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首页> 外文期刊>Mechanics of Advanced Materials and Structures >Experimental and crash-worthiness optimization of end-capped conical tubes under quasi-static and dynamic loading
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Experimental and crash-worthiness optimization of end-capped conical tubes under quasi-static and dynamic loading

机译:准静态和动态载荷下封端锥形管的实验和碰撞价值优化

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摘要

In the present study, the energy absorption capacity of thin-walled end-capped conical geometries is taken into consideration and the collapse of the absorbers under different loading types and strengths is investigated. First, the manual spinning method is utilized in order to manufacture the specimen. The manufacturing geometry quality of the parts is then evaluated. Next, quasi-static load-deflection tests are employed to investigate the collapse process as well as the calculation of energy absorption for conical tubes. Drop experiments are carried out using a free flight drop tower on the conical tubes to obtain the acceleration time-history of the hammer. The time history of hammer velocity change during its collision with the energy absorber, the mean collapse load of the absorber and absorbed energy are calculated. The explicit FE code Abaqus/explicit is employed and validated using dynamic experimental data. Finally, a multi-objective optimization method is used to find the tube geometry which has the maximum energy absorption and specific energy absorption. The results show that the impactor's velocity, as well as the geometrical characteristics of the end-capped conical tubes, have significant effects on the energy absorption and specific energy absorption capacity.
机译:在本研究中,考虑了薄壁端盖锥形几何形状的能量吸收能力,并研究了在不同负载类型和强度下吸收剂的塌陷。首先,使用手动纺丝方法以制造样品。然后评估部件的制造几何质量。接下来,采用准静态载荷偏转试验来研究崩溃过程以及锥形管的能量吸收的计算。下降实验在锥形管上使用自由飞行落塔进行,以获得锤子的加速时间历史。计算锤速度变化在其与能量吸收器的碰撞期间的时间历史,计算吸收器和吸收能量的平均塌陷载荷。使用动态实验数据采用和验证显式Fe代码ABAQUS / Explate。最后,使用多目标优化方法来找到具有最大能量吸收和特定能量吸收的管几何形状。结果表明,冲击器的速度以及端盖锥形管的几何特征,对能量吸收和特定能量吸收能力具有显着影响。

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