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Kedar Kirane
Kedar Kirane
其他姓名Kedar S Kirane, K Kirane, K S Kirane
Associate Professor, Stony Brook University
在 stonybrook.edu 的电子邮件经过验证 - 首页
标题
引用次数
引用次数
年份
A cold dwell fatigue crack nucleation criterion for polycrystalline Ti-6242 using grain-level crystal plasticity FE Model
K Kirane, S Ghosh
International Journal of Fatigue 30 (12), 2127-2139, 2008
1202008
Experimental and numerical investigation of intra-laminar energy dissipation and size effect in two-dimensional textile composites
M Salviato, K Kirane, SE Ashari, ZP Bažant, G Cusatis
Composites Science and Technology 135, 67-75, 2016
1152016
Microstructural parameters affecting creep induced load shedding in Ti-6242 by a size dependent crystal plasticity FE model
G Venkataramani, K Kirane, S Ghosh
International Journal of Plasticity 24 (3), 428-454, 2008
982008
Size effect in Paris law and fatigue lifetimes for quasibrittle materials: Modified theory, experiments and micro-modeling
K Kirane, ZP Bažant
International Journal of Fatigue 83, 209-220, 2016
922016
Microplane damage model for fatigue of quasibrittle materials: Sub-critical crack growth, lifetime and residual strength
K Kirane, ZP Bažant
International Journal of Fatigue 70, 93-105, 2015
692015
Microplane triad model for simple and accurate prediction of orthotropic elastic constants of woven fabric composites
K Kirane, M Salviato, ZP Bažant
Journal of Composite Materials 50 (9), 1247-1260, 2016
602016
Mode I and II interlaminar fracture in laminated composites: a size effect study
M Salviato, K Kirane, ZP Bažant, G Cusatis
Journal of Applied Mechanics 86 (9), 091008, 2019
542019
Microplane-triad model for elastic and fracturing behavior of woven composites
K Kirane, M Salviato, ZP Bažant
Journal of Applied Mechanics 83 (4), 041006, 2016
412016
Grain level dwell fatigue crack nucleation model for Ti alloys using crystal plasticity finite element analysis
K Kirane, S Ghosh, M Groeber, A Bhattacharjee
Journal of Engineering Materials and Technology 131, 021003, 2009
40*2009
Induced anisotropy in the fracturing behavior of 3D printed parts analyzed by the size effect method
A Nurizada, K Kirane
Engineering Fracture Mechanics 239, 107304, 2020
302020
Size Effect in Torsional Strength of Plain and Reinforced Concrete.
K Kirane, KD Singh, ZP Bažant
ACI Structural Journal 113 (6), 2016
252016
Strain-rate-dependent microplane model for high-rate comminution of concrete under impact based on kinetic energy release theory
K Kirane, Y Su, ZP Bažant
Proc. R. Soc. A 471 (2182), 20150535, 2015
252015
Strength size effect and post-peak softening in textile composites analyzed by cohesive zone and crack band models
J Xue, K Kirane
Engineering Fracture Mechanics 212, 106-122, 2019
242019
Statistical distribution and size effect of residual strength of quasibrittle materials after a period of constant load
M Salviato, K Kirane, ZP Bažant
Journal of the Mechanics and Physics of Solids 64, 440-454, 2014
192014
Fracture and size effect on strength of plain concrete disks under biaxial flexure analyzed by microplane model M7
K Kirane, ZP Bažant, G Zi
Journal of Engineering Mechanics 140 (3), 604-613, 2014
172014
Continuum damage modeling of dynamic crack velocity, branching, and energy dissipation in brittle materials
T Abdullah, K Kirane
International Journal of Fracture 229, 15-37, 2021
142021
Size effect in Paris law for quasibrittle materials analyzed by the microplane constitutive model M7
K Kirane, ZP Bažant
Mechanics Research Communications 68, 60-64, 2015
142015
Cylindrical microplane model for compressive kink band failures and combined friction/inelasticity in fiber composites I: Formulation
J Xue, K Kirane
Composite Structures 289, 115382, 2022
13*2022
Effect of the shape of the softening damage law on the predicted tensile fracturing and energy dissipation in textile composites
J Xue, K Kirane
International Journal of Damage Mechanics 30 (5), 786-822, 2021
122021
Fracture and energetic strength scaling of soft, brittle, and weakly nonlinear elastomers
K Gonzalez, J Xue, A Chu, K Kirane
Journal of Applied Mechanics 87 (4), 041009, 2020
122020
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