首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Simulation of motorcycle crashes with w-beam guardrail: injury patterns and analysis
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Simulation of motorcycle crashes with w-beam guardrail: injury patterns and analysis

机译:带有横梁护栏的摩托车碰撞仿真:伤害模式和分析

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摘要

This study uses computer simulations to study the impact of a motorcycle with the conventional w-beam guardrail. A three-dimensional computer simulation of a scaled hybrid III 50th-percentile male dummy mounted on a motorcycle and colliding with a w-beam guardrail is carried out. A multi-body model of the motorcycle and finite element model of the guardrail are developed using commercially available software. The simulation model is validated with a physical crash test conducted with same initial impact configurations. Impacts at speeds of 32, 48, and 60 km/h at an impact angle at 45° are considered. The predicted forces and accelerations are compared with the biomechanical limits for each body part and the risk of injury to the rider are evaluated. Speed was found to have a significant influence on the level of injury to the head, neck, chest, and femur. A significant reduction of the severity of injuries was found when the impact speed was reduced from 60 to 32 km/h. The accelerations experienced by the head and chest are found to be higher than safe levels for impact speeds of 48 and 60 km/h. The biomechanical limit for the right femur is exceeded at all three considered impact speeds. Neck injuries are also a concern, with the predicted tension values and neck bending extent being higher than the biomechanical limit for the 60 km/h impact speed. In light of these results, it is suggested that the design of guardrails should be reviewed with a focus on the safety of motorcyclists.
机译:这项研究使用计算机模拟来研究具有传统W型横梁护栏的摩托车的影响。对安装在摩托车上并与W型钢护栏相撞的比例混合III型百分之五十的男性假人进行了三维计算机模拟。使用市售软件开发了摩托车的多体模型和护栏的有限元模型。仿真模型通过以相同初始冲击配置进行的物理碰撞测试进行了验证。考虑以45°的冲击角以32、48和60 km / h的速度冲击。将预测的力和加速度与每个身体部位的生物力学极限进行比较,并对骑手受伤的风险进行评估。发现速度对头部,颈部,胸部和股骨的损伤程度有重大影响。当冲击速度从60 km / h降低到32 km / h时,可以显着降低伤害的严重程度。对于48和60 km / h的撞击速度,发现头部和胸部经历的加速度高于安全水平。在所有三个考虑的撞击速度下,都超过了右股骨的生物力学极限。颈部受伤也是一个问题,预测的张力值和颈部弯曲程度高于60 km / h撞击速度的生物力学极限。根据这些结果,建议应审查护栏的设计,重点放在摩托车手的安全上。

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