Multiscale Modeling: A Review
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[1] Alex Hansen,et al. Roughness of interfacial crack fronts: stress-weighted percolation in the damage zone. , 2003, Physical review letters.
[2] Dusan Krajcinovic,et al. Constitutive Equations for Damaging Materials , 1983 .
[3] Glaucio H. Paulino,et al. Modeling bamboo as a functionally graded material: lessons for the analysis of affordable materials , 2006 .
[4] M. Baskes,et al. Application of the embedded-atom method to covalent materials: A semiempirical potential for silicon. , 1987, Physical review letters.
[5] Juan J. de Pablo,et al. Multiscale Modeling in Advanced Materials Research: Challenges, Novel Methods, and Emerging Applications , 2007 .
[6] Ramesh Talreja,et al. Continuum modelling of damage in ceramic matrix composites , 1991 .
[7] E Weinan,et al. Multiscale simulations in simple metals: A density-functional-based methodology , 2004, cond-mat/0404414.
[8] Emily A. Carter,et al. Accurate ab initio energetics of extended systems via explicit correlation embedded in a density functional environment , 1998 .
[9] D. McDowell,et al. The debonding and fracture of Si particles during the fatigue of a cast Al-Si alloy , 1999 .
[10] Michael Ortiz,et al. Quasicontinuum models of fracture and plasticity , 1998 .
[11] William A. Curtin,et al. Coupled Atomistic/Discrete Dislocation Simulations of Nanoindentation at Finite Temperature , 2005 .
[12] Jacob Fish,et al. A Nonlocal Multiscale Fatigue Model , 2005 .
[13] Mark F. Horstemeyer,et al. Effect of temperature on silicon particle damage in A356 alloy , 1998 .
[14] S. Tsai,et al. On the Behavior of Composite Laminates After Initial Failures , 1974 .
[15] Fujiu Ke,et al. Multiscale coupling in complex mechanical systems , 2004 .
[16] Multi-scale Characterization and Modelling of Human Cortical Bone , 2006 .
[17] A. Needleman,et al. Fatigue crack growth from a cracked elastic particle into a ductile matrix , 2008 .
[18] J. Mauro,et al. Multiscale Modeling of GeSe2 Glass Structure , 2006 .
[19] Jacob Fish,et al. Multiscale enrichment based on partition of unity , 2005 .
[20] P. M. Gullett,et al. Hydrogen effects on nanovoid nucleation at nickel grain boundaries , 2008 .
[21] Mark F. Horstemeyer,et al. Mapping failure by microstructure-property modeling , 2001 .
[22] David L. Davidson,et al. The effects on fracture toughness of ductile-phase composition and morphology in Nb-Cr-Ti and Nb-Siin situ composites , 1996 .
[23] Rajiv K. Kalia,et al. Coupling Length Scales for Multiscale Atomistics-Continuum Simulations , 2001 .
[24] Noam Bernstein,et al. Spanning the continuum to quantum length scales in a dynamic simulation of brittle fracture , 1998 .
[25] E. Budyn,et al. Multi-Scale Modeling of Human Cortical Bone: Aging and Failure Studies , 2006 .
[26] Mark S. Shephard,et al. Adaptive Model Selection Procedure for Concurrent Multiscale Problems , 2007 .
[27] M. Horstemeyer,et al. Fatigue Crack Growth Mechanisms in High-Pressure Die-Cast Magnesium Alloys , 2008 .
[28] Mark F. Horstemeyer,et al. Three‐dimensional finite element simulations of microstructurally small fatigue crack growth in 7075 aluminium alloy , 2006 .
[29] U. F. Kocks. The relation between polycrystal deformation and single-crystal deformation , 1970 .
[30] F. A. McClintock,et al. A Criterion for Ductile Fracture by the Growth of Holes , 1968 .
[31] J. M. Burgers. Physics. — Some considerations on the fields of stress connected with dislocations in a regular crystal lattice. I , 1995 .
[32] Karol Miller,et al. Constitutive modeling of cartilaginous tissues: a review. , 2006, Journal of applied biomechanics.
[33] E. Hinton,et al. A review of homogenization and topology opimization II—analytical and numerical solution of homogenization equations , 1998 .
[34] Gregory B Olson. Systems design of hierarchically structured materials: Advanced steels , 1998 .
[35] J. Mauro,et al. Ab initio modeling of volume–temperature curves for glassforming systems , 2007 .
[36] Emily A. Carter,et al. Orbital-free kinetic-energy functionals for the nearly free electron gas , 1998 .
