Characterization of fracture properties of thin aluminum inclusions embedded in anisotropic laminate composites

The fracture properties of thin aluminum inclusions embedded in anisotropic paperboard composites, of interest for food and beverage packaging industry, can be determined by performing tensile tests on non-conventional heterogeneous specimens. The region of interest of the investigated material sam...

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Main Authors: Gabriella Bolzon, Vladimir Buljak, Emanuele Zappa
Format: Article
Language:English
Published: Gruppo Italiano Frattura 2012-01-01
Series:Fracture and Structural Integrity
Subjects:
Online Access:http://www.gruppofrattura.it/pdf/rivista/numero19/numero_19_art_2.pdf
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author Gabriella Bolzon
Vladimir Buljak
Emanuele Zappa
author_facet Gabriella Bolzon
Vladimir Buljak
Emanuele Zappa
author_sort Gabriella Bolzon
collection DOAJ
description The fracture properties of thin aluminum inclusions embedded in anisotropic paperboard composites, of interest for food and beverage packaging industry, can be determined by performing tensile tests on non-conventional heterogeneous specimens. The region of interest of the investigated material samples is monitored all along the experiment by digital image correlation techniques, which allow to recover qualitative and quantitative information about the metal deformation and about the evolution of the damaging processes leading to the detachment of the inclusion from the surrounding laminate composite. The interpretation of the laboratory results is supported by the numerical simulation of the tests.
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institution Kabale University
issn 1971-8993
language English
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publisher Gruppo Italiano Frattura
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series Fracture and Structural Integrity
spelling doaj-art-abb13a6ca71d4983a8765cfc32b68c9e2024-12-02T05:42:03ZengGruppo Italiano FratturaFracture and Structural Integrity1971-89932012-01-016192028Characterization of fracture properties of thin aluminum inclusions embedded in anisotropic laminate compositesGabriella BolzonVladimir BuljakEmanuele ZappaThe fracture properties of thin aluminum inclusions embedded in anisotropic paperboard composites, of interest for food and beverage packaging industry, can be determined by performing tensile tests on non-conventional heterogeneous specimens. The region of interest of the investigated material samples is monitored all along the experiment by digital image correlation techniques, which allow to recover qualitative and quantitative information about the metal deformation and about the evolution of the damaging processes leading to the detachment of the inclusion from the surrounding laminate composite. The interpretation of the laboratory results is supported by the numerical simulation of the tests.http://www.gruppofrattura.it/pdf/rivista/numero19/numero_19_art_2.pdfFracture propertiesAluminiumLaminatesPaperboard composites
spellingShingle Gabriella Bolzon
Vladimir Buljak
Emanuele Zappa
Characterization of fracture properties of thin aluminum inclusions embedded in anisotropic laminate composites
Fracture and Structural Integrity
Fracture properties
Aluminium
Laminates
Paperboard composites
title Characterization of fracture properties of thin aluminum inclusions embedded in anisotropic laminate composites
title_full Characterization of fracture properties of thin aluminum inclusions embedded in anisotropic laminate composites
title_fullStr Characterization of fracture properties of thin aluminum inclusions embedded in anisotropic laminate composites
title_full_unstemmed Characterization of fracture properties of thin aluminum inclusions embedded in anisotropic laminate composites
title_short Characterization of fracture properties of thin aluminum inclusions embedded in anisotropic laminate composites
title_sort characterization of fracture properties of thin aluminum inclusions embedded in anisotropic laminate composites
topic Fracture properties
Aluminium
Laminates
Paperboard composites
url http://www.gruppofrattura.it/pdf/rivista/numero19/numero_19_art_2.pdf
work_keys_str_mv AT gabriellabolzon characterizationoffracturepropertiesofthinaluminuminclusionsembeddedinanisotropiclaminatecomposites
AT vladimirbuljak characterizationoffracturepropertiesofthinaluminuminclusionsembeddedinanisotropiclaminatecomposites
AT emanuelezappa characterizationoffracturepropertiesofthinaluminuminclusionsembeddedinanisotropiclaminatecomposites