Computational aspects in creep rupture modelling of polypropylene using an energy failure criterion in conjunction with a mechanical model

Polymer

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Main Author: Teoh, S.H.
Other Authors: MECHANICAL & PRODUCTION ENGINEERING
Format: Article
Published: 2014
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Online Access:http://scholarbank.nus.edu.sg/handle/10635/58017
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Institution: National University of Singapore
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spelling sg-nus-scholar.10635-580172015-03-27T06:42:03Z Computational aspects in creep rupture modelling of polypropylene using an energy failure criterion in conjunction with a mechanical model Teoh, S.H. MECHANICAL & PRODUCTION ENGINEERING creep rupture mechanical model non-linear regression parameter optimization polypropylene Reiner-Weissenberg resilience stress limits Polymer 31 12 2260-2266 POLMA 2014-06-17T05:09:56Z 2014-06-17T05:09:56Z 1990-12 Article Teoh, S.H. (1990-12). Computational aspects in creep rupture modelling of polypropylene using an energy failure criterion in conjunction with a mechanical model. Polymer 31 (12) : 2260-2266. ScholarBank@NUS Repository. 00323861 http://scholarbank.nus.edu.sg/handle/10635/58017 NOT_IN_WOS Scopus
institution National University of Singapore
building NUS Library
country Singapore
collection ScholarBank@NUS
topic creep rupture
mechanical model
non-linear regression
parameter optimization
polypropylene
Reiner-Weissenberg
resilience
stress limits
spellingShingle creep rupture
mechanical model
non-linear regression
parameter optimization
polypropylene
Reiner-Weissenberg
resilience
stress limits
Teoh, S.H.
Computational aspects in creep rupture modelling of polypropylene using an energy failure criterion in conjunction with a mechanical model
description Polymer
author2 MECHANICAL & PRODUCTION ENGINEERING
author_facet MECHANICAL & PRODUCTION ENGINEERING
Teoh, S.H.
format Article
author Teoh, S.H.
author_sort Teoh, S.H.
title Computational aspects in creep rupture modelling of polypropylene using an energy failure criterion in conjunction with a mechanical model
title_short Computational aspects in creep rupture modelling of polypropylene using an energy failure criterion in conjunction with a mechanical model
title_full Computational aspects in creep rupture modelling of polypropylene using an energy failure criterion in conjunction with a mechanical model
title_fullStr Computational aspects in creep rupture modelling of polypropylene using an energy failure criterion in conjunction with a mechanical model
title_full_unstemmed Computational aspects in creep rupture modelling of polypropylene using an energy failure criterion in conjunction with a mechanical model
title_sort computational aspects in creep rupture modelling of polypropylene using an energy failure criterion in conjunction with a mechanical model
publishDate 2014
url http://scholarbank.nus.edu.sg/handle/10635/58017
_version_ 1681084970880204800