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Original Articles

Crashworthiness efficiency optimisation for two-directional functionally graded foam-filled tubes under axial crushing impacts

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Pages 307-321 | Received 23 Jul 2016, Accepted 07 Nov 2016, Published online: 29 Nov 2016

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Jesper Christensen, Alexis Wilson, Christophe Bastien & Kambiz Kayvantash. (2023) Efficient crash structure design for road traffic accidents of tomorrow. International Journal of Crashworthiness 28:5, pages 629-648.
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Babafemi Malomo, Oluwaseun Ajayi, Oladapo Ogunbodede, Omotunde Olabinjo, Odunayo Fadodun, Bamiji Z. Adewole, Ismail Nasirudeen & David Obembe. (2022) Energy Absorption Characteristics and Elastoplastic Damage Response of Hybrid Epoxy/Coir Fibre-Reinforced Aluminum 6063 Tubes in Axial Deformation. Materials Science Forum 1065, pages 79-87.
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Amirreza Tarafdar, Omid Razmkhah, Hamed Ahmadi, Gholamhossein Liaghat, Sahand Chitsaz Charandabi & Moslem Rezaei Faraz. (2022) Effect of layering layout on the energy absorbance of bamboo-inspired tubular composites. Journal of Reinforced Plastics and Composites, pages 073168442110638.
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Amir Najibi, Payman Ghazifard & Parisa Alizadeh. (2020) Numerical crashworthiness analysis of a novel functionally graded foam-filled tube. Journal of Sandwich Structures & Materials 23:5, pages 1635-1661.
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Chukwuemeke William Isaac & Chidozie Ezekwem. (2021) A review of the crashworthiness performance of energy absorbing composite structure within the context of materials, manufacturing and maintenance for sustainability. Composite Structures 257, pages 113081.
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Haitao Luo, Yuxin Li, Guangming Liu, Changshuai Yu & Shipeng Chen. (2019) Buffering Performance of High-Speed Impact Space Penetrator with Foam-Filled Thin-Walled Structure. Shock and Vibration 2019, pages 1-15.
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S. Nikbakht, S. Kamarian & M. Shakeri. (2019) A review on optimization of composite structures Part II: Functionally graded materials. Composite Structures 214, pages 83-102.
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Feng Xiong, Dengfeng Wang, Zhengdong Ma, Tiantong Lv & Longbo Ji. (2018) Lightweight optimization of the front end structure of an automobile body using entropy-based grey relational analysis. Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering 233:4, pages 917-934.
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