[37] Andrea Braides,et al. Multiscale Analysis by Γ-Convergence of a One-Dimensional Nonlocal Functional Related to a Shell-Membrane Transition , 2006, SIAM J. Math. Anal..
[38] D. Lloyd. Particle reinforced aluminium and magnesium matrix composites , 1994 .
[39] Xiangguo Zeng,et al. Cyclic plasticity across micro/meso/macroscopic scales , 2004, Proceedings of the Royal Society of London. Series A: Mathematical, Physical and Engineering Sciences.
[40] H. Kesten. Percolation theory for mathematicians , 1982 .
[41] William A. Curtin,et al. Multiscale plasticity modeling: coupled atomistics and discrete dislocation mechanics , 2004 .
[42] E. Hall,et al. The Deformation and Ageing of Mild Steel: III Discussion of Results , 1951 .
[43] Mark F. Horstemeyer,et al. Modeling stress state dependent damage evolution in a cast Al–Si–Mg aluminum alloy , 2000 .
[44] D. Porter,et al. Pragmatic multiscale modelling of bone as a natural hybrid nanocomposite , 2004 .
[45] J. Mauro,et al. Multiscale modeling of arsenic selenide glass , 2007 .
[46] Michael Ortiz,et al. Quasicontinuum simulation of fracture at the atomic scale , 1998 .
[47] A. Nakano,et al. Coupling length scales for multiscale atomistics-continuum simulations: atomistically induced stress distributions in Si/Si3N4 nanopixels. , 2001, Physical review letters.
[48] William D. Nix,et al. The Role of Indentation Depth on the Measured Hardness of Materials , 1993 .
[49] Eduard G. Karpov,et al. Molecular dynamics boundary conditions for regular crystal lattices , 2004 .
[50] Alan D. Freed,et al. Thermoviscoplastic model with application to copper , 1988 .
[51] W. Cai,et al. Minimizing boundary reflections in coupled-domain simulations. , 2000, Physical review letters.
[52] Alan Needleman,et al. An analysis of nonuniform and localized deformation in ductile single crystals , 1982 .
[53] D. Allen,et al. Predicted dynamic response of a composite beam with history-dependent damage , 1987 .
[54] Sidney Yip,et al. Handbook of Materials Modeling , 2005 .
[55] Mark F. Horstemeyer,et al. Using a micromechanical finite element parametric study to motivate a phenomenological macroscale model for void/crack nucleation in aluminum with a hard second phase , 2003 .
[56] Nancy A. Burnham,et al. Fundamentals of nanoindentation and nanotribology , 1998 .
[57] D. Clarke,et al. Size dependent hardness of silver single crystals , 1995 .
[58] Zhigang Suo,et al. New directions in mechanics , 2005 .
[59] Mark F. Horstemeyer,et al. Atomistic modelling of fatigue crack growth and dislocation structuring in FCC crystals , 2006, Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[60] Martin Ostoja-Starzewski. Mechanics of damage in a random granular microstructure: Percolation of inelastic phases , 1989 .
[61] Percy Williams Bridgman,et al. The Compressibility of Thirty Metals as a Function of Pressure and Temperature , 1923 .
[62] Yong Wang,et al. Multiscale mechanics of hierarchical structure/property relationships in calcified tissues and tissue/material interfaces. , 2007, Materials science & engineering. A, Structural materials : properties, microstructure and processing.
[63] Gregory B Olson,et al. Advances in theory: Martensite by design , 2006 .
[64] P. C. Paris,et al. A Critical Analysis of Crack Propagation Laws , 1963 .
[65] Steve Plimpton,et al. Fast parallel algorithms for short-range molecular dynamics , 1993 .
[66] David L. McDowell,et al. Multistage Fatigue Modeling of Cast A356-T6 and A380-F Aluminum Alloys , 2007 .
[67] J. Bicerano,et al. Polymer Modeling at The Dow Chemical Company , 2004 .
[68] A. Hoser,et al. Renormalization Group Theory : Impact on Experimental Magnetism , 2009 .
[69] M. Baskes,et al. Embedded-atom method: Derivation and application to impurities, surfaces, and other defects in metals , 1984 .
[70] G. Taylor. The Mechanism of Plastic Deformation of Crystals. Part I. Theoretical , 1934 .
[71] E Weinan,et al. A dynamic atomistic-continuum method for the simulation of crystalline materials , 2001 .
[72] F. C. Frank,et al. LXXXIII. Crystal dislocations.—Elementary concepts and definitions , 1951 .
[73] Tamaz Chelidze,et al. Evidence of fractal fracture , 1990 .
