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Weak-shock wave propagation in polymer-based particulate composites

机译:聚合物基颗粒复合材料中的弱冲击波传播

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摘要

Shock waves are common in polymer-based particulate composites that are subjected to intermediate to high-velocity impact loading. However, quantitative information on the spatial variation of stress, particle velocities, and energy dissipation during the formation and propagation of weak-shock waves is limited. In this paper, a systematic experimental study is conducted to understand the characteristics of weak-shocks in polymer-bonded particulate composites. Specimens made of polymer-bonded sugar are subjected to a projectile impact loading, at varying velocities, using a modified Hopkinson pressure bar apparatus. Full-field displacement and strains of the deformed samples are obtained with the help of an ultrahigh-speed imaging and digital image correlation technique. Using the full-field displacement data, the shock wave velocity, shock front thickness, and the full-field stress fields are calculated. From the spatial stress field and the strain rate data, the spatial energy dissipation profile is also estimated. The effect of impact velocity on the spatial stress profile, shock wave velocity, and energy dissipation are discussed. Published under license by AIP Publishing.
机译:冲击波在聚合物基颗粒复合材料中常见,其受到高速冲击载荷的中间体。然而,有关弱冲击波的形成和传播期间应力,粒子速度和能量耗散的空间变化的定量信息受到限制。在本文中,进行了系统的实验研究,以了解聚合物粘合颗粒复合材料中弱冲击的特征。使用改性的霍普金森压棒装置,由聚合物键合糖制成的标本在不同的速度下进行射弹冲击载荷。借助于超高速度成像和数字图像相关技术,获得变形样品的全场位移和菌株。使用全场位移数据,计算冲击波速度,冲击前厚度和全场应力场。从空间应力场和应变速率数据,还估计空间能量耗散曲线。讨论了冲击速度对空间应力分布,冲击波速度和能量耗散的影响。通过AIP发布在许可证下发布。

著录项

  • 来源
    《Journal of Applied Physics 》 |2019年第14期| 145104.1-145104.13| 共13页
  • 作者单位

    Univ South Carolina Dept Mech Engn 300 Main St Columbia SC 29208 USA;

    Univ South Carolina Dept Mech Engn 300 Main St Columbia SC 29208 USA;

    Univ South Carolina Dept Mech Engn 300 Main St Columbia SC 29208 USA;

    Los Alamos Natl Lab Shock & Detonat Phys Los Alamos NM 87545 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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