【24h】

IMPACT TESTS OF CRASH ENERGY MANAGEMENT PASSENGER RAIL CARS: ANALYSIS AND STRUCTURAL MEASUREMENTS

机译:碰撞能源管理乘用车的冲击试验:分析和结构测量

获取原文
获取原文并翻译 | 示例

摘要

Two full-scale impact tests were conducted to measure the crashworthiness performance of Crash Energy Management (CEM) passenger rail cars. On December 3, 2003 a single car impacted a fixed barrier af approximately 35 mph and on February 26, 2004, two-coupled passenger cars impacted a fixed barrier at approximately 29 mph. Coach cars retrofitted with CEM end structures, which are designed to crush in a controlled manner were used in the test. These test vehicles were instrumented with accelerometers, string potentiometers, and strain gages to measure the gross motions of each car body in three dimensions, the deformation of specific structural components, and the force-crush characteristic of the CEM end structure. Collision dynamics models were developed to predict the gross motions of the test vehicle. Crush estimates as a function of test speed were used to guide test conditions. This paper describes the results of the CEM single-car and two-car tests and provides results of the structural test. The single-car test demonstrated that the CEM design successfully prevented intrusion into the occupied volume, under similar conditions as the conventional test. During both CEM tests, the leading passenger car crushed approximately three feet, preserving the occupant compartment. In the two-car test, energy dissipation was transferred to the coupled interface, with crush totaling two feet between the two CEM end structures. The pushback of the couplers kept the cars inline, limiting the vertical and lateral accelerations. In both the conventional tests there was intrusion into the occupant compartment. In the conventional two-car test sawtooth lateral buckling occurred at the coupled connection.
机译:进行了两次全面的冲击试验,以测量碰撞能量管理(CEM)客运轨道车的耐撞性能。在2003年12月3日,一辆单车以约35 mph的速度撞击固定障碍物;在2004年2月26日,两辆耦合的客车以约29 mph的速度撞击固定障碍物。在测试中使用了带有CEM端部结构的教练车,这些端部结构被设计为以受控方式压碎。这些测试车辆配备了加速计,弦线电位计和应变计,以测量每个车身在三个维度上的总运动,特定结构部件的变形以及CEM端部结构的受力特性。开发了碰撞动力学模型来预测测试车辆的总体运动。压碎估计值随测试速度的变化被用来指导测试条件。本文介绍了CEM单车和两车测试的结果,并提供了结构测试的结果。单车测试表明,在与常规测试类似的条件下,CEM设计成功防止了侵入所占用的空间。在两次CEM测试中,领先的乘用车都压碎了约三英尺,保留了乘员舱。在两车测试中,能量耗散被传递到耦合接口,两个CEM端部结构之间的压溃共计两英尺。耦合器的后推使汽车保持直列状态,从而限制了垂直和横向加速度。在两个常规测试中,都侵入了乘员舱。在常规的两车测试中,在耦合连接处出现了锯齿形的横向屈曲。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号