[74] William A. Curtin,et al. Crack interaction with microstructure , 2007 .
[75] José M. Martínez-Esnaola,et al. Molecular dynamics simulation of crack tip blunting in opposing directions along a symmetrical tilt grain boundary of copper bicrystal , 2007 .
[76] David Taylor,et al. Fracture and repair of bone: a multiscale problem , 2007 .
[77] M. Ashby,et al. Micro-hardness of annealed and work-hardened copper polycrystals , 1996 .
[78] Stanley Greenspoon. Finite-size effects in one-dimensional percolation: a verification of scaling theory , 1979 .
[79] Su Hao,et al. A hierarchical multi-physics model for design of high toughness steels , 2003 .
[80] X. Wang,et al. Low-cycle fatigue small crack initiation and propagation behaviour of cast magnesium alloys based on in-situ SEM observations , 2006 .
[81] A. K. Norr,et al. Adaptive, Multilevel, and Hierarchical Computational Strategies , 1992 .
[82] David L. McDowell,et al. Cyclic plasticity at pores and inclusions in cast Al-Si alloys , 2003 .
[83] F. Migliavacca,et al. Multiscale modeling of the cardiovascular system: application to the study of pulmonary and coronary perfusions in the univentricular circulation. , 2005, Journal of biomechanics.
[84] Jacob Fish,et al. Multiscale analysis of composite materials and structures , 2000 .
[85] Lisa Chong,et al. Whole-istic Biology , 2002, Science.
[86] Farrokh Mistree,et al. A Strategy for Simulation-Based Multiscale, Multi-Functional Products and Associated Design Processes , 2005, DAC 2005.
[87] N. Petch,et al. The Cleavage Strength of Polycrystals , 1953 .
[88] Mark F. Horstemeyer,et al. Interpretations of Indentation Size Effects , 2002 .
[89] B. Mandelbrot,et al. Fractal character of fracture surfaces of metals , 1984, Nature.
[90] Diana Farkas,et al. Atomistic Studies of Intrinsic Crack-Tip Plasticity , 2000 .
[91] J. Fish,et al. Multiscale asymptotic homogenization for multiphysics problems with multiple spatial and temporal scales: a coupled thermo-viscoelastic example problem , 2002 .
[92] Mark F. Horstemeyer,et al. A molecular dynamics study of void growth and coalescence in single crystal nickel , 2006 .
[93] D. McDowell,et al. High cycle fatigue of a die cast AZ91E-T4 magnesium alloy , 2004 .
[94] D. A. Hughes,et al. Near surface microstructures developing under large sliding loads , 1994 .
[95] Mark F. Horstemeyer,et al. On Factors Affecting Localization and Void Growth in Ductile Metals: A Parametric Study , 2000 .
[96] Mark F. Horstemeyer,et al. Multiscale study of dynamic void collapse in single crystals , 2005 .
[97] David L. McDowell,et al. On the driving force for fatigue crack formation from inclusions and voids in a cast A356 aluminum alloy , 2001 .
[98] Mark F. Horstemeyer,et al. Damage and stress state influence on the Bauschinger effect in aluminum alloys , 2007 .
[99] Philippe H. Geubelle,et al. Multiscale cohesive failure modeling of heterogeneous adhesives , 2008 .
[100] J. D. Doll,et al. Generalized Langevin equation approach for atom/solid-surface scattering: General formulation for classical scattering off harmonic solids , 1976 .
[101] A Multiscale Design Approach With Random Field Representation of Material Uncertainty , 2008, DAC 2008.
[102] Richard D. James,et al. A scheme for the passage from atomic to continuum theory for thin films, nanotubes and nanorods , 2000 .
[103] A. A. Griffith. The Phenomena of Rupture and Flow in Solids , 1921 .
[104] Gregory J. Wagner,et al. Coupling of atomistic and continuum simulations using a bridging scale decomposition , 2003 .
[105] D. McDowell,et al. Modeling effects of nonmetallic inclusions on LCF in DS nickel-base superalloys , 2005 .
[106] David L. McDowell,et al. Estimating fatigue sensitivity to polycrystalline Ni‐base superalloy microstructures using a computational approach , 2007 .
[107] Carl Eckart,et al. The Thermodynamics of Irreversible Processes. IV. The Theory of Elasticity and Anelasticity , 1948 .
[108] Samuel Graham,et al. Representative volumes of materials based on microstructural statistics , 2003 .
[109] N. Govind,et al. Prediction of electronic excited states of adsorbates on metal surfaces from first principles. , 2001, Physical review letters.
