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分析在模拟正面小偏置碰撞中,处于自然坐姿的儿童乘客的运动响应:带自动紧急制动和不带自动紧急制动。

Analysis of Kinematic Response of Pediatric Occupants Seated in Naturalistic Positions in Simulated Frontal Small Offset Impacts: With and Without Automatic Emergency Braking.

机构信息

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

School of Computing and Informatics, Drexel University, Philadelphia, PA, USA.

出版信息

Stapp Car Crash J. 2020 Nov;64:31-59. doi: 10.4271/2020-22-0002.

Abstract

Naturalistic driving studies have shown that pediatric occupants do not assume ideal seating positions in real-world scenarios. Current vehicle assessment programs and child restraint system (CRS) sled tests, such as FMVSS No. 213, do not account for a wide range of seating postures that are typically observed during real-world trips. Therefore, this study aims to analyze the kinematic and kinetic response of a pediatric human body model in various naturalistic seating positions in booster seats when subjected to a frontal offset impact in a full-vehicle environment, with and without the application of pre-crash automatic emergency braking (AEB). A 6YO (seated on a lowback and highback booster) and a 10YO (seated in no-CRS and on a lowback booster) PIPER pediatric human body model's response was explored in a reference, and two most commonly observed seating postures: forward-leaning and forward-inboard-leaning. The vehicle environment with a side-curtain airbag (SCAB) was subjected to a small offset barrier impact (25% overlap at 40MPH), with and without the application of a pre-crash automatic emergency braking (AEB). 24 conditions were simulated using finite element analysis. Cases with a pre-crash AEB resulted in relatively lower kinematic and kinetic values due to the occupant being in a more flexed position before impact compared to without-AEB cases, coupled with the increased ride-down effect due to AEB. Moreover, different seating postures resulted in substantially different kinematics and kinetics, the injury metrics crossing the injury assessment reference values in some cases. Therefore, to design a passive safety standard test for pediatric occupants, it is important to consider the possible postural changes that may occur.

摘要

自然驾驶研究表明,在现实场景中,儿科乘员不会采取理想的坐姿。当前的车辆评估计划和儿童约束系统(CRS)滑橇测试,如 FMVSS No. 213,并未考虑到在现实世界旅行中通常观察到的广泛的坐姿。因此,本研究旨在分析在全车辆环境中,在正面偏置碰撞中,各种自然坐姿下的儿科人体模型在使用和不使用预碰撞自动紧急制动(AEB)时的运动学和动力学响应。研究人员探索了 6 岁(坐在高低背助推座椅上)和 10 岁(坐在无 CRS 和低背助推座椅上)的 PIPER 儿科人体模型在参考位置和两种最常见的观察到的坐姿:前倾和前向向内倾斜的响应。带有侧帘式安全气囊(SCAB)的车辆环境受到小偏置障碍物的冲击(25%重叠,时速 40 英里),使用和不使用预碰撞自动紧急制动(AEB)。使用有限元分析模拟了 24 种情况。由于在与没有 AEB 的情况下相比,在碰撞前,乘员处于更弯曲的位置,再加上由于 AEB 导致的 ride-down 效应增加,因此具有预碰撞 AEB 的情况下,运动学和动力学值相对较低。此外,不同的坐姿导致了明显不同的运动学和动力学,在某些情况下,损伤指标超过了损伤评估参考值。因此,为了设计针对儿科乘员的被动安全标准测试,重要的是要考虑可能发生的姿势变化。

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