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Factors influencing the effectiveness of occupant retention under far-side impacts: A parametric study

机译:影响远端影响下乘员保留有效性的因素:参数研究

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The occupant retention and injuries under far-side impact are invariably dependent upon the effectiveness of the seatbelt restraint system, which is largely driven by parameters such as seatbelt pre-tensioner limiting load, D-ring position above and behind the shoulder, and friction coefficient between the torso and the seatbelt. The cumulative effect of systematic variation of these parameters on occupant kinematics under far-side is rarely studied in the literature. In this study, a systematic and detailed analysis was performed to understand the effect of these parameters on occupant retention. A rigid buck assembly with Global Human Body Model Consortium Human Body Model, validated with post mortem human surrogate experiments was used under two different impact scenarios-lateral and oblique. A simulation matrix of 16 cases was designed by varying the magnitude of the parameters for each impact scenario. Each case was graded as good, moderate, or poor retention based on the position of the shoulder seatbelt at the time of rebound. Head accelerations and excursions, chest compression, rib fractures, and neck moments of the HBM were analyzed to understand the effect of improved retention on occupant kinematics. Results showed that higher pre-tensioner limiting load, higher seatbelt friction, and backward position of D-ring improved retention in both lateral and oblique scenarios. Head acceleration, and excursions and chest compression decreased from poor retention cases to good retention cases for both impact scenarios. Rib fractures were higher in cases with poor retention as compared to those with good retention. The peak lateral neck moments changed marginally from poor to good retention; however, the rate of loading of the neck was significantly higher in good retention. Thus, the current study suggested that the backward D-ring position coupled with higher pretensioner limiting load and friction is likely to improve retention in far-side impacts and prevent injuries from the occupant slipping out of the restraint system. Better retention reduced occupant acceleration, excursion, chest compression and number of rib fractures, on the contrary it might instill higher injury vulnerability to neck and brain.
机译:远侧冲击下的乘员保留和损伤总是取决于安全带束缚系统的有效性,这主要由肩部前后载荷,D形圈位置等参数驱动,肩部和摩擦系数在躯干和安全带之间。这些参数对远侧乘员运动学进行系统变化的累积效应很少研究。在该研究中,进行了系统和详细的分析以了解这些参数对乘员保留的影响。具有全球人体模型联盟的人体模型的刚性降压组件,在两种不同的影响方案 - 横向和倾斜下使用了验证的人体模型人体模型。通过改变每个影响场景的参数的幅度来设计16例仿真矩阵。基于反弹时的肩部安全带的位置,每种情况都是良好的,中等或差的保留。分析了HBM的头部加速和偏移,胸部压缩,肋骨骨折和颈部时刻,了解改善保留对乘员运动学的影响。结果表明,较高的张紧器限制负荷,较高的安全带摩擦,以及D形圈的后退位置改善了横向和倾斜场景的保留。头部加速度,偏移和胸部压缩从差的保留情况下降到两个影响方案的良好保留案例。胸部骨折在保留不良的情况下较高,与饲料良好仍然存在良好。峰侧颈矩阵略微变化,从差到良好的保留;然而,颈部的载荷率良好均显着更高。因此,目前的研究表明,具有更高的预紧器限制负荷和摩擦的后向D形位置可能会改善远侧冲击的保留,并防止从约束系统中滑出的乘员造成损伤。更好的保留减少了乘员加速,偏移,胸部压缩和肋骨骨折的数量,相反,它可能会灌输颈部和大脑的伤害脆弱性。

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