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Wheelchair occupant kinematics during a rail carriage crash

机译:铁路车厢坠毁期间的轮椅乘员运动学

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Over recent years, a number of legislative tools and codes of practice have been put in place to provide wheelchair users with greater access and freedom of using trains. However, much more is still needed to be done to improve the safety of wheelchair occupants (WOs) while on board. In the United Kingdom, under the Disability Discrimination Act, only approved dimensions are the minimum requirements for use of a wheelchair in a rail carriage. This paper seeks to provide an analysis of the experimental kinematics of a WO under frontal impact tests carried out using a 57 kg dummy subjected to a sudden stop generating a pulse of about 15 g, which is less than the ECE Ml vehicle category. However, this is more severe than the 5 g pulse that covers both the European Commission's TSI and prEN 15227 with regards to train crashes. Results of frontal impacts are presented where the resulting kinematic characteristics are used to assess the potential injury severity of the occupant. A loaded sled with a combined mass of about 200 kg was accelerated horizontally to 3.3 m/s and suddenly stopped using a rigid barrier to simulate the worst loading condition. Eight restraint scenarios are covered. These form the basis for making recommendations considering the safety of a WO during a crash of a rail carriage. The baseline scenario constitutes not securing the wheelchair and not restraining the occupant. This also represents the worst case for injury potential. The ideal scenario involves securing the wheelchair and restraining the occupant using a three-point occupant restraint system. The paper concludes by providing recommendations for seating configurations to improve the survivability of a WO during a crash in a railway vehicle.
机译:近年来,已经制定了许多立法工具和操作规范,以为轮椅使用者提供更大的出入通道和使用火车的自由。但是,仍然需要做更多的工作来提高轮椅上乘员的安全性。在英国,根据《残疾人歧视法》,只有批准的尺寸是在铁路车厢内使用轮椅的最低要求。本文力图提供对WO进行的正面运动测试的运动学分析,该运动使用57 kg假人进行突然停止,产生约15 g的脉冲,该脉冲小于ECE M1车辆类别。但是,这比5 g脉冲更严重,脉冲涵盖了欧盟委员会的TSI和prEN 15227的火车撞车事故。给出了正面碰撞的结果,其中使用了所得的运动学特征来评估乘员的潜在伤害严重程度。将总质量约为200 kg的已装载雪橇水平加速至3.3 m / s,并使用刚性护栏突然停止以模拟最恶劣的装载条件。涵盖了八个约束场景。这些构成了提出建议的基础,该建议在轨道车厢发生碰撞时考虑WO的安全性。基线情况包括不固定轮椅和不约束乘员。这也代表了最可能造成伤害的情况。理想的方案包括固定轮椅并使用三点乘员约束系统来约束乘员。本文最后提出了座椅配置的建议,以提高铁路车辆在撞车过程中WO的生存能力。

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