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Upper and Lower Neck Loads in Belted Human Surrogates in Frontal Impacts

机译:正面碰撞中带状人体替代物的上下颈部负荷

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摘要

The upper and lower neck loads in the restrained Hybrid III dummy and Test Device for Human Occupant Restraint (THOR) were computed in simulated frontal impact sled tests at low, medium, and high velocities; repeatability performance of the two dummies were evaluated at all energy inputs; peak forces and moments were compared with computed loads at the occipital condyles and cervical-thoracic junctions from tests using post mortem human surrogates (PMHS). A custom sled buck was used to position the surrogates. Repeated tests were conducted at each velocity for each dummy and sufficient time was allowed to elapse between the two experiments. The upper and lower neck forces and moments were determined from load cell measures and its locations with respect to the ends of the neck. Both dummies showed good repeatability for axial and shear forces and bending moments at all changes in velocity inputs. Morphological characteristics in the neck loading responses were similar in all surrogates, although the peak magnitudes of the variables differed. In general, the THOR better mimicked the PMHS response than the Hybrid III dummy, and factors such as neck design and chest compliance were attributed to the observed variations. While both dummies were not designed for use at the two extremes of the tested velocities, results from the present study indicate that, currently the THOR may be the preferred anthropomorphic testing device in crashworthiness research studies and full-scale vehicle tests at all velocities.
机译:在模拟的正面,低,中,高速运动雪橇测试中,计算了受约束的Hybrid III假人和人体乘员约束测试装置(THOR)中上下颈部的载荷;在所有能量输入下评估了两个假人的可重复性性能;使用验尸后的人体替代物(PMHS),将峰值力量和力矩与枕骨dy和颈胸交界处的计算负荷进行了比较。使用定制的雪橇降压器来放置替代物。对每个假人以每种速度进行重复测试,并在两次实验之间留出足够的时间。根据称重传感器的尺寸及其相对于颈部末端的位置,确定上下颈部的力和力矩。在速度输入的所有变化下,两个假人都表现出良好的轴向力和剪切力以及弯矩的可重复性。尽管变量的峰值幅度不同,但所有替代指标的颈部负荷响应的形态学特征均相似。通常,THOR比Hybrid III假人更好地模仿了PMHS反应,并且诸如颈部设计和胸部顺应性等因素归因于观察到的变化。虽然这两种假人都不是为在两个极端的测试速度下使用而设计的,但本研究的结果表明,当前的THOR可能是耐撞性研究和所有速度下的全尺寸车辆测试中首选的拟人化测试设备。

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