[110] Mark F. Horstemeyer,et al. Damage influence on Bauschinger effect of a cast A356 aluminum alloy , 1998 .
[111] Wolfgang Hackbusch,et al. Multi-grid methods and applications , 1985, Springer series in computational mathematics.
[112] Frank Reginald Nunes Nabarro,et al. Mathematical theory of stationary dislocations , 1952 .
[113] J. A. Olson,et al. A Percolation-Theory Model of Lignin Degradation , 1992 .
[114] A. Carpinteri,et al. Cohesive crack model description of ductile to brittle size-scale transition: dimensional analysis vs. renormalization group theory , 2003 .
[115] J. D. Eshelby,et al. The elastic field outside an ellipsoidal inclusion , 1959, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[116] T. Chan,et al. Multiscale and multiresolution methods : theory and applications , 2002 .
[117] M. Horstemeyer,et al. Micromechanisms of multistage fatigue crack growth in a high-strength aluminum alloy , 2007 .
[118] Mark F. Horstemeyer,et al. Effect of strain rate on damage evolution in a cast Al-Si-Mg base alloy , 2000 .
[119] Annikki Mäkelä,et al. Process-based modelling of tree and stand growth: towards a hierarchical treatment of multiscale processes , 2003 .
[120] William D. Nix,et al. The absence of steady-state flow during large strain plastic deformation of some Fcc metals at low and intermediate temperatures , 1988 .
[121] Mark F. Horstemeyer,et al. Atomistic simulations on the tensile debonding of an aluminum-silicon interface , 2000 .
[122] Manfred Rühle,et al. The influence of interface impurities on fracture energy of UHV diffusion bonded metal-ceramic bicrystals , 1994 .
[123] J. Lankford,et al. Initiation of fatigue cracks in 4340 steel , 1973 .
[124] Jacob Fish,et al. A Multiscale Design System for Fatigue Life Prediction , 2007 .
[125] James Lankford,et al. Inclusion-matrix debonding and fatigue crack initiation in low alloy steel , 1976, International Journal of Fracture.
[126] Steven J. Plimpton,et al. Torsion/Simple Shear of Single Crystal Copper , 2002 .
[127] Fujiu Ke,et al. Statistical Mesomechanics of Solid, Linking Coupled Multiple Space and Time Scales , 2005 .
[128] 白以龙,et al. Multiscale Coupling: Challenges and Opportunities , 2004 .
[129] David L. Davidson,et al. The influence of crack tip plasticity in the growth of small fatigue cracks , 1984 .
[130] William D. Nix,et al. Mechanical properties of thin films , 1989 .
[131] Robert E. Rudd,et al. COARSE-GRAINED MOLECULAR DYNAMICS AND THE ATOMIC LIMIT OF FINITE ELEMENTS , 1998 .
[132] E. B. Tadmor,et al. Quasicontinuum models of interfacial structure and deformation , 1998 .
[133] Michael I. Baskes,et al. Modified embedded atom potentials for HCP metals , 1994 .
[134] Les E. Atlas,et al. Strategies and Tactics in Multiscale Modeling of Cell-to-Organ Systems , 2006, Proceedings of the IEEE.
[135] J. Aboudi. The Generalized Method of Cells and High-Fidelity Generalized Method of Cells Micromechanical Models—A Review , 2004 .
[136] Eduard G. Karpov,et al. A Green's function approach to deriving non‐reflecting boundary conditions in molecular dynamics simulations , 2005 .
[137] Raghuveer M. Rao,et al. Scale-based formulations of statistical self-similarity in images , 2004, 2004 International Conference on Image Processing, 2004. ICIP '04..
[138] J. Halpin,et al. Time Dependent Static Strength and Reliability for Composites , 1970 .
[139] Dong Qian,et al. Mechanics of carbon nanotubes , 2002 .
[140] E. Hinton,et al. A review of homogenization and topology optimization I- homogenization theory for media with periodic structure , 1998 .
[141] Mark S. Shephard,et al. Automatic construction of 3-D models in multiple scale analysis , 1995 .
[142] L. Reichl. A modern course in statistical physics , 1980 .
[143] N. Govind,et al. Orbital-free kinetic-energy density functionals with a density-dependent kernel , 1999 .
[144] Harold S. Park,et al. The bridging scale for two-dimensional atomistic/continuum coupling , 2005 .
[145] Hussein M. Zbib,et al. A multiscale model of plasticity , 2002 .
[146] S. Nemat-Nasser,et al. Micromechanics: Overall Properties of Heterogeneous Materials , 1993 .
