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描述 Hybrid III 和 NOCSAE 头模的固有频率。

Characterizing Natural Frequencies of the Hybrid III and NOCSAE Headforms.

机构信息

Biomedical Engineering and Mechanics, Virginia Tech, Blacksburg, VA, 24060, USA.

出版信息

Ann Biomed Eng. 2024 Oct;52(10):2831-2843. doi: 10.1007/s10439-024-03498-w. Epub 2024 Apr 1.

Abstract

The vibrational characteristics of the Hybrid III and NOCSAE headforms are not well understood. It is hypothesized that they may perform differently in certain loading environments due to their structural differences; their frequency responses may differ depending on the impact characteristics. Short-duration impacts excite a wider range of headform frequencies than longer-duration (padded) impacts. While headforms generally perform similarly during padded head impacts where resonant frequencies are avoided, excitation of resonant frequencies during short-duration impacts can result in differences in kinematic measurements between headforms for the matched impacts. This study aimed to identify the natural frequencies of each headform through experimental modal analysis techniques. An impulse hammer was used to excite various locations on both the Hybrid III and NOCSAE headforms. The resulting frequency response functions were analyzed to determine the first natural frequencies. The average first natural frequency of the NOCSAE headform was 812 Hz. The Hybrid III headform did not exhibit any natural frequencies below 1000 Hz. Comparisons of our results with previous studies of the human head suggest that the NOCSAE headform's vibrational response aligns more closely with that of the human head, as it exhibits lower natural frequencies. This insight is particularly relevant for assessing head injury risk in short-duration impact scenarios, where resonant frequencies can influence the injury outcome.

摘要

混合 III 型和 NOCSAE 头模的振动特性尚未得到很好的理解。据推测,由于它们的结构差异,它们在某些加载环境中可能表现不同;它们的频率响应可能因冲击特性而异。短持续时间冲击比长持续时间(垫衬)冲击更能激发头模的更宽频率范围。虽然头模在避免共振频率的垫衬头冲击期间通常表现相似,但在短持续时间冲击期间共振频率的激发可能导致匹配冲击的头模之间运动学测量值的差异。本研究旨在通过实验模态分析技术确定每个头模的固有频率。使用脉冲锤激励混合 III 型和 NOCSAE 头模的各个位置。分析所得的频率响应函数以确定第一固有频率。NOCSAE 头模的平均第一固有频率为 812 Hz。混合 III 型头模在 1000 Hz 以下没有任何固有频率。将我们的结果与先前对人类头部的研究进行比较表明,NOCSAE 头模的振动响应更接近人类头部,因为它表现出更低的固有频率。这一见解对于评估短持续时间冲击情况下的头部受伤风险特别重要,因为共振频率可能会影响受伤结果。

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