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Experimental and FE Analysis of Quasi-Static Bending of Foam-Filled Structures
Journal Article
2010-01-0020
ISSN: 1946-3979, e-ISSN: 1946-3987
Sector:
Topic:
Citation:
Kinoshita, S., Lu, G., Ruan, D., and Beynon, J., "Experimental and FE Analysis of Quasi-Static Bending of Foam-Filled Structures," SAE Int. J. Mater. Manuf. 3(1):44-54, 2010, https://doi.org/10.4271/2010-01-0020.
Language:
English
References
- Chen W. Nardini D. “Experimental study of crush behaviour of sheet aluminium foam-filled sections,” International Journal of Crashworthiness 5 447 468 2000
- Hanssen A. G. Langseth M. Hopperstad O. S. “Static and dynamic crushing of square aluminium extrusions with aluminium foam filler,” International Journal of Impact Engineering 24 347 383 2000
- Santosa S. P. Wierzbicki T. Hanssen A. G. Langseth M. “Experimental and numerical studies of foam-filled sections,” International Journal of Impact Engineering 24 509 534 2000
- Meguid S. A. Heyerman J. Stranart J. C. “Finite element modeling of the axial collapse of foam-filled structures,” Journal of Spacecraft and Rockets 39 828 832 2002
- Reddy T. Y. Wall R. J. “Axial compression of foam-filled thin-walled circular tubes,” International Journal of Impact Engineering 7 151 166 1988
- Børvik T. Hopperstad O. S. Reyes A. Langseth M. Solomos G. Dyngeland T. “Empty and foam-filled circular aluminium tubes subjected to axial and oblique quasistatic loading,” International Journal of Crashworthiness 8 481 494 2003
- Reyes A. Hopperstad O. S. Langseth M. “Aluminium foam-filled extrusions subjected to oblique loading: experimental and numerical study,” International Journal of Solids and Structures 41 1645 1675 2004
- Zarei H. R. Kröger M. “Optimization of the foam-filled aluminium tubes for crush box application,” Thin-Walled Structures 46 214 221 2008
- Hanssen A. G. Hopperstad O. S. Langseth M. “Bending of square aluminium extrusions with aluminium foam filler,” Acta Mechanica 142 13 31 2000
- Santosa S. Banhart J. Wierzbicki T. “Bending crush resistance of partially foam-filled sections,” Advanced Engineering Materials 2 223 227 2000
- Santosa S. Banhart J. Wierzbicki T. “Experimental and numerical analyses of bending of foam-filled sections,” Acta Mechanica 148 199 213 2001
- Banhart J. “Manufacture, characterisation and application of cellular metals and metal foams,” Progress in Materials Science 46 559 632 2001
- Hanssen A. G. Stöbener K. Rausch G. Langseth M. Keller H. “Optimisation of energy absorption of an A-pillar by metal foam insert,” International Journal of Crashworthiness 11 231 242 2006
- Shahbeyk S. Petrinic N. Vafai A. “Numerical modelling of dynamically loaded metal foam-filled square columns,” International Journal of Impact Engineering 34 573 586 2007
- Deshpande V. S. Fleck N. A. “Isotropic constitutive models for metallic foams,” Journal of the Mechanics and Physics of Solids 48 1253 1283 2000
- Miyoshi T. Itoh M. Akiyama S. Kitahara A. “ALPORAS Aluminium Foam: Production Process, Properties, and Applications,” Advanced Engineering Materials 2 179 183 2000
- Livermore Software Technology Corporation (LSTC) “LS-DYNA Keyword User's Manual Version 971,” Livermore Software Technology Corporation (LSTC) 2007
- Hanssen A. G. Hopperstad O. S. Langseth M. Ilstad H. “Validation of constitutive models applicable to aluminium foams,” International Journal of Mechanical Sciences 44 359 406 2002
- Reyes A. Hopperstad O. S. Berstad T. Hanssen A. G. Langseth M. “Constitutive modeling of aluminium foam including fracture and statistical variation of density,” European Journal of Mechanics - A/Solids 22 815 835 2003
- Hanssen A. G. Reyes A. Hopperstad O. S. Langseth M. “Design and finite element simulations of aluminium foam-filled thin-walled tubes,” International Journal of Vehicle Design 37 126 155 2005
- Standard A. “Metallic materials-Tensile testing at ambient temperature,” AS 1391-2007 : Standards Australia 2007
- Tan P. J. Harrigan J. J. Reid S. R. “Inertia effects in uniaxial dynamic compression of a closed cell aluminium alloy foam,” Materials Science and Technology 18 480 488 2002
- Li Q. M. Magkiriadis I. Harrigan J. J. “Compressive Strain at the Onset of Densification of Cellular Solids,” Journal of Cellular Plastics 42 371 392 September 1 2006
- Styles M. Compston P. Kalyanasundaram S. “Finite element modelling of core thickness effects in aluminium foam/composite sandwich structures under flexural loading,” Composite Structures 86 227 232 2008
- Gibson L. Ashby M. Cellular solids: structure and properties Cambridge Univ Pr 1999
- Nielson K. B. Brännberg N. Nilson L. “Sheet metal forming simulation using explicit finite element methods,” Structural dynamics: proceedings of the Second European Conference on Structural Dynamics : EURODYN ‘93 Rotterdam, The Netherlands 1993 625 633
- Langseth M. Hopperstad O. S. Berstad T. “Crashworthiness of aluminium extrusions: validation of numerical simulation, effect of mass ratio and impact velocity,” International Journal of Impact Engineering 22 829 854 1999
- Reyes A. Hopperstad O. S. Hanssen A. G. Langseth M. “Modeling of material failure in foam-based components,” International Journal of Impact Engineering 30 805 834 2004
- Schweizerhof K. Kizio S. “On Adaptive Finite Element Analysis in Structural Dynamics of Shell-Like Structures - A Specific View on Practical Engineering Applications and Engineering Modelling,” 7th European LS-DYNA Conference 2009
- Maker B. Zhu X. “Input parameters for metal forming simulation using LS-DYNA,” Livermore Software Technology Corporation 2000
- Schweizerhof K. Münz T. Graf O. Walz M. Tsay C. Hallquist J. O. “On Applications of Adaptive Strategies for General Shell. Structures in Crashworthiness Analysis Using LS-DYNA,” Livermore Software Technology Corporation
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