[147] Alex Hansen,et al. Origin of the universal roughness exponent of brittle fracture surfaces:stress-weighted percolation in the damage zone. , 2003, Physical review letters.
[148] M. Dupeux,et al. Stress calculations for interfacial extrinsic and intrinsic dislocation arrays in anisotropic two-phase media , 1980 .
[149] Mark F. Horstemeyer,et al. Micromechanical finite element calculations of temperature and void configuration effects on void growth and coalescence , 2000 .
[150] John C. Halpin,et al. Structure-Property Relations and Reliability Concepts , 1972 .
[151] Patrick A. Klein,et al. Coupled atomistic-continuum simulations using arbitrary overlapping domains , 2006, J. Comput. Phys..
[152] Elias C. Aifantis,et al. A damage model for ductile metals , 1989 .
[153] J. D. Eshelby. The determination of the elastic field of an ellipsoidal inclusion, and related problems , 1957, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[154] William A. Curtin,et al. A coupled atomistic/continuum model of defects in solids , 2002 .
[155] R. A. Fisher,et al. Design of Experiments , 1936 .
[156] Doros N. Theodorou,et al. Hierarchical modeling of amorphous polymers , 2005, Comput. Phys. Commun..
[157] Jacob Fish,et al. Multiscale enrichment based on partition of unity for nonperiodic fields and nonlinear problems , 2007 .
[158] L. Onsager. Reciprocal Relations in Irreversible Processes. II. , 1931 .
[159] K. Tanaka,et al. Average stress in matrix and average elastic energy of materials with misfitting inclusions , 1973 .
[160] Christian Hellmich,et al. Can the diverse elastic properties of trabecular and cortical bone be attributed to only a few tissue-independent phase properties and their interactions? , 2004, Biomechanics and modeling in mechanobiology.
[161] Elias C. Aifantis,et al. A model for finite-deformation plasticity , 1987 .
[162] Anthony G. Evans,et al. A microbend test method for measuring the plasticity length scale , 1998 .
[163] H. Fischmeister,et al. Crack propagation in b.c.c. crystals studied with a combined finite-element and atomistic model , 1991 .
[164] K. J. Miller,et al. Fatigue cracks at notches , 1977 .
[165] Murray S. Daw,et al. The embedded-atom method: a review of theory and applications , 1993 .
[166] Lawrence E Murr,et al. Metallurgical Applications of Shock-Wave and High-Strain-Rate Phenomena, with K. P. Staudhammer and M. A. Meyers , Marcel Dekker, Inc., New York, , 1986 .
[167] Horacio Dante Espinosa,et al. A 3-D Finite Deformation Anisotropic Visco-Plasticity Model for Fiber Composites , 2001 .
[168] David L. McDowell,et al. Microstructure-based multistage fatigue modeling of aluminum alloy 7075-T651 , 2007 .
[169] William A. Curtin,et al. Multiscale modelling of dislocation/grain boundary interactions. II. Screw dislocations impinging on tilt boundaries in Al , 2007 .
[170] E. Hinton,et al. A review of homogenization and topology optimization III—topology optimization using optimality criteria , 1998 .
[171] David L. McDowell,et al. Microstructure-based multistage fatigue modeling of a cast AE44 magnesium alloy , 2007 .
[172] James G. Boyd,et al. Micromechanics and homogenization of inelastic composite materials with growing cracks , 1996 .
[173] Qing Yu,et al. Computational mechanics of fatigue and life predictions for composite materials and structures , 2002 .
[174] J. Essam. Linked-cluster expansions for the correlation functions of lattice systems , 1970, Mathematical Proceedings of the Cambridge Philosophical Society.
[175] F. C. Frank,et al. The influence of dislocations on crystal growth , 1949 .
[176] R. Fisher. Statistical methods for research workers , 1927, Protoplasma.
[177] M. Boyce,et al. A constitutive model for the nonlinear viscoelastic viscoplastic behavior of glassy polymers , 1995 .
[178] David L. McDowell,et al. Microstructure-based fatigue modeling of cast A356-T6 alloy , 2003 .
[179] D Farkas,et al. Atomistic mechanisms of fatigue in nanocrystalline metals. , 2005, Physical review letters.
[180] Douglas J. Bammann,et al. Modeling Temperature and Strain Rate Dependent Large Deformations of Metals , 1990 .
[181] James C. Newman,et al. A review of modelling small-crack behavior and fatigue-life predictions for aluminum alloys , 1994 .
[182] T. Belytschko,et al. A bridging domain method for coupling continua with molecular dynamics , 2004 .
