首页> 外文会议>International Technical Conference on the Enhanced Safety of Vehicles >EvaRID - ANTHROPOMETRIC AND BIOMECHANICAL SPECIFICATION OF A FINITE ELEMENT DUMMY MODEL OF AN AVERAGE FEMALE FOR REAR IMPACT TESTING
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EvaRID - ANTHROPOMETRIC AND BIOMECHANICAL SPECIFICATION OF A FINITE ELEMENT DUMMY MODEL OF AN AVERAGE FEMALE FOR REAR IMPACT TESTING

机译:eVarid - 人体测量和生物力学规范的一平均女性对后冲击测试的平均钝化模型

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Neck injury due to low severity vehicle crashes is of worldwide concern and it is well established that the risk of such injuries are higher for females than for males, even in similar crash conditions. In addition, recently developed protective systems have shown to be less protective of females than males. Hence there is a need for improved tools when developing and evaluating the performance of protective systems for occupants. The objective of this study was to develop a finite element model of a 50th percentile female rear impact crash dummy model. The anthropometry of the 50th percentile female was specified based on data found in the scientific published literature and is called EvaRID (Eva - female/RID - Rear Impact Dummy). EvaRID is based on the same design concept as the 50th percentile male rear impact dummy, the BioRID. A first version, EvaRID V1.0, was developed in LSDyna. The dynamic response of EvaRID V1.0 was compared to data from rear impact tests with female volunteers. It was found that it is necessary to further adjust the stiffness of the joints in the spine in order to fully mimic the motion of the volunteers. In future, the EvaRID dummy model has the potential to be a valuable tool when evaluating and developing seats and whiplash protection systems.
机译:颈部损伤由于低严重程度的车辆崩溃是在全球范围的关注,并且很好地确定,女性对女性的伤害较高,而不是男性,即使在类似的碰撞条件下也是如此。此外,最近开发的防护系统已经表现出比男性更少的女性保护性。因此,在开发和评估乘员的保护系统的性能时,需要改进的工具。本研究的目的是开发一个50百分位的女性后冲击崩溃假模型的有限元模型。基于科学出版文献中发现的数据指定了第50百分位女性的人类测定法,称为Evarid(EVA - 女性/ RID - 后冲击假)。 Evarid基于与第50百分位的男性后部冲击假,偏离的设计概念相同。第一个版本Evarid V1.0是在LSDYNA开发的。将Evarid V1.0的动态响应与来自女性志愿者的后部冲击试验的数据进行比较。发现有必要进一步调节脊柱中关节的刚度,以完全模仿志愿者的运动。在将来,Evarid虚拟模型在评估和开发座椅和鞭打保护系统时有可能成为有价值的工具。

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