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Original Articles

Numerical simulation of aircraft interior components under crash loads

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Pages 511-521 | Received 14 Jan 2008, Accepted 16 Apr 2008, Published online: 09 Sep 2008

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Sulaiman O. Fadlallah, Timothy N. Anderson & Roy J. Nates. (2023) Fluid-structure interaction analysis of a lightweight sandwich composite structure for solar central receiver heliostats. Mechanics Based Design of Structures and Machines 51:10, pages 5737-5766.
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S. Heimbs, M. Hoffmann, M. Waimer, S. Schmeer & J. Blaurock. (2013) Dynamic testing and modelling of composite fuselage frames and fasteners for aircraft crash simulations. International Journal of Crashworthiness 18:4, pages 406-422.
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N.W. Bailey, M.A. Battley & M. Zhou. (2013) Experimental method for dynamic residual strength characterisation of aircraft sandwich structures. International Journal of Crashworthiness 18:1, pages 64-81.
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Zhe-Feng Yu, Heng-Shan Gu, Hai Wang & Peng-Yue Yi. (2013) Crash simulation of the fuselage section with central wing box for a regional jet. International Journal of Crashworthiness 18:1, pages 19-28.
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Pierrick Guégan, Ramzi Othman, Daniel LeBreton, Franck Pasco, Nicolas Swiergiel & Pascal Thevenet. (2010) Experimental investigation of rubber ball impacts on aluminium plates. International Journal of Crashworthiness 15:4, pages 391-399.
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Articles from other publishers (10)

Dipen Kumar Rajak, Pratiksha H. Wagh, Ashwini Kumar, Ajit Behera & Catalin I. Pruncu. 2022. Materials, Structures and Manufacturing for Aircraft. Materials, Structures and Manufacturing for Aircraft 65 88 .
Sulaiman O. Fadlallah, Timothy N. Anderson & Roy J. Nates. (2021) Artificial Neural Network–Particle Swarm Optimization (ANN-PSO) Approach for Behaviour Prediction and Structural Optimization of Lightweight Sandwich Composite Heliostats. Arabian Journal for Science and Engineering 46:12, pages 12721-12742.
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A. Riccio, S. Saputo, A. Sellitto & F. Di Caprio. (2020) A Numerical Assessment on the Influences of Material Toughness on the Crashworthiness of a Composite Fuselage Barrel. Applied Sciences 10:6, pages 2019.
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Alok Raj, Meenakshi Akkiraju, Balaji Pillai, Naresh Kulkarni & Rathnakara Somashekara. (2018) Finite Element Method for Predicting the Behavior of Sandwich Structure Luggage Floor of Passenger Cars. IOP Conference Series: Materials Science and Engineering 422, pages 012004.
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Jacob M. Hundley, Eric C. Clough & Alan J. Jacobsen. (2015) The low velocity impact response of sandwich panels with lattice core reinforcement. International Journal of Impact Engineering 84, pages 64-77.
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A. T. Settet, A. Nour, H. Zahloul & H. Naceur. (2014) Evaluation of Damage and Fracture Mechanisms of Different Characteristic Honeycomb Structures Under Thermomechanical Loading. Mechanics of Composite Materials 50:5, pages 647-660.
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L. P. Shabalin, A. V. Gorelov, I. N. Sidorov, V. I. Khaliulin & I. V. Dvoyeglazov. (2012) Calculation of the parameters of stress-strain and ultimate states of composite foldcores under transverse compression and shear. Mechanics of Composite Materials 48:4, pages 415-426.
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Sebastian Heimbs & Björn Van Den Broucke. 2012. Polymer Composites. Polymer Composites 185 207 .
Nathan Bailey, Mark Battley & M. Zhou. (2011) Dynamic Damage Tolerance for Aircraft Sandwich Structures: Experiments and Modeling. Dynamic Damage Tolerance for Aircraft Sandwich Structures: Experiments and Modeling.
T. Kotzakolios, D.E. Vlachos & V. Kostopoulos. (2011) Blast response of metal composite laminate fuselage structures using finite element modelling. Composite Structures 93:2, pages 665-681.
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