The Influence of a Booster Seat on the Motion of the Reclined Small Female Anthropomorphic Test Device in Low-Acceleration Far-Side Lateral Oblique Impacts.

IF 1.7 4区 医学 Q4 BIOPHYSICS Journal of Biomechanical Engineering-Transactions of the Asme Pub Date : 2024-03-01 DOI:10.1115/1.4064571
Valentina Graci, John Burns, Andrew Duong, Madeline Griffith, Thomas Seacrist
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Abstract

Belt-positioning booster (BPB) seats may prevent submarining in reclined child occupants in frontal impacts. BPB-seated child volunteers showed reduced lateral displacement in reclined seating in low-acceleration lateral-oblique impacts. As submarining was particularly evident in reclined small adult female occupants, we examined if a booster seat could provide similar effects on the kinematics of the small female occupant to the ones found on the reclined child volunteers in low-acceleration far-side lateral oblique impacts. The THOR-AV-5F was seated on a vehicle seat on a sled simulating a far-side lateral-oblique impact (80 deg from frontal, maximum acceleration ∼2 g, duration ∼170 ms). Lateral and forward head and trunk displacements, trunk rotation, knee-head distance, seatbelt loads, and head acceleration were recorded. Three seatback angles (25 deg, 45 deg, 60 deg) and two booster conditions were examined. Lateral peak head and trunk displacements decreased in more severe reclined seatback angles (25-36 mm decrease compared to nominal). Forward peak head, trunk displacements, and knee-head distance were greater with the seatback reclined and no BPB. Knee-head distance increased in the severe reclined angle also with the booster seat (>40 mm compared to nominal). Seat belt peak loads increased with increased recline angle with the booster, but not without the booster seat. Booster-like solutions may be beneficial for reclined small female adult occupants to reduce head and trunk displacements in far-side lateral-oblique impacts, and knee-head distance and motion variability in severe reclined seatback angles.

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在低加速度远侧斜撞击中,增高座椅对卧姿小型女性拟人试验装置运动的影响
安全带定位助力器(BPB)座椅可防止斜倚的儿童乘员在正面碰撞中发生潜行[1, 2]。在低加速度横向斜撞击中,有 BPB 座椅的儿童志愿者在倾斜座椅上的横向位移有所减少[1]。在低加速度横向斜撞击中,斜倚的成年女性乘员的潜行现象尤为明显[3],因此我们研究了增高座椅是否能在低加速度横向斜撞击中对女性乘员的运动学产生与斜倚儿童志愿者类似的影响。THOR-AV- 坐在模拟横向斜撞击(与正面成 80°,最大加速度 ~2 g,持续时间 ~170 ms)的雪橇上的汽车座椅上。记录了头部和躯干的侧向和前向位移、躯干旋转、膝-头距离、安全带负荷、头部加速度。测试了三种座椅靠背角度(25°、45°、60°)和两种助推器条件。头部和躯干的侧向峰值位移在座椅靠背倾斜角度较大时有所减少(与标称值相比减少了 25-36 毫米)。在座椅靠背后倾和无 BPB 的情况下,向前的头部峰值、躯干位移和膝头距离更大。使用增高座椅时,在严重倾斜角度下膝头距离也会增加(与标称值相比大于 40 毫米)。使用增高座椅时,安全带峰值负荷会随着倾斜角度的增加而增加,但不使用增高座椅时则不会。类似助推器的解决方案可能对倾斜的小型成年女性乘员有益,可减少横向斜撞击中的头部和躯干位移、膝-头距离以及严重倾斜座椅靠背角度下的运动变化。
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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.
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