[183] C. Lung,et al. Interpretation of porosity effect on strength of highly porous ceramics , 1991 .
[184] Mark F. Horstemeyer,et al. A Multiscale Analysis of Void Coalescence in Nickel , 2007 .
[185] J. C. H. Affdl,et al. The Halpin-Tsai Equations: A Review , 1976 .
[186] M C Payne,et al. "Learn on the fly": a hybrid classical and quantum-mechanical molecular dynamics simulation. , 2004, Physical review letters.
[187] Gregory B Olson. Guest Editorial; New Age of Design , 2000 .
[188] M. Rashid,et al. A constitutive algorithm for rate-dependent crystal plasticity , 1992 .
[189] Yang-Tse Cheng,et al. Scaling Relationships in Conical Indentation in Elastic-Plastic Solids with Work-Hardening , 1998 .
[190] J. Q. Broughton,et al. Concurrent coupling of length scales: Methodology and application , 1999 .
[191] Mark F. Horstemeyer,et al. Lattice orientation effects on void growth and coalescence in fcc single crystals , 2006 .
[192] J. R. Griffiths,et al. CASTING DEFECTS AND THE FATIGUE BEHAVIOUR OF AN ALUMINIUM CASTING ALLOY , 1990 .
[193] Mark S. Shephard,et al. Computer-aided multiscale modeling tools for composite materials and structures , 1995 .
[194] C. S. Hartley,et al. Constitutive Equations in Plasticity , 1977 .
[195] W. Read,et al. Dislocations in Crystals , 1953 .
[196] David L. McDowell,et al. Computational micromechanics analysis of cyclic crack-tip behavior for microstructurally small cracks in dual-phase Al–Si alloys , 2001 .
[197] U. F. Kocks,et al. A constitutive description of the deformation of copper based on the use of the mechanical threshold stress as an internal state variable , 1988 .
[198] Charles E. Harris,et al. A Cumulative Damage Model for Continuous Fiber Composite Laminates with Matrix Cracking and Interply Delaminations , 1988 .
[199] Mark F. Horstemeyer,et al. Numerical, experimental, nondestructive, and image analyses of damage; progression in cast A356 aluminium notch tensile bars , 2013 .
[200] A. Gokhale,et al. Effect of loading condition and stress state on damage evolution of silicon particles in an Al-Si-Mg-Base cast alloy , 2002 .
[201] Celina Imielinska,et al. Multi-scale Modeling of Trauma Injury , 2006, International Conference on Computational Science.
[202] David L. McDowell,et al. Design of experiments for constitutive model selection: application to polycrystal elastoviscoplasticity , 1999 .
[203] Efthimios Kaxiras,et al. From Electrons to Finite Elements: A Concurrent Multiscale Approach for Metals , 2005, cond-mat/0506006.
[204] D. Krajcinovic. Continuum Damage Mechanics: When and How? , 1995 .
[205] J. Chaboche,et al. Viscoplastic constitutive equations for the description of cyclic and anisotropic behaviour of metals , 1977 .
[206] Mark F. Horstemeyer,et al. A large deformation atomistic study examining crystal orientation effects on the stress–strain relationship , 2002 .
[207] J. Mauro,et al. A Nonequilibrium Statistical Mechanical Model of Structural Relaxation in Glass , 2006 .
[208] Douglas J. Bammann,et al. An internal variable model of viscoplasticity , 1984 .
[209] Jacob Fish,et al. Fatigue life prediction using 2‐scale temporal asymptotic homogenization , 2004 .
[210] David L. McDowell,et al. Concurrent design of hierarchical materials and structures , 2008 .
[211] G. Rutledge,et al. Molecular Dynamics Simulation of Size-Dependent Structural and Thermal Properties of Polymer Nanofibers , 2007 .
[212] Vikram Deshpande,et al. Scaling of discrete dislocation predictions for near-threshold fatigue crack growth , 2003 .
[213] J. Rice. Inelastic constitutive relations for solids: An internal-variable theory and its application to metal plasticity , 1971 .
[214] M. Ortiz,et al. An adaptive finite element approach to atomic-scale mechanics—the quasicontinuum method , 1997, cond-mat/9710027.
[215] R. Mises. Mechanik der festen Körper im plastisch- deformablen Zustand , 1913 .
[216] Peter J. Laz,et al. Fatigue life prediction from inclusion initiated cracks , 1998 .
[217] David L. McDowell,et al. Finite element analysis of the stress distributions near damaged Si particle clusters in cast Al–Si alloys , 2000 .
