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Anthropometric Specifications, Development, and Evaluation of EvaRID-A 50th Percentile Female Rear Impact Finite Element Dummy Model

机译:人体测量学规格,开发和评估EvaRID-A百分位女性后碰撞有限元虚拟模型

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Objectives: Whiplash-associated disorders (WADs), or whiplash injuries, due to low-severity vehicle crashes are of great concern in motorized countries and it is well established that the risk of such injuries is higher for females than for males, even in similar crash conditions. Recent protective systems have been shown to be more beneficial for males than for females. Hence, there is a need for improved tools to address female WAD prevention when developing and evaluating the performance of whiplash protection systems. The objective of this study is to develop and evaluate a finite element model of a 50th percentile female rear impact crash test dummy. Methods: The anthropometry of the 50th percentile female was specified based on literature data. The model, called EvaRID (female rear impact dummy), was based on the same design concept as the existing 50th percentile male rear impact dummy, the BioRID II. A scaling approach was developed and the first version, EvaRID V1.0, was implemented. Its dynamic response was compared to female volunteer data from rear impact sled tests. Results: The EvaRID V1.0 model and the volunteer tests compared well until ~250 ms of the head and T1 forward accelerations and rearward linear displacements and of the head rearward angular displacement. Markedly less T1 rearward angular displacement was found for the EvaRID model compared to the female volunteers. Similar results were received for the BioRID II model when comparing simulated responses with experimental data under volunteer loading conditions. The results indicate that the biofidelity of the EvaRID V1.0 and BioRID II FE models have limitations, predominantly in the T1 rearward angular displacement, at low velocity changes (7 km/h). The BioRID II model was validated against dummy test results in a loading range close to consumer test conditions (EuroNCAP) and lower severity levels of volunteer testing were not considered. Conclusions: The EvaRID dummy model demonstrated the potential of becoming a valuable tool when evaluating and developing seats and whiplash protection systems. However, updates of the joint stiffness will be required to provide better correlation at lower load levels. Moreover, the seated posture, curvature of the spine, and head position of 50th percentile female occupants needs to be established and implemented in future models.
机译:目标:在机动车驾驶国家,由于严重程度不高的车祸导致的与鞭打有关的疾病(WAD)或鞭打受伤备受关注,并且众所周知,即使在类似情况下,女性受伤的风险也高于男性。崩溃条件。已显示,最近的保护系统对男性比对女性更有益。因此,在开发和评估鞭打保护系统的性能时,需要改进的工具来解决女性WAD预防。这项研究的目的是开发和评估第50个百分位女性后方碰撞测试假人的有限元模型。方法:根据文献资料确定第50个百分位女性的人体测量学。该模型称为EvaRID(女性后部冲击假人),其基于与现有第50个百分位男性后部冲击假人BioRID II相同的设计概念。开发了一种缩放方法,并实现了第一个版本EvaRID V1.0。将其动态响应与来自后部碰撞雪橇测试的女性志愿者数据进行了比较。结果:EvaRID V1.0模型和志愿者测试进行了很好的比较,直到头部和T1的向前加速度和向后线性位移以及头部向后的角度位移的约250 ms。与女性志愿者相比,EvaRID模型的T1向后角位移明显减少。当将模拟响应与志愿者负载条件下的实验数据进行比较时,对于BioRID II模型也收到了类似的结果。结果表明,在低速变化(7 km / h)时,EvaRID V1.0和BioRID II FE模型的生物保真度存在局限性,主要在T1向后角位移方面。 BioRID II模型在接近消费者测试条件(EuroNCAP)的负载范围内针对虚拟测试结果进行了验证,并且未考虑较低的自愿性测试严重性水平。结论:EvaRID虚拟模型证明了在评估和开发座椅和防鞭打系统时成为有价值的工具的潜力。但是,将需要更新关节刚度以在较低的载荷水平下提供更好的相关性。此外,在未来的模型中需要建立和实施第50个百分位女性乘员的坐姿,脊柱弯曲度和头部位置。

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