Damage related material constants in continuum damage mechanics for unidirectional composites with matrix cracks
Damage related material constants in continuum damage mechanics for unidirectional composites with matrix cracks
Application of a continuum damage mechanics formulation rests on the ease with which the material constants involved in the formulation can be determined. For an initially linear elastic material, the changes in elastic constants induced by damage depend on certain damage related material constants that are commonly determined by experiments in addition to those required to determine the initial properties. This additional experimental task can render the continuum damage mechanics theory less attractive. The present paper will only deal with those associated with damage representation. We propose here a procedure for analytically determining seven out of eight damage related material constants for unidirectional composites assumed initially transversely isotropic and containing a parallel array of matrix cracks along fibres. The remaining constant can be determined experimentally or by a numerical experiment proposed here for the purpose. The analytical expressions derived are in terms of initial elasticity constants of a unidirectional composite and are verified for their accuracy by numerical experiments. Since a unidirectional composite forms a building block in composite laminates, the results obtained here can be naturally used for damage in laminates.
Continuum damage mechanics, matrix cracking, stiffness degradation, transverse cracking, transversely isotropic composites
690-707
Li, Shuguang
f99c53b3-e42e-456f-97df-4c4e06de4a40
Wang, Mingkun
3407affa-8f8e-4b91-8c20-c0e1d49ed1e8
Jeanmeure, Laurent
996504ba-600b-4758-9590-de4a6e5ae79a
Sitnikova, Elena
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Yu, Fei
25b1c414-581b-4a8d-8419-ef33abafb647
Pan, Qing
39143019-4f36-4151-85bf-0b90af91ee25
Zhou, Chuwei
db27f0dc-d4c7-45e0-84f9-aac1c3e49349
Talreja, Ramesh
18254daa-55d8-47a3-9162-23e78bb5e890
Li, Shuguang
f99c53b3-e42e-456f-97df-4c4e06de4a40
Wang, Mingkun
3407affa-8f8e-4b91-8c20-c0e1d49ed1e8
Jeanmeure, Laurent
996504ba-600b-4758-9590-de4a6e5ae79a
Sitnikova, Elena
e0c2f901-24fe-43d0-88e8-76f415675104
Yu, Fei
25b1c414-581b-4a8d-8419-ef33abafb647
Pan, Qing
39143019-4f36-4151-85bf-0b90af91ee25
Zhou, Chuwei
db27f0dc-d4c7-45e0-84f9-aac1c3e49349
Talreja, Ramesh
18254daa-55d8-47a3-9162-23e78bb5e890
Li, Shuguang, Wang, Mingkun, Jeanmeure, Laurent, Sitnikova, Elena, Yu, Fei, Pan, Qing, Zhou, Chuwei and Talreja, Ramesh
(2018)
Damage related material constants in continuum damage mechanics for unidirectional composites with matrix cracks.
International Journal of Damage Mechanics, 28 (5), .
(doi:10.1177/1056789518783239).
Abstract
Application of a continuum damage mechanics formulation rests on the ease with which the material constants involved in the formulation can be determined. For an initially linear elastic material, the changes in elastic constants induced by damage depend on certain damage related material constants that are commonly determined by experiments in addition to those required to determine the initial properties. This additional experimental task can render the continuum damage mechanics theory less attractive. The present paper will only deal with those associated with damage representation. We propose here a procedure for analytically determining seven out of eight damage related material constants for unidirectional composites assumed initially transversely isotropic and containing a parallel array of matrix cracks along fibres. The remaining constant can be determined experimentally or by a numerical experiment proposed here for the purpose. The analytical expressions derived are in terms of initial elasticity constants of a unidirectional composite and are verified for their accuracy by numerical experiments. Since a unidirectional composite forms a building block in composite laminates, the results obtained here can be naturally used for damage in laminates.
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e-pub ahead of print date: 20 June 2018
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© The Author(s) 2018.
Keywords:
Continuum damage mechanics, matrix cracking, stiffness degradation, transverse cracking, transversely isotropic composites
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Local EPrints ID: 497747
URI: http://eprints.soton.ac.uk/id/eprint/497747
ISSN: 1056-7895
PURE UUID: 2ea13cca-324f-4245-ac25-25d41faf15cc
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Date deposited: 30 Jan 2025 17:50
Last modified: 31 Jan 2025 03:15
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Author:
Shuguang Li
Author:
Mingkun Wang
Author:
Laurent Jeanmeure
Author:
Elena Sitnikova
Author:
Fei Yu
Author:
Qing Pan
Author:
Chuwei Zhou
Author:
Ramesh Talreja
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