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LONG-HAUL WHOLE-BODY VIBRATION ASSESSMENT OF LOCOMOTIVE CABS

机译:机车长途车身振动评估

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Locomotives produce vibrations and mechanical shocks from irregularities in the track, structural dynamics, the engines, the trucks, and train slack movement (Mansfield, 2005). The different directions of the irregularities give rise to car-body vibrations in multiple axes including the following:1.longitudinal, or along the length of the train (x) 2.lateral, or the side-to-side direction of the train (y) 3.vertical (z) The structural dynamics of rail vehicles give rise to several resonances in the 0.5 - 20Hz frequency range (Andersson, et al., 2005). Resonances are frequencies in the locomotive that cause larger amplitude oscillations. At these frequencies, even small-amplitude input vibration can produce large output oscillations. Further exacerbating the vibration environment, coupling of the axes of movement occurs: Motions in one direction contribute to motion in a different direction. The magnitude of vertical vibration in rail vehicles is reportedly well below many other types of vehicles (Dupuis & Zerlett, 1986; Griffin, 1990; Johanning, 1998). However, a lack of data from long-haul freight operations prevents an adequate characterization of the vibration environment of locomotive cabs.The authors describe results from 2 long-haul whole-body vibration (WBV) studies collected on a 2009 GE ES44C4 locomotive and a 2008 EMD SD70ACe. These WBV studies sponsored by the Federal Railroad Administration (FRA) examined WBV and shock in locomotives over 123 hours and 2274 track miles. The researchers recorded vibration data using 2 triaxial accelerometers on the engineers' seat: a seat pad accelerometer placed on the seat cushion and a frame accelerometer attached to the seat frame at the base. The research team collected and analyzed vibrations in accordance with ISO 2631-1 and ISO 2631-5. ISO 2631-1 defines methods for the measurement of periodic, random and transient WBV. The focus of ISO 2631 -5 is to evaluate the exposure of a seated person to multiple mechanical shocks from seat pad measurements.Exposure to excessive vibration is associated with an increased occupational risk of fatigue-related musculoskeletal injury and disruption of the vestibular system. While this is not an established causal relationship, it is possible that vibration approaching the ISO 2631-1 health caution guidance zones may lead to an increased occupational risk.The results from these rides show that the frequency-weighted ISO 2631 metrics are below the established health guidance caution zones of the WBV ISO 2631 standards. The goals of these studies are to:1.collect data in accordance with international standards so results can be compared with similar findings in the literature for shorter duration rides as well as vibration studies in other transportation modes,2.to characterize vibration and shock in a representative sample of locomotive operations to be able to generalize the results across the industry, and 3.collect benchmark data for future locomotive cab ride-quality standards.
机译:机车会因轨道不规则,结构动力学,发动机,卡车和火车松弛运动而产生振动和机械冲击(Mansfield,2005年)。不规则的不同方向会引起车身在多个轴上的振动,这些振动包括:1.纵向或沿列车长度(x)的方向2.横向或列车的左右方向( y)3.vertical(z)轨道车辆的结构动力学会在0.5-20Hz频率范围内引起几次共振(Andersson等,2005)。共振是机车中引起更大振幅振动的频率。在这些频率下,即使是小幅度的输入振动也会产生大的输出振荡。进一步加剧了振动环境,运动轴发生了耦合:某个方向的运动会导致另一方向的运动。据报道,轨道车辆的垂直振动幅度远低于许多其他类型的车辆(Dupuis&Zerlett,1986; Griffin,1990; Johanning,1998)。但是,由于缺乏长途货运操作的数据,因此无法对机车驾驶室的振动环境进行充分的表征。作者描述了在2009年GE ES44C4机车上进行的2次长途全身振动(WBV)研究和一项研究得出的结果。 2008 EMD SD70ACe。由联邦铁路管理局(FRA)赞助的这些WBV研究检查了123小时和2274英里的机车中的WBV和机车冲击。研究人员使用工程师座椅上的2个三轴加速度计记录了振动数据:位于座垫上的座垫加速度计和安装在底座座架上的车架加速度计。研究小组根据ISO 2631-1和ISO 2631-5收集并分析了振动。 ISO 2631-1定义了用于测量周期性,随机和瞬态WBV的方法。 ISO 2631 -5的重点是评估就座者在坐垫测量中遭受的多种机械冲击的暴露。过度振动会增加与疲劳相关的肌肉骨骼损伤和前庭系统破坏的职业风险。虽然这不是既定的因果关系,但接近ISO 2631-1健康警告指导区域的振动可能会导致职业风险增加。这些游乐项目的结果表明,频率加权的ISO 2631指标低于既定的WBV ISO 2631标准的健康指导警告区域。这些研究的目的是:1。按照国际标准收集数据,以便将结果与文献中的类似发现进行比较,以进行更短的行驶时间以及其他运输方式下的振动研究; 2。机车运行的代表性样本,以便能够概括整个行业的结果,并且3.收集基准数据,以制定未来的机车驾驶室驾驶质量标准。

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