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Haim Waisman
Haim Waisman
Professor and Department Chair, Columbia University
Verified email at civil.columbia.edu - Homepage
Title
Cited by
Cited by
Year
From diffuse damage to sharp cohesive cracks: A coupled XFEM framework for failure analysis of quasi-brittle materials
Y Wang, H Waisman
Computer Methods in Applied Mechanics and Engineering 299, 57-89, 2016
1652016
Experimental application and enhancement of the XFEM–GA algorithm for the detection of flaws in structures
EN Chatzi, B Hiriyur, H Waisman, AW Smyth
Computers & Structures 89 (7-8), 556-570, 2011
1362011
Detection and quantification of flaws in structures by the extended finite element method and genetic algorithms
H Waisman, E Chatzi, AW Smyth
International Journal for Numerical Methods in Engineering 82 (3), 303-328, 2010
1322010
Uncertainty quantification in homogenization of heterogeneous microstructures modeled by XFEM
B Hiriyur, H Waisman, G Deodatis
International Journal for Numerical Methods in Engineering 88 (3), 257-278, 2011
1292011
Fracture of viscoelastic solids modeled with a modified phase field method
R Shen, H Waisman, L Guo
Computer Methods in Applied Mechanics and Engineering 346, 862-890, 2019
1182019
A unified model for metal failure capturing shear banding and fracture
C McAuliffe, H Waisman
International Journal of Plasticity 65, 131-151, 2015
1112015
Progressive delamination analysis of composite materials using XFEM and a discrete damage zone model
Y Wang, H Waisman
Computational Mechanics 55, 1-26, 2015
1042015
Mechanical considerations for polymeric heart valve development: Biomechanics, materials, design and manufacturing
RL Li, J Russ, C Paschalides, G Ferrari, H Waisman, JW Kysar, D Kalfa
Biomaterials 225, 119493, 2019
1002019
Nondestructive identification of multiple flaws using XFEM and a topologically adapting artificial bee colony algorithm
H Sun, H Waisman, R Betti
International Journal for Numerical Methods in Engineering 95 (10), 871-900, 2013
962013
A nonlocal continuum damage mechanics approach to simulation of creep fracture in ice sheets
R Duddu, H Waisman
Computational Mechanics 51, 961-974, 2013
932013
A temperature dependent creep damage model for polycrystalline ice
R Duddu, H Waisman
Mechanics of Materials 46, 23-41, 2012
872012
Topology optimization of viscoelastic structures using a time-dependent adjoint method
KA James, H Waisman
Computer Methods in Applied Mechanics and Engineering 285, 166-187, 2015
852015
A coupled phase field shear band model for ductile–brittle transition in notched plate impacts
C McAuliffe, H Waisman
Computer Methods in Applied Mechanics and Engineering 305, 173-195, 2016
822016
A consistent phase field model for hydraulic fracture propagation in poroelastic media
LP Yi, H Waisman, ZZ Yang, XG Li
Computer Methods in Applied Mechanics and Engineering 372, 113396, 2020
792020
Rupture of 3D-printed hyperelastic composites: Experiments and phase field fracture modeling
J Russ, V Slesarenko, S Rudykh, H Waisman
Journal of the Mechanics and Physics of Solids 140, 103941, 2020
762020
Failure mitigation in optimal topology design using a coupled nonlinear continuum damage model
KA James, H Waisman
Computer methods in applied mechanics and engineering 268, 614-631, 2014
762014
A multiscale flaw detection algorithm based on XFEM
H Sun, H Waisman, R Betti
International Journal for Numerical Methods in Engineering 100 (7), 477-503, 2014
752014
Stochastic analysis of polymer composites rupture at large deformations modeled by a phase field method
J Wu, C McAuliffe, H Waisman, G Deodatis
Computer Methods in Applied Mechanics and Engineering 312, 596-634, 2016
712016
Thermal-conductivity degradation across cracks in coupled thermo-mechanical systems modeled by the phase-field fracture method
L Svolos, CA Bronkhorst, H Waisman
Journal of the Mechanics and Physics of Solids 137, 103861, 2020
672020
Inexact Schwarz‐algebraic multigrid preconditioners for crack problems modeled by extended finite element methods
L Berger‐Vergiat, H Waisman, B Hiriyur, R Tuminaro, D Keyes
International Journal for Numerical Methods in Engineering 90 (3), 311-328, 2012
652012
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