A new multi-layer approach for progressive damage simulation in composite laminates based on isogeometric analysis and Kirchhoff–Love shells. Part I: basic theory and modeling of delamination and transverse shear

[1]  Yuri Bazilevs,et al.  Modeling of a hydraulic arresting gear using fluid-structure interaction and isogeometric analysis , 2017 .

[2]  Tayfun E. Tezduyar,et al.  Ram-air parachute structural and fluid mechanics computations with the Space-Time Isogeometric Analysis (ST-IGA) , 2016 .

[3]  A. Korobenko,et al.  Computational free-surface fluid–structure interaction with application to floating offshore wind turbines , 2016 .

[4]  A. Korobenko,et al.  FSI modeling of a propulsion system based on compliant hydrofoils in a tandem configuration , 2016 .

[5]  Sophia Blau,et al.  Introduction To Continuum Damage Mechanics , 2016 .

[6]  de R René Borst,et al.  Propagation of delamination in composite materials with isogeometric continuum shell elements , 2015 .

[7]  Tong Earn Tay,et al.  Modeling delamination migration in cross-ply tape laminates , 2015 .

[8]  A. Korobenko,et al.  Isogeometric analysis of continuum damage in rotation-free composite shells , 2015 .

[9]  Yuri Bazilevs,et al.  Shape optimization of pulsatile ventricular assist devices using FSI to minimize thrombotic risk , 2014 .

[10]  Thomas J. R. Hughes,et al.  Fluid–structure interaction analysis of bioprosthetic heart valves: significance of arterial wall deformation , 2014, Computational Mechanics.

[11]  Pedro P. Camanho,et al.  Failure Criteria for Frp Laminates in Plane Stress , 2013 .

[12]  Ever J. Barbero,et al.  Finite Element Analysis of Composite Materials using Abaqus , 2013 .

[13]  Yuri Bazilevs,et al.  Computational Fluid-Structure Interaction: Methods and Applications , 2013 .

[14]  A. Korobenko,et al.  STRUCTURAL MECHANICS MODELING AND FSI SIMULATION OF WIND TURBINES , 2013 .

[15]  T. Hughes,et al.  Isogeometric collocation for elastostatics and explicit dynamics , 2012 .

[16]  Thomas J. R. Hughes,et al.  A large deformation, rotation-free, isogeometric shell , 2011 .

[17]  Fu Xiaojin,et al.  Isogeometric Analysis Toward Integration of CAD and CAE , 2011 .

[18]  Yuri Bazilevs,et al.  The bending strip method for isogeometric analysis of Kirchhoff–Love shell structures comprised of multiple patches , 2010 .

[19]  Pedro P. Camanho,et al.  Accurate simulation of delamination growth under mixed-mode loading using cohesive elements: Definition of interlaminar strengths and elastic stiffness , 2010 .

[20]  Thomas J. R. Hughes,et al.  Isogeometric shell analysis: The Reissner-Mindlin shell , 2010 .

[21]  John A. Evans,et al.  Isogeometric analysis using T-splines , 2010 .

[22]  Roland Wüchner,et al.  Isogeometric shell analysis with Kirchhoff–Love elements , 2009 .

[23]  Ireneusz Lapczyk,et al.  Progressive damage modeling in fiber-reinforced materials , 2007 .

[24]  Pedro P. Camanho,et al.  An engineering solution for mesh size effects in the simulation of delamination using cohesive zone models , 2007 .

[25]  Pedro P. Camanho,et al.  Cohesive Elements for Shells , 2007 .

[26]  Michael R Wisnom,et al.  A concise interface constitutive law for analysis of delamination and splitting in composite materials and its application to scaled notched tensile specimens , 2007 .

[27]  Pedro P. Camanho,et al.  A damage model for the simulation of delamination in advanced composites under variable-mode loading , 2006 .

[28]  Lorenzo Iannucci,et al.  Physically-based failure models and criteria for laminated fibre-reinforced composites with emphasis on fibre kinking: Part I: Development , 2006 .

[29]  T. Hughes,et al.  Isogeometric analysis : CAD, finite elements, NURBS, exact geometry and mesh refinement , 2005 .

[30]  E. Ramm,et al.  Models and finite elements for thin-walled structures , 2004 .

[31]  Garth N. Wells,et al.  A solid‐like shell element allowing for arbitrary delaminations , 2003 .

[32]  P. Camanho,et al.  Numerical Simulation of Mixed-Mode Progressive Delamination in Composite Materials , 2003 .

[33]  John R. Rice,et al.  A Critical Evaluation of Cohesive Zone Models of Dynamic Fracture , 2001 .

[34]  M. A. Crisfield,et al.  Progressive Delamination Using Interface Elements , 1998 .

[35]  H. Schürmann,et al.  FAILURE ANALYSIS OF FRP LAMINATES BY MEANS OF PHYSICALLY BASED PHENOMENOLOGICAL MODELS , 1998 .

[36]  M. A. Crisfield,et al.  A new arc-length method for handling sharp snap-backs , 1998 .

[37]  J. Reddy Mechanics of laminated composite plates and shells : theory and analysis , 1996 .

[38]  M. Benzeggagh,et al.  Measurement of mixed-mode delamination fracture toughness of unidirectional glass/epoxy composites with mixed-mode bending apparatus , 1996 .

[39]  P. Wriggers Finite element algorithms for contact problems , 1995 .

[40]  Fu-Kuo Chang,et al.  An Accumulative Damage Model for Tensile and Shear Failures of Laminated Composite Plates , 1995 .

[41]  Robert L. Taylor,et al.  A constitutive model for anisotropic damage in fiber-composites , 1995 .

[42]  Alberto Corigliano,et al.  Damage analysis of interlaminar fracture specimens , 1995 .

[43]  Jintai Chung,et al.  A Time Integration Algorithm for Structural Dynamics With Improved Numerical Dissipation: The Generalized-α Method , 1993 .

[44]  O. Allix,et al.  Interlaminar interface modelling for the prediction of delamination , 1992 .

[45]  Pierre Ladevèze,et al.  Damage modelling of the elementary ply for laminated composites , 1992 .

[46]  Alberto Carpinteri,et al.  Softening and snap-back instability in cohesive solids , 1989 .

[47]  Jean-Louis Chaboche,et al.  CONTINUUM DAMAGE MECHANICS :PRESENT STATE AND FUTURE TRENDS , 1987 .

[48]  Z. Bažant,et al.  Crack band theory for fracture of concrete , 1983 .

[49]  Z. Hashin Failure Criteria for Unidirectional Fiber Composites , 1980 .

[50]  Thomas J. R. Hughes,et al.  Improved numerical dissipation for time integration algorithms in structural dynamics , 1977 .

[51]  J. Lions,et al.  Inequalities in mechanics and physics , 1976 .

[52]  Z. Hashin,et al.  A Fatigue Failure Criterion for Fiber Reinforced Materials , 1973 .