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Virtual ballistic impact testing of Kevlar soft armor: Predictive and validated finite element modeling of the V0-V100probabilistic penetration response

机译:凯夫拉尔软装甲的虚拟弹道冲击测试:V0-V100概率穿透响应的预测和验证有限元建模

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摘要

This works presents the first fully validated and predictive capability to model the V0-V100probabilistic penetration response of a woven fabric using a yarn-level fabric finite element model. The V0-V100curve describes the probability of complete fabric penetration as a function of projectile impact velocity. The exemplar case considered in this paper comprises of a single-layer, fully-clamped, plain-weave Kevlar fabric impacted at the center by a 17-gr, 0.22 cal FSP or fragment-simulating projectile. Each warp and fill yarn in the fabric is individually modeled using 3D finite elements and the virtual fabric microstructure is validated in detail against the experimental fabric microstructure. Material and testing sources of sta-tistical variability including yarn strength and modulus, inter-yarn friction, precise projectile impact location, and projectile rotation are mapped into the finite element model. A series of impact simulations at varying projectile impact velocities is executed using LS-DYNA on the fabric models, with each model comprising unique mappings. The impact velocities together with the outcomes (penetration, non-penetration) are used to generate the numerical V0-V100curve which is then validated against the experimental V0-V100curve. The numerical Vi-Vrdata (impact, residual velocities) is also validated against the experimental Vi-Vrdata. For completeness, this paper also reports the experimental characterization data and its statistical analysis used for model input, viz. the Kevlar yarn tensile strengths, moduli, and inter-yarn friction, and the experimental ballistic test data used for model validation.
机译:该作品介绍了使用纱线级织物有限元模型模拟织物的V0-V100功能渗透响应的第一种完全验证和预测能力。 V0-V100Curve描述了作为射弹冲击速度的函数的完整织物渗透的可能性。本文考虑的示例性壳体包括由17-GR,0.22 CAL FSP或片段模拟射弹影响在中心的单层,完全夹紧的普通kevlar织物。织物中的每个经纱和填充纱线使用3D有限元素进行单独建模,并且虚拟织物微观结构与实验织物微观结构详细验证。材料和测试来源包括纱线强度和模量,纱线间摩擦,精确的射弹冲击位置和射弹旋转被映射到有限元模型中。在织物模型上使用LS-DYNA执行各种射弹冲击速度的一系列冲击模拟,每个模型包括唯一映射。冲击速度与结果(渗透,非渗透)一起用于产生数值V0-V100Curve,然后对实验V0-V100Curve验证。数值VI-VRDATA(影响,残余速度)也验证了实验VI-VRDATA。对于完整性,本文还报告了实验表征数据及其用于模型输入,VIZ的统计分析。 Kevlar纱线拉伸强度,模态和纱间摩擦,以及用于模型验证的实验迹体测试数据。

著录项

  • 来源
    《兵工学报(英文版)》 |2018年第3期|213-225|共13页
  • 作者单位

    Teledyne Scientific & Imaging,Thousand Oaks,CA 91360,USA;

    Program Executive Office Soldier,Fort Belvoir,VA 22060,USA;

    Program Executive Office Soldier,Fort Belvoir,VA 22060,USA;

    Program Executive Office Soldier,Fort Belvoir,VA 22060,USA;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-19 03:35:05
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