Publication:

Tensile flow stress of ceramic particle-reinforced metal in the presence of particle cracking

cris.lastimport.scopus

2024-08-06T09:58:42Z

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130807

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23985826600

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LMM

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0000-0002-8267-2008

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IMX

cris.virtual.parent-organization

STI

cris.virtual.parent-organization

EPFL

cris.virtual.rid

L-5078-2015

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112497

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122028

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115064

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112836

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10336

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Mortensen, Andreas

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datacite.rights

metadata-only

dc.contributor.author

Mueller, R.

dc.contributor.author

Rossoll, A.

dc.contributor.author

Weber, L.

dc.contributor.author

Bourke, M. A. M.

dc.contributor.author

Dunand, D. C.

dc.contributor.author

Mortensen, A.

dc.date.accessioned

2009-01-07T16:58:33

dc.date.available

2009-01-07T16:58:33

dc.date.created

2009-01-07

dc.date.issued

2008

dc.date.modified

2025-01-24T05:22:18.662561Z

dc.description.abstract

A simplified model is proposed to quantity the effect of damage in the form of particle cracking on the elastic and plastic behaviour of particle-reinforced metal matrix composites under uniaxial tensile loading: cracked particles are simply replaced, in a mean-field model, with as much matrix. Pure aluminium reinforced with 44 vol.%., alumina particles, tested in tension and unloaded at periodic plastic deformations, is analysed by neutron diffraction during each reloading elastic step, at 30%, 50%, 701% and 90% of the tensile flow stress. The data give the evolution of the elastic matrix strains in the composite and also measure the progress of internal damage by particle cracking. The test gives (i) the evolution of the in situ matrix flow stress, and (ii) the evolution of load partitioning during elastic deformation with increasing composite damage. Predictions of the present model compare favourably with relevant results in the literature, and with results from the present neutron diffraction experiments. (C) 2008 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.

dc.description.sponsorship

LMM

dc.identifier.dar

13404

dc.identifier.doi

10.1016/j.actamat.2008.05.004

dc.identifier.isi

WOS:000259931300027

dc.identifier.uri

https://infoscience.epfl.ch/handle/20.500.14299/33247

dc.relation.journal

Acta Materialia

dc.title

Tensile flow stress of ceramic particle-reinforced metal in the presence of particle cracking

dc.type

text::journal::journal article::research article

dspace.entity.type

Publication

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oai:infoscience.tind.io:130807

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Journal Articles

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ARTICLE

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OpenAIREv4

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STI

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article

epfl.peerreviewed

REVIEWED

epfl.publication.version

http://purl.org/coar/version/c_970fb48d4fbd8a85

epfl.writtenAt

EPFL

oaire.citation.endPage

4416

oaire.citation.issue

16

oaire.citation.startPage

4402

oaire.citation.volume

56

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