Journal Papers

[8] J.L. Curiel Sosa et al. (2013) Int J of Damage Mechanics, 22(3):356-374.

[6] J.L. Curiel-Sosa and N Karapurath (2012) Comp Sci Tech 72(7):788-791.

Forthcoming

 

[28].- M Akbar, JL Curiel-Sosa. Evaluation of piezoelectric energy harvester under dynamic bending by means of hybrid mathematical/isogeometric analysis. Int J of Mechanics and Materials in Design, (in-press).

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2017

[27].- Ahmad MIM, Curiel-Sosa JL & Rongong J (2017) Characterisation of creep behaviour using the power law model in copper alloy. Journal of Mechanical Engineering and Sciences, 11(1), 2503-2510.

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[26].- NA Abdullah, JL Curiel-Sosa, ZA Taylor, JL Martinez Vicente, C Zhang. Transversal crack and delamination of laminates using XFEM, Composite Structures, 173, 78-85.

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[25].- Lai W, Tiantang Y, Bui TQ, Wang Z, Curiel-Sosa JL, Das R & Hirose S. 3-D elasto-plastic large deformations: IGA simulation by Bézier extraction of NURBS. Advances in Engineering Software, 108 (2017), 68–82.

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[24].- Chao Zhang, Curiel-Sosa, JL and Enock A Duodu. Finite element analysis of the damage mechanism of 3D braided composites under high-velocity impact. J Mater Sci, 52(8) (2017), 4658–4674.

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[23].- Chao Zhang, JL Curiel-Sosa, Tinh Quoc Bui. A novel interface constitutive model for prediction of stiffness and strength in 3D braided composites. Composite Structures, 163 (2017), 32-43

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[22].- Wang, Yu, TQ Bui, Tanaka, Doan, Zhang, Hirose, JL Curiel-Sosa. 3-D local mesh refinement XFEM with variable-node hexahedron elements for extraction of stress intensity factors of straight and curved planar cracks. Computer Methods in Applied Mechanics and Engineering, 313 (1) (2017), 375-405.

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[21].- C Zhang, JL Curiel-Sosa, TQ Bui, 2017. Comparison of periodic and free meshon the mechanical properties prediciton of 3D braided composites. Composite Structures, 159 (1) (2017), 667-676.

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2016

[20].- Akbar, M and Curiel-Sosa, JL. Piezoelectric energy harvester composite under dynamic bending with implementation to aircraft wingbox structure. Composite Structures, 153 (2016), 193-203.

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[19].- Carneiro Molina, AJ, Curiel-Sosa, JL, 2016. A large strains finite element multiscale approach. Int J Computational Methods in Engineering Science & Mechanics, 17 (1) (2016), 46-58.

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[18].- Navarro-Zafra, J, Curiel-Sosa, JL, Serna Moreno, MC, 2016. Three-dimensional static and dynamic analysis of a composite cruciform structure subjected to biaxial loading: a discontinuum approach. Applied Composite Materials. 23 (2) (2016), 139-154.

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2015

[17].- Curiel-Sosa, JL. Review on 'Introduction to Aeronautics: A Design Perspective' by SA Brandt, AIAA series. The Aeronautical Journal, November (2015).

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[16].- Ibbett, J, Tafazzolimoghaddam, B, Hernadez Delgadillo, H, Curiel-Sosa, JL. What triggers a microcrack in printed engineering parts produced by selective laser sintering on the first place? Materials & Design, 88 (2015), 588-597.

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[15].- Navarro-Zafra, J, Curiel-Sosa, JL, Serna Moreno, MC. Mixed-mode damage into a CGRP cruciform subjected to biaxial loading. Composite Structures, 133 (2015), 1093-1100.

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[14].- Tafazzolimoghaddam, B, Curiel-Sosa, JL. On the calculation of energy release rate in composites by Finite Elements, Boundary Elements and Analytical Methods. Comp Mechs Comput Appl, 6(3) (2015), 219-237 . Download (from journal site)

 

[13].- A.J. Carneiro Molina, J.L. Curiel-Sosa. A multiscale finite element technique for nonlinear multiphase materials. Finite Elements in Analysis and Design, 94 (2015), 64-80.

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2014

[12].- M.C. Serna Moreno, J.L. Curiel-Sosa, J. Navarro-Zafra, J.L. Martinez Vicente, J.J. Lopez Cela. Crack propagation in a chopped glass-reinforced composite under biaxial testing by means of XFEM. Composite Structures, 119: 264-271.

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[11].- D. Tripathy, O. Anwar Beg and J.L. Curiel-Sosa, 2014. Homotopy semi-numerical simulation of peristaltic flow of generalized Oldroy-B fluids with slip effects. Computer Methods in Biomechanics and Biomedical Engineering, 17(4):433-442.

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[10].- Beg OA, Mahabaleshwar US, Rashidi MM, Rahimzadeh N, Curiel-Sosa JL, Sarris I & Laraqi N (2014) Homotopy analysis of magnetohydrodynamic convection flow in manufacture of a viscoelastic fabric for space applications. International Journal for Applied Mathematics and Mechanics, 10 (10): 9-49.

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2013

[9].- J.L. Curiel-Sosa, O.A. Beg, J.M. Liebana Murillo, 2013. Finite element analysis of structural instabilities using a switching implicit/explicit tecnique. Int J Computational Methods in Engineering Science & Mechanics, 14(5): 452-464.

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[8].- J.L. Curiel Sosa, S. Phaneendra, J.J. Muñoz, 2013. Modelling of mixed damage on fibre-reinforced composite laminates subjected to low velocity impact. Int J of Damage Mechanics, 22(3):356-374.

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[7].- J.L. Curiel-Sosa and D.R.J. Owen, 2013. Conmutacion temporal de tecnicas numericas implicita y explicita para simulacion de estructuras no lineales inestables. Rev Int Met Num Calc Dis Ing, 29(3): 92-103.

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2012

[6].- J.L. Curiel Sosa and N. Karapurath, 2012. Delamination modelling of GLARE using the Extended Finite Element Method. Composite Science Technology, 72 (7): 788-791.

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2010

 

[5].- J.L. Curiel Sosa, 2010. Modelling of the nonlinear interface in reinforced concrete. Int. J. for Computational Methods in Engineering Science & Mechanics, 11 (6):157-161.

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2009

[4].- J.L. Curiel Sosa and A.J. Gil, 2009. Analysis of a continuum-based beam element in the framework of explicit FEM. Finite Elements in Analysis and Design, 45, 583-591.

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2008

[3].- J.L. Curiel Sosa, N. Petrinic and J. Weigand, 2008. A three-dimensional progressive damage model for fibre-composite materials. Mechanics Research Communications, 35 (4): 219-221.

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2006

[2].- N. Petrinic, J.L. Curiel Sosa, C.R. Siviour and C.B.F. Elliot, 2006. Improved predictive modeling of strain localization and ductile fracture in Ti-6Al-4V alloy subjected to impact loading. Journal de Physique IV, 134, 147-155.

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[1].- J.L. Curiel Sosa, E A. de Souza Neto and D.R.J. Owen, 2006. A combined implicit-explicit algorithm in time for nonlinear finite element analysis. Communications in Numerical Methods in Engineering. 22, 63-75.

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Jose Luis Curiel-Sosa