Energy absorption limit of plates in thin-walled structures under compression

2013 ◽  
Vol 57 ◽  
pp. 81-98 ◽  
Author(s):  
Xiong Zhang ◽  
Hui Zhang
2014 ◽  
Vol 1019 ◽  
pp. 96-102
Author(s):  
Ali Taherkhani ◽  
Ali Alavi Nia

In this study, the energy absorption capacity and crush strength of cylindrical thin-walled structures is investigated using nonlinear Finite Elements code LS-DYNA. For the thin-walled structure, Aluminum A6063 is used and its behaviour is modeled using power-law equation. In order to better investigate the performance of tubes, the simulation was also carried out on structures with other types of cross-sections such as triangle, square, rectangle, and hexagonal, and their results, namely, energy absorption, crush strength, peak load, and the displacement at the end of tubes was compared to each other. It was seen that the circular cross-section has the highest energy absorption capacity and crush strength, while they are the lowest for the triangular cross-section. It was concluded that increasing the number of sides increases the energy absorption capacity and the crush strength. On the other hand, by comparing the results between the square and rectangular cross-sections, it can be found out that eliminating the symmetry of the cross-section decreases the energy absorption capacity and the crush strength. The crush behaviour of the structure was also studied by changing the mass and the velocity of the striker, simultaneously while its total kinetic energy is kept constant. It was seen that the energy absorption of the structure is more sensitive to the striker velocity than its mass.


2017 ◽  
Vol 118 ◽  
pp. 214-228 ◽  
Author(s):  
Guangyong Sun ◽  
Tong Pang ◽  
Chenglong Xu ◽  
Gang Zheng ◽  
Jie Song

Author(s):  
Zhichao Li ◽  
Subhash Rakheja ◽  
Wen-Bin Shangguan

Thin-walled structures are widely used as energy absorbers in automotive vehicles due to their lightweight and high-energy absorption efficiency. In order to improve the energy absorption characteristics of thin-walled structures subjected to different loading angles, different types of novel multi-cell structures are proposed in this paper. The numerical method is used to study the crushing behaviors of the proposed multi-cell structures under different loading angles. It is found that the proposed multi-cell structures have considerably small initial peak force under axial load and avoid the appearance of global buckling deformation mode under oblique loads. Moreover, reasonably distributed wall thickness for each square tube in the thin-walled structure can enhance its energy absorption capacity under different loading angles.


2010 ◽  
Vol 34-35 ◽  
pp. 747-750
Author(s):  
Xiao Yu Zhang ◽  
Le Le Zhang ◽  
Bao Fu Zhang ◽  
Cong Ma

The deformation process and crashworthiness of the structures is the research object by the numerical method in the paper. Based on the efficient model for simulation and successful calculation, the impact response and energy absorption of four thin-walled structures has been analyzed and estimated by the simulation of impact process.


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