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Comparison of Hybrid III Child Test Dummies to Pediatric PMHS in Blunt Thoracic Impact Response

机译:混合III型儿童测试假人与小儿PMHS钝性胸腔撞击反应的比较

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摘要

The limited availability of pediatric biomechanical impact response data presents a significant challenge to the development of child dummies. In the absence of these data, the development of the current generation of child dummies has been driven by scaling of the biomechanical response requirements of the existing adult test dummies. Recently published pediatric blunt thoracic impact response data provide a unique opportunity to evaluate the efficacy of these scaling methodologies. However, the published data include several processing anomalies and nonphysical features. These features are corrected by minimizing instrumentation and processing error to improve the fidelity of the individual force-deflection responses. Using these data, biomechanical impact response corridors are calculated for a 3-year-old child and a 6-year-old child. These calculated corridors differ from both the originally published postmortem human subject (PMHS) corridors and the impact response requirements of the current child dummies. Furthermore, the response of the Hybrid III 3-year-old test dummy in the same impact condition shows a similar deflection but a significantly higher force than the 3-year-old corridor. The response of the Hybrid III 6-year-old dummy, on the other hand, correlates well with the calculated 6-year-old corridor. The newly developed 3-year-old and 6-year-old blunt thoracic impact response corridors can be used to define data-driven impact response requirements as an alternative to scaling-driven requirements.
机译:儿科生物力学冲击响应数据的可用性有限,对儿童假人的发展提出了重大挑战。在没有这些数据的情况下,当前儿童假人的发展是由现有成人测试假人对生物力学响应要求的扩展所推动的。最近发布的儿科钝性胸腔冲击反应数据为评估这些缩放方法的有效性提供了独特的机会。但是,已发布的数据包括一些处理异常和非物理特征。通过最小化仪器和加工误差来改善这些特征,以提高各个力-挠度响应的保真度。使用这些数据,可以计算出3岁儿童和6岁儿童的生物力学冲击响应通道。这些计算得出的走廊既不同于最初发布的人体验尸走廊(PMHS),也不同于当前儿童假人的撞击响应要求。此外,在相同的冲击条件下,Hybrid III 3岁测试假人的响应显示出相似的挠度,但力要比3岁走廊长得多。另一方面,Hybrid III 6岁假人的反应与计算得出的6岁走廊的相关性很好。新开发的3岁和6岁钝胸撞击反应通道可用于定义数据驱动的撞击响应需求,以替代缩放驱动的需求。

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