Sybilski Kamil, Małachowski Jerzy
Military University of Technology, Faculty of Mechanical Engineering, Warsaw, Poland.
Acta Bioeng Biomech. 2019;21(4):169-180.
Each year, many cars (in Poland approximately three hundred) are adopted for disabled driver, to enable them to drive the car independently. The purpose of the paper is to assess the key factors which significantly influence the disabled driver behavior during a frontal crash and have the biggest impact on the safety factors.
To achieve the purpose of the paper, the finite element method was used. The authors built the numerical model which includes operation of all safety systems operating in the real car (sensors, seat belts, airbag). Using this method, the authors simulated few different cases of the frontal crash of the car driven by a person with disabilities.
The obtained results were: displacements, velocities and accelerations of the head, pelvis and shoulders. Additional results were also loads in the neck. Based on the achieved results, several biomechanical parameters and criterions (HIC, Nij) were computed.
Therefore, during car adaptation for disabled drivers using a four-point seat belts system, this parameter can be optimized to reduce forces acting on the driver chest. Higher values of the force limit reduce Nij and increase HIC and contact forces between the dummy and seatbelts. Therefore, during designing of the pyrotechnic four-point seat belts system, the pretensioner characteristics should be analyzed taking all the driver's biomechanical parameters into account.
每年,许多汽车(在波兰约三百辆)被改装以供残疾驾驶员使用,使他们能够独立驾驶汽车。本文的目的是评估在正面碰撞期间对残疾驾驶员行为有重大影响且对安全因素影响最大的关键因素。
为实现本文目的,采用了有限元方法。作者建立了包含实际汽车中运行的所有安全系统(传感器、安全带、安全气囊)运行情况的数值模型。使用该方法,作者模拟了由残疾人驾驶的汽车正面碰撞的几种不同情况。
获得的结果包括头部、骨盆和肩部的位移、速度和加速度。颈部的载荷也是额外的结果。基于所取得的结果,计算了几个生物力学参数和标准(头部损伤标准、颈部损伤指标)。
因此,在使用四点式安全带系统为残疾驾驶员改装汽车时,可以优化该参数以减少作用在驾驶员胸部的力。力限制值越高,颈部损伤指标越低,头部损伤标准和假人与安全带之间的接触力越高。因此,在设计烟火式四点式安全带系统时,应考虑所有驾驶员的生物力学参数来分析预紧器特性。