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USE OF ALTERNATIVE CRASH PULSES FOR INTERIOR FIXTURE DESIGN WITHIN CEM-EQUIPPED PASSENGER RAIL CARS

机译:在配备CEM的客运车辆中使用替代性碰撞脉冲进行内部固定设计

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Over the past several years, Carbuilders have been developing car designs that utilize Crash Energy Management (CEM) as an alternative means to demonstrate compliance with carbody structural strength requirements. With the onset of CEM designs, the CFR has been amended to include requirements for alternative compliance to carbody structure requirements (see Docket No. FRA-2013-0060, Notice No. 3, [the Final Rule]) [14]. CEM designs often utilize crush zones with the overall goal of protecting occupant volume. These designs also change the structural behavior of the car during an accident, resulting in different acceleration responses than conventional car designs. This paper seeks to compare and contrast the interior fitting strength requirements between conventional car designs and a generic CEM design. The methodology utilizes simple mathematical simulations, modeling a conventional car design and a CEM design, with outputs of the simulation consisting of car response and behavior. Results indicate that alternative compliance requirements for all tiers of CEM-designed passenger equipment should be considered for interior fixtures.
机译:在过去的几年中,汽车制造商一直在开发利用碰撞能量管理(CEM)作为证明符合车身结构强度要求的替代方法的汽车设计。随着CEM设计的开始,对CFR进行了修订,以包括对车身结构要求的替代合规性要求(请参见文件号FRA-2013-0060,公告号3,[最终规则])[14]。 CEM设计通常利用挤压区,其总体目标是保护乘员量。这些设计还改变了事故期间汽车的结构性能,从而导致与传统汽车设计不同的加速度响应。本文试图比较和对比常规汽车设计和通用CEM设计之间的内部装配强度要求。该方法利用简单的数学模拟,对常规汽车设计和CEM设计进行建模,模拟输出包括汽车响应和行为。结果表明,内部固定装置应考虑CEM设计的客运设备所有层级的替代合规性要求。

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