[218] T. Nakano,et al. Multi-scale stress analysis of trabecular bone considering trabeculae morphology and biological apatite crystallite orientation , 2006 .
[219] Horacio Dante Espinosa,et al. Modelling of failure mode transition in ballistic penetration with a continuum model describing microcracking and flow of pulverized media , 2002 .
[220] H. Stanley,et al. Phase Transitions and Critical Phenomena , 2008 .
[221] Fan,et al. The influence of modified intermetallics and Si particles on fatigue crack paths in a cast A356 Al alloy , 2000 .
[222] Toshio Mura,et al. Micromechanics of defects in solids , 1982 .
[223] J. Vlassak,et al. Determination of indenter tip geometry and indentation contact area for depth-sensing indentation experiments , 1998 .
[224] Jacob Fish,et al. Discrete-to-continuum bridging based on multigrid principles , 2004 .
[225] James B. Adams,et al. Interatomic Potentials from First-Principles Calculations: The Force-Matching Method , 1993, cond-mat/9306054.
[226] Arcady Dyskin,et al. Effective characteristics and stress concentrations in materials with self-similar microstructure , 2005 .
[227] R. Car,et al. Oxygen Diffusion in Yttria‐Stabilized Zirconia: A New Simulation Model , 2005 .
[228] Mark F. Horstemeyer,et al. Cradle-to-grave simulation-based design incorporating multiscale microstructure-property modeling: Reinvigorating design with science , 2003 .
[229] R. Mcclung,et al. Cu-bearing high-strength low-alloy steels: The influence of microstructure on the initiation and growth of small fatigue cracks , 1996 .
[230] M. Ortiz,et al. Quasicontinuum analysis of defects in solids , 1996 .
[231] George Stephanopoulos,et al. Using wavelet transforms for multiresolution materials modeling , 2005, Comput. Chem. Eng..
[232] Feodor M. Borodich,et al. FRACTAL FRACTURE OF BRITTLE BODIES DURING COMPRESSION , 1992 .
[233] Benoit B. Mandelbrot,et al. Fractal Geometry of Nature , 1984 .
[234] M. Horstemeyer,et al. Identification and modeling of fatigue crack growth mechanisms in a die-cast AM50 magnesium alloy , 2006 .
[235] M. Gurtin,et al. Thermodynamics with Internal State Variables , 1967 .
[236] Y. Milman,et al. Microindentations on W and Mo oriented single crystals: An STM study , 1993 .
[237] Sia Nemat-Nasser,et al. Modeling very large plastic flows at very large strain rates for large-scale computation , 1990 .
[238] E. Orowan. Zur Kristallplastizität. I , 1934 .
[239] Zdenek P. Bazant,et al. Can Multiscale-Multiphysics Methods Predict Softening Damage and Structural Failure? , 2010 .
[240] Rodney Hill,et al. Continuum micro-mechanics of elastoplastic polycrystals , 1965 .
[241] I. Mastorakos,et al. DD Simulations of Dislocation-Crack Interaction During Fatigue , 2007 .
[242] W. C. Roberts-Austen. XIII. On certain mechanical properties of metals considered in relation to the periodic law , 1888 .
[243] Steven J. Plimpton,et al. LENGTH SCALE AND TIME SCALE EFFECTS ON THE PLASTIC FLOW OF FCC METALS , 2001 .
[244] Harold S. Park,et al. An introduction to computational nanomechanics and materials , 2004 .
[245] Carl Eckart,et al. The Thermodynamics of Irreversible Processes. I. The Simple Fluid , 1940 .
[246] Mark F. Horstemeyer,et al. A void–crack nucleation model for ductile metals , 1999 .
[247] Tatsuro Morita,et al. Dislocation Dynamics Simulation of Fatigue Crack Initiation , 2003 .
[248] Gabriele Milani,et al. Analysis of masonry structures: review of and recent trends in homogenization techniquesThis article is one of a selection of papers published in this Special Issue on Masonry. , 2007 .
[249] Roux,et al. Roughness of crack interfaces. , 1991, Physical review letters.
[250] M. Polanyi,et al. Über eine Art Gitterstörung, die einen Kristall plastisch machen könnte , 1934 .
[251] M. Paley,et al. Micromechanical analysis of composites by the generalized cells model , 1992 .
[252] K. J. Miller,et al. Experimental and theoretical fatigue-crack propagation lives of variously notched plates , 1974 .
[253] Jacob Fish,et al. Multiscale damage modelling for composite materials: theory and computational framework , 2001 .
