Nixon et al., 2009 - Google Patents
Effective crushing simulation for composite structuresNixon et al., 2009
- Document ID
- 15137853908132834849
- Author
- Nixon S
- Barnes G
- Publication year
- Publication venue
- ICCM-17, Edinburgh, UK
External Links
Snippet
Effective crushing simulation for complex composite structures requires not only consideration of material crushing behaviour at the “crush front”, but also prediction of structural response, including other possible damage and failure mechanisms, away from …
- 239000002131 composite material 0 title abstract description 15
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Ciampaglia et al. | Impact response of an origami-shaped composite crash box: Experimental analysis and numerical optimization | |
Patel et al. | Crashworthiness analysis of polymer composites under axial and oblique impact loading | |
Liu et al. | In-plane crushing behavior and energy absorption of a novel graded honeycomb from hierarchical architecture | |
Chen et al. | Crashworthiness analysis of octagonal multi-cell tube with functionally graded thickness under multiple loading angles | |
Boria et al. | Experimental and numerical investigations of the impact behaviour of composite frontal crash structures | |
Liu et al. | Experimental investigation into dynamic axial impact responses of double hat shaped CFRP tubes | |
Peng et al. | Crashworthiness analysis and optimization of a cutting-style energy absorbing structure for subway vehicles | |
Zhang et al. | A lightweight rotationally arranged auxetic structure with excellent energy absorption performance | |
Luo et al. | Sandwich panel with in-plane honeycombs in different Poisson's ratio under low to medium impact loads | |
Lu et al. | Impact behavior of a cladding sandwich panel with aluminum foam-filled tubular cores | |
Kathiresan et al. | Performance analysis of fibre metal laminated thin conical frusta under axial compression | |
Jiang et al. | A numerical study on the energy-absorption of fibre metal laminate conical frusta under quasi-static compression loading | |
Xing et al. | Energy absorption and optimization of Bi-directional corrugated honeycomb aluminum | |
Yang et al. | Crashworthiness design of CFRP/AL hybrid circular tube under lateral crushing | |
Gomez et al. | Modelling of carbon/epoxy sandwich panels with agglomerated cork core subjected to impact loads | |
Liu et al. | Effect of elastic target on Taylor–Hopkinson impact of low-density foam material | |
Belingardi et al. | Energy absorbing sacrificial structures made of composite materials for vehicle crash design | |
Meng et al. | Impact resisting mechanism of tension–torsion coupling metamaterials | |
Chen et al. | On axial crushing behavior of double hat-shaped CFRP and GFRP structures | |
Xiang et al. | Novel interaction effects enhance specific energy absorption in foam-filled CFRP tapered tubes | |
Nixon et al. | Effective crushing simulation for composite structures | |
Wang et al. | Impact response of SCS sandwich panel with energy absorption connectors: Experimental and numerical studies | |
Basit et al. | Time-dependent crashworthiness of polyurethane foam | |
Zhang et al. | Dynamic collapse of metal self-similar hierarchical corrugated sandwich plates | |
Li et al. | Experimental and numerical analysis of low-velocity impact damage of CFRP laminates with negative Poisson ratio (NPR) rubber protective layer |