journal article Jan 01, 2019

Assessment of failure criteria and damage evolution methods for composite laminates under low-velocity impact

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References
36
[1]
Sleight "Progressive failure analysis methodology for laminated composite structures" NASA Langley Technical Report Server (1999)
[2]
Tay "Progressive failure analysis of composites" J Compos Mater (2008) 10.1177/0021998308093912
[3]
Liu "Recent developments on damage modeling and finite element analysis for composite laminates: a review" Mater Des (2010) 10.1016/j.matdes.2010.03.031
[4]
Faggiani "Predicting low-velocity impact damage on a stiffened composite panel" Compos A Appl Sci Manuf (2010) 10.1016/j.compositesa.2010.02.005
[5]
Hongkarnjanakul "Validation of low velocity impact modelling on different stacking sequences of CFRP laminates and influence of fibre failure" Compos Struct (2013) 10.1016/j.compstruct.2013.07.008
[6]
Tan "Predicting low velocity impact damage and compression-after-impact (CAI) behaviour of composite laminates" Compos A Appl Sci Manuf (2015) 10.1016/j.compositesa.2015.01.025
[7]
Abir "Modelling damage growth in composites subjected to impact and compression after impact" Compos Struct (2017) 10.1016/j.compstruct.2017.02.018
[8]
Tsai "A general theory of strength for anisotropic materials" J Compos Mater (1971) 10.1177/002199837100500106
[9]
Hashin "A fatigue failure criterion for fiber reinforced materials" J Compos Mater (1973) 10.1177/002199837300700404
[10]
Chang "A progressive damage model for laminated composites containing stress concentrations" J Compos Mater (1987) 10.1177/002199838702100904
[11]
Hou "Prediction of impact damage in composite plates" Compos Sci Technol (2000) 10.1016/s0266-3538(99)00126-8
[12]
Hou "A delamination criterion for laminated composites under low-velocity impact" Compos Sci Technol (2001) 10.1016/s0266-3538(01)00128-2
[13]
Puck "Failure analysis of FRP laminates by means of physically based phenomenological models" Compos Sci Technol (2002) 10.1016/s0266-3538(01)00208-1
[14]
Kim "Local stiffness reduction in impacted composite plates from full-field measurements" Compos A Appl Sci Manuf (2009) 10.1016/j.compositesa.2009.09.024
[15]
Devivier "Damage detection in composite materials using deflectometry, a full-field slope measurement technique" Compos A (2012) 10.1016/j.compositesa.2011.11.009
[16]
Gu "Towards the design of a new standard for composite stiffness identification" Compos A (2016) 10.1016/j.compositesa.2016.03.026
[17]
Zhao "A multi-scale modeling framework for impact damage simulation of triaxially braided composites" Compos A Appl Sci Manuf (2018) 10.1016/j.compositesa.2018.04.020
[18]
Long "Delamination prediction in composite laminates under low-velocity impact" Compos Struct (2015) 10.1016/j.compstruct.2015.05.037
[19]
Shi "Modelling damage evolution in composite laminates subjected to low velocity impact" Compos Struct (2012) 10.1016/j.compstruct.2012.03.039
[20]
Qiu "Modelling low-speed drop-weight impact on composite laminates" Mater Des (2014) 10.1016/j.matdes.2014.04.041
[21]
Zhang "Finite element modeling of damage development in cross-ply composite laminates subjected to low velocity impact" Compos Struct (2017) 10.1016/j.compstruct.2017.04.017
[22]
Caputo "Numerical study for the structural analysis of composite laminates subjected to low velocity impact" Compos B Eng (2014) 10.1016/j.compositesb.2014.07.011
[23]
Zhang "An efficient approach for predicting low-velocity impact force and damage in composite laminates" Compos Struct (2015) 10.1016/j.compstruct.2015.04.023
[24]
Hinton (2004)
[25]
[26]
Kaddour "A comparison between the predictive capability of matrix cracking, damage and failure criteria for fibre reinforced composite laminates: Part A of the third world-wide failure exercise" J Compos Mater (2013) 10.1177/0021998313499476
[27]
Reddy "Three-dimensional finite element progressive failure analysis of composite laminates under axial extension" J Compos Technol Res (1993) 10.1520/ctr10358j
[28]
Santiuste "A comparison of progressive-failure criteria in the prediction of the dynamic bending failure of composite laminated beams" Compos Struct (2010) 10.1016/j.compstruct.2010.03.004
[29]
Liu "Finite element analysis of dynamic progressive failure of carbon fiber composite laminates under low velocity impact" Compos Struct (2016) 10.1016/j.compstruct.2016.04.012
[30]
Farooq "Finite element simulation of damage and failure predictions of relatively thick carbon fibre-reinforced laminated composite panels subjected to flat and round noses low velocity drop-weight impact" Thin-Walled Struct (2016) 10.1016/j.tws.2016.03.011
[31]
Lee "Initial and progressive failure analyses for composite laminates using Puck failure criterion and damage-coupled finite element method" Compos Struct (2015) 10.1016/j.compstruct.2014.11.011
[32]
Donadon "A progressive failure model for composite laminates subjected to low velocity impact damage" Comput Struct (2008) 10.1016/j.compstruc.2007.11.004
[33]
Zhang "Progressive damage simulation of triaxially braided composite using a 3D meso-scale finite element model" Compos Struct (2015) 10.1016/j.compstruct.2015.01.034
[34]
Benzeggagh "Measurement of mixed-mode delamination fracture toughness of unidirectional glass/epoxy composites with mixed-mode bending apparatus" Compos Sci Technol (1996) 10.1016/0266-3538(96)00005-x
[35]
Lou "Failure analysis of composite laminate under low-velocity impact based on micromechanics of failure" Compos Struct (2017) 10.1016/j.compstruct.2016.12.030
[36]
Abrate (2012)
Cited By
241
Archive of Applied Mechanics
Metrics
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Citations
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References
Details
Published
Jan 01, 2019
Vol/Issue
207
Pages
727-739
License
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Funding
National Natural Science Foundation of China Award: 11772267
Cite This Article
Xi Li, Dayou Ma, Hao Liu, et al. (2019). Assessment of failure criteria and damage evolution methods for composite laminates under low-velocity impact. Composite Structures, 207, 727-739. https://doi.org/10.1016/j.compstruct.2018.09.093
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