首页> 外文期刊>Accident Analysis & Prevention >The RID2 biofidelic rear impact dummy: a pilot study using human subjects in low speed rear impact full scale crash tests.
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The RID2 biofidelic rear impact dummy: a pilot study using human subjects in low speed rear impact full scale crash tests.

机译:RID2生物理想的后碰撞假人:在低速后碰撞全尺寸碰撞测试中使用人类受试者进行的一项先导研究。

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STUDY DESIGN: Human subjects and the recently developed RID2 rear impact crash test dummy were exposed to a series of full scale, vehicle-to-vehicle crash tests. OBJECTIVE: To evaluate the biofidelity of the RID2 anthropometric test dummy on the basis of calculated neck injury criterion (NIC) values by comparing these values to those obtained from human subjects exposed in the very same crashes. SUMMARY OF BACKGROUND DATA: The widely used and familiar hybrid III dummy has been said to lack biofidelity in the special application of low speed rear impact crashes. Several attempts have been made to modify this dummy with only marginal success. Two completely new dummies have been developed; the BioRID and the RID2. Neither have been tested under real world crash boundary conditions in side-by-side comparisons with live human subjects. METHODS: Volunteer subjects, including a 50th percentile male, a 95th percentile male, and a 50th percentile female, were placed in the driver's seat of a vehicle and subjected to a series of three low speed rear impact crashes each. The RID2 dummy, which is modeled after a 50th percentile male, was placed in the passenger seat in each case. Both subjects and dummy were fully instrumented and acceleration-time histories were recorded. From this data, velocities of the heads and torsos were determined and both were used to calculate the NIC values for both crash test subjects and the RID2. RESULTS: The RID2 demonstrated generally higher head accelerations and NIC values than those of the human subjects. Most of the observed variations might be explained on the basis of differing head restraint geometry, posture, and body size. The RID2 NIC values compared most favorably with those of the 50th percentile male subject. For the whole group, the correlations between RID2 and human subjects did not reach statistical significance. CONCLUSIONS: The small number of test subjects and crash tests limited the statistical power of this pilot study, and the correlation between the RID2 and human subject NIC values were not statistically significant. The overall qualitative performance and biofidelity of the RID2 was reasonable when compared with the male human 50th percentile subject. Its overall higher ranges of head acceleration and calculated NIC values compared to all of the human subjects were generally consistent. This condition could likely be improved by increasing the stiffness of the RID2 neck. Biofidelic validation of the RID2 will require ongoing testing using a larger number of human subjects and varying boundary conditions. The results of this pilot study, while encouraging, should be considered preliminary.
机译:研究设计:将人类受试者和最近开发的RID2后部碰撞测试假人暴露于一系列全面的车辆至车辆碰撞测试中。目的:根据计算得出的颈部损伤标准(NIC)值,通过将这些值与在相同碰撞中暴露的人类受试者的值进行比较,以评估RID2人体测试假人的生物保真度。背景数据摘要:据说,广泛使用且熟悉的混合动力III型假人在低速后撞事故的特殊应用中缺乏生物保真度。进行了几次尝试来修改此虚拟对象,但仅获得了少量成功。已经开发出两个全新的虚拟模型; BioRID和RID2。都没有在现实世界的碰撞边界条件下与活着的人类受试者进行并列比较的测试。方法:将志愿者受试者(包括第50个百分位的男性,第95个百分位的男性和第50个百分位的女性)放置在车辆的驾驶员座椅上,每组均遭受三连串的低速后碰撞。在每种情况下,都将RID2假人放置在乘客座位上,该假人以50%的男性为模型。受试者和假人都被充分装备,并记录了加速时间历史。根据这些数据,确定头部和躯干的速度,并将两者用于计算碰撞测试对象和RID2的NIC值。结果:RID2表现出比人类受试者更高的头部加速度和NIC值。可以根据不同的头部约束几何形状,姿势和身体大小来解释大多数观察到的变化。与第50个百分位的男性受试者相比,RID2 NIC值最为有利。对于整个组,RID2与人类受试者之间的相关性未达到统计学意义。结论:少量的测试对象和碰撞测试限制了该试验研究的统计能力,并且RID2和人类对象NIC值之间的相关性在统计学上不显着。与50%的男性受试者相比,RID2的总体定性表现和生物保真度是合理的。与所有人类受试者相比,其总体上更高的头部加速度范围和计算得出的NIC值基本一致。可以通过增加RID2颈部的刚度来改善这种状况。 RID2的生物仿制药验证将需要使用大量人类受试者和不断变化的边界条件进行持续测试。这项试点研究的结果虽然令人鼓舞,但应视为初步结果。

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