The Influence of Occupant Characteristics, Seat Positioning, and Pre-Crash Maneuvers on Front Passenger Safety Performance.

IF 1.7 4区 医学 Q4 BIOPHYSICS Journal of Biomechanical Engineering-Transactions of the Asme Pub Date : 2025-03-01 DOI:10.1115/1.4067331
Akshay Dahiya, Costin Untaroiu
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Abstract

Crash avoidance vehicle maneuvers are known to influence occupant posture and kinematics which consequently may influence injury risks in the event of a crash. In this work, a generic buck vehicle finite element (FE) model was developed which included the vehicle interior and the front passenger airbag (PAB). Seat position and occupant characteristics including anthropometry, sex, and age were varied in a design of experiments. Two pre-crash maneuvers representing (1) a generic 1 g braking and (2) turning-and-braking scenarios were simulated. Rigid-body human models with active joints (GHBMCsi-pre models) obtained by morphing a 50th male model to selected anthropometries were used in pre-crash simulations. The kinematics data of belted GHBMCsi-pre models at the end of the pre-crash phase were transferred using a developed switch algorithm to the corresponding morphed Global Human Body Model Consortium (GHBMC) occupant simplified (OS) models to predict occupant injury risks. Finally, an FMVSS-208 pulse was applied to simulate the in-crash phase. During both pre-crash maneuvers, the occupant's head and thorax moved forward toward the dashboard. Therefore, the head and thorax contacted the PAB earlier, leading to lower head accelerations when the pre-crash phase was considered. Overall, it was concluded that pre-crash braking decreased the severity of injury sustained by the passenger. Seat track position and seat recline angle showed the highest influence on the head injury criterion (HIC). The brain injury criterion (BrIC) and neck injury criterion (Nij) were most sensitive to pre-crash maneuver type, seat recline angle, and occupant size.

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乘员特征、座椅定位和碰撞前机动对前排乘客安全性能的影响。
众所周知,防撞车辆机动会影响乘员的姿势和运动学,从而可能影响碰撞事件中受伤的风险。建立了包括汽车内部和前排乘客安全气囊在内的通用buck型汽车有限元模型。在实验设计中,座椅位置和乘员特征(包括人体测量、性别和年龄)发生了变化。模拟了两种碰撞前机动,分别代表1)一般1g制动和2)转向和制动场景。通过将第50个男性模型变形为选定的人体测量值,获得具有活动关节的刚体人体模型(GHBMCsi-pre - models),用于碰撞前模拟。采用开发的切换算法,将安全带GHBMC预模型在碰撞前阶段的运动学数据转换到相应的变形GHBMC乘员简化(OS)模型中,以预测乘员伤害风险。在两次碰撞前的动作中,乘员的头部和胸部都向仪表板方向移动。因此,在考虑碰撞前阶段时,头部和胸部接触PAB的时间较早,导致头部加速度较低。总的来说,结论是碰撞前制动降低了乘客受伤的严重程度。座椅轨道位置和座椅倾斜角度对头部损伤标准的影响最大。脑损伤标准(BrIC)和颈部损伤标准(Nij)对碰撞前机动类型、座椅倾斜角度和乘员体型最敏感。
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来源期刊
CiteScore
3.40
自引率
5.90%
发文量
169
审稿时长
4-8 weeks
期刊介绍: Artificial Organs and Prostheses; Bioinstrumentation and Measurements; Bioheat Transfer; Biomaterials; Biomechanics; Bioprocess Engineering; Cellular Mechanics; Design and Control of Biological Systems; Physiological Systems.
期刊最新文献
Biomechanical Analysis for Enhanced Expulsion-Proof Intervertebral Fusion Device. Multiscale Finite Element Modeling of Human Ear for Acoustic Wave Transmission Into Cochlea and Hair Cells Fatigue Failure. Toward a Consistent Framework for Describing the Free Vibration Modes of the Brain. Quantification of Internal Disc Strain Under Dynamic Loading Via High-Frequency Ultrasound. The Influence of Occupant Characteristics, Seat Positioning, and Pre-Crash Maneuvers on Front Passenger Safety Performance.
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