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Relevant factors in the design of composite ballistic helmets

机译:复合防弹头盔设计中的相关因素

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摘要

In this paper, the design methodology of composite ballistic helmets has been enhanced considering biomechanical requirements by means of finite element analysis. Modern combat helmets lead to a new type of non-penetrating injury, the Behind Helmet Blunt Trauma (BHBT), generated by the deformation of the inner face of the helmet, the so-called backface deformation (BFD). Current standard testing methodologies use BFD as the main measure in ballistic testing. Nonetheless, this work discusses the relationship between this mechanical parameter and the head trauma (BHBT) by studying different head injury criteria. A numerical model consisting of a helmet and a human head is developed and validated with experimental data from literature. The consequences of non-penetrating high-speed ballistic impacts upon the human head protected by an aramid combat helmet are analysed, concluding that the existing testing methodologies fail to predict many types of head injuries. The influence of other parameters like bullet velocity or head dimensions is analysed. Usually, a single-sized helmet shell is manufactured and the different sizes are adjusted by varying the foam pad thickness. However, one of the conclusions of this work is that pad thickness is critical to avoid BHBT and must be considered in the design process.
机译:在本文中,考虑到生物力学要求,通过有限元分析增强了复合防弹头盔的设计方法。现代战斗头盔导致一种新型的非穿透性伤害,即头盔内表面变形(所谓的背面变形(BFD))所产生的后备头盔钝伤(BHBT)。当前的标准测试方法使用BFD作为弹道测试的主要手段。尽管如此,这项工作通过研究不同的颅脑损伤标准讨论了该机械参数与颅脑损伤(BHBT)之间的关系。建立了一个由头盔和人头组成的数字模型,并用文献中的实验数据进行了验证。分析了非穿透性高速弹道撞击对由芳纶战斗头盔保护的人头的后果,认为现有的测试方法无法预测多种类型的头部受伤。分析了其他参数(如子弹速度或头部尺寸)的影响。通常,制造单个尺寸的头盔壳,并通过改变泡沫垫的厚度来调节不同的尺寸。但是,这项工作的结论之一是,焊盘厚度对于避免BHBT至关重要,必须在设计过程中加以考虑。

著录项

  • 来源
    《Composite Structures》 |2018年第10期|49-61|共13页
  • 作者单位

    Centre of Research on Mechanical Engineering-CIIM, Department of Mechanical Engineering and Materials, Universitat Politècnica de València;

    Centre of Research on Mechanical Engineering-CIIM, Department of Mechanical Engineering and Materials, Universitat Politècnica de València;

    Department of Mechanical Engineering, Universidad Carlos III de Madrid;

    Department of Mechanical Engineering, Universidad Carlos III de Madrid;

    Centre of Research on Mechanical Engineering-CIIM, Department of Mechanical Engineering and Materials, Universitat Politècnica de València;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Combat helmet design; Ballistic standards; Human head model; Head injury criteria;

    机译:战斗头盔设计;弹道标准;人头模型;头部受伤标准;

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