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- W4380052160 abstract "Free Access References Soheil Mohammadi, Soheil MohammadiSearch for more papers by this author Book Author(s):Soheil Mohammadi, Soheil MohammadiSearch for more papers by this author First published: 05 June 2023 https://doi.org/10.1002/9781119033714.biblio AboutPDFPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShare Abadi , M. , Barham , P. , Chen , J., et al. ( 2016 ). TensorFlow: a system for large-scale machine learning. In: 12th USENIX Symposium on Operating Systems Design and Implementation(OSDI 16) , 265 – 283 . Abolfathi , N. , Nik , A. , Sotoudeh Chafi , M., et al. ( 2009 ). A micromechanical procedure for modelling the anisotropic mechanical properties of brain white matter . Computer Methods in Biomechanics and Biomedical Engineering 12 ( 3 ): 249 – 262 . Abraham , F.F. , Brodbeck , D. , Rudge , W.E., et al. ( 1998 ). Ab initio dynamics of rapid fracture . Modelling and Simulation in Materials Science and Engineering 6 : 639 – 670 . ADINA ( 2010 ) ADINA, theory and modeling guide - ADINA CFD & FSI . Afshar , A. , Daneshyar , A. , and Mohammadi , S. ( 2015a ). XFEM analysis of fiber bridging in mixed-mode crack propagation in composites . Composite Structures 125 : 314 – 327 . Afshar , A. , Hatefi Ardakani , S. , Hashemi , S. , and Mohammadi , S. ( 2015b ). Numerical analysis of crack tip fields in interface fracture of SMA/elastic bi-materials . International Journal of Fracture 195 : 39 – 52 . Afshar , A. , Hatefi , S. , and Mohammadi , S. ( 2016 ). Transient analysis of stationary interface cracks in orthotropic bi-materials using oscillatory crack tip enrichments and the interaction integral method . Composite Structures 142 : 200 – 214 . Afshar , A. , Hatefi , S. , and Mohammadi , S. ( 2018 ). Stable discontinuous space–time analysis of dynamic interface crack growth in orthotropic bi-materials using oscillatory crack tip enrichment functions . International Journal of Mechanical Sciences 140 : 557 – 580 . Ahmadian , H. , Hatefi , S. , and Mohammadi , S. ( 2015 ). Strain-rate sensitivity of unstable localized phase transformation phenomenon in shape memory alloys using a non-local model . International Journal of Solids and Structures 63 : 167 – 183 . Alastrué , V. , Rodríguez , J. , Calvo , B. , and Doblaré , M. ( 2007 ). Structural damage models for fibrous biological soft tissues . International Journal of Solids and Structures 44 : 5894 – 5911 . Ali , A.A. , Cristofolini , L. , Schileo , E., et al. ( 2014 ). Specimen-specific modeling of hip fracture pattern and repair . Journal of Biomechanics 47 : 536 – 543 . Alizadeh , O. ( 2019 ). Enriched Multiscale Methods . Ph.D. Thesis , School of Civil Engineering, University of Tehran , Iran . Alizadeh , O. and Mohammadi , S. 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( 1997a ). Properties of cerebral gray and white matter undergoing large deformation . In: Symposium Proceedings of the Center for Disease Control, Wayne State University , 33 – 39 . Arbogast , K.B. , Thibault , K.L. , Pinheiro , B.S., et al. ( 1997b ). A high-frequency shear device for testing soft biological tissues . Journal of Biomechanics 30 ( 7 ): 757 – 759 . Arruda , E.M. and Boyce , M.C. ( 1993 ). A three-dimensional constitutive model for the large stretch behavior of rubber elastic materials . Journal of the Mechanics and Physics of Solids 41 : 389 – 412 . Asadpoure , A. and Mohammadi , S. ( 2007 ). A new approach to simulate the crack with the extended finite element method in orthotropic media . International Journal for Numerical Methods in Engineering 69 : 2150 – 2172 . Asadpoure , A. , Mohammadi , S. , and Vafai , A. ( 2006 ). Modeling crack in orthotropic media using a coupled finite element and partition of unity methods . Finite Elements in Analysis and Design 42 ( 13 ): 1165 – 1175 . Asadpoure , A. , Mohammadi , S. , and Vafai , A. ( 2007 ). Crack analysis in orthotropic media using the extended finite element method . Thin Walled Structures 44 ( 9 ): 1031 – 1038 . Atluri , S.N. ( 1982 ). Path-independent integrals in finite elasticity and inelasticity, with body forces, inertia and arbitrary crack-face conditions . Engineering Fracture Mechanics 16 ( 3 ): 341 – 364 . Atluri , S.N. and Shen , S. ( 2002 ). The Meshless Local Petrov–Galerkin (MLPG) Method . USA : Tech Science