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Melt rheological behavior of a triblock copolymer based on aramide end-segments

✍ Scribed by Araichimani Arun; Reinoud J. Gaymans


Publisher
John Wiley and Sons
Year
2009
Tongue
English
Weight
284 KB
Volume
112
Category
Article
ISSN
0021-8995

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✦ Synopsis


Abstract

Melt rheological behavior of a ABA triblock polymer made of poly(tetramethylene oxide) (PTMO) (M~n~ = 2,900 g mol^−1^) soft segment and aramide hard segment was studied. The aramide end‐segments (A) were short and mono‐disperse in length. The mid‐segment (B) consisted of PTMO~2900~ extended with terephthalate units to a molecular weight of 9000 g mol^−1^. The molecular weight of the triblock was 9700 g mol^−1^. Rheological behavior of this material was studied by parallel‐plate and capillary method. The ABA triblock copolymer was compared with a B polymer (PTMO‐terephthalate) of a similar molecular weight. The low molecular weight B polymer had a Newtonian behavior. The low molecular weight triblock copolymer had at high frequencies a low complex viscosity. However, at low frequencies the triblock copolymer had a very high complex viscosity. Also the G″/G′ ratio decreased with decreasing frequency to values less then one and the G′ seemed to have at low frequencies a plateau value. The activation energy of the process increased in value with decreasing shear rate. All these results indicate that the triblock copolymer at low frequencies had a gel‐like behavior and this probably due to the clustering of the aramide segments. The aramide clusters are thought to be the (weak) network points of the gel. This network was also found to have a time dependant rheological response and thus a thixotropic behavior. © 2009 Wiley Periodicals, Inc. J Appl Polym Sci, 2009


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Tensile and elastic properties of triblo
✍ Araichimani Arun; Reinoud J. Gaymans 📂 Article 📅 2009 🏛 John Wiley and Sons 🌐 English ⚖ 274 KB 👁 1 views

## Abstract The tensile and elastic behavior of triblock copolymers containing uniform aramide (TΦB) hard end‐segments (HS) and poly(tetramethylene oxide) (PTMO, __M__~__n__~ = 2900 g/mol) soft segments (SSs) was studied. The molecular weight of the copolymer was varied by changing the length of th