Rogala Michal, Gajewski Jakub, Ferdynus Miroslaw
Department of Machine Design and Mechatronics, Faculty of Mechanical Engineering, Lublin University of Technology, 20-618 Lublin, Poland.
Materials (Basel). 2020 Oct 29;13(21):4857. doi: 10.3390/ma13214857.
Crashworthiness of conical shells is known to depend on various factors. This study sets out to determine the extent to which the cross-sectional diameter contributes to their energy-absorbing properties. The object of the study was thin-walled aluminium tubes varying in upper diameter and wall thickness. The components were subjected to dynamic axial crushing kinetic energy equal to 1700 J. The numerical analysis was performed using Abaqus 6.14 software. The specific aim of the study was to determine the extent to which variable wall thickness affects the energy absorption capacity of the components under study. From the simulations, we have managed to establish a relationship between total energy absorption capacity and wall thickness. The results from the conducted analyses and the purpose-specific neural networks could provide the base for the future methodology for forecasting and optimisation of energy-absorbing systems.
众所周知,锥形壳的抗撞性取决于多种因素。本研究旨在确定横截面直径对其能量吸收特性的影响程度。研究对象是上直径和壁厚不同的薄壁铝管。这些部件承受了等于1700 J的动态轴向挤压动能。使用Abaqus 6.14软件进行了数值分析。该研究的具体目的是确定可变壁厚对所研究部件能量吸收能力的影响程度。通过模拟,我们成功建立了总能量吸收能力与壁厚之间的关系。所进行的分析结果和特定目的的神经网络可为未来能量吸收系统的预测和优化方法提供基础。