Individual and interactive influence of temperature, stress, physical aging and moisture on creep, creep rupture and fracture of epoxy matrix and its composite

Two major concerns in using polymer composites for load bearing structural applications are time dependent degradation in modulus and strength, measured by creep and creep rupture tests. Previous studies on creep of polymer composites focused on the individual and interactive effect of one or more...

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Main Author: Viswanathan, Chandra
Format: Others
Language:en
en_US
Published: 2007
Online Access:http://hdl.handle.net/1993/2027
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spelling ndltd-LACETR-oai-collectionscanada.gc.ca-MWU.anitoba.ca-dspace#1993-20272013-01-11T13:31:11ZViswanathan, Chandra2007-05-22T15:13:39Z2007-05-22T15:13:39Z2001-02-01T00:00:00Zhttp://hdl.handle.net/1993/2027Two major concerns in using polymer composites for load bearing structural applications are time dependent degradation in modulus and strength, measured by creep and creep rupture tests. Previous studies on creep of polymer composites focused on the individual and interactive effect of one or more of factors such as Stress-Temperature, Stress-Temperature-Physical Aging and Stress-Temperature-Moisture. While the effect of stress, temperature, and moisture on creep rupture is well documented, limited studies have focussed on the effect physical aging on creep rupture of polymer composites. No effort has so far been made to study the combined effect of the above factors on creep and creep rupture of polymer composites. Hence, the present investigation was undertaken to experimentally study the individual and interactive effect of temperature, stress, physical aging, and moisture on creep (linear and non-linear region), creep rupture and fracture of a thermoset epoxy resin (F263) and its composite (Hexcel Corporation's F263 epoxy resin reinforced with T 300 carbon fibers). (Abstract shortened by UMI.)9502445 bytes184 bytesapplication/pdftext/plainenen_USIndividual and interactive influence of temperature, stress, physical aging and moisture on creep, creep rupture and fracture of epoxy matrix and its compositeMechanical and Industrial EngineeringM.Sc.
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en_US
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description Two major concerns in using polymer composites for load bearing structural applications are time dependent degradation in modulus and strength, measured by creep and creep rupture tests. Previous studies on creep of polymer composites focused on the individual and interactive effect of one or more of factors such as Stress-Temperature, Stress-Temperature-Physical Aging and Stress-Temperature-Moisture. While the effect of stress, temperature, and moisture on creep rupture is well documented, limited studies have focussed on the effect physical aging on creep rupture of polymer composites. No effort has so far been made to study the combined effect of the above factors on creep and creep rupture of polymer composites. Hence, the present investigation was undertaken to experimentally study the individual and interactive effect of temperature, stress, physical aging, and moisture on creep (linear and non-linear region), creep rupture and fracture of a thermoset epoxy resin (F263) and its composite (Hexcel Corporation's F263 epoxy resin reinforced with T 300 carbon fibers). (Abstract shortened by UMI.)
author Viswanathan, Chandra
spellingShingle Viswanathan, Chandra
Individual and interactive influence of temperature, stress, physical aging and moisture on creep, creep rupture and fracture of epoxy matrix and its composite
author_facet Viswanathan, Chandra
author_sort Viswanathan, Chandra
title Individual and interactive influence of temperature, stress, physical aging and moisture on creep, creep rupture and fracture of epoxy matrix and its composite
title_short Individual and interactive influence of temperature, stress, physical aging and moisture on creep, creep rupture and fracture of epoxy matrix and its composite
title_full Individual and interactive influence of temperature, stress, physical aging and moisture on creep, creep rupture and fracture of epoxy matrix and its composite
title_fullStr Individual and interactive influence of temperature, stress, physical aging and moisture on creep, creep rupture and fracture of epoxy matrix and its composite
title_full_unstemmed Individual and interactive influence of temperature, stress, physical aging and moisture on creep, creep rupture and fracture of epoxy matrix and its composite
title_sort individual and interactive influence of temperature, stress, physical aging and moisture on creep, creep rupture and fracture of epoxy matrix and its composite
publishDate 2007
url http://hdl.handle.net/1993/2027
work_keys_str_mv AT viswanathanchandra individualandinteractiveinfluenceoftemperaturestressphysicalagingandmoistureoncreepcreepruptureandfractureofepoxymatrixanditscomposite
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