Crashworthiness test on hollow section structural (HSS) frame by metal fiber laminates with various geometrical shapes - Review
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[1] Yudong Fu,et al. Investigation of Mechanical Properties for Basalt Fiber/Epoxy Resin Composites Modified with La , 2021, Coatings.
[2] Zerong Ding,et al. A review on forming technologies of fibre metal laminates , 2021 .
[3] George S. Kamaris,et al. Aluminium alloys as structural material: A review of research , 2021, Engineering Structures.
[4] Yong-fang Qian,et al. Axial-Compression performance and finite element analysis of a Tubular Three-Dimensional-Woven Composite from a Meso-structural approach , 2020 .
[5] Haiyang Yang,et al. Energy absorption and failure pattern of hybrid composite tubes under quasi-static axial compression , 2020 .
[6] M. Bambach. Direct Comparison of the Structural Compression Characteristics of Natural and Synthetic Fiber-Epoxy Composites: Flax, Jute, Hemp, Glass and Carbon Fibers , 2020, Fibers.
[7] D. Karagiozova,et al. Deriving unidirectional lamina properties from testing on cylindrical laminated specimens , 2020 .
[8] A. P. Kumar,et al. Improving the energy-absorbing properties of hybrid aluminum-composite tubes using nanofillers for crashworthiness applications , 2020 .
[9] Qing Li,et al. Comparative study on metal/CFRP hybrid structures under static and dynamic loading , 2020 .
[10] Liming Zhu,et al. Axial Compression Experiments and Finite Element Analysis of Basalt Fiber/Epoxy Resin Three-Dimensional Tubular Woven Composites , 2020, Materials.
[11] X. Zhao,et al. Numerical Modeling and Performance Assessment of FRP-Strengthened Full-Scale Circular-Hollow-Section Steel Columns Subjected to Vehicle Collisions , 2020 .
[12] N. Gupta,et al. An experimental study on performance of jute‐polyester composite tubes under axial and transverse impact loading , 2020 .
[13] Chukwuemeke William Isaac. Crushing response of circular thin-walled tube with non-propagating crack subjected to dynamic oblique impact loading , 2020, International Journal of Protective Structures.
[14] N. Hynes,et al. Mechanical properties and applications of fibre metal laminates , 2019, ADVANCES IN BASIC SCIENCE (ICABS 2019).
[15] R. Eslami‐Farsani,et al. Interlaminar shear strength and tensile properties of environmentally-friendly fiber metal laminates reinforced by hybrid basalt and jute fibers , 2019, Polymer Testing.
[16] S. Sapuan,et al. Hybrid reinforced thermoset polymer composite in energy absorption tube application: A review , 2018, Defence Technology.
[17] J. Rouzegar,et al. Axial crushing of perforated metal and composite-metal tubes , 2018, Journal of the Brazilian Society of Mechanical Sciences and Engineering.
[18] Wei Sun,et al. Crashworthiness of different composite tubes by experiments and simulations , 2018, Composites Part B: Engineering.
[19] Libo Yan,et al. Can Plant-Based Natural Flax Replace Basalt and E-Glass for Fiber-Reinforced Polymer Tubular Energy Absorbers? A Comparative Study on Quasi-Static Axial Crushing , 2017, Front. Mater..
[20] J. Sukumaran,et al. A review on tribological properties of natural fiber based sustainable hybrid composite , 2017 .
[21] Rajesh Mishra,et al. A green material from rock: basalt fiber – a review , 2016 .
[22] Raghvendra Kumar Mishra,et al. Natural Fibre Reinforced Composite Laminates – A Review☆ , 2015 .