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FINITE ELEMENT ANALYSIS AND FULL-SCALE TESTING OF LOCOMOTIVE CRASHWORTHY COMPONENTS

机译:机车Crashworthy组件有限元分析及全规模测试

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The Office of Research and Development of the Federal Railroad Administration (FRA) and the Volpe Center are continuing to evaluate new technologies for increasing the safety of passengers and operators in rail equipment. In recognition of the importance of override prevention in train-to-train collisions in which one of the vehicles is a locomotive, and in light of the success of crash energy management technologies in cab car-led passenger trains, the Volpe Center seeks to evaluate the effectiveness of components that could be integrated into the end structure of a locomotive that are specifically designed to mitigate the effects of a collision and, in particular, to prevent override of one of the lead vehicles onto the other. A research program has been conducted to develop, fabricate and test two crashworthy components for the forward end of a locomotive: (1) a deformable anti-climber, and (2) a push-back coupler. Detailed designs for these components were developed, and the performance of each design was evaluated through large deformation dynamic finite element analysis (FEA). Designs for two test articles that could be used to verify the performance of the component designs in full-scale tests were also developed. The two test articles were fabricated and dynamically tested by means of rail car impact in order to verify certain performance characteristics of the two components relative to specific requirements. The tests were successful in demonstrating the effectiveness of the two design concepts. Test results were consistent with finite element model predictions in terms of energy absorption capability, force-displacement behavior and modes of deformation.
机译:联邦铁路管理局(FRA)和Volpe中心的研发办公室正在继续评估新技术,以提高乘客和运营商在铁路设备中的安全性。为了认识到在火车到火车碰撞中预防预防的重要性,其中一辆车是机车的,而鉴于驾驶室汽车LED旅客列车的崩溃能源管理技术的成功,VOLPE中心寻求评估可以集成到机车的端部结构中的部件的有效性,该机车的结束结构用于减轻碰撞的效果,尤其防止将其中一个铅载体上的一个覆盖到另一个。已经进行了研究计划,以开发,制造和测试用于机车前端的两个Crashworkworthy部件:(1)可变形的抗登山者,和(2)推拉耦合器。开发了这些组件的详细设计,通过大变形动态有限元分析(FEA)来评估各设计的性能。还开发了两个测试文章的设计,可用于验证满量程测试中的组件设计的性能。通过轨道汽车的影响制造和动态地测试两种测试制品,以验证两个组件相对于特定要求的某些性能特征。测试成功地展示了两个设计概念的有效性。测试结果与能量吸收能力,力 - 位移行为和变形模式方面的有限元模型预测一致。

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