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对6岁儿童人体模型的运动学和动力学进行分析,以确定在自然坐姿下的潜滑情况。

Analysis of 6YO pediatric human body model kinematics and kinetics to determine submarining across naturalistic seating postures.

作者信息

Slusher Gianna, Sarfare Shreyas, Falciani Clayton, Belwadi Aditya, Maheshwari Jalaj

机构信息

Cooper Union for the Advancement of Science and Art, New York.

Center for Injury Research and Prevention, Children's Hospital of Philadelphia, Pennsylvania.

出版信息

Traffic Inj Prev. 2022;23(sup1):S111-S116. doi: 10.1080/15389588.2022.2092848. Epub 2022 Jul 21.

Abstract

OBJECTIVES

The aim of this study was to analyze the kinematics and kinetics of a naturalistically seated 6-year-old (6YO) pediatric human body model and evaluate the metrics described by earlier studies for pediatric ATDs to indicate whether different postures and booster seats were more associated with submarining than others in a frontal impact.

METHODS

The PIPER 6YO pediatric human body model was restrained on a lowback (LBB) and a highback (HBB) booster child restraint seat (CRS) in four naturalistic seating postures: leaning-forward, leaning-inboard, leaning-outboard, and a pre-submarining posture, and a baseline reference seating position as per the FMVSS No. 213 protocol. A 2012 mid-size sedan finite element (FE) model was used as the vehicle environment. A standard 3-point lap-shoulder belt system was modeled to restrain the child and the CRS in the left-rear vehicle seat. Additionally, a No-CRS condition was modeled in a reference posture and pre-submarining posture in which the occupant's legs bent over the edge of the rear seat. 12 conditions were simulated in LS-DYNA R10.1.0, and kinematics and kinetics were compared to metrics as per prior literature: 1) maximum femur displacement and pelvis rotation, 2) maximum knee-head excursion and maximum change in torso angle, 3) lap belt trajectory relative to pelvis's coordinate frame.

RESULTS

The pre-submarining posture on the HBB depicted submarining in all metrics except for the lap belt trajectory. Only the pre-submarining posture in No-CRS depicted submarining through analysis of all metrics. For this pre-submarining No-CRS condition, the mid-abdominal compression was approximately 5 times greater than the average of the mid abdominal compression depths of all other cases and maximum abdominal pressure was at least 22.9 kPa higher than the rest of the conditions.

CONCLUSIONS

The results of this study suggest that metrics used to assess submarining for 6YO pediatric occupants in frontal impacts may need to be updated so that they are more accurate for both simulated and physical studies. In addition, the results of this study could be used to design booster seats that discourage postures that could lead to an increased likelihood of submarining-like characteristics in a frontal crash impact.

摘要

目的

本研究旨在分析自然坐姿的6岁小儿人体模型的运动学和动力学,并评估早期针对儿童人体模型提出的指标,以确定在正面碰撞中,不同姿势和增高座椅是否比其他姿势和座椅更易导致下潜。

方法

将派珀6岁小儿人体模型以四种自然坐姿固定在低靠背(LBB)和高靠背(HBB)增高儿童约束座椅(CRS)上:前倾、向内倾、向外倾和下潜前姿势,以及按照联邦机动车安全标准(FMVSS)第213号协议的基准参考坐姿。使用2012款中型轿车有限元(FE)模型作为车辆环境。模拟了标准三点式腰肩安全带系统,以将儿童和约束座椅固定在车辆左后座椅上。此外,还模拟了无约束座椅(No-CRS)状态下的参考姿势和下潜前姿势,即乘员双腿搭在后座边缘。在LS-DYNA R10.1.0中模拟了12种工况,并将运动学和动力学与先前文献中的指标进行比较:1)股骨最大位移和骨盆旋转;2)膝盖-头部最大偏移和躯干角度最大变化;3)安全带轨迹相对于骨盆坐标系。

结果

除安全带轨迹外,HBB上的下潜前姿势在所有指标上均表现出下潜。通过对所有指标的分析,只有无约束座椅(No-CRS)状态下的下潜前姿势表现出下潜。对于这种无约束座椅(No-CRS)下潜状态,中腹部压缩约为所有其他工况中腹部压缩深度平均值的5倍,最大腹压比其他工况至少高22.9kPa。

结论

本研究结果表明,用于评估6岁儿童乘员在正面碰撞中下潜的指标可能需要更新,以便在模拟和物理研究中更加准确。此外,本研究结果可用于设计增高座椅,以避免可能导致正面碰撞时类似下潜特征可能性增加的姿势。

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