polym Int 28(4):291–294
3. André S, Meshaka Y, Cunat C (2003) Rheological constitutive equation of solids: a link between models based on irreversible thermodynamics and on fractional order derivative equations. Rheol Acta 42:500–515
4. André S, Baravian C, Renault N, Cunat C (2007) In situ mechanical characterization of polymers with the association of three optical techniques. Appl Phys Lett 91(7):071919
5. André S, Renault N, Meshaka Y, Cunat C (2012) From the thermodynamics of constitutive laws to thermomechanical experimental characterization of materials: an assessment based on inversion of thermal images. Continuum Mech Therm 24(1):1–20
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1. Use of Digital Image Correlation to study the effect of temperature on the development of plastic instabilities in a semi-crystalline polymer;Polymer;2018-09
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