[254] U. F. Kocks,et al. Texture and Anisotropy: Preferred Orientations in Polycrystals and their Effect on Materials Properties , 1998 .
[255] M. Baskes,et al. Semiempirical, Quantum Mechanical Calculation of Hydrogen Embrittlement in Metals , 1983 .
[256] Farrokh Mistree,et al. Robust concept exploration methods in materials design , 2002 .
[257] E Weinan,et al. The Heterognous Multiscale Methods , 2003 .
[258] David R Poirier,et al. Microstructural effects on high-cycle fatigue-crack initiation in A356.2 casting alloy , 1999 .
[259] Arun M. Gokhale,et al. Application of image processing for simulation of mechanical response of multi-length scale microstructures of engineering alloys , 1999 .
[260] Mark F. Horstemeyer,et al. A multiscale analysis of fixed-end simple shear using molecular dynamics, crystal plasticity, and a macroscopic internal state variable theory , 2003 .
[261] M. Ashby,et al. Strain gradient plasticity: Theory and experiment , 1994 .
[262] Michael I. Baskes,et al. Atomistic calculations of composite interfaces , 1994 .
[263] David J. Srolovitz,et al. Atomistic Simulation of Materials , 1989 .
[264] L E Shilkrot,et al. Coupled atomistic and discrete dislocation plasticity. , 2002, Physical review letters.
[265] Zdenek P. Bazant,et al. Scaling of Structural Failure , 1997 .
[266] Amitesh Maiti,et al. Multiscale modeling with carbon nanotubes , 2006, Microelectron. J..
[267] Jacob Aboudi,et al. Micromechanical Analysis of Composites by the Method of Cells , 1989 .
[268] J. Rice,et al. PARADOXES IN THE APPLICATION OF THERMODYNAMICS TO STRAINED SOLIDS. , 1969 .
[269] D. McDowell,et al. High cycle fatigue mechanisms in a cast AM60B magnesium alloy , 2002 .
[270] Yasufumi Otsubo,et al. Elastic percolation in suspensions flocculated by polymer bridging , 1990 .
[271] D. Mark,et al. Scale-dependent fractal dimensions of topographic surfaces: An empirical investigation, with applications in geomorphology and computer mapping , 1984 .
[272] Mark F. Horstemeyer,et al. Atomistic Finite Deformation Simulations: A Discussion on Length Scale Effects in Relation to Mechanical Stresses , 1999 .
[273] David L. McDowell,et al. Simulation-assisted materials design for the concurrent design of materials and products , 2007 .
[274] Xiang-Yang Liu,et al. Embedded-atom-method tantalum potential developed by the force-matching method , 2003 .
[275] Review: Harry Kesten, Percolation theory for mathematicians , 1984 .
[276] P. M. Gullett,et al. Hydrogen effects on nanovoid nucleation in face-centered cubic single-crystals , 2008 .
[277] Nelson,et al. Semiempirical modified embedded-atom potentials for silicon and germanium. , 1989, Physical review. B, Condensed matter.
[278] Emily A. Carter,et al. Coupled Quantum–Atomistic and Quantum–Continuum Mechanics Methods in Materials Research , 2007 .
[279] Farrokh Mistree,et al. Design of multifunctional honeycomb materials , 2002 .
[280] J. Christian. CHAPTER 4 – The Thermodynamics of Irreversible Processes , 2002 .
[281] Steven J. Plimpton,et al. Computational nanoscale plasticity simulations using embedded atom potentials , 2001 .
[282] P. Voorhees,et al. Computer simulations for the prediction of microstructure/property variation in aeroturbine disks , 2004 .
[283] Michael Ortiz,et al. Hierarchical modeling in the mechanics of materials , 2000 .
[284] G. B. Olson,et al. Computational Design of Hierarchically Structured Materials , 1997 .
[285] Vikram Deshpande,et al. Discrete dislocation plasticity modeling of short cracks in single crystals , 2003 .
[286] M. Baskes,et al. Atomistic simulations of Bauschinger effects of metals with high angle and low angle grain boundaries , 2004 .
[287] Jacob Fish,et al. Bridging the scales in nano engineering and science , 2006 .
[288] Farrokh Mistree,et al. Robust Design of Cellular Materials With Topological and Dimensional Imperfections , 2006 .
[289] Mark F. Horstemeyer,et al. On the growth of nanoscale fatigue cracks , 2006 .
[290] M. Ortiz,et al. A finite element method for localized failure analysis , 1987 .
[291] Paul R. Dawson,et al. On modeling of mechanical property changes during flat rolling of aluminum , 1987 .