Mechanical Behavior of a Series of Copolyester Blends near the Glass Transition: Monotonic and Load-Hold Behavior in Compression

Monotonic loading tests were conducted on five commercial blends of poly(ethylene terephthalate) (PET) and poly(1,4-cyclohexylenedimethylene terephthalate) (PCT) at temperatures of 90°C and 100°C and strain rates of 0.1/s, 0.05/s, and 0.005/s in uniaxial and plane strain compression. On comparing th...

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Main Authors: Gurucharan Chandrasekaran, Rebecca B. Dupaix
Format: Article
Language:English
Published: Hindawi Limited 2012-01-01
Series:International Journal of Polymer Science
Online Access:http://dx.doi.org/10.1155/2012/245205
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spelling doaj-4a238fd77aed4f418415bd840b7591a22020-11-24T22:02:20ZengHindawi LimitedInternational Journal of Polymer Science1687-94221687-94302012-01-01201210.1155/2012/245205245205Mechanical Behavior of a Series of Copolyester Blends near the Glass Transition: Monotonic and Load-Hold Behavior in CompressionGurucharan Chandrasekaran0Rebecca B. Dupaix1Mechanical and Aerospace Engineering Department, The Ohio State University, Columbus, OH 43210, USAMechanical and Aerospace Engineering Department, The Ohio State University, Columbus, OH 43210, USAMonotonic loading tests were conducted on five commercial blends of poly(ethylene terephthalate) (PET) and poly(1,4-cyclohexylenedimethylene terephthalate) (PCT) at temperatures of 90°C and 100°C and strain rates of 0.1/s, 0.05/s, and 0.005/s in uniaxial and plane strain compression. On comparing the mechanical behavior of the five materials, it was found that the behavior of the low-PCT content materials was different from the high-PCT content materials only at conditions that favored strain-induced crystallization, particularly in plane strain compression. Load-hold tests were also conducted on three of the blends with similar results to the monotonic tests. Material differences were only pronounced at certain conditions, and in these cases the low-PCT content materials showed increased strain hardening after the hold period while the high-PCT content material did not. Therefore, it was found that the addition of a hold period was not exclusively required to observe differences in the crystallizable materials over the noncrystallizing blends. The increased strain hardening likely associated with crystallization in PET was only observed when the following conditions were met: (i) strain rates of 0.1/s and above, (ii) temperatures of 90°C–100°C, (iii) plane strain compression, and (iv) after a certain level of deformation.http://dx.doi.org/10.1155/2012/245205
collection DOAJ
language English
format Article
sources DOAJ
author Gurucharan Chandrasekaran
Rebecca B. Dupaix
spellingShingle Gurucharan Chandrasekaran
Rebecca B. Dupaix
Mechanical Behavior of a Series of Copolyester Blends near the Glass Transition: Monotonic and Load-Hold Behavior in Compression
International Journal of Polymer Science
author_facet Gurucharan Chandrasekaran
Rebecca B. Dupaix
author_sort Gurucharan Chandrasekaran
title Mechanical Behavior of a Series of Copolyester Blends near the Glass Transition: Monotonic and Load-Hold Behavior in Compression
title_short Mechanical Behavior of a Series of Copolyester Blends near the Glass Transition: Monotonic and Load-Hold Behavior in Compression
title_full Mechanical Behavior of a Series of Copolyester Blends near the Glass Transition: Monotonic and Load-Hold Behavior in Compression
title_fullStr Mechanical Behavior of a Series of Copolyester Blends near the Glass Transition: Monotonic and Load-Hold Behavior in Compression
title_full_unstemmed Mechanical Behavior of a Series of Copolyester Blends near the Glass Transition: Monotonic and Load-Hold Behavior in Compression
title_sort mechanical behavior of a series of copolyester blends near the glass transition: monotonic and load-hold behavior in compression
publisher Hindawi Limited
series International Journal of Polymer Science
issn 1687-9422
1687-9430
publishDate 2012-01-01
description Monotonic loading tests were conducted on five commercial blends of poly(ethylene terephthalate) (PET) and poly(1,4-cyclohexylenedimethylene terephthalate) (PCT) at temperatures of 90°C and 100°C and strain rates of 0.1/s, 0.05/s, and 0.005/s in uniaxial and plane strain compression. On comparing the mechanical behavior of the five materials, it was found that the behavior of the low-PCT content materials was different from the high-PCT content materials only at conditions that favored strain-induced crystallization, particularly in plane strain compression. Load-hold tests were also conducted on three of the blends with similar results to the monotonic tests. Material differences were only pronounced at certain conditions, and in these cases the low-PCT content materials showed increased strain hardening after the hold period while the high-PCT content material did not. Therefore, it was found that the addition of a hold period was not exclusively required to observe differences in the crystallizable materials over the noncrystallizing blends. The increased strain hardening likely associated with crystallization in PET was only observed when the following conditions were met: (i) strain rates of 0.1/s and above, (ii) temperatures of 90°C–100°C, (iii) plane strain compression, and (iv) after a certain level of deformation.
url http://dx.doi.org/10.1155/2012/245205
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AT rebeccabdupaix mechanicalbehaviorofaseriesofcopolyesterblendsneartheglasstransitionmonotonicandloadholdbehaviorincompression
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