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Rail vehicle crashworthiness based on collision energy management: an overview

机译:基于碰撞能量管理的轨道车辆崩溃:概述

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This paper summarizes the research on passive safety of rail vehicles from the perspective of Crash Energy Management (CEM) in recent decades, which covers the analysis of main crashworthiness standards, as well as the latest research progress in theoretical methods, numerical simulation, and experimental technology of rail vehicles crashworthiness. According to the research status of each subject, some weak links and potential research suggestions are pointed out, such as the requirements of CEM in standards, the influence mechanism of the coupler under different collision speeds, structural compatibility and standardization of anti-climbers, the establishment of vehicle structure crashworthiness design method in design-simulation-test closed-loop system, etc. In the future, under the support of mature CEM theory, more detailed and reliable numerical simulation models, more comprehensive vehicle crash test data, and higher computer computing efficiency, the passive safety of rail vehicles will be guaranteed to the maximum extent.
机译:本文总结了近几十年来从碰撞能源管理(CEM)的角度来看轨道车辆被动安全性研究,涵盖了主要崩溃标准的分析,以及理论方法,数值模拟和实验的最新研究进展铁路车辆技术克雷什。根据每个主题的研究状况,指出了一些薄弱的联系和潜在的研究建议,例如CEM在标准中的要求,耦合器在不同碰撞速度下的影响机制,抗登山者的结构相容性和标准化。在设计仿真 - 测试闭环系统等中建立车辆结构耐火性设计方法等,在成熟CEM理论的支持下,更详细可靠的数值模拟模型,更全面的车辆碰撞测试数据,更高的计算机计算效率,轨道车辆的被动安全将保证最大程度。

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