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使用混合III型头部/颈部组件的坠落防护头盔测试冲击试验装置的响应

Response of an Impact Test Apparatus for Fall Protective Headgear Testing Using a Hybrid-III Head/Neck Assembly.

作者信息

Caccese V, Ferguson J, Lloyd J, Edgecomb M, Seidi M, Hajiaghamemar M

机构信息

Department of Mechanical Engineering, University of Maine, Orono, ME.

Department of Corporate Operations, Alba-Technic LLC, Winthrop, ME.

出版信息

Exp Tech. 2016 Feb;40(1):413-427. doi: 10.1111/ext.12079. Epub 2016 Mar 1.

DOI:10.1111/ext.12079
PMID:28216804
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5309928/
Abstract

A test method based upon a Hybrid-III head and neck assembly that includes measurement of both linear and angular acceleration is investigated for potential use in impact testing of protective headgear. The test apparatus is based upon a twin wire drop test system modified with the head/neck assembly and associated flyarm components. This study represents a preliminary assessment of the test apparatus for use in the development of protective headgear designed to prevent injury due to falls. By including angular acceleration in the test protocol it becomes possible to assess and intentionally reduce this component of acceleration. Comparisons of standard and reduced durometer necks, various anvils, front, rear, and side drop orientations, and response data on performance of the apparatus are provided. Injury measures summarized for an unprotected drop include maximum linear and angular acceleration, head injury criteria (HIC), rotational injury criteria (RIC), and power rotational head injury criteria (PRHIC). Coefficient of variation for multiple drops ranged from 0.4 to 6.7% for linear acceleration. Angular acceleration recorded in a side drop orientation resulted in highest coefficient of variation of 16.3%. The drop test apparatus results in a reasonably repeatable test method that has potential to be used in studies of headgear designed to reduce head impact injury.

摘要

研究了一种基于Hybrid-III头颈部组件的测试方法,该方法包括测量线性加速度和角加速度,以用于防护头盔的冲击测试。该测试装置基于双钢丝落锤试验系统,并对头/颈部组件和相关的摆臂部件进行了改进。本研究是对该测试装置的初步评估,该装置用于开发旨在防止跌倒受伤的防护头盔。通过在测试方案中纳入角加速度,可以评估并有意降低这一加速度分量。提供了标准硬度和降低硬度的颈部、各种砧座、前后和侧面下落方向的比较,以及该装置性能的响应数据。未受保护下落的损伤指标总结包括最大线性和角加速度、头部损伤标准(HIC)、旋转损伤标准(RIC)和动力旋转头部损伤标准(PRHIC)。多次下落的线性加速度变异系数范围为0.4%至6.7%。侧面下落方向记录的角加速度变异系数最高,为16.3%。落锤试验装置产生了一种相当可重复的测试方法,有可能用于旨在减少头部冲击损伤的头盔研究。

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Brain injury prediction: assessing the combined probability of concussion using linear and rotational head acceleration.脑损伤预测:使用线性和旋转头部加速度评估脑震荡的综合概率。
Ann Biomed Eng. 2013 May;41(5):873-82. doi: 10.1007/s10439-012-0731-0. Epub 2013 Jan 9.
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Hybrid III anthropomorphic test device (ATD) response to head impacts and potential implications for athletic headgear testing.混合动力 III 型人体模型测试设备(ATD)对头部撞击的反应及其对头盔测试的潜在影响。
Accid Anal Prev. 2012 Sep;48:285-91. doi: 10.1016/j.aap.2012.01.032. Epub 2012 Mar 3.
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A study of the response of the human cadaver head to impact.一项关于人类尸体头部对撞击反应的研究。
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