印尼高速列车安全防护技术碰撞箱设计的计算机仿真研究

Dzikri Amali Musyaffa, Moch. Agus Choiron, Y. Irawan, Nafisah Arina Hidayati, Taryono Taryono, S. Gorbatyuk
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引用次数: 1

摘要

铁道车辆的耐撞性是提供能量吸收能力和能量吸收效率的重要指标。本研究提出了一种计算机模拟方法来确定新增加的吸能结构碰撞箱设计在印尼高速列车碰撞场景下的应用。采用基于有限元法的软件对碰撞箱进行了耐撞性分析。碰撞箱被建模为一个薄壁结构,位于耦合器外壳,在引水齿轮和车架之间。该测试模型按照2019年SNI 8826标准进行,采用正面碰撞试验,碰撞器质量为38.807 kg,速度为10 m/s。通过计算模拟得到的力反力与位移关系图形曲线下的面积,得到了变形和能量吸收的规律。列车的减速度由冲击器上的加速度随时间的变化曲线得到。仿真结果表明,在轨道车辆安全防护技术上增加碰撞箱设计作为能量吸收模块,可以降低碰撞的严重程度,提高乘客的安全性。初始碰撞箱模型的应用也表明,在SNI 8826测试标准中,列车减速是不可接受的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
COMPUTER SIMULATION INVESTIGATION OF CRASH BOX DESIGN AS SAFETY-PROTECTION TECHNOLOGY FOR INDONESIA HIGH SPEED TRAIN
The crashworthiness of a railway vehicle has been developed to provide energy absorption capacity and efficiency of energy absorption. This study presents a computer simulation to determine the energy-absorbing structure of the new addition of a crash box design on the Indonesian high-speed train in a collision scenario. The crashworthiness analysis in the crash box is done with software based on finite element methods. The crash box is modeled as a thin-walled structure located in coupler housing, between the draft gear and the car frame. The test model was carried out according to the 2019 SNI 8826 standard using a frontal impact test with an impactor mass of 38.807 kg and a speed of 10 m/s. The pattern of deformation and energy absorption is obtained by calculating the area under the graphical curve of the relationship between the force reaction and the displacement obtained from the simulation. The deceleration of the train is obtained from the graph of acceleration against time on the impactor. The simulation results show that the addition of a crash box design as an energy absorption module on a safety protection technology for railway vehicles can reduce the severity of the impact and improve passenger safety. The application of the initial crash box model also shows an unacceptable train deceleration in the SNI 8826 test standard.
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