Press . Atluri , S.N. and Zhu , T. ( 1998 ). A new meshless local Petrov-Galerkin (MLPG) approach in computational mechanics . Computational Mechanics 22 : 117 – 127 . Babuska , I. and Miller , A. ( 1984 ). The post-processing approach to finite element method – part II . International Journal for Numerical Methods in Engineering 20 : 1111 – 1129 . Badilatti , S.D. , Christen , P. , Levchuk , A., et al. ( 2015 ). Large-scale microstructural simulation of load-adaptive bone remodeling in whole human vertebrae . Biomechanics and Modeling in Mechanobiology 15 ( 1 ): 83 – 95 . Baghani , M. , Naghdabadi , R. , and Arghavani , J. ( 2013 ). A large deformation framework for shape memory polymers: constitutive modeling and finite element implementation . Journal of Intelligent Material Systems and Structures 24 ( 1 ): 21 – 32 . Bailon-Plaza , A. and Van der Meulen , M.C.H. ( 2001 ). A mathematical framework to study the effects of growth factor influences on fracture healing . Journal of Theoretical Biology 212 : 191 – 209 . Bain , A.C. and Meaney , D.F. ( 2000 ). Tissue-level thresholds for axonal damage in an experimental model of central nervous system white matter injury . Journal of Biomechanical Engineering 122 ( 6 ): 615 – 622 . Bain , A.C. , Shreiber , D.I. , and Meaney , D.F. ( 2003 ). Modeling of microstructural kinematics during simple elongation of central nervous system tissue . 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Multiple shape memory effect for smart helical springs with variable stiffness over time and temperature . International Journal of Mechanical Sciences 182 : 105742 . Baniasadi , M. , Yarali , E. , Foyouzat , A. , and Baghani , M. ( 2021 ). Crack self-healing of 4hermos-responsive shape memory polymers with application to control valves, filtration, and drug delivery capsule . European Journal of Mechanics-A/Solids 85 : 104093 . Barkaoui , A. , Chamekh , A. , Merzouki , T., et al. ( 2014 ). Multiscale approach including microfibril scale to assess elastic constants of cortical bone based on neural network computation and homogenization method . International Journal for Numerical Methods in Biomedical Engineering 30 : 318 – 338 . Baseri , A. , Kiani Borojeni , K. , and Abdi , H. ( 2016 ). Modeling of Biological Tissues by Mimics (in Persian) . Parsia Press, Tehran, Iran. Bathe , K.-J. ( 1982 ). Finite Element Procedures in Engineering Analysis . Prentice-Hall, Inc., New Jersey. Bathe , K.-J. ( 2006 ). Finite Element Procedures . Published by the author, taken from the original 1982 book published by Prentice-Hall, Pearson Education, Inc., USA. Baydin , A.G. , Pearlmutter , B.A. , Radul , A.A. , and Siskind , J.M. ( 2018 ). Automatic differentiation in machine learning: a survey . Journal of Machine Learning Research 18 : 1 – 23 . Bayesteh , H. ( 2018 ) Multiscale Failure Analysis of Heterogeneous Media . Ph.D. Thesis , School of Civil Engineering, University of Tehran . Bayesteh , H. and Mohammadi , S. ( 2011 ). XFEM fracture analysis of shells: the effect of crack tip enrichments . Computational Materials Science 50 : 2793 – 2813 . Bayesteh , H. and Mohammadi , S. ( 2013 ). Fracture analysis of orthotropic functionally graded materials by XFEM . Journal of Composites, Part B . 44 : 8 – 25 . Bayesteh , H. and Mohammadi , S. ( 2017 ). Micro-based enriched multiscale homogenization method for analysis of heterogeneous materials . International Journal of Solids and Structures 125 : 22 – 42 . Bazant , Z.P. and Jirasek , M. ( 2002 ). Nonlocal integral formulations of plasticity and damage: survey of progress . Journal of Engineering Mechanics 128 ( 11 ): 1119 – 1149 . Bechet , E. , Scherzer , M. , and Kuna , M. ( 2009 ). Application of the X-FEM to the fracture of piezoelectric materials . International Journal for Numerical Methods in Engineering 77 : 1535 – 1565 . Bell , E. , Ivarsson , B. , and Merrill , C. ( 1979 ). Production of a tissue-like structure by contraction of collagen lattices by human fibroblasts of different proliferative potential in vitro . Proceedings of the National Academy of Sciences 76 ( 3 ): 1274 – 1278 . Belytschko , T. and Black , T. ( 1999 ). Elastic crack growth in finite elements with minimal remeshing . International Journal of Fracture Mechanics 45 : 601 – 620 . Belytschko , T. and" @default.
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