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Using Shoulder Bolster and Knee Bolster to Achieve Protection Effect Comparable to Seatbelt and Airbag

机译:使用肩部撑腰和膝盖垫,以实现与安全带和安全气囊相媲美的保护效果

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摘要

Seatbelt and airbags provide effective occupant restraint, but are also potential to induce intrusive deformation and submarining injuries in motor vehicle crashes. To address these issues, this study puts forward a new restraint concept that applies restraint loads on shoulders and knees/femurs, i.e., the sturdiest regions of human body, via a combined use of shoulder bolster and knee bolster based on biomechanical computational analysis. The load characteristics of the two bolsters were optimized to obtain protection effectiveness superior to conventional use of seatbelt and airbag. Occupant kinematics and kinetics were taken into account, including the excursions of head, shoulders and knees, the accelerations of head and chest, and the compressions of thorax on several locations on the ribcage. The injury risk of rib fractures was monitored based on the strain levels of ribcage. Results show that applying adaptive restraint loads on the sturdy regions of human body using shoulder bolster and knee bolster can ensure reasonable kinematical motion and acceptable injury levels of occupant, and can also avoid intrusive deformations in thorax and abdomen as well as airbag hazards. The protection effect of shoulder bolster and knee bolster is comparable or superior to that of using seatbelt and airbag. To achieve a balance of comfort and safety in autonomous driving environment, the system will be activated only when collision is sensed unavoidable.
机译:安全带和安全气囊提供有效的乘员克制,但也是促进机动车崩溃中的侵入性变形和潜水损伤的潜力。为了解决这些问题,本研究提出了一种新的克制概念,通过基于生物力学计算分析的肩部撑腰和膝关节垫的组合使用肩部鞋垫和膝盖垫的肩部和膝盖/股骨,即人体的坚固区域。优化两个螺栓的负载特性,以获得优于常规使用安全带和安全气囊的保护效果。考虑了乘员运动学和动力学,包括头部,肩部和膝盖的偏移,头部和胸部的加速度,以及胸腔上的胸腔上的胸部的压缩。基于纹体水平监测肋骨骨折的伤害风险。结果表明,使用肩部撑腰和膝盖垫在人体的坚固区域上施加自适应约束载荷可以确保合理的运动和可接受的伤害水平,并且还可以避免胸部和腹部的侵入性变形以及安全气囊危险。肩部撑腰和膝盖垫的保护效果是可比的或优于使用安全带和安全气囊的相当的。为了在自动驾驶环境中实现舒适性和安全性的平衡,系统将仅在不可避免的碰撞时激活系统。

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